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Cone Yarn Dyeing Machine
Cone Yarn Dyeing Machine
Cone Yarn Dyeing Machine
Cone Yarn Dyeing Machine
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    Cone Yarn Dyeing Machine
    Cone Yarn Dyeing Machine
    Cone Yarn Dyeing Machine
    Cone Yarn Dyeing Machine
    Home Yarn Dyeing Machine & Equipment Cone yarn Dyeing machine
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    Automatic Bobbin Hydro extractor
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    Cone yarn Dyeing machine

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    Cone Yarn Dyeing Machine

    Cone Yarn Dyeing Machine

     

    A Cone Yarn Dyeing Machine is an industrial machine used for dyeing yarn wound on perforated cones. It allows dye liquor to flow through the yarn packages under pressure and temperature, ensuring deep and uniform color penetration. A Production Cone Yarn Dyeing Machine is a large-capacity, high-efficiency machine designed for dyeing yarns wound on cones in bulk. It’s essential in commercial textile operations where consistent shade, penetration, and process repeatability are critical.

     

     

    Purpose of Cone Yarn Dyeing Machine:

    To dye large batches of yarn cones efficiently and consistently.

     

    Key Components:

    Dyeing Vessel:   – A vertical or horizontal pressure vessel made of stainless steel (SS 316/304), designed to withstand high pressure and temperature.

    Yarn Carrier (Spindles):   – Holds multiple cones arranged on perforated spindles allowing dye to pass through.

    Circulation Pump:  – Forces dye liquor through yarn in inward and/or outward flow for thorough penetration.

    Heat Exchanger: – Heats dye bath using steam or thermal fluid, with precise control.

     

    Control System (PLC): – Fully automated for setting temperature profile, flow direction, timing, and rinsing cycles.

    Liquor Tanks & Valves: – For preparation, dosing, and circulation of dyes, chemicals, and water.

     

    Working Cycle:

    Loading: Cones are placed on carriers and loaded into the machine.

    Liquor Preparation: Dye and auxiliaries mixed in a separate tank or directly.

    Dyeing: Liquor is circulated through cones under set temperature and pressure.

    Rinsing & Soaping: Post-dyeing cleaning and neutralization cycles.

    Cooling & Unloading: Bath cooled; cones unloaded for hydro extraction.

     

    Production Capacity:

    Varies from 5 kg lab models to over 1000 kg per batch in industrial setups.

     

    How to Use Production Cone Yarn Dyeing Machine:

    Preparation: – Inspect the machine for cleanliness and proper function.

    – Prepare dye liquor by mixing dyes and auxiliaries according to recipe.

    Loading Yarn:

    – Place yarn cones evenly on perforated spindles/carriers.

    – Load the carriers into the dyeing vessel securely.

     

     

    Set Parameters: – Input dyeing parameters on the control panel (temperature, time, flow direction, pressure).

    Start Dyeing Cycle: – Begin liquor circulation and heating. – Monitor temperature and pressure for stability.

    Flow Control: – Switch between inward and outward liquor flow as programmed to ensure uniform dyeing.

    Rinsing & Soaping: – After dyeing, run rinse cycles to remove unfixed dye and chemicals.  – Soaping cycle if required for color fixation.

     

    Cooling:  – Lower temperature gradually to avoid thermal shock.

    Unloading: – After the cycle completes, safely open the vessel.  – Remove dyed cones and transfer for hydro-extraction or drying.

    Cleaning: – Clean the vessel and filters for the next batch.

    Tips:

    Always check for uniform loading to avoid uneven dyeing.

     

    Applications of Cone Yarn Dyeing Machine:

    Used in yarn dyeing mills for cotton, polyester, viscose, and blended yarns.

    Ideal for commercial-scale dyeing before weaving or knitting.

     

    Working Principle:

    Yarn cones are stacked on spindles inside a dyeing vessel.

    Dye liquor is pumped through the cones (inward or outward flow).

    Temperature, pressure, and time are controlled digitally for accurate dyeing.

     

    Benefits of Cone Yarn Dyeing Machine:

    Uniform Dye Penetration – Ensures even color across the entire yarn cone.

    High Productivity – Capable of dyeing multiple cones simultaneously.

    Efficient Dye Utilization – Recycles dye liquor to reduce waste and cost.

    Energy & Water Saving – Optimized cycles lower water, steam, and chemical usage.

    Consistent Quality – Controlled temperature and pressure ensure repeatable results.

    Suitable for Various Yarns – Handles cotton, polyester, viscose, acrylic, and blends.

     

    Features of Cone Yarn Dyeing Machine:

    High-Pressure Dyeing Vessel – Made from stainless steel for durability and corrosion resistance.

    Inward/Outward Flow System – Alternating flow ensures full yarn coverage.

    Automatic Controls – PLC or digital panel for temperature, time, and pressure settings.

    Heat Recovery System (optional) – Saves energy by recycling heat from spent liquor.

     

    Safety Mechanisms – Includes pressure relief valves and auto-locking lids.

    Multiple Carrier Sizes – Supports various bobbin sizes and production capacities.

    Follow safety procedures due to high pressure and temperature.

    Use proper protective equipment when handling chemicals.

     

    Safety Tips for Production Cone Yarn Dyeing Machine:

    Always wear appropriate PPE (gloves, goggles, apron) when handling dyes and chemicals.

    Ensure the dyeing vessel lid is securely locked before starting the machine.

    Do not open the vessel while it is pressurized or hot.

    Follow emergency shutdown procedures if abnormal noise, leaks, or pressure occur.

    Keep the workspace clean and free of slip hazards from spilled liquids.

    Regularly inspect safety valves and pressure gauges for proper function.

    Train operators on emergency response and chemical handling protocols.

     

    Maintenance Tips:

    Clean the dyeing vessel and filters after each batch to prevent residue build-up.

    Regularly check and lubricate moving parts like pumps and valves.

    Inspect seals and gaskets to avoid leaks under pressure.

    Calibrate temperature and pressure sensors periodically.

    Check electrical panels and control systems for damage or loose connections.

    Schedule preventive maintenance as recommended by the manufacturer.

     

     

    Production Cone Yarn Dyeing Machine

    Safety Checklist

    ☐ Wear PPE (gloves, goggles, apron) during operation

    ☐ Ensure vessel lid is securely locked before starting

    ☐ Never open vessel when pressurized or hot

    ☐ Follow emergency shutdown procedures if issues arise

    ☐ Keep floor clean and dry around machine

    ☐ Regularly inspect safety valves and pressure gauges

    ☐ Train operators on emergency and chemical handling

     

     

    Maintenance Checklist

    ☐ Clean vessel and filters after each batch

    ☐ Lubricate pumps, valves, and moving parts regularly

    ☐ Inspect seals and gaskets for wear or leaks

    ☐ Calibrate temperature an

     

    TECHNICAL DATA OF THE MACHINE

    • Computer system: Foshan HuaGao Chinese English computer, equipped with LG PLC.
    • Electromagnetic valve: Ningbo Jiaerling
    • Frequency converter: Use Made in China frequency converters.
    • Pump: self-made high head and large flow centrifugal water pump.
    • Main pump motor: Anhui Wannan Motor.

     

    • Master cylinder liquid level: Use 4-20mA analog signal output.
    • Level of deputy temporary worker: use foam water level gauge. (American Mike)
    • Temperature detection and display: digital temperature display instrument, dual temperature measuring probes.
    • The safety system has a triple cylinder head safety interlock mechanism, and the main cylinder is equipped with a stainless
    • steel safety valve.
    • Heat exchanger: external spacer heating.

     

    • Feeding system: Quantitative feeding based on the process curve.
    • Circulation system: The main pump flows internally and externally, which is automatically controlled by a computer or manually controlled by a relay.
    • Valves: Y valves are used for heating, stainless steel Y valves are used for single inlet and single row, and other Y valves are produced by joint ventures.
    • Temperature control: on-off temperature control, controlled by a computer, with automatic heating, cooling, and insulation functions.
    • Dyeing method: air cushion type.

     

    • Opening method: manual opening.
    • Surface treatment: polishing inside and outside the cylinder.
    • Cage: Each dyeing machine is equipped with butterfly blades and self-locking locks.
    • Body plate: high-quality stainless steel. (S31603)
    • Bath ratio: 1:5-1:6

     

    • Chemical material system: including heating and water adding functions, including overflow type salt melting device.
    • Overflow cleaning: The cleaning port is installed on the upper part of the cylinder port, and the bottom of the cylinder is filled with water, while the cylinder is drained for easy cleaning.
    • Commutation method: Novel “U” type commutation.
    • Random accessories: Each model comes with one set of mechanical seals, pot mouth rings, and reversing seals for the main and auxiliary pumps.

      Cone Yarn Dyeing Machine

      Cone Yarn Dyeing Machine

    Category: Yarn Dyeing Machine & Equipment Tags: cone yarn Dyeing machine for new project, cone Yarn Dyeing machine price in Bangladesh, cone yarn Dyeing machine price list, cone Yarn Dyeing machine Supplier in Bangladesh, Lab cone Yarn Dyeing machine price in Bangladesh, textile lab machine supplier in Bangladesh, yarn Dyeing Full Project Machine, Yarn Dyeing machine price in Bangladesh, Yarn Dyeing machine Supplier in Bangladesh Brand: DYEDTECH, DUNLIN
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    Related products

    High Speed Hard Winding Machine
    High Speed Hard Winding Machine

    High speed hard winding machine

    Yarn Dyeing Machine & Equipment
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    High Speed Hard Winding Machine
    High Speed Hard Winding Machine

    High Speed Hard Winding Machine

      A High Speed Hard Winding Machine is a textile winding machine designed to wind yarns, threads, or fibers onto cones or packages at high speeds with firm tension. It is used to prepare yarn packages for subsequent processes like weaving or knitting.     Purpose of High Speed Hard Winding Machine: - To wind yarn evenly and tightly with controlled tension for storage or further processing.   Key Features of High Speed Hard Winding Machine - High-speed winding for increased productivity. - Precise tension control to avoid yarn breakage or slack. - Automatic package building to maintain uniform shape. - Suitable for various yarn types—cotton, polyester, wool, etc. - User-friendly controls and safety features.   Applications of High Speed Hard Winding Machine: - Textile mills preparing yarn for fabric production. - Quality control labs for winding test samples. - Textile manufacturing units needing uniform yarn packages.   Benefits of High Speed Hard Winding Machine:
    1. Increased Productivity - High-speed operation reduces winding time significantly.
    2. Consistent Package Quality - Ensures uniform and firm yarn packages ideal for further processing.
    3. Reduced Yarn Breakage - Precise tension control minimizes yarn damage during winding.
    4. Versatility - Handles different types of yarns including delicate and coarse fibers.
     
    1. User-Friendly Operation - Simple controls and automation reduce operator fatigue.
    2. Improved Efficiency - Automatic package build-up reduces manual adjustments.
    3. Space Saving - Compact design fits well in production lines and labs.
      How to Use High Speed Hard Winding Machine:
    1. Set Up the Machine - Switch on the power and check all safety guards.
    2. Load Yarn - Thread the yarn through tension guides and eyelets as per the manual.
    3. Adjust Tension - Set tension according to yarn type to avoid slack or breakage.
    4. Place Empty Cone/Package - Mount the empty cone or package holder securely.
     
    1. Start Winding- Press the start button; machine will begin winding at set speed.
    2. Monitor the Process - Observe yarn package build-up and make adjustments if necessary.
    3. Stop and Remove Package - Once winding is complete, stop the machine and remove the yarn package carefully.
    4. Maintenance - Clean the machine regularly and lubricate moving parts as needed.
      Specifications of High Speed Hard Winding Machine: - Winding Speed: Typically 1000 to 3000 RPM (varies by model) - Package Type: Conical or cylindrical yarn packages - Tension Control: Adjustable mechanical or electronic tension system - Drive System: AC motor with variable frequency drive (VFD) for speed control - Power Supply: Usually 220V/380V, 50/60 Hz - Package Weight Capacity: Depends on model, generally up to 2 kg - Machine Size: Compact footprint for space-saving installation - Control Panel: Digital or analog with start/stop and speed adjustment - Safety Features: Emergency stop, yarn break detection, overload protection     Troubleshooting Tips: - Yarn Breakage: - Check and reduce tension; inspect yarn for weak spots. - Clean guides and rollers to remove any debris. - Uneven Winding: - Ensure correct threading path and tension balance. - Adjust package build-up mechanism. - Machine Not Starting: - Check power supply and emergency stop switch. - Verify control panel settings.   - Excessive Noise: - Lubricate moving parts and tighten loose components. - Inspect bearings for wear. - Package Slippage: - Secure cone properly and check tension settings.   Features of High Speed Hard Winding Machine:
    1. High-Speed Operation - Capable of winding yarns at fast speeds (up to 3000 RPM) to boost productivity.
    2. Precise Tension Control - Adjustable tension mechanism to prevent yarn breakage and ensure tight winding.
    3. Automatic Package Formation - Uniform, firm package build-up for consistent yarn quality.
    4. Versatile Yarn Compatibility - Suitable for cotton, polyester, wool, and blended yarns.
     
    1. User-Friendly Interface - Easy controls with digital or analog panels for speed and tension adjustment.
    2. Robust Construction - Durable stainless steel or metal frame for long-term reliability.
    3. Safety Features - Includes emergency stop buttons and yarn break sensors.
    4. Compact Design - Space-saving structure ideal for labs and production floors.
    5. Low Maintenance - Designed for easy cleaning and minimal upkeep.
        high-speed hard winding machine is used to produce hard cone packages for knitting machine, shuttle loom, warping machine and hosiery machine. It is an ideal winding machine for cotton threads, hemp threads and chemical fiber yarns. TECHNICAL PARAMETERS Grooved drum O/D 82mm, lead 2.5 (turns) ×147, angle: 0° Take-up tubes Cylindrical or cone with conicity of 3°30′, 4 °20′ Bobbin length Standard 170mm, customized range: 170-280mm Yarn length control Electronically set the winding yarn length up to 999999m according to the final package. Electric waxing device (optional) Square wax piece is used for uniform waxing, a set per spindle Slow start Ensures a slow and stable start to improve the winding quality. Counterweight yarn brake Prevent the yarn from shaking during the feeding to provide suitable winding tension. Electronic tensioner Tension plate Number of spindles per section 12 per section Number of spindles, max. 120 Drive Individual variable frequency motor per spindle Max. winding linear speed 1100 m/min, individually controlled per section, frequency control Traverse Standard: 147mm Creel balancer Winding tension is controlled by a spring balancer Yarn detector Photoelectric sensor Package diameter Max. 280mm Start/Stop Membrane switch control, touch screen Vertical anti-patterning device Computer controlled Vacuum cleaner/blower Optional, 1100W (cleaning power) Power consumption 60W/spindle (at the highest speed), including the power of cleaner motor Power supply 3-phase 380V 10%, 50/60Hz, 220V, 440V Weight (12 spindles) 350kg Dimension (12 spindles) 2250mm (L)×1100mm(W)×1400mm(H) Cleaner weight 132 kg, depending on the number of spindles Weight and dimension of the electricity box 45kg, 700mm(L)×300mm(W)×1320mm(H)   FUNCTIONS The winding speed can be set and controlled automatically by the computer, offering a maximum speed of 1100 m/min. Advanced yarn cleaning, tension device and photoelectric yarn detector avoids the yarn loop. Accurate and sensitive speed controller ensures even and consistent winding length (weight). Electrically rotary waxing ensures the waxing quantity and uniformity.
    High Speed Hard Winding Machine

    High Speed Hard Winding Machine

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    Sample Cone Yarn Dyeing Machine
    Sample Cone Yarn Dyeing Machine

    Sample Cone Yarn Dyeing machine

    Yarn Dyeing Machine & Equipment
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    Sample Cone Yarn Dyeing Machine
    Sample Cone Yarn Dyeing Machine

    Sample Cone Yarn Dyeing Machine

      A Sample Cone Yarn Dyeing Machine is a lab-scale dyeing unit designed for dyeing small batches of yarn wound on cones. It simulates the bulk cone dyeing process, allowing testing of dye formulations, shade matching, and process development before large-scale production.   Purpose Sample Cone Yarn Dyeing Machine: To dye yarn cones under controlled conditions using a small quantity of dyes, water, and chemicals.   Working Principle Sample Cone Yarn Dyeing Machine: Yarn cones are mounted on dyeing spindles. The dye liquor is circulated through the yarn from inside (inward flow) or outside (outward flow), ensuring uniform penetration. Temperature, pressure, and time are controlled digitally.   Applications of Sample Cone Yarn Dyeing Machine: Lab trials in dye houses R&D in dye and chemical manufacturing Shade and recipe matching Process optimization before bulk production   Benefits of Sample Cone Yarn Dyeing Machine: Cost-Effective Testing - Uses minimal dye, water, and energy for trial batches. Accurate Shade Development - Matches production dyeing conditions for reliable color matching. Quick Recipe Validation - Fast testing of dyeing recipes before bulk production. Time Saving - Rapid cycle time helps speed up R&D and approvals.   Versatile Applications - Suitable for different yarn types: cotton, polyester, blends, etc. Improved Quality Control - Identifies dyeing issues early in lab conditions.   Features of Sample Cone Yarn Dyeing Machine: Compact Design - Lab-friendly, space-saving build. Digital Controller - Precise control of temperature, time, and pressure. Reversible Flow System - Ensures uniform dyeing by alternating liquor flow. Stainless Steel Construction - Durable and corrosion-resistant. Pressure & Temperature Safety Devices - For safe high-temperature operations. Easy Loading & Unloading - Designed for quick cone placement and removal.   How to Use Sample Cone Yarn Dyeing Machine: Prepare the Yarn - Wind yarn uniformly onto dye able cones (perforated cones preferred). Load the Machine - Mount the cones on dyeing spindles and secure the lid properly. Add Dye Liquor - Fill the tank with water, dye, auxiliaries, and chemicals based on the recipe. Set Parameters - Use the digital controller to set: - Dyeing temperature - Holding time - Heating rate   - Flow direction (inward/outward)   Start Dyeing Cycle - Begin the process; the machine will heat and circulate dye liquor. Monitor the Process - Watch for pressure, temperature, and flow direction changes if applicable. Cool Down & Drain - After dyeing, allow the machine to cool. Drain the bath and rinse the yarn. Unload and Dry - Remove the cones carefully and dry them using a hydro extractor or dryer.   Safety Tips for Sample Cone Yarn Dyeing Machine: Use Heat-Resistant Gloves - Always wear gloves when handling hot parts or dye liquor. Secure the Lid properly - Ensure the lid is tightly closed before starting to avoid leaks under pressure. Avoid Overloading - Do not exceed the recommended cone or liquor load to prevent uneven dyeing or damage.   Stay Clear During Operation - Keep hands and tools away from moving or hot parts while in use. Ventilation - Operate in a well-ventilated area to avoid inhaling steam or fumes. Emergency Stop - Know the location and function of the emergency stop button.   Basic Maintenance Checklist: Daily: [ ] Clean machine interior and remove dye residue [ ] Check for any leaks or unusual noises [ ] Rinse pump and pipes with clean water   Weekly: [ ] Inspect gaskets and lid seals for wear [ ] Check electrical connections and display panel [ ] Clean and lubricate valve mechanisms   Monthly: [ ] Test temperature and pressure sensors [ ] Inspect flow direction system for proper switching [ ] Calibrate temperature control if needed     Sample Cone Yarn Dyeing Machine – Maintenance & Safety Checklist Daily Maintenance: ☐ Clean dyeing vessel and spindles ☐ Rinse piping and pump with clean water ☐ Check for leaks, noises, or unusual vibrations   Weekly Maintenance: ☐ Inspect lid gasket and seals ☐ Clean valves and filter (if present) ☐ Check control panel buttons and display ☐ Tighten any loose screws or fittings Monthly Maintenance: ☐ Test and calibrate temperature & pressure sensors ☐ Inspect and clean reversible flow system ☐ Check motor and pump for overheating or wear   Safety Checklist: ☐ Wear heat-resistant gloves & protective eyewear ☐ Secure lid tightly before starting ☐ Do not exceed load capacity ☐ Keep area ventilated during operation ☐ Know emergency stop location ☐ Let machine cool before cleaning or unloading       TECHNICAL DATA OF THE MACHINE
    • Computer system: Foshan HuaGao Chinese English computer, equipped with LG PLC.
    • Electromagnetic valve: Ningbo Jiaerling
    • Frequency converter: Use Made in China frequency converters.
    • Pump: self-made high head and large flow centrifugal water pump.
    • Main pump motor: Anhui Wannan Motor.
     
    • Master cylinder liquid level: Use 4-20mA analog signal output.
    • Level of deputy temporary worker: use foam water level gauge. (American Mike)
    • Temperature detection and display: digital temperature display instrument, dual temperature measuring probes.
    • The safety system has a triple cylinder head safety interlock mechanism, and the main cylinder is equipped with a stainless
    • steel safety valve.
    • Heat exchanger: external spacer heating.
    • Feeding system: Quantitative feeding based on the process curve.
    • Circulation system: The main pump flows internally and externally, which is automatically controlled by a computer or manually controlled by a relay.
     
    • Valves: Y valves are used for heating, stainless steel Y valves are used for single inlet and single row, and other Y valves are produced by joint ventures.
    • Temperature control: on-off temperature control, controlled by a computer, with automatic heating, cooling, and insulation functions.
    • Dyeing method: air cushion type.
    • Opening method: manual opening.
    • Surface treatment: polishing inside and outside the cylinder.
    • Cage: Each dyeing machine is equipped with butterfly blades and self-locking locks.
    • Body plate: high-quality stainless steel. (S31603)
    • Bath ratio: 1:5-1:6
     
    • Chemical material system: including heating and water adding functions, including overflow type salt melting device.
    • Overflow cleaning: The cleaning port is installed on the upper part of the cylinder port, and the bottom of the cylinder is filled with water, while the cylinder is drained for easy cleaning.
    • Commutation method: Novel "U" type commutation.
    • Random accessories: Each model comes with one set of mechanical seals, pot mouth rings, and reversing seals for the main and auxiliary pumps.
      Sample Cone Yarn Dyeing Machine

      Sample Cone Yarn Dyeing Machine

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    Electronic Wrap Reel
    Electronic Wrap Reel

    Electronic wrap reel

    Yarn Dyeing Machine & Equipment
    $0.00
    Electronic Wrap Reel
    Electronic Wrap Reel

    Electronic Wrap Reel

      An Electronic Wrap Reel is a precision instrument used in textile labs to prepare yarn hanks of a fixed length (usually 1 yard per wrap) for testing purposes like count, strength, and appearance. It automates the reeling process using an electronic counter and motor control.   Purpose Electronic Wrap Reel: To wind yarn into standard hanks (skeins) for count determination, strength tests, and dye testing.   Key Functions of Electronic Wrap Reel: Measures yarn length by controlled wraps Ensures uniform tension and hank size Allows setting of specific wrap counts   Applications Electronic Wrap Reel: Yarn count analysis (Tex, Ne, Denier) Strength testing Yarn appearance grading Dye lab sample preparation   Benefits of Electronic Wrap Reel: Accurate Length Measurement- Ensures precise yarn length by counting wraps electronically. Consistent Hank Size - Produces uniform skeins for reliable testing. Time-Saving- Automates the winding process, reducing manual effort. Adjustable Settings - Allows customization of wrap count for different test standards.   Reduced Human Error - Electronic counting minimizes mistakes in yarn preparation. Improved Testing Reliability - Standardized samples enhance accuracy of subsequent tests.   Features of Electronic Wrap Reel: Digital Wrap Counter - Clear display showing the number of wraps completed. Variable Speed Control - Adjustable motor speed for delicate or coarse yarns. Uniform Tension System - Maintains consistent tension to avoid yarn damage. Auto Stop Function - Stops automatically when preset wrap count is reached.   Compact & Sturdy Design - Stable base with durable materials for long service life. Easy Threading Path - Designed for quick and hassle-free yarn threading.   How to Use Electronic Wrap Reel: Set Up the Machine - Place the reel on a stable surface and connect to power. Prepare the Yarn - Secure the yarn end on the reel’s hook or clamp. Set Wrap Count - Use the control panel to enter the desired number of wraps. Thread the Yarn - Guide the yarn through the tensioner and winding arm as per instructions.   Start the Machine - Press the start button; the reel will rotate and wind the yarn. Monitor Process - Watch the digital counter to ensure accurate wraps. Automatic Stop - The machine will stop once the set wrap count is reached. Remove Yarn Hank - Carefully take off the finished hank from the reel. Power Off & Clean - Turn off the machine and clean any yarn residues.   Safety Tips for Electronic Wrap Reel: Keep Hands Clear - Avoid touching moving parts during operation to prevent injury. Use Proper Clothing - Avoid loose sleeves or jewelry that can get caught in the machine. Power Off Before Threading - Always turn off the machine when threading or adjusting yarn. Check for Damage - Inspect electrical cords and machine parts regularly for wear or damage. Operate on Stable Surface - Place the machine on a flat, secure table to avoid tipping.   Maintenance Tips: Regular Cleaning - Remove lint and dust from the tensioner and winding area. Check Tension System - Ensure tensioners are functioning smoothly and adjust if needed. Inspect Electronic Components - Check the display and control panel for proper operation. Lubricate Moving Parts - Apply light oil to bearings and moving joints as per manual. Store Properly - When not in use, cover the machine to protect it from dust.   Daily Maintenance Checklist for Electronic Wrap Reel: [ ] Wipe dust and lint from winding area and tensioner [ ] Check yarn path for smooth threading [ ] Inspect digital display and buttons for responsiveness [ ] Ensure power cord and plug are intact   Weekly Maintenance Checklist: [ ] Lubricate bearings and moving parts lightly [ ] Tighten any loose screws or fasteners [ ] Test auto-stop and wrap count accuracy [ ] Clean electronic components gently with a dry cloth   Monthly Maintenance Checklist: [ ] Inspect tension system for wear or damage [ ] Calibrate wrap counter if readings seem off [ ] Check motor performance and listen for unusual noise [ ] Verify safety covers and guards are secure     Electronic Wrap Reel Maintenance Checklist Daily: Wipe dust/lint from winding area & tensioner Check yarn path for smooth threading Inspect digital display & buttons, Verify power cord integrity Weekly: Lubricate bearings & moving parts Tighten loose screws Test auto-stop & wrap count accuracy Clean electronic components gently   Monthly: Inspect tension system for wear Calibrate wrap counter if needed Check motor noise & performance Ensure safety covers are secure   Here’s the basic Yarn Count Calculation formula using the Electronic Wrap Reel: Yarn Count (Ne) = (Number of wraps × Length per wrap in yards) / (Weight of yarn in grams × Conversion factor) Usually: Length per wrap = 1 yard (standard) Conversion factor depends on system used (e.g., for English cotton count, factor = 1.69)   Example for English Cotton Count (Ne): Ne = (Number of wraps × 1) / (Weight in grams × 1.69) Where: Number of wraps = wraps on reel Weight in grams = weight of the hank after winding   Scope of application It is used to accurately measure the length of the yarn, for the determination of the linear density or count of the textile yarn and the yarn strength test. [Related Standards] GB/T4743 GB/T14343 GB/T6838 ISO2060 ASTM D1907 etc. [Instrument characteristics] 1. Synchronous toothed belts are directly driven without slipping. 2. The photoelectric coupling tube counts. 3. Imported electronic tension sensor, dynamic display of winding tension, no additional tension shock [YG(B)086A] [Technical parameter] 1. Can test yarn fray at the same time: 6 frays 2. Yarn fray spacing: 60mm 3. Circumference of yarn frame: (1000±1)mm 4. Yarn frame speed: (20~220)r/min (stepless speed regulation) 5. Number of yarn loops: 1~9999 6. Yarn traverse reciprocating width: (35±0.5)mm 7. Tension range of single spinning yarn: (0~100)cN±1cN 8. Power supply: AC220V±10% 50Hz 100W 9. Dimensions: (780×660×480)mm 10. Weight: 55kg
    Electronic Wrap Reel

    Electronic Wrap Reel

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    Card Winding Machine
    Card Winding Machine

    Card winding machine

    Yarn Dyeing Machine & Equipment
    $0.00

    Card Winding Machine

    Card Winding Machine

    Card Winding Machine

      A Card Winding Machine is used in textile processing to wind yarn from hanks, bobbins, or cones onto cards or perforated boards, typically for dyeing or sampling purposes. It ensures uniform yarn distribution and tension, crucial for consistent dye penetration.   Purpose Card Winding Machine: To wind yarn onto flat cards or holders for lab dyeing, color matching, or textile sample display.   Applications Card Winding Machine: Yarn dyeing labs R&D and sample development Display or swatch card preparation Yarn shade catalog creation   Working Principle Card Winding Machine: The yarn is drawn from a source (cone or bobbin) and wound evenly onto a card. The machine controls the winding speed, spacing, and tension to avoid tangles or breaks.   Benefits of Card Winding Machine: Uniform Yarn Placement- Ensures even winding for consistent dyeing and presentation. Ideal for Sampling - Perfect for creating lab dye samples, color cards, and swatches. Time-Saving - Automates a manual process, increasing efficiency.   Low Yarn Waste - Allows controlled use of small yarn amounts for trials. Supports Various Yarn Types - Can handle cotton, polyester, blends, and fancy yarns.   Features of Card Winding Machine: Adjustable Winding Tension - Maintains constant tension to prevent yarn breakage. Speed Control - Variable winding speed for different yarn types and applications. Card Size Compatibility - Supports multiple card sizes and formats. Precision Traverse System- Ensures neat layer formation without overlapping. Compact Design - Table-top or stand-mounted; suitable for labs or sample rooms.   How to Use a Card Winding Machine: Prepare the Yarn Source - Place the yarn cone or bobbin on the yarn holder. - Thread the yarn through the tensioner and guide system. Insert the Card - Mount the empty card or board onto the winding platform/clamp securely.   Set Winding Parameters- Adjust winding speed, tension, and traverse width based on yarn type and card size. Start the Machine - Turn on the power and begin winding; monitor the yarn flow and tension. Monitor the Winding - Ensure yarn is winding evenly and smoothly across the card.   Stop the Machine - Once the desired coverage or length is reached, stop the machine. Remove the Card - Carefully take out the wound card and trim any loose yarn ends. Label or Store - Label for testing or sample purposes as needed.   Maintenance Tips for Card Winding Machine: Daily: ☐ Clean yarn guides and tensioners ☐ Wipe down the machine to remove dust or lint ☐ Check for smooth yarn feeding   Weekly: ☐ Lubricate moving parts if required ☐ Inspect tension device and traverse system for wear ☐ Test speed control and motor function   Monthly: ☐ Tighten all screws, knobs, and clamps ☐ Inspect electrical parts and connections ☐ Clean internal components if accessible   Safety Tips: ☐ Keep fingers away from moving yarn and parts during operation ☐ Do not exceed machine speed limits for delicate yarns ☐ Ensure proper grounding of the machine ☐ Always power off before cleaning or adjusting settings ☐ Wear snug clothing to avoid yarn entanglement  
    Product description
    Color Card Winding Machine applies to a number of brass wire, yarn,
    while according to technological requirements on winding type with quantitative,
    bound, for yarn user optional color, contrast and testing purposes.
    It is a professional new product designed to give a variety of sample cards.
    Specification
    Model FH-25
    Color card winding machine
    Voltage 220V 50HZ one phase
    Color White
    Dimensions L1100xW600xH800(mm)
    Paper color card size According to custom-made Piece Within 25 pieces
    Power 15w
    Weight 30kgs
    We could make special type according to the customers request.
    Card Winding Machine

    Card Winding Machine

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    Fabric Stiffness Tester
    Fabric Stiffness Tester

    Fabric Stiffness Tester

    Physical Testing & Fabric Testing
    $0.00

    Fabric Stiffness Tester

    Fabric Stiffness Tester

    Fabric Stiffness Tester

      Fabric Stiffness Tester is a lab instrument used to measure the stiffness or flexural rigidity of fabric materials. It evaluates how resistant a fabric is to bending, which influences its drape, comfort, and handling characteristics. Purpose of Fabric Stiffness Tester: To determine the stiffness of textiles by measuring the bending length and calculating flexural rigidity, often using methods like the Cantilever Test (as per ASTM D1388 or ISO 9073-7).   Working Principle of Fabric Stiffness Tester: A fabric strip is slid over a horizontal platform until its free end bends under its own weight to a specific angle (usually 41.5°). The length at which this occurs is used to calculate bending length and stiffness.   Main Components of Fabric Stiffness Tester: - Test Platform: Flat surface for sample movement. - Graduated Scale: Measures the overhanging length of fabric. - Angle Indicator: Guides the measurement based on standard deflection angle. - Fabric Clamp or Guide: Helps place and move the sample smoothly.   Applications of Fabric Stiffness Tester: - Apparel fabrics (e.g., for comfort and drape analysis) - Technical textiles (e.g., automotive, medical fabrics) - Paper, nonwovens, and films Benefits of Fabric Stiffness Tester:
    1. Accurate Measurement of Flexibility - Provides reliable data on fabric stiffness, essential for quality control and product development.
    2. Improves Product Comfort - Helps assess how soft or rigid a fabric will feel in clothing or furnishings.
    3. Supports Material Selection - Aids designers and engineers in choosing the right fabric for specific applications based on stiffness.
     
    1. Quality Assurance - Detects fabric inconsistencies or defects that affect handling or drape.
    2. Standards Compliance - Enables testing as per international standards like ASTM D1388 and ISO 9073-7 for global product approval.
    3. Quick and Simple Operation - Delivers fast results with minimal operator training or preparation.
     
    1. Applicable to Multiple Materials - Suitable for woven, nonwoven, knitted fabrics, paper, and films.
    2. Enhances R&D Accuracy - Supports consistent material testing during product innovation and textile finishing.
      Features of Fabric Stiffness Tester:
    1. Graduated Measurement Scale - Precise scale to measure overhang length for accurate stiffness calculation.
    2. Flat Test Platform - Smooth, level surface ensures consistent and reliable fabric movement.
    3. Standard Deflection Angle Guide - Built-in 41.5° angle reference for consistent stiffness testing (per ASTM/ISO).
    4. Manual or Motorized Models - Available in both types for simple or automated operation depending on lab needs.
    5. Compact Design - Space-saving unit ideal for textile labs and quality control rooms.
     
    1. Sample Holder or Clamp - Ensures correct alignment and smooth feeding of fabric strips during testing.
    2. Durable Construction - Made of corrosion-resistant materials like stainless steel or aluminum for long-term use.
    3. Compliance with Standards - Supports methods like ASTM D1388, ISO 9073-7 for stiffness testing of fabrics.
     
    1. Lightweight and Portable - Easy to move and use in various lab settings.
    2. Low Maintenance - Simple mechanical parts require minimal servicing.
      How to Use Fabric Stiffness Tester (Cantilever Method):
    1. Prepare the Sample - Cut the fabric into a rectangular strip (e.g., 25 mm × 200 mm), as per standard.
    2. Place the Sample - Lay the fabric strip flat on the test platform with one end aligned at the zero mark.
    3. Slide the Fabric - Gently push the fabric forward so it slowly overhangs the platform.
     
    1. Watch for Deflection - Stop sliding when the free end of the fabric bends down to the reference angle (typically 41.5°).
    2. Read the Bending Length - Measure the overhang distance from the scale. This is the bending length (C).
    3. Calculate Flexural Rigidity
    - Use the formula: G = W × C³ Where: - G = Flexural rigidity (mg·cm) - W = Fabric weight per unit area (mg/cm²) - C = Bending length (cm)  
    1. Repeat for Accuracy - Test both warp and weft directions and average the results for better accuracy.
    Tip: Always perform the test in a controlled environment (standard temperature and humidity) for reliable results.         Fabric Stiffness Tester Scope of application It is used to measure the stiffness of cotton, wool, silk, linen, chemical fibers and other woven fabrics, knitted fabrics, general nonwovens, coated fabrics, etc. It is also suitable for measuring the stiffness of paper, leather, film and other flexible materials. Relevant Standards GB/T 18318, ASTM D 1388, IS09073-7, BS EN22313 etc. [Instrument Characteristics] 1. Infrared photoelectric invisible inclined plane detection system replaces the traditional tangible inclined plane, realizes non-contact detection, and overcomes the problem that the measurement accuracy is affected by the sample torsion lifted by the inclined plane. 2. The inclination adjustable mechanism of instrument measurement to meet different test requirements. 3. Stepping motor drive, accurate measurement, smooth operation; 4. The color touch screen display can show the extended length, bending length, bending stiffness of the sample, the warp average, the weft average and the total average of the above values respectively. 5. Printing of Chinese report forms for thermal printers. Technical parameters 1. Test methods: The two method (A method: Weft test, B method: Forward and backward test) 2. Measurement angle:41.5 degree, 43 degree and 45 degree adjustable 3. Extend the length range:5-220 mm (special requirements can be made at the time of ordering) 4. Length resolution:0.01mm 5. Measurement accuracy:±0.1mm 6. Specimen specifications:250×25mm 7. Work platform specifications:250×50mm 8. Specification of sample pressing plate:250×25mm 9. Pushing speed of press plate:3 mm/s; 4 mm/s; 5 mm/s 10. Display output: Touch screen display 11. Print Output: Chinese Report 12. Data Processing Volume: A total of 15 groups, each group less than 20 trials 13. Printer: Thermal printer 14, power supply:AC220V 50Hz 15. Host volume:570mm×360mm×490mm 16. Host weight:20kg
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    Digital Bench top PH Meter
    Digital Bench top PH Meter

    Digital Bench top PH Meter

    Dyeing Lab Machine
    $0.00

    Digital Bench top PH Meter

    Digital Bench top PH Meter

    Digital Bench top PH Meter

    Brand: Hanna Model: HI2002 Country of Manufacture: Romania Origin: USA

    Digital Bench top PH Meter

    Single parameter of Digital Bench top PH Meter features user-friendly tablet design with bench, portable or wall mount options for ultimate flexibility. Switch from portable to bench in the same procedure or clear the surface for easier working and hang on the wall. Digital Bench top PH Meter Range -2.00 to 16.00pH; pH  Digital smart electrode compatible  Accuracy: ±0.01 pH edge® pH is dedicated to testing pH. Using Hanna's latest innovation in technology and design, edge® can be adapted to suit your working method. Select from hand held, wall mount or bench top - or switch between them all. edge® is happy any which way. Simply plug in the electrode, then play. Measurement is simpler, quicker and more accurate than ever. Results are fast and reliable. Combining high precision technology with the user-friendly dimensions and format of a small digital tablet, edge® is breaking new ground in electrochemistry. This is a must-have meter for your laboratory.
    pH Range basic mode: -2.00 to 16.00 pH; standard mode: -2.000 to 16.000 pH
     Resolution basic mode: 0.01 pH; standard mode: 0.001 pH
     Accuracy (@25°C) basic mode: ±0.01 pH; standard mode: ±0.002 pH
     Calibration basic mode: automatic, up to three points calibration, 5 standard buffers available; standard mode: automatic, up to five point calibration, 7 standard buffers available and two custom buffers
    Temperature Compensation automatic, -5.0 to 100.0°C (using integral temperature sensor)
    Electrode Diagnostics standard mode: probe condition, response time and out of calibration range
    mV pH Range ±1000 mV
     Resolution 0.1 mV
     Accuracy (@25°C) ±0.2 mV
    ORP Range ±2000 mV
     Resolution 0.1 mV
     Accuracy (@25°C) ±0.2 mV
    Temperature Range -20.0 to 120.0°C
     Resolution 0.1°C
     Accuracy ±0.5°C
    Additional Specifications:
     Probe HI-11310 digital glass body pH electrode with 3.5mm connector and 1m cable
     Logging up to 1000 (400 for basic mode) records organised in: manual log-on demand (max. 200 logs), manual log-on-stability (max. 200 logs), interval logging (max. 600 samples; 100 lots)
     Connectivity 1 USB port for storage; 1 micro USB port for charging and PC connectivity
     Environment 0 to 50°C; RH max 95% non-condensing
     Power Supply 5 VDC adapter (included)
     Dimensions 2020 x 140 x 12 mm
     Weight 250 g
    A Digital Bench Top pH Meter is a laboratory-grade instrument designed to measure the pH (acidity or alkalinity) of liquid samples with high precision. It's commonly used in research labs, industrial applications, environmental testing, and educational institutions. Key Features of a Digital Bench Top pH Meter
    1. High Accuracy and Resolution
    - Offers precise pH measurements, often with accuracy up to ±0.01 pH units. - Suitable for applications where exact pH control is critical.  
    1. Digital Display   - Large, clear LCD or LED screen shows pH readings, temperature, and sometimes mV or ion      concentration.   - Some models include a backlit display for better visibility.
     
    1. Electrode System   - Uses a pH-sensitive electrode (usually glass) connected to a reference electrode. Electrodes are often replaceable and require regular calibration and maintenance.
     
    1. Temperature Compensation - Automatic or manual temperature compensation to correct pH readings based on sample temperature.   - Integrated temperature sensors or separate probes are used.
    1. Calibration Functions   - Supports 2-point, 3-point, or multi-point calibration using standard buffer solutions.   - Auto-recognition of calibration buffers in advanced models.
    1. Data Storage and Connectivity   - Internal memory for storing results.   - USB or RS232 ports for data export to PCs or printers; some models support wireless connectivity.
    1. Sturdy Design   - Benchtop models are larger and more stable than portable meters.   - Often come with a durable casing and electrode arm for hands-free operation.
    Applications - Water quality testing (e.g., in wastewater treatment, drinking water monitoring) - Chemical and pharmaceutical industries - Food and beverage production - Biological and environmental research - Educational laboratories A Digital Bench Top pH Meter offers numerous benefits, making it a preferred choice in laboratory and industrial environments where accuracy, reliability, and ease of use are essential. Benefits of a Digital Bench Top pH Meter
    1. High Accuracy and Precision
    - Provides accurate and consistent pH readings, often with ±0.01 pH resolution. - Ideal for scientific and quality control applications where precise pH monitoring is critical.  
    1. User-Friendly Interface- Digital displays (LCD/LED) make readings easy to see and interpret.- Many models offer intuitive controls and guided calibration, simplifying operation.
     
    1. Advanced Calibration Features- Supports multi-point calibration for improved accuracy across a wide pH range.- Some models automatically recognize buffer solutions, reducing user error.
    1. Temperature Compensation- Automatic temperature compensation (ATC) corrects readings based on sample temperature, ensuring accuracy.
    1. Stable and Durable Design- Benchtop units are more robust and stable than handheld devices, reducing the risk of spills or tipping.- Often include electrode holders or arms for secure, hands-free measurements.
    1. Data Management and Connectivity- Built-in memory for storing measurement data.USB, RS232, or wireless connectivity for exporting data to computers or laboratory information systems (LIS).
    1. Multi-Functionality- Some models also measure ORP (oxidation-reduction potential), ion concentration, or conductivity.- Suitable for a variety of testing needs beyond just pH.
    1. Ideal for Long-Term Use- Designed for prolonged and repeated use in laboratory environments.- Replaceable electrodes and parts extend the meter’s usable life.
    1. Compliance and Documentation- Data logging features support documentation and compliance with regulatory standards in regulated industries (e.g., pharma, food, environmental testing).
     
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    Fully Automatic Radio Frequency Dryer
    Fully Automatic Radio Frequency Dryer

    Fully Automatic Radio Frequency Dryer

    Yarn Dyeing Machine & Equipment
    $0.00
    Rated 3.00 out of 5
    Fully Automatic Radio Frequency Dryer
    Fully Automatic Radio Frequency Dryer

    Fully Automatic Radio Frequency Dryer

      A Fully Automatic Radio Frequency (RF) Dryer is an advanced drying machine that uses radio frequency waves (similar to microwaves but at lower frequency) to dry materials like textiles, paper, wood, and food products. It delivers uniform and rapid moisture removal from within the material, rather than just the surface.   Purpose of Fully Automatic Radio Frequency Dryer: To dry moisture-sensitive materials quickly and evenly using electromagnetic energy, especially where conventional drying is slow or inconsistent.   How It Works: RF waves penetrate deep into the material. Moisture molecules absorb RF energy, generating heat internally. This causes water to evaporate from the inside out. Built-in sensors and controls automate and optimize the process.     Applications of Fully Automatic Radio Frequency Dryer: Textile drying (especially for fabrics with high GSM or special finishes) Paper and nonwoven industries Wood drying Food processing (e.g., pasta, fruits)   Benefits of Fully Automatic Radio Frequency Dryer: Fast Drying Time - RF energy dries materials from the inside out, significantly reducing drying time. Uniform Drying - Prevents surface overheating or under-drying issues common with conventional dryers. Energy Efficient - Targets moisture directly, using less energy compared to thermal dryers.   Improves Product Quality - Reduces shrinkage, deformation, and color fading, especially in textiles. Fully Automatic Operation - Programmable controls minimize manual handling and ensure consistency. Safe for Delicate Materials - Ideal for sensitive or high-value products that can't withstand high surface heat. Reduced Footprint - Compact, vertical designs save floor space in industrial setups.     Features of Fully Automatic Radio Frequency Dryer: Touchscreen Control Panel- For setting drying time, temperature, and moisture target. Auto Load/Unload System - Increases productivity with minimal labor. Moisture Sensors - Monitor and control drying to prevent over-drying. RF Power Generator - High-efficiency RF unit for stable energy output.   Cooling System Built-in cooling for temperature-sensitive materials post-drying. Safety Interlocks - Automatic shutoff if overheating or door open detected.   How to Use Fully Automatic Radio Frequency Dryer: Prepare the Material - Ensure the fabric or material is clean and evenly spread or stacked as required. Power On the Machine - Switch on the main power and wait for the system to initialize. Load the Material - Use the conveyor or auto-loader to place material inside the drying chamber.   Set Drying Parameters of Fully Automatic Radio Frequency Dryer - On the touchscreen panel, input: - Drying time - Target moisture level - RF power level - Temperature limits (if applicable)   Start the Drying Cycle - Press the start button. The RF system activates and begins drying internally. Monitor Process (Auto/Manual) - Most machines auto-adjust based on moisture sensor feedback. - You can monitor real-time temperature and drying progress on the display.   Cooling (Optional) - If enabled, the cooling cycle will activate after drying to stabilize the material. Unload Material - Use the conveyor or manual method to remove the dried product safely.   Shutdown - Turn off the system and clean the chamber if required. Maintenance Tips for Fully Automatic RF Dryer: Daily Cleaning   - Wipe down the drying chamber and conveyor to remove lint, dust, and moisture residue. Check RF Generator   - Inspect cables, connectors, and ventilation; clean RF components weekly.   Inspect Moisture Sensors - Clean sensor surfaces regularly for accurate readings. Lubricate Moving Parts - Grease conveyor rollers and motor bearings as per the maintenance schedule. Filter Maintenance - Clean or replace air filters monthly to ensure proper ventilation and cooling. Software Updates - Keep the control system firmware updated if your model supports it. Electrical Checks - Inspect wiring, switches, and interlocks for wear or overheating signs.     Safety Precautions:  Use Trained Operators Only - Ensure only qualified personnel operate and maintain the machine. Avoid Overloading - Exceeding material load limits can reduce efficiency and risk damage. Keep Away from RF Area during Operation - Follow RF safety guidelines—do not tamper with shielding or interlocks. Emergency Stop - Know the location and function of the emergency stop switch. Allow Cooling Before Maintenance Let the system cool completely before touching internal components.   Daily Maintenance Checklist – Fully Automatic RF Dryer: [ ] Wipe inside drying chamber [ ] Remove lint/debris from conveyor [ ] Check for unusual noise or vibration [ ] Verify sensor readings on display [ ] Ensure air vents are unobstructed [ ] Inspect emergency stop function   Weekly Maintenance Checklist: [ ] Clean moisture sensors with soft cloth [ ] Inspect RF generator cables and connections [ ] Check conveyor belt tension and alignment [ ] Lubricate moving mechanical parts [ ] Test auto-stop and safety interlocks [ ] Review system logs (if digital system is used)     Monthly Maintenance Checklist: [ ] Clean or replace air and dust filters [ ] Inspect electrical wiring and panel for wear [ ] Tighten loose bolts, screws, or fasteners [ ] Calibrate moisture sensors if needed [ ] Verify RF power output levels [ ] Back up control panel settings and software (if applicable)  
    Fully Automatic Radio Frequency Dryer

    Fully Automatic Radio Frequency Dryer

     
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    IR Dyeing Machine Dunlin

    IR Dyeing Machine Dunlin

    Dyeing Lab Machine, Lab Equipment & Instrument, Yarn Dyeing Machine & Equipment
    $0.00
    IR Dyeing Machine Dunlin
    IR Dyeing machine Dunlin is Safe, high efficiency, environment friendly, energy saving, optimum for new dyeing small sample machines

    IR Dyeing Machine Dunlin

    24 pot 300 ml IR Dyeing Machine Dunlin Application  This machine is oil bath type infrared laboratory dyeing machine, it combine the advantages of traditional glycerol dyeing machine with common infrared dyeing machine together. It’s apply to dyeing and testing the color fastness of the knitted fabric, woven fabric, yarn, cotton, loose fiber, zipper etc. It was special design for dyeing industry, chemical industry, raw material, cloth which can simulate the production conditions exactly and reach the process effect. Used for simulate the dyeing process in actual production, even apply for the small-batch production. Characteristics  Safety, high efficiency, environmental protection, energy saving and consumption reduction, which can fully meet the requirements of dyeing and color matching experiments; segmented heating sampling experiments, segmented, uniform  dyeing and Permeability test, dye absorption rate tests of pH, temperature and bath ratio differences, concentration and other tests, etc. In addition, the machine is highly personalized, and can make different specifications of dyeing steel cups according to customer needs. Feature   Easy to operate, dye pot can be individually Turn plate removed to save waiting time. The ability to conduct the tests of various dyes and chemicals on dispersing, leveling, liquor ratio exhausting etc. l Special recommendation for “STEP DYEING "to select the best dyestuff and combinations for the most Suitable dyeing curve to achieve the highest efficiency and quality Different sizes of dye pots for various weight of samples with yarn or fabric holders to ensure the good leveling result .There will be no crease mark.  Suitable for low liquor ratio dyeing. Sample weight from 4g to 20g.  Special design for humanity, durability and easy-maintenance. Safe, high efficiency, environment friendly, energy saving, optimum for new dyeing small sample machines Product Parameter of IR Dyeing machine Dunlin specifically designed with a focus on human usability, durability, and ease of maintenance. It prioritizes safety, high efficiency, and environmental friendliness while also being energy-saving. This machine is optimal for new dyeing small sample machines due to its product parameter advantages. specifically designed to prioritize humanity, durability, and ease of maintenance. It offers a safe, high-efficiency operation while being environmentally friendly and energy-saving. This machine is optimal for new dyeing small sample machines due to its specialized features and product parameters.  Model : IF-24S Infrared Laboratory Dyeing Machine Key Specification Model : IF-12S IF-24S Staining cup number 12/24 Staining cup volume 300cc OR 425cc Control mode LCD Microprocessor type, programmable process number: 100(0—99), 100 programmable steps per process Heat method Infrared heat Temperature range RT - 140 ℃ Temperature control accuracy ±0.2 ℃ Heating rate

    0 - 3.5 ℃ / min Cooling rate 0.2 - 5 ℃ / min Cooling method Air-cooled Rotation speed 0 - 60 rpm Liquor ratio 1:5 -1:100 Power supply 1∮AC 220V 50/60HZ Dimensions( L x W x H) 670×670×780mm 860×680×780mm Weight 100kg 120kg Standard Accessories Cups 1set

    Put the test sample. Cups stand 1set Place where to put cups. Protective glove 1set To avoid to be hurt by HT cups. Model: IF-24SCapacity: 24 pots Brad: DUNLIN Origin: China

    Color dyeing tests for various dyestuffs of IR Dyeing machine Dunlin
    1. Step dyeing tests. C. Dispersing, levelling and impregnating test. D. High or low liquor ratio exhausting tests. E. Fabric steak and staining tests. F. Concentration tests and others. Protection and Safety gates to protect. Temperature control accuracy +/- 0.2degree
    Working temperature of IR Dyeing machine Dunlin 20 – 140 degree Heating rate of dye bath 0 – 3.5degree / min Cooling rate 0.2 – 5 degree / min Cooling method air-cooled / Auto Speed control frequency conversion Rotation speed 0 – 60 turn / min Microprocessor type Newhaven controller 99 programs each Program with 99steps. IR Dyeing Machine Dunlin
    IR Dyeing machine

    IR Dyeing machine

     
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