Bassa Razione di Liquore Bassa Capacità di Consumo Energetico Con Macchina di Tintura a Flusso Morbido

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June 05, 2025
Brief: Discover the High Capacity Cotton Yarn Dyeing Machine with High Efficiency, designed for low liquor ratio and low consumption power. Perfect for dyeing standard knitted and elastic fabrics like cotton, viscose, polyester, and nylon. Featuring overflow jet flow technology and optimized short-cloth-groove design for consistent results.
Related Product Features:
  • Handles standard knitted and elastic fabrics including cotton, viscose, polyester, and nylon.
  • Compatible with overflow jet flow technology for fabrics from 50-600g/m².
  • Composite variable-diameter guide tube minimizes tension and prevents warp crease.
  • Optimized short-cloth-groove design maintains low liquor ratios for efficient operation.
  • Low-profile, low-tension configuration reduces post-dye shrinkage and ensures consistent finished weights.
  • Constructed with high-grade European/Japanese SUS316/316L stainless steel for durability.
  • Sandblasting on the whole machine surface for enhanced corrosion resistance.
  • Available in multiple models with varying capacities to suit different production needs.
Interrogazioni:
  • What types of fabrics can the High Capacity Cotton Yarn Dyeing Machine handle?
    The machine handles standard knitted and elastic fabrics including cotton, viscose, polyester, and nylon elastic variants.
  • What is the maximum working pressure and temperature of the dyeing machine?
    The maximum working pressure is 0.4 Mpa, and the maximum operating temperature is 135℃.
  • What are the benefits of the composite variable-diameter guide tube?
    The composite variable-diameter guide tube minimizes tension while preventing warp crease, ensuring smooth fabric handling during dyeing.
  • How does the optimized short-cloth-groove design improve efficiency?
    The optimized short-cloth-groove design maintains low liquor ratios, reducing water and energy consumption while ensuring efficient dyeing.