Views: 0 Author: Site Editor Publish Time: 2025-07-11 Origin: Site
In aerospace, energy and power, and high-end manufacturing industries, the performance of lashing materials directly affects the reliability and safety of equipment. Volsun aramid 1313 lashing rope, with polyisophthalamide fiber as the core material, has become an ideal lashing solution under extreme working conditions with its excellent temperature resistance, chemical stability and high strength.
What are key advantages of this kind aramid 1313 lashing rope?
1. Long-term protection in the temperature range of -40℃~+220℃
It maintains flexibility in both extremely cold (-40℃) and high temperature (220℃) environments, and has no melting or burning for 5 minutes at 260℃, making it suitable for harsh scenarios such as engine compartments and high-temperature furnaces.
2. Lightweight and high-strength, load capacity exceeds traditional ones
• The tensile strength of the 1.0mm diameter is > 50N, which is twice as strong as the nylon rope of the same diameter, but only 1/3 of the weight, significantly reducing the equipment load;
• Elongation at break > 15%, taking into account both toughness and deformation resistance, and not easy to relax under vibration conditions.
3. Excellent chemical stability and flame retardancy
• Oxygen index > 28%, difficult to burn and self-extinguish, in line with UL94 V-0 fire protection standards, delaying the spread of flames;
• Acid and alkali resistant, oil and ester resistant, performance attenuation rate ≤3%/year in marine climates, chemical workshops and other environments.
What are the application areas of aramid 1313 lashing rope?
Aerospace: used for spacecraft pipeline binding, engine compartment line fixing, resistant to extreme temperature differences, lightweight design to reduce spacecraft load, and ensure reliability in space environments.
Rail transit: used for high-speed rail traction motor winding binding and contact network cable fixing, anti-vibration fatigue, high and low temperature alternation, and adapt to the complex working conditions of high-speed train operation.
Nuclear power and hydropower: used for transformer coil binding and generator stator fixing, radiation resistance and aging resistance, meeting the service life requirements of nuclear power equipment for more than 30 years and reducing maintenance costs.
New energy vehicles: used for battery pack wiring harness fixing and motor controller binding, resistant to electrolyte corrosion, maintaining insulation performance in high temperature environment, and reducing the risk of battery short circuit.
Industrial manufacturing: used for high-voltage motor rotor binding and high-temperature equipment pipeline fixing, high dielectric strength to prevent leakage, and chemical corrosion resistance to adapt to complex industrial environments.
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