Hometextile fabric heat insulation adiabat thermal isolation thermal shield Polyimide Fiber/Filament Yarn

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Product Overview

Description



Product Description


With the characteristics of High strength, high modulus, low density, impact resistance, corrosion resistance, UV resistance,high and low temperature, and low dielectric constant ,SHINO PI fiber is widely used in the field of ocean,aerospace,security protection,communication and etc., especially with a huge potential to be used in bulletproof materials, ropes,and Skin material of space


TYPE
BREAKING STRENGTH

 INITIAL MODULUS

ELONGATION

GPa
cN/dtex
GPa
cN/dtex
(%)
S25
2.4-2.9
16.7-20.1
30-130
625-902
≥2.5
S25M
2.4-2.9
16.7-20.1
≥130
≥902
≥1.5
S30
2.9-3.4
20.1-23.6
90-130
625-902
≥2.5
S30M
2.9-3.4
20.1-23.6
≥130
≥902
≥1.5
S35
3.4-3.9
23.6-27.1
90-130
625-902
≥2.5




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Company Introduction


JIANGSU SHINO NEW MATERIALS & TECHNOLOGY CO., LTD established in 2008,is a high-tech enterprise working on research & development,manufacturing and sales of polyimide fiber and composite materials.
SHINO now has three PI fiber production lines, all kinds of high-strength polyimide fiber products can be customized for our customers.
SHINO's technology comes from Beijing University of Chemical Technology, and has fully independent intellectual property rights and first-class research and development strength.
Polyimide fiber products are dedicated to providing better material selection for customers in fields such as safety
protection, military bulletproof, special rope, skin material, adiabatic refractory and composite materials.





Our Services & Strength
The company has the world's first annual output of 30 tons and 100 tons of high-performance polyimide fiber production lines, the existing four production lines operating at the same time. The integrated continuous reaction spinning process invented by the team can obtain high strength and high modulus polyimide fibers from polyamide acid spinning solution through continuous reaction of solidification, drafting and thermal imination. This technology breaks through the bottleneck of high strength and high modulus polyimide fiber preparation and has completely independent intellectual property rights.




0.2042 s.