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Arc protection fabric, manufacturing method and application thereof

An anti-arc, fabric technology, applied in the direction of applications, chemical instruments and methods, protective clothing, etc., can solve the problems of restricted activities, heavy wearing, poor moisture transmission, etc., achieve good flame retardancy and heat insulation performance, manufacturing The effect of simple method

Active Publication Date: 2011-02-16
X FIPER NEW MATERIAL CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Arc-proof and flame-retardant clothes are generally uncomfortable to wear, because the addition of protective fibers has poor moisture transmission properties. General arc-proof and flame-retardant clothes are post-processed to add protective fibers or protective coatings, fabrics It does not have good arc-proof performance or is not a permanent arc-proof flame-retardant fabric, and it is bulky to wear and restricts activities

Method used

the structure of the environmentally friendly knitted fabric provided by the present invention; figure 2 Flow chart of the yarn wrapping machine for environmentally friendly knitted fabrics and storage devices; image 3 Is the parameter map of the yarn covering machine
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  • Arc protection fabric, manufacturing method and application thereof
  • Arc protection fabric, manufacturing method and application thereof
  • Arc protection fabric, manufacturing method and application thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0026] Flame retardant outer layer: using meta-aramid fiber as the main raw material, using X-FIPER from Yuhe Company, gram weight 150g / m 2

[0027] Insulation layer: using meta-aramid fiber as the main raw material, using X-FIPER from Yuhe Company, gram weight 100g / m 2

[0028] Flame retardant inner layer: flame retardant viscose, gram weight 80g / m 2

[0029] The adjacent two layers are compounded by the method of quilting, and the width of the pipe layer is 10mm.

[0030] Perform the following physical property tests on one or a combination of the above fabrics:

[0031] Flame retardant outer layer: breaking strength is tested according to GB3923.1-1997

[0032] Tear strength is tested according to GB3917.3-1997

[0033] Thermal stability is tested according to GA10-2002

[0034] Flame retardant properties are tested according to GB / T5455-1997

[0035] Insulation layer: Stability test according to GA10-2002

[0036] Flame retard...

Embodiment 2

[0043] Flame retardant outer layer: using meta-aramid fiber as the main raw material, using X-FIPER from Yuhe Company, gram weight 150g / m 2

[0044] Insulation layer: using meta-aramid fiber as the main raw material, using X-FIPER from Yuhe Company, gram weight 100g / m 2

[0045] Flame retardant inner layer: flame retardant viscose, gram weight 80g / m 2

[0046] The adjacent two layers are compounded by the method of quilting, and the width of the pipe layer is 20mm.

[0047] The fabric was tested as in Example 1 and the results are shown in Table 2.

[0048] Table 2

[0049]

Embodiment 3

[0051] Flame retardant outer layer: using meta-aramid fiber as the main raw material, using X-FIPER from Yuhe Company, gram weight 150g / m 2

[0052] Insulation layer: flame retardant viscose fiber as the main raw material, gram weight 100g / m 2

[0053] Flame retardant inner layer: flame retardant viscose fiber, weight 80g / m 2

[0054] The adjacent two layers are compounded by the method of quilting, and the width of the pipe layer is 10mm.

[0055] The fabric was tested as in Example 1 and the results are shown in Table 3.

[0056] table 3

[0057]

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Abstract

The invention relates to an arc protection fabric, a manufacturing method and application thereof. The invention is characterized in that: the arc protection fabric comprises three mutually independent layers, namely a flame-retardant outer layer 1, a heat-insulation layer 2 and a flame-retardant inner layer 3, and the flame-retardant outer layer and the heat-insulation layer and the heat-insulation layer and the flame-retardant inner layer are alternatively compounded so as to manufacture an interweaved double-layer composite tube fabric; two pipe layers complement each other, the protection performance is multiplied, and protection dead corners are avoided. For the fabric of the invention, the raw materials of the three independent single layers can be selected reasonably according to different arc-resistant levels and needed protection levels; and the fabric can be manufactured by using raw material fibers alone or by blending various raw material fibers,.

Description

technical field [0001] The invention relates to a multi-layer heat-resistant and flame-retardant arc-proof fabric, a manufacturing method and an application, in particular to a fabric utilizing instantaneous high temperature resistance and insulating properties, which is used for the manufacture of arc-proof clothing and fire-fighting clothing. Background technique [0002] An arc accident is an unpredictable accident. Every day, thousands of workers are exposed to electric arc hazards. This huge crowd includes not only electric workers, but also employees in petrochemical, chemical industries, gas, water companies, oil refineries and some other large and medium-sized enterprises. [0003] Anti-arc and flame-retardant clothes are generally uncomfortable to wear, because the addition of protective fibers has poor moisture vapor transmission. Generally, arc-proof and flame-retardant clothes are post-treated to add protective fibers or protective coatings. It does not have go...

Claims

the structure of the environmentally friendly knitted fabric provided by the present invention; figure 2 Flow chart of the yarn wrapping machine for environmentally friendly knitted fabrics and storage devices; image 3 Is the parameter map of the yarn covering machine
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Application Information

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IPC IPC(8): B32B27/02A41D13/008
Inventor 钟洲胡祖明陈蕾
Owner X FIPER NEW MATERIAL CO LTD
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