IP Library Granted Patent US 9,790,624
Granted Patent B2
US 9,790,624 · App. 13/257,648 · Granted Oct 17, 2017

Coating fabric for airbags and method for manufacturing the same

Inventors: Tsutomu Akechi (Shiga, JP); Mamoru Kitamura (Shiga, JP)
Assignee: Toyobo Co., Ltd.
D03D13/008D03D1/02D06N3/0006D06N3/128B60R2021/23514D06N2209/067D06N2211/268Y10T442/20
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Quick Facts
Patent No.
US 9,790,624
App. No.
13/257,648
Granted
Oct 17, 2017
Kind
B2
Abstract

The present invention provides a coating fabric for airbags where an elastomer is coated to at least one side of textile constituted from synthetic fiber filament, which is characterized in that the coating weight of the resin is as small as 10 to 20 g/m 2 and an average resin thickness of the head top in the textile surface is 4.0 μm to 12.0 μm in both directions of warp and weft and that the average value of burning speed measured according to FMVSS 302 is not more than 60 mm/min in both directions of warp and weft and the maximum value thereof is not more than 1.2-fold to the average value in both directions of warp and weft.

Claims (27)

1. A coating fabric for airbags where a hardened elastomer is coated to at least one side of textile constituted from synthetic fiber filament, wherein

the hardened elastomer is a solvent-free methyl vinyl silicone rubber of an addition type and is prepared from a coating composition that contains a solvent-free methyl vinyl silicone and has a viscosity of 25,000 to 50,000 mPa·sec, in which the methyl vinyl silicone is the only polymer in the coating composition;

the coating weight is 10 g/m 2 to 20 g/m 2 ;

an average coating thickness of the top area in the textile surface is 4.0 μm to 12.0 μm in both directions of warp and weft;

the fabric has a tension of 300 N/m to 700 N/m in the coating direction measured during coating; and

the average value of burning speed measured according to FMVSS 302 is not more than 60 mm/min in both directions of warp and weft, the maximum value of burning speed in the warp direction is not more than 1.15-fold to the average value of burning speed in the warp direction, the maximum value of burning speed in the weft direction is not more than 1.15-fold to the average value of burning speed in the weft direction, and the average and maximum values of burning speed in the warp and weft directions are obtained from a plurality of fabric samples.

2. The coating fabric for airbags according to claim 1 , wherein the total fineness of the filament constituting the textile is 200 to 470 dtex.

3. The coating fabric for airbags according to claim 2 , wherein the cover factor of the textile is 1,800 to 2,500.

4. The coating fabric for airbags according to claim 1 , wherein the cover factor of the textile is 1,800 to 2,500.

5. The coating fabric for airbags according to claim 1 , wherein the cover factor of the textile is 1,900 to 2,450.

6. The coating fabric for airbags according to claim 1 , wherein the coating composition has a viscosity of 25,000 to 40,000 mPa·sec.

7. A method for the manufacture of the coating fabric for airbags according to claim 1 , comprising:

applying the coating composition by means of a knife coating, wherein contacting length L between the textile and the knife is 0.05 to 0.5 mm and the coating thickness coefficient D represented by the following formula [I] is 2.7 to 7.0:

D =( V×η×L )/ F   [I]

 in which V is a processing speed upon coating (m/sec), is viscosity of resin (mPa·sec), L is contacting length (mm) and F is contacting pressure (kN/m).

8. The method for the manufacture according to claim 7 , wherein the front end of the knife blade used for the knife coating is substantially semicircular and the front end radius is 0.05 mm to less than 0.7 mm.

9. The method for the manufacture according to claim 7 , wherein the front end of the knife blade used for the knife coating is substantially angular and the front end width is 0.05 mm to 0.5 mm.

10. A method for the manufacture of the coating fabric for airbags according to claim 2 , comprising:

applying the coating composition by means of a knife coating,

wherein contacting length L between the textile and the knife is 0.05 to 0.5 mm and the coating thickness coefficient D represented by the following formula [I] is 2.7 to 7.0:

D =( V×η×L )/ F   [I]

in which V is a processing speed upon coating (m/sec), is viscosity of resin (mPa·sec), L is contacting length (mm) and F is contacting pressure (kN/m).

11. A method for the manufacture of the coating fabric for airbags according to claim 4 , comprising:

applying the coating composition by means of a knife coating,

wherein contacting length L between the textile and the knife is 0.05 to 0.5 mm and the coating thickness coefficient D represented by the following formula [I] is 2.7 to 7.0:

D =( V×η×L )/ F   [I]

 in which V is a processing speed upon coating (m/sec), is viscosity of resin (mPa·sec), L is contacting length (mm) and F is contacting pressure (kN/m).

Assignments (2)
CHANGE OF NAME Recorded Aug 4, 2017
From: TOYO BOSEKI KABUSHIKI KAISHA
To: TOYOBO CO., LTD.
Reel/Frame 043455/0448 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2011
From: AKECHI, TSUTOMU; KITAMURA, MAMORU
To: TOYO BOSEKI KABUSHIKI KAISHA
Reel/Frame 026954/0322 →
Priority Claims (2)
JP 2009-130128 · May 29, 2009 · national
JP 2009-130129 · May 29, 2009 · national
Continuity (1)
Related Publication 20120015573A1 · Jan 19, 2012