IP Library Granted Patent US 7,874,624
Granted Patent B2
US 7,874,624 · App. 12/295,406 · Granted Jan 25, 2011

Cushion body, seat, and method of manufacturing the same

Assignee: TS Tech Co., Ltd.
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Quick Facts
Patent No.
US 7,874,624
App. No.
12/295,406
Granted
Jan 25, 2011
Kind
B2
Abstract

A cushion body 11 is formed by stacking a first sheet-like fibrous structure 4 a and a second sheet-like fibrous structure 4 b where webs 2 are stacked such that their extending direction conforms with a thickness direction T of the cushion body and between the first sheet-like fibrous structure 4 a and the second sheet-like fibrous structure 4 b , a load receiving member 4 e whose flexing degree to load in the thickness direction T is small is disposed.

Claims (12)

1. A molded cushion body comprising:

a first fibrous structure including a mix of main fibers and binder fibers, wherein the first fibrous structure comprises only fibers;

a second fibrous structure including a mix of main fibers and binder fibers, wherein the second fibrous structure comprises only fibers, and wherein the first and second fibrous structures have different hardnesses; and,

a load receiving member, wherein the load receiving member comprises a single member between and touching both of the first and second fibrous structures, wherein the load receiving member has a flexing degree to load in a load direction that is smaller than flexing degrees of the first and second fibrous structures to load in the load direction, wherein the first and second fibrous structures and the load receiving member form a molded stack, and wherein the load receiving member is formed from one of a fiber material and a resin material.

2. The cushion body according to claim 1 , wherein the load receiving member comprises approximately the same fiber material as the first and second fibrous structures and has a fiber density higher than that of the first and second fibrous structures.

3. A molded cushion body comprising:

a first fibrous structure including a mix of main fibers and binder fibers, wherein the first fibrous structure comprises only fibers;

a second fibrous structure including a mix of main fibers and binder fibers, wherein the second fibrous structure comprises only fibers, and wherein the first and second fibrous structures have different hardnesses; and,

a load receiving member, wherein the load receiving member comprises a single member between and touching both of the first and second fibrous structures, wherein the load receiving member has a flexing degree to load in a load direction that is smaller than flexing degrees of the first and second fibrous structures to load in the load direction, wherein the first and second fibrous structures and the load receiving member form a molded stack, and wherein the cushion body comprises an elevated pressure steam blown molded fibrous structure.

4. The cushion body according to claim 3 , wherein the elevated pressure steam blown molded fibrous structure comprises main fibers and binder fibers, wherein the main fibers have a higher melting point than a melting point of the binder fibers, and wherein the elevated pressure steam blown molded fibrous structure comprises an elevated pressure, elevated temperature between the two melting points, steam blown molded fibrous structure.

5. The cushion body according to claim 1 , wherein the cushion body comprises a load receiving face and a non-load receiving face, and wherein the cushion body further comprises an elevated pressure steam blown molded fibrous structure such that the non-load receiving face is more steam blown than the load receiving face.

6. A seat comprising a cushion body and a seat frame supporting the cushion body, wherein the cushion body comprises the cushion body according to any one of claims 1 to 5 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 30, 2008
From: ITO, MIKA; SUGIYAMA, SHINJI
To: TS TECH CO., LTD.
Reel/Frame 021607/0651 →
Priority Claims (1)
JP 2006-099442 · Mar 31, 2006 · national
Continuity (1)
Related Publication 20090108494A1 · Apr 30, 2009