IP Library Granted Patent US 9,643,347
Granted Patent B2
US 9,643,347 · App. 14/678,721 · Granted May 9, 2017

Heat-resistant laminated conveyer belt

Inventors: Takashi Nitta (Tokyo, JP); Kazuki Mizushima (Tokyo, JP); Hideo Imazato (Matsuura, JP); Tomomi Haraguchi (Matsuura, JP); Keigo Futatsuki (Matsuura, JP); Kimihiro Yamakawa (Tokyo, JP)
Assignees: Mitsubishi Heavy Industries Printing & Packaging Machinery, Ltd.; Chukoh Chemical Industries, Ltd.
B29C43/203B65G15/38B29K2027/12B29K2071/00B29K2105/0085B29K2105/0845B29K2277/10B29L2029/00B65G2207/22Y10T442/322
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Quick Facts
Patent No.
US 9,643,347
App. No.
14/678,721
Granted
May 9, 2017
Kind
B2
Abstract

A heat-resistant laminated conveyer belt includes a fluororesin-coated core and a reinforcement layer which is formed on the core through an adhesive layer. The core is obtained by impregnating an aramid fiber woven fabric in a fluororesin dispersion and drying and sintering the fabric. The reinforcement layer is obtained by impregnating an aramid fiber woven fabric to which stretch properties are applied in a fluororesin dispersion and drying and sintering the fabric. The aramid fiber woven fabric of the core is a woven fabric by a plain-weave seamless loom or a circular loom. The aramid fiber woven fabric of the core includes an S-twist weft yarn and a Z-twist weft yarn which are alternatively arranged.

Claims (14)

1. A method of producing a heat-resistant laminated conveyer belt which comprises a fluororesin-coated core obtained by impregnating an aramid fiber woven fabric with a fluororesin dispersion and drying and sintering the fabric; and a reinforcement layer which is formed on the core through an adhesive layer and obtained by impregnating an aramid fiber woven fabric to which stretch properties are applied with a fluororesin dispersion and drying and sintering the fabric; and wherein the aramid fiber woven fabric of the core is a woven fabric by a plain-weave seamless loom and the woven fabric includes an S-twist weft yarn and a Z-twist weft yarn which are alternatively arranged, and

the method comprising:

thermally compression molding the reinforcement layer in a thickness direction of the reinforcement layer before thermally pressing the core, the reinforcement layer, and the adhesive layer arranged between the core and the reinforcement layer.

2. The method according to claim 1 , which comprises thermally sealing a tetrafluoroethylene-perfluoroalkyl vinyl ether copolymer resin film on the reinforcement layer.

3. The method according to claim 2 , wherein the core has a thickness of 1.0 mm or more and a mass of 1500 g/m 2 or more.

4. The method according to claim 2 , wherein the core has the thickness of 1 to 3 mm and the mass of 1500 to 3000 g/m 2 .

5. The method according to claim 4 , wherein the number of the S-twist weft yarn and the number of the Z-twist weft yarn are plural.

6. A method of producing a heat-resistant laminated conveyer belt which comprises a fluororesin-coated core obtained by impregnating an aramid fiber woven fabric with a fluororesin dispersion and drying and sintering the fabric; and a reinforcement layer which is formed on the core through an adhesive layer and obtained by impregnating an aramid fiber woven fabric to which stretch properties are applied with a fluororesin dispersion and drying and sintering the fabric; wherein the aramid fiber woven fabric of the core is a woven fabric by a circular loom and the woven fabric includes an S-twist weft yarn and a Z-twist weft yarn which are alternatively arranged, and

the method comprising:

thermally compression molding the reinforcement layer in a thickness direction of the reinforcement layer before thermally pressing the core, the reinforcement layer, and the adhesive layer arranged between the core and the reinforcement layer.

7. The method according to claim 6 , which comprises thermally sealing a tetrafluoroethylene-perfluoroalkyl vinyl ether copolymer resin film on the reinforcement layer.

8. The method according to claim 7 , wherein the core has a thickness of 1.0 mm or more and a mass of 1500 g/m or more.

9. The method according to claim 7 , wherein the core has the thickness of 1 to 3 mm and the mass of 1500 to 3000 g/m 2 .

10. The method according to claim 9 , wherein the number of the S-twist weft yarn and the number of the Z-twist weft yarn are plural.

Assignments (1)
MERGER Recorded Aug 3, 2018
From: MITSUBISHI HEAVY INDUSTRIES PRINTING & PACKAGING MACHINERY, LTD.
To: MITSUBISHI HEAVY INDUSTRIES MACHINERY SYSTEMS, LTD.
Reel/Frame 046702/0748 →
Priority Claims (1)
JP 2009-160995 · Jul 7, 2009 · national
Continuity (3)
Continuation 13344467 · Jan 5, 2012
Continuation PCTJP2010061554 · Jul 7, 2010
Related Publication 20150217490A1 · Aug 6, 2015