METHOD FOR MANUFACTURING A CONDUCTIVE FABRIC AND PRODUCTS THEREOF
A method for manufacturing a conductive fabric and products thereof mainly fastens a first soft base and a second soft base with a conductive yarn interposed between them with spaced dot-type fastening spots through a fastening means to facilitate fast production of the conductive fabric. The fastening means could be a needle punching apparatus to provide needle punching on an upper layer fabric and a lower layer fabric without hitting the conductive yarn interposed between them. Thus all three of them can be fastened with the spaced dot-type fastening spots. And the conductive fabric can be produced more efficiently.
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This application is a Division of U.S. application Ser. No. 12/026,418, filed Feb. 5, 2008, the entire contents of which are incorporated herein by reference.
FIELD OF THE INVENTIONThe present invention relates to a method for manufacturing a conductive fabric and products thereof and particularly to a method employing a fastening means to form spaced dot-type fastening spots on a first soft base and a second soft base to bind a conductive yarn laid between them to facilitate fast production of the conductive fabric.
BACKGROUND OF THE INVENTIONA conventional method to fabric a conductive fabric, referring to
To remedy this problem, some producers try to sew conductive yarns 22 directly on a soft base 21 according to a preset layout to form a conductive fabric 20 (referring to
In view of the disadvantages of the manufacturing method and products of the conventional conductive fabrics, the primary object of the present invention is to provide an improved method to produce conductive fabrics faster.
The method of the invention mainly binds a conductive yarn between a first soft base and a second soft base through a fastening means by spaced dot-type fastening spots. The fastening means could be a needle punching apparatus to bind an upper layer textile and a lower layer textile in a needle punching fashion to form spaced dot-type fastening without hitting the conductive yarn laid between them. Thus the finished products of the conductive fabric can be produced faster.
The foregoing, as well as additional objects, features and advantages of the invention will be more readily apparent from the following detailed description, which proceeds with reference to the accompanying drawings.
Please refer to
Moreover, the conductive yarn 50 is first bonded to the first soft base 30 or the second soft base 40 in a symmetrical or asymmetrical manner; next, the second soft base 40 or the first soft base 30 is covered thereon; then the two soft bases at the upper and lower sides are fastened together by means of the constructing portion 610 of the fastening means 60 through spaced dot-type spots without hitting the conductive yarn 50.
The construction portion 610 may be hydroentangling using high speed water ejection to form the spaced dot-type spots to bind the fibres.
Referring to
6, or around the conductive yarn 50 as shown by fastening spots 61b in
Referring to
As a conclusion, the invention provides a method to manufacture a conductive fabric that has the first and second soft bases 30 and 40 at the upper and lower layers with the conductive yarn 50 laid between them to form a circuit in a symmetrical or asymmetrical fashion. Then the first and second soft bases 30 and 40 and the conductive yarn 50 are fastened through the constructing portion 610 of the fastening means 60 in a fashion of spaced dot-type fastening spots. Such an approach can fabricate the conductive fabric 70 quickly and form a more secure binding and overcome the problems occurred to the conventional techniques of knitting and weaving or direct sewing. It provides a significant improvement.
Claims
1. A method for manufacturing a conductive fabric, comprising:
- disposing a conductive yarn between a first soft base and a second soft base located respectively on a upper layer and a lower layer to form a circuit layout in a symmetrical or asymmetrical fashion; and
- forming spaced dot-type fastening spots between the first soft base and the second soft base through a constructing portion of a fastening means to fasten the conductive yarn rapidly between the first soft base and the second soft base.
2. The method of claim 1, wherein the first soft base and the second soft base are textiles or nonwovens, and the fastening means is a needle punching apparatus or a hydroentangling apparatus to form the spaced dot-type fastening spots through entangled fibres to bind the textiles or nonwovens.
3. The method of claim 1, wherein the constructing portion of the fastening means produces a regular or staggered layout.
4. The method of claim 1, wherein the spaced dot-type fastening spots are located around the conductive yarn.
5. The method of claim 1, wherein the first soft base and the second soft base consist of textiles or nonwovens, rubber material, synthetic resins and polymers, and the fastening means is a thermal bonding or thermal pressing apparatus to form the spaced dot-type fastening spots on the textiles or nonwovens, rubber material, synthetic resins and polymers for bonding and fastening.
6. The method of claim 1, wherein the conductive yarn has one or more electric coupling end extended outwards between the first soft base and the second soft base.
7. The method of claim 1, wherein the conductive yarn is selected from the group consisting of stainless steel yarns, alloy fibre yarns, carbon fibre yarns, silver fibre yarns, copper fibre yarns, and other selected metal yarns or non-metal conductive yarns.
Type: Application
Filed: Oct 14, 2011
Publication Date: Feb 2, 2012
Applicant: Wai Tai Technology Co., Ltd. (Kaohsiung City)
Inventor: Hung-Jen CHEN (Kaohsiung City)
Application Number: 13/273,761
International Classification: D04H 1/46 (20120101);