US2013137326A1PendingUtilityA1

Anti-interference hybrid fabric and method for manufacturing the same

Assignee: TSENG KAI-HSIPriority: Nov 25, 2011Filed: Nov 25, 2011Published: May 30, 2013
Est. expiryNov 25, 2031(~5.3 yrs left)· nominal 20-yr term from priority
Inventors:Kai-Hsi Tseng
D10B 2101/06D10B 2101/20D10B 2401/16H04B 1/3838Y10T442/3236D03D 1/0058
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Claims

Abstract

A method for manufacturing anti-interference hybrid fabric prepares multiple fiber strands made of a compound material. The fiber strands have multiple strands of conductive fiber and multiple strands of non-conductive fiber serving as filament yarns for weaving the anti-interference hybrid fabric. The method further inputs the fiber strands serving respectively as warp yarns and filling yarns to a loom machine to weave a finished product of the anti-interference hybrid fabric after selecting at least one unblocking area on the finished product. The warp and filling yarns passing through the at least one unblocking area correspond to the strands of non-conductive fiber and the rest of warp and filling yarns correspond to the strands of conductive fiber. Accordingly, a cover formed by the finished product has the at least one unblocking area allowing a communication product having the cover to transmit or receive electromagnetic signals therethrough.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . Anti-interference hybrid fabric made of a compound material and comprising:
 at least one unblocking area formed on the anti-interference hybrid fabric;   multiple longitudinal strands of fiber, wherein a part of the longitudinal strands of fiber are conductive and the rest of the longitudinal strands of fiber are non-conductive; and   multiple transverse strands of fiber interwoven with the longitudinal strands of fiber, wherein a part of the transverse strands of fiber are conductive, the rest of the transverse strands of fiber are non-conductive, the part of the non-conductive longitudinal strands of fiber and the non-conductive transverse strands of fiber are woven to form the at least one unblocking area, and the part of the conductive longitudinal strands of fiber and the conductive transverse strands of fiber are woven to form the rest of anti-interference hybrid fabric.   
     
     
         2 . The method as claimed in  claim 1 , wherein the part of the conductive longitudinal strands of fiber and the part of the conductive transverse strands of fiber are multiple strands of carbon fiber. 
     
     
         3 . The method as claimed in  claim 1 , wherein the part of the conductive longitudinal strands of fiber and the part of the conductive transverse strands of fiber are multiple strands of metal fiber. 
     
     
         4 . The method as claimed in  claim 1 , wherein the part of the non-conductive longitudinal strands of fiber and the part of the non-conductive transverse strands of fiber are multiple strands of chemical fiber. 
     
     
         5 . The method as claimed in  claim 2 , wherein the part of the non-conductive longitudinal strands of fiber and the part of the non-conductive transverse strands of fiber are multiple strands of chemical fiber. 
     
     
         6 . The method as claimed in  claim 3 , wherein the part of the non-conductive longitudinal strands of fiber and the part of the non-conductive transverse strands of fiber are multiple strands of chemical fiber. 
     
     
         7 . The method as claimed in  claim 1 , wherein the part of the non-conductive longitudinal strands of fiber and the part of the non-conductive transverse strands of fiber are multiple strands of glass fiber. 
     
     
         8 . The method as claimed in  claim 2 , wherein the part of the non-conductive longitudinal strands of fiber and the part of the non-conductive transverse strands of fiber are multiple strands of glass fiber. 
     
     
         9 . The method as claimed in  claim 3 , wherein the part of the non-conductive longitudinal strands of fiber and the part of the non-conductive transverse strands of fiber are multiple strands of glass fiber. 
     
     
         10 . A method for manufacturing anti-interference hybrid fabric comprising:
 a filament yarn preparing step comprising preparing multiple fiber strands made of a compound material, wherein the fiber strands have multiple strands of conductive fiber and multiple strands of non-conductive fiber, and the strands of conductive fiber and the strands of non-conductive fiber serve as filament yarns for weaving the anti-interference hybrid fabric;   a fabric weaving step comprising inputting the fiber strands serving respectively as warp yarns and filling yarns to a loom machine to weave a finished product of the anti-interference hybrid fabric after selecting at least one unblocking area on the finished product, wherein the warp yarns passing through the at least one unblocking area correspond to a part of the strands of non-conductive fiber and the rest of warp yarns correspond to a part of the strands of conductive fiber, and the filling yarns passing through the at least one non-blocking area correspond to the remaining strands of non-conductive fiber and the rest of filling yarns correspond to the remaining strands of conductive fiber; and   a finished product outputting step comprising continuously outputting the finished product of the anti-interference hybrid fabric, wherein the finished product of the anti-interference hybrid fabric has the at least one unblocking area woven by the warp yarns and the filling yarns corresponding to the strands of non-conductive fiber and the remaining area woven by the warp yarns and the filling yarns corresponding to the strands of conductive fiber.   
     
     
         11 . The method as claimed in  claim 10 , wherein the strands of conductive fiber in the filament yarn preparing step are multiple strands of carbon fiber. 
     
     
         12 . The method as claimed in  claim 10 , wherein the strands of conductive fiber in the filament yarn preparing step are multiple strands of metal fiber. 
     
     
         13 . The method as claimed in  claim 10 , wherein the strands of non-conductive fiber in the filament yarn preparing step are multiple strands of chemical fiber. 
     
     
         14 . The method as claimed in  claim 11 , wherein the strands of non-conductive fiber in the filament yarn preparing step are multiple strands of chemical fiber. 
     
     
         15 . The method as claimed in  claim 12 , wherein the strands of non-conductive fiber in the filament yarn preparing step are multiple strands of chemical fiber. 
     
     
         16 . The method as claimed in  claim 10 , wherein the strands of non-conductive fiber in the filament yarn preparing step are multiple strands of glass fiber. 
     
     
         17 . The method as claimed in  claim 11 , wherein the strands of non-conductive fiber in the filament yarn preparing step are multiple strands of glass fiber. 
     
     
         18 . The method as claimed in  claim 12 , wherein the strands of non-conductive fiber in the filament yarn preparing step are multiple strands of glass fiber.

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