Invention Application
US20110159764A1 METHODS OF IMPARTING CONDUCTIVITY TO MATERIALS USED IN COMPOSITE ARTICLE FABRICATION & MATERIALS THEREOF
审中-公开
对复合材料制造中使用的材料的电导率的影响方法及其材料
- Patent Title: METHODS OF IMPARTING CONDUCTIVITY TO MATERIALS USED IN COMPOSITE ARTICLE FABRICATION & MATERIALS THEREOF
- Patent Title (中): 对复合材料制造中使用的材料的电导率的影响方法及其材料
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Application No.: US12971869Application Date: 2010-12-17
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Publication No.: US20110159764A1Publication Date: 2011-06-30
- Inventor: Richard Thomas Price , Abdel Abusafieh
- Applicant: Richard Thomas Price , Abdel Abusafieh
- Applicant Address: US DE WILMINGTON
- Assignee: CYTEC TECHNOLOGY CORP.
- Current Assignee: CYTEC TECHNOLOGY CORP.
- Current Assignee Address: US DE WILMINGTON
- Main IPC: B32B15/14
- IPC: B32B15/14 ; B32B7/02 ; B32B15/00 ; B32B37/04

Abstract:
Embodiments of the invention are directed to metal- or metal alloy-coated sheet materials (hereinafter, “metal-coated sheet material”) including, but not limited to, fabrics and veils which have a metal content of between one (1) and fifty (50) grams per square meter (gsm). The metal-coated sheet materials may be used as-is or in conjunction with prepregs, adhesives or surfacing films to provide lightning strike protection (LSP) and/or bulk conductivity, among other benefits, to the resultant composite article. In one embodiment, the metal-coated sheet material is impregnated with a resin. According to embodiments of the invention, a metal is applied to one or two sides of the fabric or veil by a physical vapor deposition coating process. The resultant metal-coated fabric or veil may be used as a carrier in surfacing films to impart surface conductivity; may be used as a carrier in adhesives to form conductive adhesive-bonded joints; may be interleaved (one or more metal-coated veils) between layers of prepreg to impart surface and/or bulk conductivity as well as toughness; or may be used to fabricate composite articles.
Public/Granted literature
- US09962907B2 Methods of imparting conductivity to materials used in composite article fabrication and materials thereof Public/Granted day:2018-05-08
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