Invention Grant
- Patent Title: Deformable polymer composites with controlled electrical performance during deformation through tailored strain-dependent conductive filler contact
-
Application No.: US14294252Application Date: 2014-06-03
-
Publication No.: US09748015B2Publication Date: 2017-08-29
- Inventor: Randy A. Mrozek , Joesph L. Lenhart , Geoffrey A. Slipher
- Applicant: The United States of America, as represented by Sec. of the Army
- Applicant Address: US DC Washington
- Assignee: The United States of America as represented by the Secretary of the Army
- Current Assignee: The United States of America as represented by the Secretary of the Army
- Current Assignee Address: US DC Washington
- Agent Eric Brett Compton
- Main IPC: H01B1/22
- IPC: H01B1/22 ; H01B1/24 ; H01B3/30 ; H01B3/44 ; H01B3/40 ; H01B3/28 ; H01B3/46 ; B64D17/02

Abstract:
The present invention generally relates to deformable polymer composites, and more particularly to, deformable polymer composites with controlled electrical performance during deformation through tailored strain-dependent conductive filler contact. According to embodiments, a deformable elastomeric conductive material includes: an elastomeric polymer matrix; and conductive filler material uniformly dispersed in the elastomeric polymer matrix sufficient to render the material electrically or thermally conductive. The conductive filler material comprises a plurality of substantially non-entangled particles having an aspect ratio sufficiently large to enable the particles to substantially remain in contact and/or in close proximity with adjacent particles so as to maintain conductive pathways in the material when the material is subjected to deformation up to and exceeding 10% strain.
Public/Granted literature
Information query