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- W120995090 abstract "This chapter discusses finite element analysis (FEA)-aided engineering of elastomeric electromagnetic interference (EMI) shielding gaskets. The Mooney–Rivlin model and the Ogden model are used to describe the highly filled electrically conductive silicon materials and FEA-assisted design examples are presented, which include the deformation of a formed-in-place conductive gasket; a composite plastic/conductive-elastomer gasket with improved load-deflection characteristics; and a modified hollow-W” extruded conductive gasket with an enhanced installation/attachment feature. In the experiment described in the chapter, a nonlinear finite-element program, MARC K6, was used for the static analysis. Four-node plane strain Hermann elements were used to model the gasket cross-section. The compression of the gasket was simulated using the contact elements. The plastic spacer was considered as a rigid body because it is much stiffer than the elastomer material. Following the FEA-assisted design, prototype spacer gaskets were produced. Those parts met the application requirements of closure force and electromagnetic interference (EMI) shielding during performance trials. The design was approved for production without additional prototyping. By using FEA, it is possible to accurately predict and simulate a gasket in use and reduce the possibility of a poor gasket design even before prototyping, which may cause poor EMI shielding performance." @default.
- W120995090 created "2016-06-24" @default.
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- W120995090 date "1999-01-01" @default.
- W120995090 modified "2023-09-26" @default.
- W120995090 title "Finite Element Analysis Aided Engineering of Elastomeric EMI Shielding Gaskets" @default.
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- W120995090 doi "https://doi.org/10.1016/b978-188420777-8.50039-4" @default.
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