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Finite Element Method-Based Simulation Creep Behavior of Viscoelastic Carbon-Fiber Composite. | LitMetric

Finite Element Method-Based Simulation Creep Behavior of Viscoelastic Carbon-Fiber Composite.

Polymers (Basel)

Department of Mechanical Engineering, Transilvania University of Brașov, B-dul Eroilor 20, 500036 Brașov, Romania.

Published: March 2021

Usually, a polymer composite with a viscoelastic response matrix has a creep behavior. To predict this phenomenon, a good knowledge of the properties and mechanical constants of the material becomes important. Schapery's equation represents a basic relation to study the nonlinear viscoelastic creep behavior of composite reinforced with carbon fiber (matrix made by polyethrtethrtketone (PEEK) and epoxy resin). The finite element method (FEM) is a classic, well known and powerful tool to determine the overall engineering constants. The method is applied to a fiber one-directional composite for two different applications: carbon fibers T800 reinforcing an epoxy matrix Fibredux 6376C and carbon fibers of the type IM6 reinforcing a thermoplastic material APC2. More cases have been considered. The experimental results provide a validation of the proposed method and a good agreement between theoretical and experimental results.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8037649PMC
http://dx.doi.org/10.3390/polym13071017DOI Listing

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