Open Access Research Article

On Obtaining the Young Modulus from Numerical Analysis of Composite Material Constituent

SORIN DRAGHICI, HORIA ALEXANDRU PETRESCU, ANTON HADAR
Published 30 Dec 2018
Pages 712–717

Abstract

Importance and use of composite materials are no longer a subject that should be emphasized. They offer a successful replacement for classical materials in most areas of engineering, conferring similar elastic-mechanical properties to metal or non-metal alloys with several advantages such as reduced mass, chemical resistance etc. Considering this, knowledge of the elastic-mechanical characteristics is of utmost importance. The present article aims to create a finite element model that can predict the longitudinal elastic modulus of a double-layered composite material based on the elastic characteristics of its constituents. For this, the elastic characteristics of the constituents were determined, then used in the finite element analysis thus obtaining the Young’s modulus for the numerical composite material. Also, the longitudinal elastic modulus of the resultant composite was determined experimentally. The results of the finite element model were compared with experimental values.

Keywords: composites; fiberglass; Young’s modulus; FEM

How to Cite this Article

DRAGHICI, S., PETRESCU, H., & HADAR, A. (2018). On Obtaining the Young Modulus from Numerical Analysis of Composite Material Constituent. Materiale Plastice, 55(4), 712–717. https://doi.org/10.37358/MP.18.4.5107
DRAGHICI S, PETRESCU H, HADAR A. On Obtaining the Young Modulus from Numerical Analysis of Composite Material Constituent. Materiale Plastice. 2018;55(4):712–717. doi: 10.37358/MP.18.4.5107
S. DRAGHICI, H. PETRESCU, and A. HADAR, "On Obtaining the Young Modulus from Numerical Analysis of Composite Material Constituent,” Materiale Plastice, vol. 55, no. 4, pp. 712–717, 2018. doi: 10.37358/MP.18.4.5107
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