首页|Experimental and numerical evaluation of elastic properties of Bi-directional carbon epoxy composites

Experimental and numerical evaluation of elastic properties of Bi-directional carbon epoxy composites

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This paper presents the evaluation of properties like elastic moduli, shear moduli and poisson's ratio as a function of volume fraction of fibres and angle of orientation of reinforcement. The simulation has been carried out for bidirectional carbon epoxy composites. Micromechanical models like Mori-Tanaka, Self-Consistent technique are used for predictions. The application of the method shows its capability in quick prediction of properties avoiding the dependence on experimental data and reducing the design cycle time. Carbon epoxy composites were fabricated and tested at various orientations with respect to principal reinforcement directions. A good match has been obtained between the simulation and the experimental data.

Carbon epoxyMori-TanakaSelf-ConsistentElastic propertiesVolume fractionMECHANICAL-PROPERTIESVARIATIONAL APPROACHGLASS/EPOXYSTRENGTH

Mehdi, Misba、Bhagat, Atul Ramesh、Selokar, G. R.

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Sri Satya Sai Univ Technol & Med Sci

Adv Syst Lab

2022

Optik

Optik

EISCI
ISSN:0030-4026
年,卷(期):2022.257
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