The parametric instability improvement of fully anisotropic composite plates with embedded shape memory alloy

Author:

Yusof Zarina1,Rasid Zainudin A1,Hassan Mohamad Zaki2ORCID,Sapuan SM3,Sarip Shamsul2,Yahaya Hafizal1,Yakub Fitri1

Affiliation:

1. Department of Mechanical Precision Engineering, Malaysia-Japan International Institute of Technology, Department of Engineering, Universiti Teknologi Malaysia, Kuala Lumpur, Malaysia

2. Razak Faculty of Technology and Informatics, Department of Engineering, Universiti Teknologi Malaysia, Kuala Lumpur, Malaysia

3. Department of Mechanical and Manufacturing Engineering, Advanced Engineering Materials and Composites Research Centre, Universiti Putra Malaysia, Selangor, Malaysia

Abstract

The parametric resonance or instability challenge in designing laminated composite is crucial in areas such as aeronautical and marine where structures experience dynamic loading. Shape memory alloy (SMA), a type of smart material, has been used to improve the structural behaviours of composite plate using its well-known property of shape memory effect. It is also known that mechanical couplings that exist in unsymmetric composite can increase the instability of the composite. In this study, the SMA property has been exploited to generate recovery stress in the composite to improve its parametric instability problem. The unsymmetric composites were embedded with SMA fibres, and the formulation for the dynamic instability of this composites was developed using finite element method. The third-order shear deformation theory of composite was applied. The results were initially validated for the case of composite without SMA. Following that, the parametric instability behaviour of unsymmetric composites was studied under the effect of several parameters. It was found that the mechanical couplings that exist in the unsymmetric composite have increased the instability of the composite, but the presence of the SMA can significantly reduce this instability.

Funder

Universiti Putra Malaysia

Publisher

SAGE Publications

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3. Progressive failure analysis of laminated composite plates;IOP Conference Series: Materials Science and Engineering;2021-02-01

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