Quasi‐static compression behavior and crashworthiness of GLARE laminate conical frustum with progressive circular and square cut‐outs

Author:

Logesh K.1,Hariharasakthisudhan P.2ORCID,Bright Renjin J.3,Kannan Sathish4,Khalkar V.5,Sundaraiah N.1

Affiliation:

1. Department of Mechanical Engineering Vel Tech Rangarajan Dr. Sagunthala R&D Institute of Science and Technology Chennai Tamil Nadu India

2. Department of Mechanical Engineering Sri Krishna College of Technology Coimbatore India

3. Department of Production Engineering PSG College of Technology Coimbatore India

4. Department of Mechanical Engineering College of Engineering, American University of Sharjah Sharjah United Arab Emirates

5. Department of Mechanical Engineering Gharda Institute of Technology Ratnagiri India

Abstract

AbstractThe design of structures using advanced composite materials such as fiber metal laminate requires an in‐depth understanding of their deformation behavior and response to the discontinuities in the structures. In the present study, a GLARE kind of fiber metal laminate in 2/1 configuration was fabricated in the form of conical frustum. Three cut‐outs of two different shapes such as circular and square were intentionally made at the center of the frustum at an angular distance of 120°. The quasi‐static compression test was conducted to determine the crashworthiness characteristics of laminate frustums with cut‐out and the results were compared with perfect frustum. The study showed that the laminate with cut‐out undergone for inward buckling near the discontinuities. Apart from that, the delamination and outward buckling were noted in the edges of the cut‐outs. The energy absorption of laminate frustum with circular cut‐outs was observed to be better than square cut‐outs. The performance of laminate frustums with cut‐outs was ranked using Technique for Order Preference by Similarity to an Ideal Solution technique. A finite element analysis was carried out to simulate the deformation behavior of laminate frustum with cut‐outs and the numerical results of deformation mode closely represented the experimental results.

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,General Chemistry,Ceramics and Composites

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