Drop‐Weight Impact Resistance of 3D‐Printed Complex Zeolite‐Inspired Structures

Author:

Ambekar Rushikesh S.1,Oliveira Eliezer F.2,Pugazhenthi Piraisoodan1,Singh Shatrughan3,Mahapatra Debiprosad Roy3,Galvao Douglas S.45,Tiwary Chandra S.1ORCID

Affiliation:

1. Department of Metallurgical and Materials Engineering Indian Institute of Technology Kharagpur 721302 West Bengal India

2. Department of Physics and Meteorology São Paulo State University (Unesp) School of Sciences Bauru SP 17033‐360 Brazil

3. Department of Aerospace Engineering Indian Institute of Science Bangalore 560012 India

4. Applied Physics Department Gleb Wataghin Institute of Physics State University of Campinas Campinas SP 13083‐970 Brazil

5. Center for Computing in Engineering & Sciences State University of Campinas Campinas SP 13083‐970 Brazil

Abstract

Ballistic resistance architectures have crucial importance in the defense and aerospace industries. The researchers are constantly excited to explore lightweight, complex architectures for higher mechanical energy absorption. The complexity of the design is restricted due to a lack of advanced manufacturing techniques. However, additive manufacturing (AM)/3D printing facilitates sustainability, excellent design flexibility, and automation. The zeolite‐inspired 3D printed structures are designed and developed to study deformation under low‐velocity drop impact. The present work has the comparison of the specific energy absorption of different types of zeolite‐inspired structures. It also has the effect of velocity on impact depth at multiscale using molecular dynamics (theoretical) and computer tomography (experimental).

Publisher

Wiley

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