Experimental and FEA Simulations Using ANSYS on the Mechanical Properties of Laminated Object Manufacturing (LOM) 3D-Printed Woven Jute Fiber-Reinforced PLA Laminates

Author:

Shahriar Sazidur R.12,Jiang Lai1,Park Jaejong1,Islam Md Shariful1,Perez Bryan1,Peng Xiaobo1

Affiliation:

1. Department of Mechanical Engineering, Roy G. Perry College of Engineering, Prairie View A&M University, Prairie View, TX 77446, USA

2. Department of Mechanical, Aerospace and Nuclear Engineering, School of Engineering, Rensselaer Polytechnic Institute, Troy, NY 12180, USA

Abstract

The mechanical properties of woven jute fiber-reinforced PLA polymer laminates additively manufactured through Laminated Object Manufacturing (LOM) technology are simulated using the finite element method in this work. Woven jute fiber reinforcements are used to strengthen bio-thermoplastic PLA polymers in creating highly biodegradable composite structures that can serve as one of the environmentally friendly alternatives for synthetic composites. A LOM 3D printer prototype was designed and built by the authors. All woven jute/PLA biocomposite laminated specimens made using the built prototype in this study had their tensile and flexural properties measured using ASTM test standards. These laminated structures were modeled using the ANSYS Mechanical Composite PrepPost (ACP) module, and then both testing processes were simulated using the experimentally measured input values. The FEA simulation results indicated a close match with experimental results, with a maximum difference of 9.18%. This study served as an exemplary case study using the FEA method to predict the mechanical behaviors of biocomposite laminate materials made through a novel manufacturing process.

Funder

National Science Foundation (NSF) of the United States

Publisher

MDPI AG

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