FINITE ELEMENT ANALYSIS OF SS316L-BASED FIVE-HOLE PLATE IMPLANT FOR FIBULA RECONSTRUCTION

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Nanang Qosim, Zakki Fuadi Emzain, A.M. Mufarrih, Ratna Monasari, Fataa Kusumattaqiin, Rangga E. Santoso

2022 Journal of Applied Engineering and Technological Science Vol. 4 Issue 1 Article Cited by 1 Quartile

Abstract

The design of a product is the first stage that determines its success. In designing an implant product, it is necessary to carefully and carefully consider the strength of the structure, which will determine the implantation process in the bone. This study aims to analyze the design performance of SS316L-based plate implants for fibula restoration. The method used in this study is using a Finite Element Analysis approach. The simulated model design has dimensions of 35 x 5 x 1.5 mm and five holes with a 2-3 configuration. The results of the bending test simulation showed that the values for both displacement and Von Mises stress that occurred (0.008 mm and 116 MPa of each) were still considerably below the yield stress of the SS316L material. The same results were also shown in the tensile test simulation, although the clamping setting on the plate was changed on the other side. From this finite element analysis approach, the SS316L-based five-hole plate implant design has a fairly good strength performance as a fibular bone-implant restoration product. © 2022, Intellectual Research and Development Education Foundation (YRPI). All rights reserved.

Affiliations

Department of Mechanical Engineering, Politeknik Negeri Malang, Indonesia; Department of Chemical Engineering, Politeknik Negeri Samarinda, Indonesia; Department of Energy and Power, Cranfield University, United Kingdom