Universiti Teknologi Malaysia Institutional Repository

The analysis of wear on artificial hip joint with dimple on femoral surface

Ramadhoni, Tri Satya and Syahrom, A. and Md. Saad, Amir Putra and Prakoso, A. T. and Wicaksono, D. and Basri, Hasan (2020) The analysis of wear on artificial hip joint with dimple on femoral surface. In: 3rd Forum in Research, Science, and Technology International Conference, FIRST 2019, 9 - 10 October 2019, South Sumatera, Indonesia.

[img]
Preview
PDF
1MB

Official URL: http://dx.doi.org/10.1088/1742-6596/1500/1/012021

Abstract

This paper proposes the replacement of artificial hip joints which is one of the successful methods used to restore the movement of damaged hip bones. The main contribution of this work is to reduce wear caused by contact pressure between the femoral head and acetabular cup surfaces, where the average wear rate is very high. This can be achieved through the use of dimple on the femoral head surface from the artificial hip joint and subsequently computed by using the Archard equation. To validate the contact pressure accuracy of the proposed model, mesh sensitivity that used with 3 levels of mesh size are 1.2, 1.1 and 1.0. In this study for more accurate result, the mesh sensitivity used is with the mesh size of 1.0. The performance calculation results from wear are shown that in a hip joint using dimple the maximum contact pressure and the wear depth are decreased compared to the hip joint without dimple which are 67.25 MPa and 1.064 x10-10 mm from the previous value of 77.44 MPa and 1.185 x10-10 mm. Therefore, based on differences in the distribution of contact pressure that occurs shows volumetric wear on the hip joints using a dimple lower than without a dimple.

Item Type:Conference or Workshop Item (Paper)
Uncontrolled Keywords:artificial hip joint, contact pressure
Subjects:T Technology > TJ Mechanical engineering and machinery
Divisions:Mechanical Engineering
ID Code:92138
Deposited By: Widya Wahid
Deposited On:30 Aug 2021 04:58
Last Modified:30 Aug 2021 04:58

Repository Staff Only: item control page