Mechanical And Tribological Properties Of Ultra High Molecular Weight Polyethylene With Zinc Oxide Antibacterial Agent For Joint Implant

Total joint replacement (TJR) is a highly successful treatment for end-stage joint disease like osteoarthritis. A prominent number of TJR devices used in orthopaedic involve articulation between a metallic alloy and ultra-high molecular weight polyethylene (UHMWPE). Penggantian sendi keseluruhan...

Full description

Saved in:
Bibliographic Details
Main Author: Chang, Boon Peng
Format: Thesis
Language:English
Published: 2014
Subjects:
Online Access:http://eprints.usm.my/29035/1/Mechanical_and_Tribological_Prop_of_UHMWPE_With_ZnO_Antibacterial_Agent_for_Joint_Implant.pdf
Tags: Add Tag
No Tags, Be the first to tag this record!
id my-usm-ep.29035
record_format uketd_dc
spelling my-usm-ep.290352019-04-12T05:26:03Z Mechanical And Tribological Properties Of Ultra High Molecular Weight Polyethylene With Zinc Oxide Antibacterial Agent For Joint Implant 2014 Chang, Boon Peng TN1-997 Mining engineering. Metallurgy Total joint replacement (TJR) is a highly successful treatment for end-stage joint disease like osteoarthritis. A prominent number of TJR devices used in orthopaedic involve articulation between a metallic alloy and ultra-high molecular weight polyethylene (UHMWPE). Penggantian sendi keseluruhan (TJR) adalah rawatan yang berjaya untuk peringkat akhir penyakit sendi seperti osteoartritis. Kebanyakan peranti TJR digunakan dalam ortopedik melibatkan artikulasi antara aloi logam dan polietilena berberat molekul sangat tinggi (UHMWPE). 2014 Thesis http://eprints.usm.my/29035/ http://eprints.usm.my/29035/1/Mechanical_and_Tribological_Prop_of_UHMWPE_With_ZnO_Antibacterial_Agent_for_Joint_Implant.pdf application/pdf en public phd doctoral Universiti Sains Malaysia Pusat Pengajian Kejuruteraan Bahan & Sumber Mineral
institution Universiti Sains Malaysia
collection USM Institutional Repository
language English
topic TN1-997 Mining engineering
Metallurgy
spellingShingle TN1-997 Mining engineering
Metallurgy
Chang, Boon Peng
Mechanical And Tribological Properties Of Ultra High Molecular Weight Polyethylene With Zinc Oxide Antibacterial Agent For Joint Implant
description Total joint replacement (TJR) is a highly successful treatment for end-stage joint disease like osteoarthritis. A prominent number of TJR devices used in orthopaedic involve articulation between a metallic alloy and ultra-high molecular weight polyethylene (UHMWPE). Penggantian sendi keseluruhan (TJR) adalah rawatan yang berjaya untuk peringkat akhir penyakit sendi seperti osteoartritis. Kebanyakan peranti TJR digunakan dalam ortopedik melibatkan artikulasi antara aloi logam dan polietilena berberat molekul sangat tinggi (UHMWPE).
format Thesis
qualification_name Doctor of Philosophy (PhD.)
qualification_level Doctorate
author Chang, Boon Peng
author_facet Chang, Boon Peng
author_sort Chang, Boon Peng
title Mechanical And Tribological Properties Of Ultra High Molecular Weight Polyethylene With Zinc Oxide Antibacterial Agent For Joint Implant
title_short Mechanical And Tribological Properties Of Ultra High Molecular Weight Polyethylene With Zinc Oxide Antibacterial Agent For Joint Implant
title_full Mechanical And Tribological Properties Of Ultra High Molecular Weight Polyethylene With Zinc Oxide Antibacterial Agent For Joint Implant
title_fullStr Mechanical And Tribological Properties Of Ultra High Molecular Weight Polyethylene With Zinc Oxide Antibacterial Agent For Joint Implant
title_full_unstemmed Mechanical And Tribological Properties Of Ultra High Molecular Weight Polyethylene With Zinc Oxide Antibacterial Agent For Joint Implant
title_sort mechanical and tribological properties of ultra high molecular weight polyethylene with zinc oxide antibacterial agent for joint implant
granting_institution Universiti Sains Malaysia
granting_department Pusat Pengajian Kejuruteraan Bahan & Sumber Mineral
publishDate 2014
url http://eprints.usm.my/29035/1/Mechanical_and_Tribological_Prop_of_UHMWPE_With_ZnO_Antibacterial_Agent_for_Joint_Implant.pdf
_version_ 1747820066740633600