Six hole fracture fixation plates : Comparative mechanical properties study
This paper presents an experimental comparative study between 6 holes implant produced by Metal Injection Moulding (MIM) process with the commercially available plates manufactured via machining process. MIM implant has been compared with four commercially available 6 holes stainless steel implant...
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iium-620492018-02-19T06:23:25Z http://irep.iium.edu.my/62049/ Six hole fracture fixation plates : Comparative mechanical properties study Omar, Mohd Afian Zulkifly, Ahmad Hafiz RD Surgery RD701 Orthopedics This paper presents an experimental comparative study between 6 holes implant produced by Metal Injection Moulding (MIM) process with the commercially available plates manufactured via machining process. MIM implant has been compared with four commercially available 6 holes stainless steel implants. The study data variables are the ultimate tensile strength, hardness, Young’s modulus and elongation. Methods employed in this experiment are Tensile Test using Series IX Automated Material Testing System 8.33.00, Vickers Hardness Equipment and Scanning Electron Microscope. The results showed that the mechanical properties of MIM implant were as good as the commercially available machining implants. The most encouraging result was that the MIM plates had the highest Young’s Modulus and elongation among the specimens. This demonstrates that MIM samples are the least susceptible to implant failure as it can withhold more stress before it fractures. EverScience Publications 2017 Article PeerReviewed application/pdf en http://irep.iium.edu.my/62049/1/Six%20Hole%20Fracture%20Fixation%20Plates%20-%20Comparative%20Mechanical%20Properties%20Study.pdf Omar, Mohd Afian and Zulkifly, Ahmad Hafiz (2017) Six hole fracture fixation plates : Comparative mechanical properties study. International Journal of Emerging Technologies in Engineering Research (IJETER), 5 (10). pp. 173-176. ISSN 2454-6410 http://www.ijeter.everscience.org/Manuscripts/Volume-5/Issue-10/Vol-5-issue-10-M-26.pdf |
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RD Surgery RD701 Orthopedics Omar, Mohd Afian Zulkifly, Ahmad Hafiz Six hole fracture fixation plates : Comparative mechanical properties study |
description |
This paper presents an experimental comparative
study between 6 holes implant produced by Metal Injection
Moulding (MIM) process with the commercially available plates manufactured via machining process. MIM implant has been compared with four commercially available 6 holes stainless steel implants. The study data variables are the ultimate tensile strength, hardness, Young’s modulus and elongation. Methods employed in this experiment are Tensile Test using Series IX Automated Material Testing System 8.33.00, Vickers Hardness
Equipment and Scanning Electron Microscope. The results
showed that the mechanical properties of MIM implant were as good as the commercially available machining implants. The most encouraging result was that the MIM plates had the highest Young’s Modulus and elongation among the specimens. This demonstrates that MIM samples are the least susceptible to implant failure as it can withhold more stress before it fractures. |
format |
Article |
author |
Omar, Mohd Afian Zulkifly, Ahmad Hafiz |
author_facet |
Omar, Mohd Afian Zulkifly, Ahmad Hafiz |
author_sort |
Omar, Mohd Afian |
title |
Six hole fracture fixation plates : Comparative mechanical properties study |
title_short |
Six hole fracture fixation plates : Comparative mechanical properties study |
title_full |
Six hole fracture fixation plates : Comparative mechanical properties study |
title_fullStr |
Six hole fracture fixation plates : Comparative mechanical properties study |
title_full_unstemmed |
Six hole fracture fixation plates : Comparative mechanical properties study |
title_sort |
six hole fracture fixation plates : comparative mechanical properties study |
publisher |
EverScience Publications |
publishDate |
2017 |
url |
http://irep.iium.edu.my/62049/ http://irep.iium.edu.my/62049/ http://irep.iium.edu.my/62049/1/Six%20Hole%20Fracture%20Fixation%20Plates%20-%20Comparative%20Mechanical%20Properties%20Study.pdf |
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2023-09-18T21:27:58Z |
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2023-09-18T21:27:58Z |
_version_ |
1777412319435816960 |