Mechanical properties of additive manufactured CoCrMo meta-biomaterials for load bearing implants
As compared to human bone properties leads to bone or implant fracture. This study proposes two unique 3-dimensional (3D) meta-biomaterials unit cells which simultaneously attenuate stiffness and stimulate osseointegration. The unit cell of the proposed 3D design is composed of connecting struts mak...
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Malaysian Tribology Society (MYTRIBOS)
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ump-266182019-12-16T06:38:37Z http://umpir.ump.edu.my/id/eprint/26618/ Mechanical properties of additive manufactured CoCrMo meta-biomaterials for load bearing implants Siti Rohaida, Mohamed Saiful Anwar, Che Ghani Sawangsri, Worapong T Technology (General) As compared to human bone properties leads to bone or implant fracture. This study proposes two unique 3-dimensional (3D) meta-biomaterials unit cells which simultaneously attenuate stiffness and stimulate osseointegration. The unit cell of the proposed 3D design is composed of connecting struts making internal structures in the shape of square and diamond. The results under compression suggest all CoCrMo designs exhibit elastic modulus and compression strength that are comparable to the bone. It is demonstrated that the meta-biomaterials can be fabricated using additive manufacturing techniques and their mechanical performance can be tailored by modifying the internal architectures. Malaysian Tribology Society (MYTRIBOS) 2019 Article PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/26618/1/siti%20rohaida%20Siti%20Rohaida%202019.pdf Siti Rohaida, Mohamed and Saiful Anwar, Che Ghani and Sawangsri, Worapong (2019) Mechanical properties of additive manufactured CoCrMo meta-biomaterials for load bearing implants. Jurnal Tribologi, 21. pp. 93-107. ISSN 2289-7232 http://jurnaltribologi.mytribos.org |
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English |
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T Technology (General) |
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T Technology (General) Siti Rohaida, Mohamed Saiful Anwar, Che Ghani Sawangsri, Worapong Mechanical properties of additive manufactured CoCrMo meta-biomaterials for load bearing implants |
description |
As compared to human bone properties leads to bone or implant fracture. This study proposes two unique 3-dimensional (3D) meta-biomaterials unit cells which simultaneously attenuate stiffness and stimulate osseointegration. The unit cell of the proposed 3D design is composed of connecting struts making internal structures in the shape of square and diamond. The results under compression suggest all CoCrMo designs exhibit elastic modulus and compression strength that are comparable to the bone. It is demonstrated that the meta-biomaterials can be fabricated using additive manufacturing techniques and their mechanical performance can be tailored by modifying the internal architectures. |
format |
Article |
author |
Siti Rohaida, Mohamed Saiful Anwar, Che Ghani Sawangsri, Worapong |
author_facet |
Siti Rohaida, Mohamed Saiful Anwar, Che Ghani Sawangsri, Worapong |
author_sort |
Siti Rohaida, Mohamed |
title |
Mechanical properties of additive manufactured CoCrMo meta-biomaterials for load bearing implants |
title_short |
Mechanical properties of additive manufactured CoCrMo meta-biomaterials for load bearing implants |
title_full |
Mechanical properties of additive manufactured CoCrMo meta-biomaterials for load bearing implants |
title_fullStr |
Mechanical properties of additive manufactured CoCrMo meta-biomaterials for load bearing implants |
title_full_unstemmed |
Mechanical properties of additive manufactured CoCrMo meta-biomaterials for load bearing implants |
title_sort |
mechanical properties of additive manufactured cocrmo meta-biomaterials for load bearing implants |
publisher |
Malaysian Tribology Society (MYTRIBOS) |
publishDate |
2019 |
url |
http://umpir.ump.edu.my/id/eprint/26618/ http://umpir.ump.edu.my/id/eprint/26618/ http://umpir.ump.edu.my/id/eprint/26618/1/siti%20rohaida%20Siti%20Rohaida%202019.pdf |
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2023-09-18T22:41:33Z |
last_indexed |
2023-09-18T22:41:33Z |
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1777416948372471808 |