Study the effect of fluid medium toward synthetic cancellous bone structure
During daily activities, trabecular bone need to bear certain amount of load which also leads to movement of the bone marrow within the structure. The flow of the bone marrow within the trabecular bone structure cause the shear stress which affect the nutrient transport, the properties of the bone a...
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my.utm.627212017-06-05T02:55:30Z http://eprints.utm.my/id/eprint/62721/ Study the effect of fluid medium toward synthetic cancellous bone structure Abdul Rahim, Rabiatul Adibah Mohd. Szali Januddi, Mohd. Al-Fatihhi Syahrom, Ardiyansyah Harun, Muhamad Noor Abdullah, Jaafar Afriwardi, Afriwardi TJ Mechanical engineering and machinery During daily activities, trabecular bone need to bear certain amount of load which also leads to movement of the bone marrow within the structure. The flow of the bone marrow within the trabecular bone structure cause the shear stress which affect the nutrient transport, the properties of the bone and also the bone fatigue life. The aim of this paper is to simulate the trabecular structure using FSI approach in order to study the effect of the fluid flow to the structure. In this study, idealized model with 50% of porosity was used in the simulation and 1mm displacement applied on top of the model. Three different types of analysis were used in order to differentiate between CFD, CSM and FSI results. The results showed significant value between these analyses was concluded that FSI approaches is the best to mimic the real body condition. Trans Tech 2014 Article PeerReviewed Abdul Rahim, Rabiatul Adibah and Mohd. Szali Januddi, Mohd. Al-Fatihhi and Syahrom, Ardiyansyah and Harun, Muhamad Noor and Abdullah, Jaafar and Afriwardi, Afriwardi (2014) Study the effect of fluid medium toward synthetic cancellous bone structure. Advanced Materials Research, 845 . pp. 335-339. ISSN 1022-6680 http://dx.doi.org/10.4028/www.scientific.net/AMR.845.335 DOI:10.4028/www.scientific.net/AMR.845.335 |
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TJ Mechanical engineering and machinery Abdul Rahim, Rabiatul Adibah Mohd. Szali Januddi, Mohd. Al-Fatihhi Syahrom, Ardiyansyah Harun, Muhamad Noor Abdullah, Jaafar Afriwardi, Afriwardi Study the effect of fluid medium toward synthetic cancellous bone structure |
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During daily activities, trabecular bone need to bear certain amount of load which also leads to movement of the bone marrow within the structure. The flow of the bone marrow within the trabecular bone structure cause the shear stress which affect the nutrient transport, the properties of the bone and also the bone fatigue life. The aim of this paper is to simulate the trabecular structure using FSI approach in order to study the effect of the fluid flow to the structure. In this study, idealized model with 50% of porosity was used in the simulation and 1mm displacement applied on top of the model. Three different types of analysis were used in order to differentiate between CFD, CSM and FSI results. The results showed significant value between these analyses was concluded that FSI approaches is the best to mimic the real body condition. |
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Article |
author |
Abdul Rahim, Rabiatul Adibah Mohd. Szali Januddi, Mohd. Al-Fatihhi Syahrom, Ardiyansyah Harun, Muhamad Noor Abdullah, Jaafar Afriwardi, Afriwardi |
author_facet |
Abdul Rahim, Rabiatul Adibah Mohd. Szali Januddi, Mohd. Al-Fatihhi Syahrom, Ardiyansyah Harun, Muhamad Noor Abdullah, Jaafar Afriwardi, Afriwardi |
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Abdul Rahim, Rabiatul Adibah |
title |
Study the effect of fluid medium toward synthetic cancellous bone structure |
title_short |
Study the effect of fluid medium toward synthetic cancellous bone structure |
title_full |
Study the effect of fluid medium toward synthetic cancellous bone structure |
title_fullStr |
Study the effect of fluid medium toward synthetic cancellous bone structure |
title_full_unstemmed |
Study the effect of fluid medium toward synthetic cancellous bone structure |
title_sort |
study the effect of fluid medium toward synthetic cancellous bone structure |
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Trans Tech |
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2014 |
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http://eprints.utm.my/id/eprint/62721/ http://dx.doi.org/10.4028/www.scientific.net/AMR.845.335 |
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