Published 2010 | Version v1
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The influence of orientation and practical size on the interface fracture of a bone-nano composite cement

  • 1. Department of Engineering and Physics, University of Central Oklahoma (United States)

Description

Clinical follow-up studies in cemented total hip arthroplasties found that femoral prosthesis loosening is caused by the fracture of the bone-cement interfaces. The research objectives were to determine whether orientation of the bone has any influence on the interface fracture strength, and to determine whether inclusion of micro/nano sizes MgO particles on Cobalt HV bone cement has any influence on the interface fracture strength. Flexural tests were conducted on five groups of specimens to find Young Modulus and bending strength: (1) longitudinal bone, (2) transverse bone, (3) pure cement particles, (4) cement with 36 im and 27 nm MgO particles, and (5) cement with 27nm MgO particles. Also, fracture tests were conducted on six groups of bone-cement specimen to find interface fracture toughness: (1) longitudinal bone-cement without MgO particles, (2) transverse bone-cement without MgO particles, (3) longitudinal bone-cement with 36 im MgO particles, (4) transverse bone-cement with 36 im MgO particles, (5) , longitudinal bone-cement with 27 nm MgO particles, and (6) transverse bone-cement with 27 nm MgO particles. Transverse bone specimen was 14% stiffer than longitudinal specimen, while bending strength and fracture toughness of longitudinal specimen was 29% and 2.6 times lower than the transverse specimen, respectively. Reduction of Young's modulus (7.3%), bending strength (27%) and fracture toughness (16%) was observed by the inclusion of microsize MgO particles, and a reduction of the Young's Modulus (19%), bending strength (21%),and fracture toughness (19%) for nanosize MgO particles. The interface toughness of the transverse bone infused with 27nm MgO was about 6 times higher than transverse bone infused with 36 im particles of MgO. Preliminary studies show that orientation of the bone has significant influence on the interface fracture. MgO particles size have a significant effect on the strength of the bone - cement interface.(Author)

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Part of:
Proceedings of the second conference on medical physics and biomedical engineering of R. Macedonia

Additional details

Publishing Information

Publisher
Association for Medical Physics and Biomedical Engineering of R. Macedonia
Imprint Place
Skopje (Macedonia, The Former Yugoslav Republic of)
ISBN
978-608-65213-0-1
Imprint Title
Proceedings of the second conference on medical physics and biomedical engineering of R. Macedonia
Imprint Pagination
[111 p.]
Journal Page Range
p. 97-103
Report number
INIS-MK--12002

Conference

Title
2. Conference on medical physics and biomedical engineering
Dates
5-6 Nov 2010
Place
Skopje (Macedonia, The Former Yugoslav Republic of)

INIS

Country of Publication
North Macedonia, Republic of
Country of Input or Organization
North Macedonia, Republic of
INIS RN
43026169
Subject category
S36: MATERIALS SCIENCE;
Resource subtype / Literary indicator
Conference
Descriptors DEI
BENDING; BONE FRACTURES; CEMENTING; COBALT; COMPOSITE MATERIALS; LIMBS; MAGNESIUM OXIDES; NANOSTRUCTURES; ORIENTATION; PROSTHESES; YOUNG MODULUS
Descriptors DEC
ALKALINE EARTH METAL COMPOUNDS; BODY; CHALCOGENIDES; DEFORMATION; DISEASES; ELEMENTS; INJURIES; MAGNESIUM COMPOUNDS; MATERIALS; MECHANICAL PROPERTIES; MEDICAL SUPPLIES; METALS; OXIDES; OXYGEN COMPOUNDS; TRANSITION ELEMENTS

Optional Information

Notes
9 refs., 10 figs.