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On the evaluation of strain energy release rate of cement-bone bonded joints under mode II loading
被引:0
|作者:
Campos, T. D.
[1
,2
]
Barbosa, M. L. S.
[3
]
Martins, M.
[4
]
Pereira, F. A. M.
[5
]
de Moura, M. F. S. F.
[3
]
Nguyen, Quyen
[6
]
Zille, A.
[6
]
Dourado, N.
[2
,7
]
机构:
[1] Univ Minho, CMEMS UMINHO, P-4800058 Guimaraes, Portugal
[2] LABBELS Associate Lab, Guimaraes, Guimaraes, Portugal
[3] Univ Porto, Fac Engn, Porto, Portugal
[4] INESC TEC, R Dr Roberto Frias, P-4200465 Porto, Portugal
[5] CITAB UTAD, Dept Engn, P-5001801 Vila Real, Portugal
[6] Univ Minho, Ctr Ciencia & Tecnol Text 2C2T, Braga, Portugal
[7] Univ Minho, CMEMS UMINHO, P-4800058 Guimaraes, Portugal
关键词:
Cement-bone bonded joints;
Fracture characterisation;
Mode II loading;
Cohesive zone modelling;
BOVINE CORTICAL BONE;
FRACTURE-TOUGHNESS;
FAILURE;
D O I:
10.1016/j.tafmec.2023.103793
中图分类号:
TH [机械、仪表工业];
学科分类号:
0802 ;
摘要:
Bone cements based on poly(methylmethacrylate) (PMMA) are primarily used in joint replacement surgeries. In the fixation of joint replacement, the self-curing cement fills constitutes a very important interface. To under-stand and improve the interaction between cortical bone and bone cement it is essential to characterize the mechanical properties of cement-bone bonded joints in full detail. In this study, the end-notched flexure test was used in the context of pure mode II fracture characterisation of cement-bone bonded joints. A data reduction scheme based on crack equivalent concept was employed to overcome the difficulties inherent to crack length monitoring during damage propagation. A finite element method combined with a cohesive zone model was first used to validate numerically the adopted method. The procedure was subsequently applied to experimental results to determine the fracture toughness of cement-bone bonded joints under pure mode II loading. The consistency of the obtained results leads to the conclusion that the adopted procedure is adequate to carry out fracture characterisation of these joints under pure mode II loading. The innovative aspect of the present work lies in the application of cohesive zone modelling approach to PMMA-based cement-bone bonded joints.
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