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CEMENT-IMPLANT INTERFACE FRACTURE FAILURE BY CRACK INITIATION DUE TO INTERFACE CAVITY STRESS CONCENTRATION
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نویسنده
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Haghpanahi M. ,Ghomashchi H.
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منبع
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international journal of industrial engineering and production research - 2008 - دوره : 19 - شماره : 5-1 - صفحه:173 -186
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چکیده
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Nowadays total joint replacements are widely used in the world, so in average 800,000 joint surgeries are done yearly only in europe and north america. however implant loosening is and remains as the major issue of all implant failures and therefore causes revision surgery procedures. studies and experiments have identified poor fixation ofimplants most likely is the main cause oflong term implant failure and in this case the cement-implant interface cavities are very effective due to resultant stress concentration. in this study the theory of this problem, continuum and mathematical equations f or an inhomogeneous material by using eshelby 's equivalent inclusion method with a spherical void as a special type of inhomogenities is addressed and a new y ield criterion with respect to the void's volume fra ction is derived and changes in material elasticity tensor concerning mori-tanaka 's theorem also determined. then by using finite element method and remeshing technique a macro scale cement-implant interface cavity is modeled and concerning the loss ofstrength due to void existence and the interface stress concentration, the crack initiation and propagation phenomenon is numerically investigated with respect to different orthopedic cement material properties. the results show that crack propagates at the interface at constant stress and strain by elastoplastic material and it propagates in cement bulk by considering elastic material properties for cement that both could cause implant loosening even in very small void 's volume fractions in which there are no significant changes in cement yield stress and elasticity tensor according to analytical solution. but numerical simulation shows that when a homogenous cement structure is achieved via high vacuum mixing method, there is a uniform stress distribution in the cement structure and no stress concentration zone forms even at high stress levels and also there is no appropriate local site for crack initiation.
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کلیدواژه
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mechanical loosening ,implant ,porous material ,fracture ,crack propagation ,finite element
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آدرس
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iran university of science and technology, Faculty of Mechanical Engineering, Department of Biomechanics, ایران, islamic azad university, Faculty of Mechanical Engineering, Biomechanics Division, ایران
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Authors
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