首页> 外文期刊>Journal of Biomimetics, Biomaterials, and Tissue Engineering >Finite Element Modelling of Rheological Property of Curing PMMA Bone Cement. PartiEffect of Prosthesis Insertion Velocity
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Finite Element Modelling of Rheological Property of Curing PMMA Bone Cement. PartiEffect of Prosthesis Insertion Velocity

机译:固化PMMA骨水泥流变特性的有限元建模。假体插入速度的分部效应

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摘要

PMMA (Polymethyl methacrylate) bone cement is currently the only material used for anchoring cemented arthroplasties to contiguous bones. The aim of this work is to model the flow of bone cement through porous cancellous bone to study the degree of penetration in total hip replacement using FIDAP simulation software. Two different viscosity models have been used (a) power law with constant consistency index and power law index less than 1 for pseudoplastic behaviour of Simplex P~R and Zirnmer bone cement; (b) FORTRAN subroutine for time dependent rheopectic behaviour of CMW3 and Zimmer bone cement. For each type of bone cement the effect of prosthesis insertion velocity have been investigated under four different values 5, 10, 15 and 20 mm/s. It hasbeen observed that the depth of penetration increases with increasing prosthesis insertion velocity. On the other hand, the maximum pressure in bone cement decreases with increasing prosthesis insertion velocity. It has been observed that there is morepenetration through cancellous bone for pseudoplastic behaviour than rheopectic behaviour of bone cement.
机译:目前,PMMA(聚甲基丙烯酸甲酯)骨水泥是用于将骨水泥成形术锚固到邻近骨骼的唯一材料。这项工作的目的是对通过多孔松质骨的骨水泥流进行建模,以使用FIDAP模拟软件研究全髋关节置换术中的穿透程度。已经使用了两种不同的粘度模型:(a)常数一致性指数和幂律指数小于1的幂律,用于Simplex P〜R和Zirnmer骨水泥的假塑性行为; (b)CMW3和Zimmer骨水泥的时间依赖性流变行为的FORTRAN子程序。对于每种类型的骨水泥,已经在5、10、15和20 mm / s的四个不同值下研究了假体插入速度的影响。已经观察到,穿透深度随着假体插入速度的增加而增加。另一方面,骨水泥中的最大压力随着假体插入速度的增加而降低。已经观察到,通过假骨行为比通过骨水泥的流变行为更多地穿过松质骨。

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