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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine >Optimization of the stress distribution in ceramic femoral heads by means of finite element methods
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Optimization of the stress distribution in ceramic femoral heads by means of finite element methods

机译:陶瓷股骨头应力分布的有限元优化

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Ceramic ball heads for total hip replacement are highly loaded in vivo and must meet the sternest requirements concerning strength and safety. High stresses inside the ball head originate from the press fit between the conical stem (made of titanium alloy or steel) and the borehole of the ball. The aim of this study was the development of an optimized contour at the fillet inside the ball head by means of numerical methods, in order to reduce local stress concentrations. The computer-aided optimization method was applied on the customary engineering fillet radius to reduce local stress peaks. The local notch stress of the examined ball head design was reduced by up to 27 per cent for the relevant load cases. Verification by rupture testing of prototypes turned out to be difficult for axisymmetric load cases, since the static fracture load is governed by the hoop stresses in the contact area of the taper (global maximum), thus making it difficult to prove a local improvement. The sensitivity of the design to asymmetric loading was clearly shown (varying the load angle and bearing type). Stress relocation in the ball–stem interface at higher burst loads indicated the necessity of optimizing each ceramic femoral head design individually (i.e. for different borehole depths).
机译:用于全髋关节置换的陶瓷球头在体内负荷很高,必须满足有关强度和安全性的最严格要求。球头内部的高应力源自圆锥形阀杆(由钛合金或钢制成)和球孔之间的压配合。这项研究的目的是通过数值方法来开发球头内圆角处的优化轮廓,以减少局部应力集中。将计算机辅助优化方法应用于常规工程圆角半径,以减少局部应力峰值。对于相关的载荷工况,所检查的球头设计的局部缺口应力降低了27%。对于轴对称载荷情况,通过原型的断裂测试进行验证是困难的,因为静态断裂载荷是由锥面接触区域(整体最大值)中的环向应力控制的,因此难以证明局部改善。清楚显示了设计对非对称载荷的敏感性(改变载荷角度和轴承类型)。在较高的爆破载荷下,球-杆界面的应力重新定位表明有必要分别优化每种陶瓷股骨头设计(即针对不同的钻孔深度)。

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