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Modelling evaluation of the testing condition influence on the maximum stress induced in a hip prosthesis during ISO 7206 fatigue testing.

机译:在ISO 7206疲劳测试期间,测试条件的模型评估对髋关节假体产生的最大应力的影响。

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摘要

In vivo fatigue failure of hip prosthesis stems has been extensively reported in literature. The ISO 7206 international standard has been developed to assess the fatigue reliability of hip prostheses. It describes the fatigue testing apparatus and procedure and it is currently adopted by several testing laboratories throughout the world. In this work we evaluate the maximum stress in a titanium alloy commercial stem in different testing conditions, ranging within the standard specification, using the finite element method applied to a 3D model of the stem. The calculated maximum von Mises stress ranges from +4.5 to -1.5% (for different cement constraint levels) and from +6.7 to -6.8% (for different stem angular orientations) with respect to that calculated at the nominal testing conditions. The results suggest that the ISO 7206 testing specification will give experimental data of reasonable accuracy, with probably no more scatter than that found in typical specimen test results. This is particularly important in the case of components manufactured from materials showing a fatigue resistance highly sensitive to stress variations, such as the Ti6A14V alloy, for which a small increase of the maximum applied stress corresponds to a significant decrease of the statistical fatigue life.
机译:髋关节假体茎的体内疲劳衰竭已在文献中广泛报道。已开发出ISO 7206国际标准以评估髋关节假体的疲劳可靠性。它描述了疲劳测试设备和程序,目前已被世界各地的多个测试实验室采用。在这项工作中,我们使用应用于杆的3D模型的有限元方法,在标准规格范围内的不同测试条件下评估钛合金商业杆的最大应力。相对于标称测试条件下计算出的最大冯·米塞斯应力,其范围为+4.5至-1.5%(对于不同的水泥约束水平)和+6.7至-6.8%(对于不同的杆角取向)。结果表明,ISO 7206测试规范将提供合理准确度的实验数据,其散布可能不会比典型样品测试结果中发现的散布更多。对于由具有对应力变化高度敏感的耐疲劳性的材料制成的组件(例如Ti6A14V合金),这尤其重要,最大施加应力的小幅增加对应于统计疲劳寿命的显着降低。

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