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Fatigue Life Prediction of Biomedical Titanium Alloys under Tensile/Torsionai Stress

机译:拉伸/扭转应力下生物医学钛合金的疲劳寿命预测

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摘要

In order to contribute for designing the implant devices with appropriate mechanical properties, fatigue properties of biomedical Ti-6Al-7Nb alloy, were evaluated through the tensile/torsional fatigue test. Fatigue properties for the tensile/torsional fatigue, the tensile fatigue, and the torsional fatigue were compared directly using equivalent stress defined by von Mises' yield condition. In the S-N plots, there were two regions showing different gradients in data and they are corresponded to the boundary of the low cycle fatigue and the high cycle fatigue. By the approximation with Basquin relation of the S-N data, elastic strain, sigma_a, and elastic shear strain, tau_a, showed good linearity to the fatigue life. Fatigue coefficients and fatigue exponents of Basquin relation obtained by the least square method might be useful to examine fatigue life of these alloys under tensile stress, torsional stress and tensile/torsional stress.
机译:为了有助于设计具有适当机械性能的植入装置,通过拉伸/扭转疲劳测试对生物医学Ti-6Al-7Nb合金的疲劳性能进行了评估。使用冯·米塞斯屈服条件定义的等效应力直接比较了拉伸/扭转疲劳,拉伸疲劳和扭转疲劳的疲劳特性。在S-N图中,有两个区域显示了不同的数据梯度,它们分别对应于低周疲劳和高周疲劳的边界。通过与S-N数据的Basquin关系近似,弹性应变sigma_a和弹性剪切应变tau_a对疲劳寿命显示出良好的线性。用最小二乘法求出的Basquin关系的疲劳系数和疲劳指数可能对检验这些合金在拉伸应力,扭转应力和拉伸/扭转应力下的疲劳寿命有用。

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