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Damage Rate is a Predictor of Fatigue Life and Creep Strain Rate in Tensile Fatigue of Human Cortical Bone Samples

机译:损伤率是人类皮质骨样品拉伸疲劳中疲劳寿命和蠕变应变率的预测指标

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摘要

We present results on the growth of damage in 29 fatigue tests of human femoral cortical bone from four individuals, aged 53-79. In these tests we examine the interdependency of stress, cycles to failure, rate of creep strain, and rate of modulus loss. The behavior of creep rates has been reported recently for the same donors as an effect of stress and cycles (Cotton, J. R., Zioupos, P., Winwood, K., and Taylor, M., 2003, "Analysis of Creep Strain During Tensile Fatigue of Cortical Bone," J. Biomech. 36, pp. 943-949). In the present paper we first examine how the evolution of damage (drop in modulus per cycle) is associated with the stress level or the "normalized stress" level (stress divided by specimen modulus), and results show the rate of modulus loss fits better as a function of normalized stress. However, we find here that even better correlations can be established between either the cycles to failure or creep rates versus rates of damage than any of these three measures versus normalized stress. The data indicate that damage rates can be excellent predictors of fatigue life and creep strain rates in tensile fatigue of human cortical bone for use in practical problems and computer simulations.
机译:我们在来自29位年龄在53-79岁的四个人的股骨皮质骨疲劳测试中,显示损伤增长的结果。在这些测试中,我们检查了应力,失效循环,蠕变应变率和模量损失率的相互依赖性。最近,对于相同的供体,由于应力和周期的影响,蠕变速率的行为已有报道(Cotton,JR,Zioupos,P.,Winwood,K.和Taylor,M.,2003,“拉伸过程中蠕变应变的分析”)。皮质骨的疲劳”,J.Biomech.36,第943-949页。在本文中,我们首先检查损伤的演变(每个周期的模量下降)与应力水平或“归一化应力”水平(应力除以试样模量)如何相关,结果表明模量损失的发生率更合适归一化应力的函数。但是,我们发现,在失效或蠕变率与损坏率之间的循环之间,甚至可以建立比这三个量度与归一化应力之间更好的相关性。数据表明,对于实际问题和计算机模拟,损伤率可以很好地预测人的皮质骨的拉伸疲劳寿命和蠕变应变率。

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