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Fatigue Life and Reliability Analysis of a Parallel Hip Joint Simulator

机译:平行髋关节模拟器的疲劳寿命与可靠性分析

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摘要

Aiming at 3SPS+1PS parallel hip joint simulator, the maximum stress of branched chains under the suggested trajectory is obtained by elastodynamic analysis. Based on Corten-Dolan fatigue damage theory and Rain-flow counting method, the dynamic stress of each branched chain is statistically analyzed. The fatigue life prediction shows that branched-chain A(2)P(2)C(2) is the weakest component for the simulator. Finally, the fatigue reliability is analyzed and the fatigue life and reliability under different structural parameters are discussed. The study shows that the fatigue life of each branched chain can be increased or balanced by increasing structural parameters or exchanging initial motion parameters.
机译:瞄准3SPS + 1PS并联髋关节模拟器,通过弹性动力学分析获得所提出的轨迹下的支链的最大应力。 基于Corten-Dolan疲劳损伤理论和雨流量计数方法,在统计上分析了每个分支链的动态应力。 疲劳寿命预测表明,支链A(2)P(2)C(2)是模拟器的最弱部件。 最后,讨论了分析疲劳可靠性,并讨论了不同结构参数下的疲劳寿命和可靠性。 该研究表明,通过增加结构参数或交换初始运动参数,可以增加或平衡每个分支链的疲劳寿命。

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