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Fatigue Life Prediction of Titanium Alloy For Block Loading Using The Hybrid Approach of Critical Plane and Continuum Damage Mechanics

机译:临界平面和连续体损伤力学混合方法的钛合金块体疲劳寿命预测

摘要

The present study is related to the performance analysis of the newly proposed fatigue estimation model for titanium alloy BT9 against block loading. Lately, research efforts have been concentrated on developing the capability to handle complex multiaxial loading conditions for fatigue estimation. The current study is focused on testing the proposed hybrid approach involving the critical plane and continuum damage mechanics. The calibration of the proposed model is done by determining the model coefficients by using a genetic algorithm. Experimental fatigue lives for titanium alloy BT9 with block loading consisting of axial, torsion and out-of-phase axial–torsion loading segments are considered to analyse the accuracy of the proposed model. The proposed model is validated by using finite element analysis to estimate fatigue life for titanium alloy BT9. Simplifications were assumed to handle the block loads, and axial, torsion and out-ofphase loading conditions were used for calibration. The estimated fatigue life results show good agreement with published results for block loads.
机译:本研究与新提出的钛合金BT9的疲劳估计模型对块载荷的性能分析有关。最近,研究工作集中在开发处理疲劳估计所需的复杂多轴载荷条件的能力上。当前的研究集中在测试所提出的包括临界平面和连续损伤机制的混合方法。通过使用遗传算法确定模型系数来完成所提出模型的校准。为了分析模型的准确性,考虑了BT9钛合金的试验疲劳寿命,其中块载荷包括轴向,扭转和异相轴向-扭转载荷段。通过使用有限元分析估算钛合金BT9的疲劳寿命,验证了该模型的有效性。假定简化来处理块负载,并且使用轴向,扭转和异相负载条件进行校准。估计的疲劳寿命结果与已公布的大块载荷结果吻合良好。

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  • 作者

    M. M. Rahman; Kamal M.;

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  • 年度 2017
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