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The effect of cyclic loading on the creep fatigue life and creep strength of a DS superalloy: Damage mechanism and life modeling

机译:循环载荷对DS高温合金蠕变疲劳寿命和蠕变强度的影响:损伤机理和寿命建模

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摘要

In this paper, the creep-fatigue behavior of directionally solidified superalloy DZ125 has been investigated by stress-controlled experiments at high temperatures with different dwell times. The endurance life(i.e Cumulated dwell time) has shown consistent changing trend with different load conditions. Crack growth form and creep-fatigue interaction are analyzed on the basis of microscope observation results. A new continuum damage mechanics(CDM) model is proposed and the damage behavior of DZ125 under different dwell times is systematically analyzed by this new model. Secondly, a life prediction model of high precision with fully coverage of dwell time and hold stress is proposed based on material's endurance strength decline and classical Larson-Miller life prediction method. Finally, the ultimate value of endurance strength decline of the superalloy affected by cyclic loads is determined for engineering application purpose.
机译:本文通过在不同停留时间的高温下进行应力控制实验研究了定向凝固高温合金DZ125的蠕变疲劳行为。耐久性寿命(即累积的停留时间)在不同的负载条件下显示出一致的变化趋势。在显微镜观察结果的基础上,分析了裂纹扩展形式和蠕变疲劳相互作用。提出了一种新的连续损伤力学模型,并对DZ125在不同停留时间下的损伤行为进行了系统的分析。其次,基于材料的耐力强度下降和经典的Larson-Miller寿命预测方法,提出了一种能够充分覆盖停留时间和保持应力的高精度寿命预测模型。最后,确定了承受循环载荷影响的高温合金的耐久性强度下降的极限值,以用于工程应用。

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