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LOW CYCLE FATIGUE CRACK INITIATION OF ROTATING STRUCTURES UNDER BIAXIAL STRESS STATES

机译:双轴应力状态下旋转结构的低周疲劳裂纹萌生

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Rotating structures can experience biaxial stress states with a wide range of biaxiality ratios on structure surfaces. Low cycle fatigue (LCF) crack initiation in such conditions demonstrates different fatigue characteristics in terms of crack orientation, fatigue life, etc. The biaxial stress states can be categorized into two types: in-phase and out-of-phase under which fatigue characteristics can be significantly different according to rig test results.This paper presents an investigation of LCF crack initiation under in-phase and out-of-phase biaxial stress states based on rig test results of a nickel alloy. The crack orientations are reviewed and discussed at different stress states. Relations of biaxial LCF life debit factor vs biaxiality ratio are derived (the debit factor is defined as a ratio of the LCF life at a biaxial stress state to the LCF life at corresponding uniaxial stress state which has same cyclic and mean stresses as the primary cyclic and mean stressees of the biaxial stress state).The rig test results showed that the crack orientation is usually normal to the primary stress vector under in-phase biaxial stress states but is inclined to the primary stress vector under out-of-phase stress states. As per the derived biaxial LCF life debit factors, the LCF life was found to be slightly reduced with increasing biaxiality ratios under in-phase biaxial stress states but significantly reduced under out-of-phase biaxial stress states compared with corresponding uniaxial primary stress states.The equivalent cyclic stress fatigue criterion is also employed to theoretically model the biaxial LCF life debit factor under in-phase biaxial stress states. The hydrostatic cyclic stress is included in the equivalent cyclic stress in order to take into account the hydrostatic cyclic pressure effects. The equivalent cyclic stress in the criterion can physically reflect the materials' ductility reduction under in-phase multiaxial stress states.
机译:旋转结构在结构表面上会经历双轴应力状态,并且具有大范围的双轴比。在这种条件下的低周疲劳(LCF)裂纹萌生在裂纹取向,疲劳寿命等方面表现出不同的疲劳特性。双轴应力状态可分为两种类型:同相和异相,这两种类型的疲劳特性根据钻机测试结果可能会明显不同。 本文基于镍合金的试验结果,研究了在同相和异相双轴应力状态下LCF裂纹的萌生。审查和讨论了在不同应力状态下的裂纹取向。推导了双轴LCF寿命借贷因子与双轴比的关系(借记因子定义为双轴应力状态下的LCF寿命与相应单轴应力状态下的LCF寿命的比值与主循环具有相同的循环应力和平均应力以及双轴应力状态的平均应力)。 台架试验结果表明,在同相双轴应力状态下,裂纹取向通常垂直于主应力矢量,而在异相应力状态下,裂纹取向倾向于主应力矢量。根据导出的双轴LCF寿命借项因子,与相应的单轴主应力状态相比,在同相双轴应力状态下,随着双轴比的增加,LCF寿命会略有降低,但在异相双轴应力状态下,LCF寿命会显着降低。 在等效双轴应力状态下,等效循环应力疲劳准则也可用于理论上模拟双轴LCF寿命扣减因子。为了将静水循环压力效应考虑在内,静水循环应力包括在等效循环应力中。准则中的等效循环应力可以物理反映材料在同相多轴应力状态下的延性降低。

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