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Fatigue Testing and Evaluation of Fatigue Strength under Multiaxial Stress State; Why do we need fatigue testing?

机译:多轴应力状态下的疲劳试验和疲劳强度评估;为什么我们需要疲劳测试?

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Types of multiaxial fatigue tests and their experimental results are presented in this paper. There are typical three types in multiaxial fatigue tests: the combining push-pull and reversed torsion loading test using hollow cylinder specimen, the biaxial tension-compression test using cruciform specimen and the inner pressure applied the push-pull loading test using the hollow cylinder specimen. In the combining a push-pull loading and a reversed torsion loading test, failure life under non-proportional loading in which principal directions of stress and strain were changed in a cycle was shortened compared to proportional loading in which those are fixed. Fatigue lives were well-correlated using a non-proportional strain range considering the effect of strain path and material dependence. In the biaxial tension-compression test, the failure life decreased with increase of the principal strain ratio. In the inner pressure applied the push-pull loading test, cyclic deformation behaviour due to complex loading paths of multiaxial fatigue tests with the inner pressure associated with push-pull and rev. torsion acted to reduce the failure lives. Experimental investigation of multiaxial failure life and elucidation of their governing mechanism is essential and it can broaden the applicability of structural components.
机译:本文介绍了多轴疲劳试验的类型及其实验结果。在多轴疲劳试验中,通常有三种类型:使用空心圆柱体试样进行推拉和反向扭转载荷试验相结合,使用十字形试样进行双轴拉伸-压缩试验以及使用空心圆柱体试样进行推拉载荷试验时的内部压力。与推力载荷和反向扭转载荷试验相结合,与固定比例载荷的比例载荷相比,缩短了非比例载荷的失效寿命,在非比例载荷下,应力和应变的主要方向在一个周期中发生了变化。考虑到应变路径和材料依赖性的影响,使用非比例应变范围可以使疲劳寿命具有良好的相关性。在双轴拉伸压缩试验中,失效寿命随着主应变比的增加而降低。在施加推拉载荷试验的内部压力中,由于多轴疲劳试验的载荷路径复杂而导致的循环变形行为,其中内部压力与推拉和转速相关。扭转作用缩短了失效寿命。对多轴失效寿命进行实验研究并阐明其控制机理至关重要,它可以扩大结构部件的适用性。

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