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首页> 外文期刊>International Journal of Fatigue >Microcrack propagation and fatigue lifetime under non-proportional multiaxial cyclic loading
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Microcrack propagation and fatigue lifetime under non-proportional multiaxial cyclic loading

机译:非比例多轴循环载荷下的微裂纹扩展和疲劳寿命

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Non-proportional multiaxial fatigue tests of tubular specimens were performed under purely alternating strain-controlled loading. Different loading paths with different phase shifts were applied. With increasing phase shift at the same equivalent load, the lifetime was found to increase. For lifetime prediction a model based on the Manson-Coffin law was developed. By including the hydrostatic loading part, it was possible to compare the results of the multiaxial fatigue tests with uniaxially ascertained results. To obtain more information about the microcrack behaviour under multiaxial non-proportional loading, sonic emission studies and fracto-graphic analyses were performed. The results suggest a discontinuous microcrack propagation. Motivated by the good agreement between these observations and some microcrack propagation models known from literature, a simplified model was proposed for micro and short crack propagation. This model which is based on the J-integral range DELTA J yields a quite good agreement between the experimentally observed and the calculated lifetimes.
机译:在完全交替的应变控制载荷下,对管状试样进行了非比例多轴疲劳试验。应用了具有不同相移的不同加载路径。在相同的等效负载下,随着相移的增加,寿命会增加。为了进行寿命预测,开发了基于曼森-科芬定律的模型。通过包括静压载荷部分,可以将多轴疲劳试验的结果与单轴确定的结果进行比较。为了获得有关在多轴非比例载荷下微裂纹行为的更多信息,进行了声发射研究和分形分析。结果表明不连续的微裂纹扩展。由于这些观察结果与文献中已知的一些微裂纹扩展模型之间的良好一致性,人们提出了一种用于微裂纹和短裂纹扩展的简化模型。这种基于J积分范围DELTA J的模型在实验观察到的和计算的寿命之间产生了很好的一致性。

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