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首页> 外文期刊>Fatigue & fracture of engineering materials and structures >Interior failure mechanism and life prediction of surface-treated 17Cr-Ni steel under high and very high cycle fatigue
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Interior failure mechanism and life prediction of surface-treated 17Cr-Ni steel under high and very high cycle fatigue

机译:表面处理的17Cr-Ni钢在高和非常高的循环疲劳下的内部破坏机理和寿命预测

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摘要

The understanding of very high cycle fatigue (VHCF) mechanisms is critical to the development of life prediction approach. For this purpose, high cycle fatigue (HCF) and VHCF properties of a surface-treated 17Cr-Ni steel were investigated under axial loading with stress ratio of 0. This steel exhibits the constantly decreasing S-N characteristics associated with the inclusion-fisheye induced failure under the HCF and the inclusion-FGA (fine granular area)-fisheye induced failure under the VHCF. The cyclic pressing plays an important role in the FGA formation process, but the FGA still can be observed for the stress ratio of zero due to the slight crack closure effect. Two life modelling approaches associated with related failure mechanisms in the HCF and VHCF regimes are proposed based on the agreement between experimental and predicted results.
机译:对超高周疲劳(VHCF)机制的理解对于寿命预测方法的发展至关重要。为此,研究了在轴向应力为0的轴向载荷下表面处理的17Cr-Ni钢的高循环疲劳(HCF)和VHCF特性。这种钢表现出与内含物-鱼眼引起的破坏相关的SN特性不断降低。在HCFC下,HCF和夹杂物-FGA(细颗粒区域)-鱼眼引起的失效。循环压制在FGA的形成过程中起着重要的作用,但是由于轻微的裂纹闭合作用,FGA的应力比仍为零。基于实验结果和预测结果之间的一致性,提出了两种与HCF和VHCF方案中的相关失效机制相关的寿命建模方法。

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