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首页> 外文期刊>Journal of Materials Engineering and Performance >Multiaxial High Cycle Fatigue Criteria Based on Fracture Plane Identification: Applicability to Metallic Materials
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Multiaxial High Cycle Fatigue Criteria Based on Fracture Plane Identification: Applicability to Metallic Materials

机译:基于裂缝平面识别的多轴高循环疲劳标准:对金属材料的适用性

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Two multiaxial high cycle fatigue criteria pertaining to the critical plane-based approach are reviewed. The models were proposed by Carpinteri and Spagnoli (C&S) and Liu and Mahadevan (L&M), and unlike other models based on the same approach, they have the critical plane directly correlated with the fatigue fracture plane. As the aim of this study is mainly to compare their capability to predict fatigue failure, the two models were applied to a number of published experimental fatigue tests, involving synchronous sinusoidal in-phase and out-of-phase bending and torsion. The results indicate that both models possess good predictive capability under fully reversed stresses, with the L&M model being on the average slightly more conservative. Applying, to the same loading conditions, a mesoscopic scale-based approach proposed by Papadopoulos, one can verify that its predictive capability is as good as those corresponding to the C&S and L&M criteria. However, in the presence of superimposed mean stresses, the capability of these two models to predict fatigue behavior is seen to be considerably lower than that detected for Papadopoulos'.
机译:综述了两个多轴高周期疲劳标准,其有关基于临界平面的方法。该模型由Carpinteri和Spagnoli(C&S)和Liu和Mahadevan(L&M)提出,并与基于相同方法的其他模型不同,它们具有与疲劳断裂平面直接相关的关键平面。由于本研究的目的主要是为了使其能力进行比较预测疲劳破坏,因此两种模型应用于许多已发表的实验疲劳试验,涉及同步正弦的同阶段和异相弯曲和扭转。结果表明,两种模型都具有良好的预测能力,在完全反转的应力下,L&M模型在平均水平上略微保守。施加到相同的装载条件,Papadopoulos提出的基于介绍规模的方法,可以验证其预测性能力与对应于C&S和L&M标准的预测性。然而,在存在叠加的平均应力的情况下,这两种模型的能力被认为是观察到Papadopoulos的疲劳行为的能力相当低。

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