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An energy-based model to assess multiaxial fatigue damage under tension-torsion and tension-tension loadings

机译:基于能量的模型,以评估张力扭转张力张力下的多轴疲劳损伤

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摘要

A new energy-based fatigue life prediction model is proposed for arbitrary multiaxial constant loadings in this paper. First, a brief review for existing multiaxial fatigue models is given, especially focusing on energy-based models. It is observed that most multiaxial model formulation and validation are suitable for axial-torsional loadings, but may not be appropriate for biaxial tension-tension loading. One possible reason is the ignorance of hydrostatic stress-state difference under these two types of loadings. In view of this, a new model is proposed by including fatigue damage contributions of equivalent tensile energy, torsional energy, and hydrostatic energy. Next, a loading transformation is proposed to transfer a complicated three-dimensional loading to an effective loading for life prediction. Detailed discussion of different types of multiaxial loading and its relationship with the ratio of distortional energy and dilatational energy is given. The hysteresis energy can be calculated integrating the proposed model with the Garud cyclic plastic model, which is directly linked to the damage accumulation and fatigue life prediction. The proposed model is validated with extensive experimental data under both tension-torsion loadings and biaxial tension-tension loadings from open literature. Comparison with several widely used multiaxial model is also given to show the model performance with respect to different biaxial tension-tension loadings. Finally, concluding remarks and future work based on the investigated materials are discussed.
机译:本文提出了一种新的能量基疲劳寿命预测模型,提出了任意多轴恒定载荷。首先,给出了对现有的多轴疲劳模型的简要审查,特别是关注基于能量的模型。观察到,大多数多轴模型配方和验证适用于轴向扭转载荷,但可能不适合双轴张力张力载荷。一种可能的原因是在这两种载荷下无知的静水应力 - 状态差异。鉴于此,通过包括等效拉伸能量,扭转能量和静水能量的疲劳损伤贡献提出了一种新模型。接下来,提出加载变换以将复杂的三维负载转移到有效负载终身预测。给出了对不同类型的多轴载荷及其与扭曲能量和扩张能量的关系的详细讨论。可以计算滞后能量与Garud循环塑料模型相结合,与损伤积累和疲劳寿命预测直接相关。在开放文献的张紧扭转载荷和双轴张力张力载荷下,通过广泛的实验数据验证了所提出的模型。还考虑了与几种广泛使用的多轴模型的比较,以表明相对于不同的双轴张力张力负载的模型性能。最后,讨论了基于调查材料的结论性和未来的工作。

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