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首页> 外文期刊>International Journal of Fatigue >Short fatigue crack growth under nonproportional multiaxial elastic-plastic strains
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Short fatigue crack growth under nonproportional multiaxial elastic-plastic strains

机译:非比例多轴弹塑性应变下的短时疲劳裂纹扩展

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摘要

A short crack growth model is presented for calculating fatigue lives to technical crack initiation in materials and structures under nonproportional multiaxial loading. The model is based on an integration of the crack growth equation expressed in terms of the effective range of the cyclic J-integral. Crack closure, elastic-plastic deformation behaviour including cyclic and nonproportional hardening is considered explicitly. The deformation behaviour of the material is described using a newly developed plasticity model. The influence of microstracture and stage I crack growth is mirrored in the starter crack length. Crack coalescence and inhomogeneous strain fields are neglected as well as environmental influences on crack growth. A satisfying accuracy of calculated fatigue lives is achieved. This is verified by experiments on three materials under a variety of multiaxial nonproportional loading sequences. The correlation between the perception as stated in the model and real damage evolution is shown on calculated and experimentally determined short crack growth curves, initiation angles and strain life curves.
机译:提出了一种短裂纹扩展模型,用于计算非比例多轴载荷下材料和结构中技术裂纹萌生的疲劳寿命。该模型基于以循环J积分的有效范围表示的裂纹扩展方程的积分。明确考虑了裂纹闭合,弹塑性变形行为,包括循环和非比例硬化。使用新开发的可塑性模型描述了材料的变形行为。微观结构和第一阶段裂纹扩展的影响反映在起始裂纹长度上。忽略了裂纹的聚结和不均匀的应变场以及环境对裂纹扩展的影响。计算出的疲劳寿命达到了令人满意的精度。通过在多种多轴非比例加载序列下对三种材料进行的实验验证了这一点。在模型中陈述的感知与实际损伤演变之间的相关性在计算和实验确定的短裂纹扩展曲线,起始角度和应变寿命曲线上显示。

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