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Fatigue analysis of materials and structures using a continuum damage model

机译:使用连续损伤模型对材料和结构进行疲劳分析

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The scatter in the fatigue life of the metallic structures seems to be mainly caused by internal defects of the material (porosity, inclusions as oxide films and carbon layers, grain boundaries, etc.). As discontinuities in geometry, defects cause stress concentration and are therefore prone to fatigue crack initiation. Here, a fatigue model based in continuum mechanic with its general expressions for the elasto-plastic-damage constitutive equations, previously developed by the authors, is extended to include the effects of material internal defects. In this stress lift approach the material is considered to be non-homogenous. The material strength is randomly assigned and Stress-No. of cycles curves are scaled down according to material strength of each point. Limit values for material strength are based on experimental tests of samples with different degree of porosity.
机译:金属结构疲劳寿命的散布似乎主要是由于材料的内部缺陷(孔隙,氧化物膜和碳层的夹杂物,晶界等)引起的。由于几何形状的不连续,缺陷会导致应力集中,因此容易产生疲劳裂纹。在此,作者先前开发的基于连续力学的疲劳模型及其弹塑性损伤本构方程的一般表达式被扩展为包括材料内部缺陷的影响。在这种应力消除方法中,材料被认为是不均匀的。随机分配材料强度和应力编号。循环的曲线根据每个点的材料强度按比例缩小。材料强度的极限值基于具有不同孔隙度的样品的实验测试。

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