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首页> 外文期刊>MATEC Web of Conferences >Influence of Material Ductility on Fatigue Life under Multiaxial Proportional and Non-Proportional Normal and Shear Stresses
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Influence of Material Ductility on Fatigue Life under Multiaxial Proportional and Non-Proportional Normal and Shear Stresses

机译:多轴比例和非比例正常和剪切应力下材料延展性对疲劳寿命的影响

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Current experiences show that a non-proportional loading of ductile materials such as wrought steels, wrought aluminium or magnesium alloys, not welded or welded, causes a significant fatigue life reduction under an out-of-phase shear strain or shear stress superimposed on a normal strain or normal stress compared with proportional in-phase loading. However, when ductility, here characterised by tensile elongation, is reduced by a heat treatment or by another manufacturing technology such as casting or sintering, the afore-mentioned life reduction is compensated or even inversed, i. e. longer fatigue life results compared with proportional loading. Some actual results, determined with additive manufactured titanium, suggest that microstructural features such as manufacturing-dependent internal defects like microporosities should be considered in addition to the ductility level. This complex life behaviour under non-proportional loading cannot always be estimated. Therefore, in experimental proofs of multiaxial loaded parts, especially safety-critical components or structures, with real or service-like signals, emphasis must be placed on retaining non-proportionalities between loads and stresses/strains, respectively.
机译:目前的经验表明,塑性材料的非比例载荷如锻钢,锻炼铝或镁合金,不焊接或焊接,在正常的剪切菌株或剪切应力下呈现显着的疲劳寿命。叠加在正常情况下应变或正常应力与比例载荷相比。然而,当这里的延展性通过拉伸伸长率来说,通过热处理或通过铸造或烧结等另一种制造技术来减少,因此,上述寿命还原是补偿甚至反转的,i。 e。与比例装载相比,疲劳寿命较长。用添加剂制造的钛确定的一些实际结果表明,除了延展性水平之外,应考虑诸如制造依赖性内缺陷的微观结构特征。不能始终估计非比例装载下的这种复杂的寿命行为。因此,在多轴加载部件的实验证明中,特别是安全关键组分或结构,具有实际或类似的信号,重点必须分别放置在负载和应力/菌株之间的不成比例。

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