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Stress-strain curves of metallic materials and post-necking strain hardening characterization: A review

机译:金属材料的应力-应变曲线和颈缩后的应变硬化表征

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For metallic materials, standard uniaxial tensile tests with round bar specimens or flat specimens only provide accurate equivalent stress-strain curve before diffuse necking. However, for numerical modelling of problems where very large strains occur, such as plastic forming and ductile damage and fracture, understanding the post-necking strain hardening behaviour is necessary. Also, welding is a highly complex metallurgical process, and therefore, weldments are susceptible to material discontinuities, flaws, and residual stresses. It becomes even more important to characterize the equivalent stress-strain curve in large strains of each material zone in weldments properly for structural integrity assessment. The aim of this paper is to provide a state-of-the-art review on quasi-static standard tensile test for stress-strain curves measurement of metallic materials. Meanwhile, methods available in literature for characterization of the equivalent stress-strain curve in the post-necking regime are introduced. Novel methods with axisymmetric notched round bar specimens for accurately capturing the equivalent stress-strain curve of each material zone in weldment are presented as well. Advantages and limitations of these methods are briefly discussed.
机译:对于金属材料,使用圆棒试样或扁平试样的标准单轴拉伸试验只能在弥散颈缩之前提供准确的等效应力-应变曲线。但是,对于出现很大应变的问题(例如塑性成形,延性破坏和断裂)的数值模型,需要了解颈缩后应变硬化行为。而且,焊接是高度复杂的冶金过程,因此,焊件易受材料间断,缺陷和残余应力的影响。恰当地表征焊件中每种材料区域的大应变中的等效应力-应变曲线,以进行结构完整性评估变得更加重要。本文的目的是提供有关金属材料应力-应变曲线测量的准静态标准拉伸试验的最新技术综述。同时,介绍了文献中可用于表征颈缩后状态下等效应力-应变曲线的方法。还提出了使用轴对称的带缺口圆棒试样的新方法,该方法可以精确地捕获焊件中每个材料区域的等效应力-应变曲线。简要讨论了这些方法的优点和局限性。

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