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Modeling of plasticity and fracture behavior of X65 steels: seam weld and seamless pipes

机译:X65钢的可塑性和骨折行为建模:煤层焊接和无缝管

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摘要

A non-associated/associated flow rule coupled with an anisotropic/isotropic quadratic yield function is presented to describe the mechanical responses of two distinct X65 pipeline steels. The first as a product of the cold-rolling forming (UOE) process also known as seam weld pipes and the second as a result of high temperature piercing process called seamless tube manufacturing. The experimental settings consist of a wide range of sample types, whose geometric characteristics represent different state of stresses and loading modes. For low to intermediate stress triaxiality levels, flat specimens are extracted at different material orientations along with notched round bar samples for high stress triaxialities. The results indicate that despite the existing differences in plasticity between materials due to anisotropy induced processes, material failure can be characterized by an isotropic weighting function based on the modified Mohr–Coulomb (MMC) criterion. The non-associated flow rule allows for inclusion of strain directional dependence in the definition of equivalent plastic strain by means of scalar anisotropy (Lankford) coefficients and thus keeping the original capabilities of the MMC model.
机译:提出了一种与各向异性/各向同性二次屈服函数耦合的非相关/相关的流动规则,以描述两个不同的X65管道钢的机械响应。首先作为冷轧成型(UOE)过程的产物,也称为接缝焊接管道,并且由于高温刺穿过程称为无缝管制造。实验设置包括各种样品类型,其几何特征表示不同的应力和装载模式。对于低至中间应激三轴性水平,在不同的材料方向上萃取平面样本,以及用于高应激三轴的切口圆形条样品。结果表明,尽管由于各向异性诱导过程引起的材料之间的可塑性差异,但是材料故障的特征可以通过基于改性的MoHR-Coulomb(MMC)标准的各向同性加权功能来表征。非相关的流量规则允许通过标量各向异性(Lankford)系数来包含在等效塑料应变的定义中的应变定向依赖性,从而保持MMC模型的原始能力。

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