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Ductile fracture micro-mechanisms of high strength low alloy steels

机译:高强度低合金钢的延性断裂微观机制

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摘要

There has been a considerable amount of research investigating the strain induced void accumulation under uniaxial deformation which is, in principle, affected by both the applied stress (i.e., hydrostatic stress) and the resulting plastic strain. It has been not clear in these circumstances whether this damage accumulation is stress assisted or strain induced. In order to investigate this issue, tensile experiments were carried out at various notch geometries to correlate the void area fraction with the equivalent plastic strain and the stress triaxility ratio of high strength low alloy (HSLA-100) steel at ambient temperature. A Bayesian neural network model is also created to correlate the complex relationship between the void area fraction with its influencing parameters in a variety of high strength low alloy steels under tension published in the literature. The model has been validated through the present experimental data and the other data published in the literature. The effect of all individual variables on damage accumulations has also been investigated.
机译:已经有大量研究调查了在单轴变形下由应变引起的空隙累积,这在原则上受施加应力(即静水应力)和所产生的塑性应变的影响。在这些情况下,尚不清楚这种损伤累积是应力辅助还是应变诱导。为了研究该问题,在各种缺口几何形状下进行了拉伸实验,以将空隙面积分数与环境温度下高强度低合金(HSLA-100)钢的等效塑性应变和应力三轴比进行关联。还建立了贝叶斯神经网络模型,以关联文献中发表的各种高强度低合金钢在受拉状态下空隙面积分数与其影响参数之间的复杂关系。该模型已通过当前的实验数据和文献中公布的其他数据进行了验证。还研究了所有单个变量对损伤累积的影响。

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  • 来源
    《Materials & design》 |2014年第2期|1002-1009|共8页
  • 作者单位

    Fatigue and Fracture Group, Materials Science and Technology Division, CSIR-National Metallurgical Laboratory (Council of Scientific & Industrial Research), Jamshedpur 831 007, India;

    Submersibles and Gas Hydrates, National Institute of Ocean Technology, Chennai 600 100, India;

    Fatigue and Fracture Group, Materials Science and Technology Division, CSIR-National Metallurgical Laboratory (Council of Scientific & Industrial Research), Jamshedpur 831 007, India;

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