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Experimental and numerical investigation of ductile fracture of carbon steel structural components

机译:碳钢结构件延性断裂的实验与数值研究

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Ductile fracture of steel components cannot be avoided particularly due to large inelastic strain in extreme loading scenarios. Without considering damage model, conventional elasto-plastic constitutive material model cannot lead to accurate finite element (FE) modelling results when damage due to fracture exists. Metal fracture is a complex damage process in which damage onset, material deterioration and final fracture are related to development of material plasticity. Uniaxial tensile fracture and shear fracture are two typical failure modes of structural members. In this study, experimental investigations of monotonic tensile fracture and in-plane shear fracture under different strain rates in quasi-static loading range are presented for low-alloy structural carbon steel. The characteristic steel material properties are obtained insensitive to the chosen strain rate. A semi empirical process is used to calibrate the damage properties (damage onset and softening criteria) through FE modelling of the coupon samples based on a continuum damage mechanics (CDM) model. Deterioration of the carbon steel properties was found related to the evolution of equivalent plastic strain, and particularly there is a linear relationship for the in-plane shear scenario. The verified damage onset and shear softening are then used for modelling of a welded steel tubular connection experiencing punching shear fracture phenomenon. It is shown that modelling result of the steel connection is significantly improved when the proposed fracture modelling is adopted. (C) 2018 Elsevier Ltd. All rights reserved.
机译:钢部件的延性断裂是不可避免的,特别是由于在极端载荷情况下的大的非弹性应变。如果不考虑损伤模型,当存在由于断裂引起的损伤时,常规的弹塑性本构模型无法获得精确的有限元(FE)建模结果。金属断裂是一个复杂的破坏过程,其中破坏开始,材料变质和最终破坏与材料可塑性的发展有关。单轴拉伸断裂和剪切断裂是结构构件的两种典型破坏模式。在这项研究中,对低合金结构碳钢在准静态载荷范围内不同应变率下的单调拉伸断裂和面内剪切断裂进行了实验研究。获得的特性钢材料特性对所选应变率不敏感。通过基于连续损伤力学(CDM)模型的试样块的有限元建模,使用半经验过程来校准损伤特性(损伤开始和软化标准)。发现碳钢性能的恶化与等效塑性应变的发展有关,尤其是面内剪切情况具有线性关系。然后,将经过验证的损伤发生和剪切软化用于经历冲裁剪切断裂现象的焊接钢管连接的建模。结果表明,采用建议的断裂模型可以显着改善钢连接的建模结果。 (C)2018 Elsevier Ltd.保留所有权利。

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