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Determination of Johnson cook material and failure model constants and numerical modelling of Charpy impact test of armour steel

机译:约翰逊厨师材料的确定和破坏模型常数以及铠装钢夏比冲击试验的数值模型

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摘要

The behaviour of typical armour steel material under large strains, high strain rates and elevated temperatures needs to be investigated to analyse and reliably predict its response to various types of dynamic loading like impact. An empirical constitutive relation developed by Johnson and Cook (J-C) is widely used to capture strain rate sensitivity of the metals. A failure model proposed by Johnson and Cook is used to model the damage evolution and predict failure in many engineering materials. In this work, model constants of J-C constitutive relation and damage parameters of J-C failure model for a typical armour steel material have been determined experimentally from four types of uniaxial tensile test Some modifications in the J-C damage model have been suggested and Finite Element simulation of three different tensile tests on armour steel specimens under dynamic strain rate (10~(-1) s~(-1)), high triaxiality and elevated temperature respectively has been done in ABAQUS platform using the modified J-C failure model as user material sub-routine. The simulation results are validated by the experimental data. Thereafter, a moderately high strain rate event viz. Charpy impact test on armour steel specimen has been simulated using J-C material and failure models with the same material parameters. Reasonable agreement between the simulation and experimental results has been achieved.
机译:需要研究典型装甲钢材料在大应变,高应变速率和高温下的行为,以分析和可靠地预测其对各种类型的动态载荷(如冲击)的响应。 Johnson and Cook(J-C)建立的经验本构关系被广泛用于捕获金属的应变率敏感性。 Johnson和Cook提出的失效模型用于对损伤演化建模,并预测许多工程材料的失效。在这项工作中,通过四种类型的单轴拉伸试验,通过实验确定了典型铠装材料的JC本构关系的模型常数和JC破坏模型的破坏参数,并提出了JC破坏模型的一些修改建议和三种方法的有限元模拟使用改进的JC失效模型作为用户材料子程序,在ABAQUS平台上分别对动应变率(10〜(-1)s〜(-1),高三轴性和高温下的装甲钢样品进行了不同的拉伸试验。 。实验数据验证了仿真结果。此后,发生中等程度的高应变率事件。已使用J-C材料和具有相同材料参数的破坏模型模拟了铠甲样品的夏比冲击试验。仿真与实验结果之间取得了合理的一致性。

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