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A Comprehensive Study on the Deformation Behavior of Hadfield Steel Sheets Subjected to the Drop Weight Test: Experimental Study and Finite Element Modeling

机译:综合研究牵强重量试验HADFIELD钢板的变形行为:实验研究与有限元建模

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摘要

This work presents the results of experimental and finite element modeling studies of impact behavior on the response of a high content of manganese steel blanks with a 1.2 mm thickness of sheets, known also commercially as Hadfield steel (an austenitic structure with a basic composition containing C 1.2% and Mn 12%). The study was done with a standard drop weight test device under certain variable parameters (velocity: 3 m/s and 5 m/s and temperature: room temperature, 70 °C, 100 °C, and 140 °C). In this study, the evolution of force and energy values were analyzed depending on the time in the case of impact. Special care was given to the evolution of peak stress counters of finite element simulation for different temperatures. The results of the force-time, energy-time, and force-displacement curves under different temperatures and impact velocities are compared experimentally and numerically. Then the discussion are built on the effect of the operational parameters on the damage behavior of this steel. Both of these works (experimental and finite element modeling) were compared and highly satisfying results were obtained.
机译:本作品介绍了对高含量厚度厚度的锰钢坯料的响应的实验和有限元模拟研究结果,也称为哈尔壁钢(奥氏体结构,含有C的基本组合物的奥氏体结构) 1.2%和Mn 12%)。该研究是在某些可变参数(速度:3m / s和5米/秒和温度:室温,70°C,100°C和140°C)下进行标准下降重试器进行的。在这项研究中,根据影响情况的时间分析力和能量值的演变。对不同温度的有限元模拟的峰值应力计数器的峰值应力计数器的演变。在不同温度和冲击速度下的力 - 时间,节能和力 - 位移曲线的结果进行实验和数值比较。然后,讨论是基于操作参数对该钢损伤行为的影响。比较了这些作品(实验和有限元建模),并获得了高度满足的结果。

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