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Occurrence of Dynamic Shear Bands in AISI 4340 Steel under Impact Loads

机译:冲击载荷下AISI 4340钢中动态剪切带的发生

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In this study, occurrence of adiabatic shear bands in AISI 4340 steel under high velocity impact loads is investigated using finite element analysis and experimental tests. The cylindrical steel specimen subjected to impact load was divided into different sections separated by nodes using finite element method in ABAQUS environment with boundary conditions specified. The material properties were assumed to be lower at the section where the adiabatic shear bands are expected to initialize. The finite element model was used to determine the maximum flow stress, the strain hardening, the thermal softening, and the critical strain for the formation of adiabatic shear bands. Experimental results show that deformed bands were formed at low strain rates and there was a minimum strain rate required for formation of transformed band in the alloy. The experimental results also show that cracks were initiated and propagated along transformed bands leading to fragmentation under the impact loading. The susceptibility of the adiabatic shear bands to cracking was markedly influenced by strain-rates. The simulation results obtained were compared with experimental results obtained for the AISI 4340 steel under high strain-rate loading in compression using split impact Hopkinson bars. A good agreement between the experimental and simulation results was obtained.
机译:在这项研究中,使用有限元分析和实验测试研究了AISI 4340钢在高速冲击载荷下的绝热剪切带的产生。在指定边界条件的ABAQUS环境中,采用有限元方法,将承受冲击载荷的圆柱形钢试样分成节点分成的不同部分。假定绝热剪切带将初始化的区域的材料性能较低。有限元模型用于确定绝热剪切带形成的最大流应力,应变硬化,热软化和临界应变。实验结果表明,变形带在低应变速率下形成,并且在合金中存在形成应变带所需的最小应变速率。实验结果还表明,裂纹是沿着转换带引发并扩展的,导致在冲击载荷作用下破碎。绝热剪切带对裂纹的敏感性受应变速率的显着影响。将获得的模拟结果与AISI 4340钢在高应变率载荷下使用分裂冲击Hopkinson杆在压缩条件下获得的实验结果进行了比较。实验和仿真结果之间取得了良好的一致性。

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