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On the Utilization of Plastic Instability Criterion in Ductility Assessment of Ultrafine-Grained Microalloyed Steel

机译:超细粒化微合金钢延展性评估中塑性不稳定性标准的利用

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In the present study, ultrafine-grained (UFG: grain size < 1μm) HSLA and IF steels were investigated. The tensile test results showed that, because of different strengthening mechanisms, UFG HSLA steel represents finally better ductility than initially more ductile IF steel. The analysis performed in the present study is based on the mechanism of generation the dislocation structures and takes into account effects of precipitation and solid solution strengthening. The results of this analysis, implemented in FEM, enable to capture the moment of plastic instability of ultrafine-grained microalloyed steels. A good convergence of the proposed model was observed for the investigated steels. The fact that ductility, strengthening and deformation mechanisms are strictly connected to each other suggests that the proper use of their synergetic effect may be used to improve the ductility of UFG materials.
机译:在本研究中,研究了超细晶粒(UFG:晶粒尺寸<1μm)HSLA,并且如果研究钢。拉伸试验结果表明,由于不同的强化机制,UFG HSLA钢最终代表比最初更韧性的延展性更好的延展性。在本研究中进行的分析基于发电脱位结构的机制,并考虑沉淀和固溶强强化的影响。在FEM中实施的该分析的结果使得能够捕获超细晶粒微合金钢的塑性不稳定性的瞬间。观察到所提出的模型的良好收敛为调查的钢材。延展性,强化和变形机制严格彼此相连的事实表明,适当使用其协同效果可用于改善UFG材料的延展性。

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