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Deformation Behavior and Microstructure of Low Carbon High Manganese Steels in Tensile Strain

机译:低碳高锰钢在拉伸应变下的变形行为和组织

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The mechanical properties of two high manganese steels with manganese contents (15% and 25%) were investigated during tensile tests at room temperature. The results indicated that the strengths of steels were a little low and the elongations were improved greatly with increasing the manganese content. Stress fluctuations were found during tensile tests of the Fe-15Mn steels, and as the strain increased the range of stress fluctuations became wider. The strain hardening exponent n of samples changed with strain in a parabola model. The microstructures before and after deformation were investigated and the results showed that phase transformation of γ (fcc) →ε (hcp) and γ (fcc) →ε (hcp) →α (bcc) induced plasticity occurred in the Fe-15Mn steels. However, in the Fe-25Mn steels, at the beginning stage of the deformation, phase transformation induced plasticity played an important role, and with the increase of deformation, the main mechanism was twinning induced plasticity.
机译:在室温下进行拉伸试验时,研究了两种含锰量分别为15%和25%的高锰钢的机械性能。结果表明,随着锰含量的增加,钢的强度略低,延伸率大大提高。在Fe-15Mn钢的拉伸试验过程中发现了应力波动,并且随着应变的增加,应力波动的范围变得更宽。在抛物线模型中,样品的应变硬化指数n随应变而变化。研究了变形前后的显微组织,结果表明,Fe-15Mn钢发生了γ(fcc)→ε(hcp)和γ(fcc)→ε(hcp)→α(bcc)引起的塑性相变。然而,在Fe-25Mn钢中,在变形开始时,相变诱发塑性起着重要作用,并且随着变形的增加,主要机理是孪生诱发塑性。

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