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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Comprehensive Analysis of the Effect of Ausforming on the Martensite Start Temperature in a Fe-C-Mn-Si Medium-Carbon High-Strength Bainite Steel
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Comprehensive Analysis of the Effect of Ausforming on the Martensite Start Temperature in a Fe-C-Mn-Si Medium-Carbon High-Strength Bainite Steel

机译:Fe-C-MN-Si中碳高强度贝氏体钢材综合分析对马氏体开始温度的影响

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摘要

The comprehensive effect of strain and ausforming temperature on the martensite start temperature (M-S) of a medium-carbon bainite steel was investigated by thermal simulation, optical microscope, scanning electron microscope, etc. It is already known that small strain increases the M-S, while larger strain decreases the M-S. However, the effect of ausforming temperature on the M-S has not been reported and clarified. In this study, the concepts of critical strain (epsilon(c)) and saturated strain (epsilon(s)) are proposed. The M-S at the critical strain is equal to the M-S of the nondeformed specimen. The saturation strain, which is first observed, is the strain value, and the M-S does not further decrease with the increasing strain. The results show that the M-S depends on the strain amount of ausforming but is not affected by the ausforming temperature. Moreover, with the increase of strain amount and ausforming temperature, the length of the martensite laths decreases. In addition, the hardness of the specimen increases with the increase of the ausforming strain amount, whereas the ausforming temperature has little effect on the hardness.
机译:通过热模拟,光学显微镜,扫描电子显微镜等研究了菌株和空心形成温度对中碳贝氏体钢的马氏体开始温度(MS)的综合效果。已经知道小的应变增加了MS较大的应变降低了MS。然而,尚未报告和澄清具有模拟温度对M-S对M-S的影响。在该研究中,提出了临界应变(ε(c))和饱和菌株(ε)的概念。临界应变处的M-S等于非变形样品的M-S.首先观察到的饱和菌株是应变值,并且M-S不会随着抑制的增加而进一步降低。结果表明,M-S取决于空心形成的应变量,但不受空心温度的影响。此外,随着应变量的增加和空心温度,马氏体板条的长度降低。另外,试样的硬度随着空心形成量的增加而增加,而使用者对硬度影响几乎没有影响。

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