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Fabrication Process for a High Strength 9Cr-2W Steel Sheet

机译:高强度9Cr-2W钢板的制造工艺

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This study deals with the fabrication of high strength ferritic/martensitic steels by a control of both the carbon concentration and the fabrication process parameters. The 9Cr-2W steels containing a carbon concentration of 0.05, 0.07 and 0.11 wt% were normalized at 1050°C for 1 h, followed by a tempering at 550 and 750°C for 2 h, respectively. The results of the tensile tests at room temperature indicated that the tensile strengths were increased with an increase of the carbon concentration from 0.05 wt% to 0.07 wt%, but no more increase was observed when the carbon concentration was increased further up to 0.11%. After a cold rolling from a 4 mm to a 1 mm thickness without/with an intermediate heat treatment and a final heat treatment, the results of the tensile tests exhibited that superior tensile properties were obtained when the fabrication processes were composed of a tempering at 550°C, and a cold rolling with several intermediate heat treatments. These results could be attributed to the finely distributed precipitates in the partially recrystallized matrix. The optimized carbon concentration and the controlled fabrication process parameters are thus suggested to fabricate a high strength 9Cr-2W steel sheet.
机译:该研究通过对碳浓度和制造工艺参数的控制进行了高强度铁素体/马氏体钢的制造。含有0.05,0.07和0.11wt%的碳浓度为1050℃的9Cr-2W钢在1050℃下归一化,然后分别在550和750℃下进行回火2小时。在室温下的拉伸试验结果表明,随着0.05wt%至0.07wt%的碳浓度的增加,抗拉强度的增加,但是当碳浓度进一步增加至0.11%时,观察到不再增加。冷轧从4mm至1mm厚的厚度没有/中间热处理和最终热处理后,拉伸试验的结果表明,当制造工艺在550时的回火组成时,获得了优异的拉伸性能°C,以及具有几种中间热处理的冷轧。这些结果可能归因于部分重结晶基质中的细分布沉淀物。因此建议优化的碳浓度和受控制造工艺参数制造高强度9Cr-2W钢板。

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