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Influence of Heat Treatment on the Microstructure and properties of 7Cr17Mo Martensitic Stainless Steel

机译:热处理对7Cr17MO马氏体不锈钢微观结构和性能的影响

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This paper describes the influence of heat treatment process on the microstructure and properties of a new martensitic stainless steel, which contains 0.7% carbon, 17% chromium and 1% molybdenum and can be used as kitchen knives and scissors. The microstructure and properties of the tested alloys after quenching at 980 - 1100°C and low tempering were investigated by means of optical microscope (OM), scanning electron microscope (SEM), Rockwell hardness tester and impact tester. The results show that the microstructure consists of acicular martensite, carbides and a litter retained austenite after quenching and tempering. The carbides are mainly (Fe, Cr)_(23)C_6. The content of retained austenite increases with the increase of the quenching temperature. The solubility of carbon in martensite changes similarly. The martensite gets coarser as the quenching temperature increasing. The maximum value of hardness is 59 HRC, when the quenching temperature is 1060°C. The impact toughness increases when the quenching temperature increases from 980°C to 1080°C and then decreases. The suitable heat treatment process for this alloy is quenching at 1060°C~1080°C for 30 min and then tempering at 200°C.
机译:本文介绍了热处理过程对新马氏体不锈钢的微观结构和性能的影响,含有0.7%碳,17%铬和1%钼,可用作厨刀和剪刀。通过光学显微镜(OM),扫描电子显微镜(SEM),罗克韦尔硬度测试仪和冲击测试仪研究了在980-1100℃下淬火后测试合金的微观结构和性质。结果表明,微观结构由淬火和回火后的针状马氏体,碳化物和垃圾保留奥氏体组成。碳化物主要是(Fe,Cr)_(23)C_6。随着淬火温度的增加,保留奥氏体的含量增加。碳在马氏体中的溶解度同样变化。马氏体随着淬火温度的增加而粗糙。当淬火温度为1060℃时,硬度的最大值为59小时。当淬火温度从980℃增加至1080℃时,冲击韧性增加,然后降低。该合金的合适的热处理方法在1060℃〜1080℃下淬灭30分钟,然后在200℃下回火。

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