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首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of Shot Peening on the Intergranular Corrosion Susceptibility of a Novel Super304H Austenitic Stainless Steel
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Effect of Shot Peening on the Intergranular Corrosion Susceptibility of a Novel Super304H Austenitic Stainless Steel

机译:喷丸处理对新型Super304H奥氏体不锈钢晶间腐蚀敏感性的影响

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摘要

The surface phase constituent of Super304H austenitic stainless steel, after shot peening and sensitization treatment at 600, 650, and 700 degrees C for 2 h, was characterized using x-ray diffraction method. The degree of sensitization (DOS) was investigated by means of double-loop electrochemical potentiokinetic reactivation (DL-EPR) test, and the morphology after DL-EPR test was observed by scanning electron microscopy (SEM). The results showed that nano-sized grains and strain-induced martensite together with compressive residual stress formed on the surface of Super304H steel after shot peening. Surface compressive residual stresses relaxed greatly after being sensitized at 600-700 degrees C for 2 h, and no systematic correlation was observed between the compressive residual stresses developed and the intergranular corrosion susceptibility (IGCS). Because of the occurrence of strain-induced martensite in the shot-peened specimens, their IGCS is much higher than that of the as-received specimen when being sensitized at 600-650 degrees C for 2 h. Besides, the DOS increased with the increasing of shot peening time and the content of strain-induced martensite. On the contrary, the IGCS of Super304H stainless steels subjected to shot peening was eliminated when being sensitized at 700 degrees C for 2 h because of the reverse transformation of strain-induced martensite and faster diffusion rate of Cr at higher temperature in ultrafine-grained austenite which had helped healing the chromium depletion zone in a very short time. In a word, shot peening promoted desensitization of Super304H steel in a time shorter than 2 h at higher temperature up to 700 degrees C.
机译:Super304H奥氏体不锈钢的表面相成分在600、650和700℃进行喷丸处理和敏化处理2小时后,使用X射线衍射法进行了表征。通过双环电化学电位动能再活化(DL-EPR)试验研究了敏化度(DOS),并通过扫描电子显微镜(SEM)观察了DL-EPR试验后的形态。结果表明,喷丸强化后,Super304H钢表面形成了纳米晶粒和应变诱发的马氏体,以及残余压缩应力。在600-700摄氏度下敏化2小时后,表面压缩残余应力大大放松,并且所产生的压缩残余应力与晶间腐蚀敏感性(IGCS)之间没有观察到系统相关性。由于在喷丸处理的试样中出现了应变诱发的马氏体,当在600-650摄氏度下进行2 h敏化时,它们的IGCS远高于所接收试样的IGCS。此外,随着喷丸时间的延长和应变诱发马氏体含量的增加,DOS值也随之增加。相反,Super304H不锈钢在700℃下敏化2 h时,喷丸强化后的IGCS被消除了,这是因为应变诱发马氏体的逆相变和Cr在超细奥氏体中在较高温度下的扩散速度更快。在很短的时间内帮助治愈了铬的耗尽区。简而言之,喷丸处理在700摄氏度以下的高温下在不到2小时的时间内促进了Super304H钢的脱敏。

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