首页> 外文期刊>Journal of Materials Research and Technology >Clarification of the false liquation crack existed in 9% Cr/CrMoV dissimilar welded joint by comparative etching process and in situ laser scanning confocal microscope
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Clarification of the false liquation crack existed in 9% Cr/CrMoV dissimilar welded joint by comparative etching process and in situ laser scanning confocal microscope

机译:通过比较蚀刻工艺和原位激光扫描共介质显微镜,在9%Cr / CRMOV异种焊接接头中阐明了伪液化裂缝。

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Liquation cracks are generally regarded as thermal defects in various materials, e.g. in steels and nickel-based alloys. However, direct observation of microstructure with crack-like morphology that may be revealed by chemical etching or electrochemical etching methods, might lead to the misinterpretation of liquation cracks. To avoid the possible misinterpretation, comparative etching was employed to reveal the effect of various etching processes on the determination of liquation cracks. As a result, the formation process and mechanism of the false liquation crack in 9% Cr/CrMoV welded joint were clarified. The results obtained by optical microscope (OM) and scanning electron microscope (SEM) in the heat treatment zone of 9% Cr steel (9% Cr-HAZ) after chemical etching clearly demonstrate the existence of crack-like morphology, and the disappearance of element segregation zone after regrinding and re-polishing. Besides, laser scanning confocal microscope (LSCM) was applied to further exhibit the microstructure evolution experiencing high temperature to confirm the possibility of the liquation crack. The results showed that the element segregation and subsequent chemical etching process were the crucial factors to cause the formation of false liquation crack.
机译:通常将液化裂缝被认为是各种材料的热缺陷,例如,在钢和镍基合金中。然而,通过化学蚀刻或电化学蚀刻方法的裂纹形态直接观察微观结构,可能导致液化裂缝的误解。为了避免可能的误解,采用比较蚀刻来揭示各种蚀刻工艺对液化裂缝的测定的影响。结果,澄清了9%Cr / CRMOV焊接接头中的假液裂纹的形成过程和机制。在化学蚀刻后,通过光学显微镜(OM)和扫描电子显微镜(SEM)和扫描电子显微镜(SEM)获得的结果清楚地证明了存在裂纹形态的存在和消失重新研磨后的元素隔离区。此外,应用激光扫描共聚焦显微镜(LSCM)进一步表现出经历高温的微观结构演进以确认液态裂纹的可能性。结果表明,元素偏析和随后的化学蚀刻方法是导致假液态裂纹形成的关键因素。

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