晶界组织对奥氏体不锈钢焊缝腐蚀的影响(一):304型不锈钢焊缝热影响区的晶界组织与晶间腐蚀

H. Kokawa, T. Kuwana
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引用次数: 4

摘要

采用光学显微镜和扫描电镜对304型奥氏体不锈钢焊缝热影响区晶界碳化物析出和腐蚀进行了研究,从晶体学的角度探讨了晶界组织对析出和腐蚀的影响。在晶界析出区,晶界碳化物析出频率在粗晶区附近最大,随着距粗晶区距离的增加而逐渐降低。频率随焊缝热输入的增加而增加。304钢HAZ Strauss试验表明,弯曲试验后的裂纹晶界均有碳化物析出,且裂纹晶界出现的频率与晶界析出的频率大致成正比。扫描电镜的电子通道图分析表明,10%草酸腐蚀试验后,具有有序原子结构的晶界几乎没有被腐蚀。这些事实表明,不锈钢焊缝热影响区晶界的析出和腐蚀与晶界的结晶学特征密切相关。
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Effect of Grain Boundary Structure on Weld Decay of Austenitic Stainless Steel (Part 1) : Crain Boundary Structure and Intergranular Corrosion in a Type 304 Stainless Steel Weld Heat Affected Zone
Grain boundary carbide precipitation and corrosion in weld heat affected zone of a type 304 austenitic stainless steel were investigated using optical and scanning electron microscopy to discuss effects of grain boundary structure on precipitation and corrosion from a crystallographic viewpoint. In the grain boundary precipitation region, the frequency of grain boundary carbide precipitation had a maximum near the coarse grained region and decreased gradually with the distance from there to the unaffected base metal region. The frequency increased with weld heat input. Strauss test of 304 steel HAZ showed that all the cracked grain boundaries after bend test had carbide precipitates and that the frequency of cracked boundary was roughly proportional to the frequency of grain boundary precipitation. Electron channel-ling pattern analyses in scanning electron microscopy showed that grain boundaries with ordered atomic structures were hardly etched after 10% oxalic acid etching test. These facts have suggested that grain boundary precipitation and corrosion in stainless steel weld heat affected zone depend sensitively on crystallographic character of grain boundary.
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