晶界组织对奥氏体不锈钢焊缝衰减的影响(二):304型不锈钢焊缝热影响区的晶界组织与碳化物析出

H. Kokawa, T. Kuwana
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引用次数: 1

摘要

采用透射电镜观察了304型和304L型奥氏体不锈钢焊缝热影响区晶界碳化物析出情况,从结晶学角度研究了晶界取向错误和晶界组织对不锈钢焊缝晶界碳化物析出的影响。在304钢焊缝热影响区晶界析出区检测到晶界碳化物。该区域部分晶界有碳化物析出,部分晶界无碳化物析出。菊池线分析表明,具有有序原子结构的晶界无碳化物析出。这种趋势在304L钢的焊缝中也存在,尽管304L钢的晶界碳化物析出物比304钢细。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。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Grain Boundary Structure on Weld Decay of Austenitic Stainless Steel (Part 2) : Grain Boundary Structure and Carbide Precipitation in Type 304 Stainless Steel Weld Heat Affected Zone
Grain boundary carbide precipitation in weld heat affected zone of type 304 and 304L, austenitic stainless steels was observed using transmission electron microscope to make clear the effects of grain boundary misorientation and structure on carbide precipitation at grain boundaries in stainless steel welds from a crystallographic viewpoint. Grain boundary carbides were detected in grain boundary precipitation region of the 304 steel weld heat affected zone. In that region, some grain boundaries had carbide precipitates, but some were precipitation-free. Kikuchi line analyses showed that grain boundaries with ordered atomic structures had no carbide precipitates. This tendency was valid in 304L steel weld, although grain boundary carbide precipitates were finer in 304L, steel than in 304 steel. 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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