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The relationship between grain boundary character distribution and intergranular corrosion resistance of 304 austenitic stainless steel

机译:304奥氏体不锈钢的晶界特征分布与耐晶间腐蚀性的关系

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A wedge-shaped 304 austenitic stainless steel with varied thickness longitudinally was cold rolled into a flat one and then annealed at 1323K for 10 min. The grain boundary character distributions (GBCDs) in the specimen as processed were examined by the means of Electron backscatter diffraction (EBSD). The results showed that, at the regions with low pre-strains ranged from 4% to 6%, quite high fractions of ∑3~n (n=0,1,2,3) grain boundaries and large-sized ∑3~n (n=0,l,2,3) grain clusters are introduced compared with the regions of quite low (less than 2.5%) or relatively high pre-strain. The surface appearance of after corrosion test reveals that grain dropping due to intergranular corrosion (IGC) is depressed and the penetration of IGC from the surface into the interior in the cross-section is arrested significantly as well in the regions with high fractions of ∑3~n boundaries and large-sized ∑3~n grain clusters.
机译:将具有纵向变化厚度的楔形304奥氏体不锈钢冷轧成扁钢,然后在1323K下退火10分钟。通过电子背散射衍射(EBSD)的方法检查样品中的晶界特征分布(GBCD)。结果表明,在低预应变区的范围为4%至6%,Σ3〜n(n = 0,1,2,3)晶界和较大的Σ3〜n的分数很高。与相当低(小于2.5%)或相对高预应变的区域相比,引入了(n = 0、1、2、3)晶粒簇。腐蚀试验后的表面外观表明,由于晶间腐蚀(IGC)而导致的晶粒下降得到抑制,并且在Σ3含量高的区域中,IGC从表面到内部的渗透都得到了显着抑制。 〜n边界和大的∑3〜n晶粒簇。

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