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Evaluation of Grain Boundary Network and Improvement of Intergranular Cracking Resistance in 316L Stainless Steel after Grain Boundary Engineering

机译:316L不锈钢晶界工程后晶界网络的评价及抗晶间开裂性的提高。

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摘要

For understanding the improvement of intergranular stress corrosion cracking (IGSCC) propagation in grain boundary engineering (GBE)-processed metals exposed to a simulated pressurized water reactor (PWR) environment, characteristics of the grain boundary network of 316L stainless steel before and after GBE were investigated and compared, including proportions both in length and in number of ∑3n boundaries, sizes, and topology of grain clusters (or twin-related domains), and connectivity of random boundaries. The term through-view random boundary path (TRBP) was proposed to evaluate the random boundary connectivity. A TRBP is a chain of end-to-end connected crack-susceptible boundaries that passes through the entire mapped microstructure. The work provides the following key findings: (I) the length fraction of ∑3n boundaries was increased to approximately 75% after GBE, but the number fraction was only approximately 50%; (II) a connected non-twin boundary network still existed in the GBE sample due to the formation of grain clusters; (III) the GBE sample exhibited a higher resistance to IGSCC; and (IV) as the twin boundary fraction increased, the number of TRBPs decreased and the normalized length of the minimum TRBP increased monotonically, leading to a higher resistance to IGSCC.
机译:为了了解在暴露于模拟压水堆(PWR)环境中的晶界工程(GBE)处理的金属中晶间应力腐蚀裂纹(IGSCC)传播的改善,GBE前后的316L不锈钢晶界网络的特征为进行了研究和比较,包括Σ3 n 边界的长度和数量比例,晶粒团簇(或孪生相关域)的大小和拓扑以及随机边界的连通性。提出了术语“透视随机边界路径”(TRBP)来评估随机边界连通性。 TRBP是贯穿整个映射的微结构的端到端连接的裂纹敏感性边界链。这项工作提供了以下主要发现:(I)GBE后∑3 n 边界的长度分数增加到大约75%,但是数量分数只有大约50%; (二)由于粒团的形成,GBE样品中仍然存在连通的非孪晶边界网络。 (III)GBE样品对IGSCC具有较高的抗性; (IV)随着孪晶边界分数的增加,TRBP的数量减少并且最小TRBP的标准化长度单调增加,从而导致对IGSCC的更高抵抗力。

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