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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Grain boundary character distribution and sensitisation behaviour of grain boundary engineered stable austenitic stainless steel (AISI 316L)
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Grain boundary character distribution and sensitisation behaviour of grain boundary engineered stable austenitic stainless steel (AISI 316L)

机译:晶界工程稳定奥氏体不锈钢(AISI 316L)的晶界特征分布和敏化行为

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摘要

Thermomechanical processing involving a wide range of strain (5-80%) followed by annealing was applied to a type 316L austenitic stainless steel to encourage grain boundary engineered (GBE) structure. As a result of GBE process, the total length fraction of low Σ coincidence site lattice boundaries increased noticeably in conjunction with different levels of grain growth. The GBE structures resulted in significant decreases in the degree of sensitisation following exposure at 948 K for 20 h and assessment through double loop electrochemical potentiokinetic reactivation tests. Strain of low level (5%) was more effective than medium to high strain in inspiring GBE. The role of grain size on the sensitisation process has also been discussed. Additionally, abnormal grain growth contributes to the optimisation of GBE structure.
机译:涉及到大范围应变(5-80%)然后退火的热机械加工被应用于316L型奥氏体不锈钢,以促进晶界工程(GBE)结构。 GBE过程的结果是,低Σ重合位点晶格边界的总长度分数随着晶粒生长的不同水平而显着增加。在948 K下暴露20 h并通过双环电化学电位动力学再活化试验评估后,GBE结构导致敏化度显着降低。在激发GBE方面,低水平(5%)菌株比中高菌株更有效。还讨论了晶粒尺寸在敏化过程中的作用。另外,异常的晶粒生长有助于GBE结构的优化。

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