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Study on microstructure change and hardening of 316L steel weld seam after helium ion irradiation

机译:氦离子辐照后316L钢焊缝组织变化及硬化研究

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In order to explore the microstructure changes and hardening of austenitic stainless steel weld seam after helium ion irradiation, three sets of 316 Lweld seam samples with different welding parameters were irradiated with 100 KeV, 2 x 10(17) n/cm(2) He+. It is found that the residual tensile stress in the weld seam strengthens, the average size of the Frank loops changed to 7.8 nm, 13.3 nm, and 14.3 nm, respectively, and the weld hardening degree increased with the increase of the welding speed. The difference sizes of the Frank loops observed in the three sets of samples may be due to the different residual tensile stress of weld seams, which could promote the aggregation of interstitial atoms. However, there may be two reasons for the different degree of radiation hardening: One is that the increased size of dislocation loops hinders dislocation motion, another is that grain refinement could increase the degree of radiation hardening.
机译:为了探索氦离子辐照后奥氏体不锈钢焊缝的组织变化和硬化,用100 KeV,2 x 10(17)n / cm(2)He +辐照三组不同焊接参数的316 Lweld焊缝样品。发现焊缝中的残余拉应力增强,Frank环的平均尺寸分​​别变为7.8nm,13.3nm和14.3nm,并且焊接硬化程度随着焊接速度的增加而增加。在三组样品中观察到的弗兰克环的尺寸不同可能是由于焊缝的残余拉伸应力不同,这可能会促进间隙原子的聚集。但是,辐射硬化程度不同可能有两个原因:一是位错环尺寸的增加阻碍了位错运动,其二是晶粒细化可以提高辐射硬化的程度。

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