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Partitioning and segregation of trace element Sn in a low-alloy steel

机译:微量元素Sn在低合金钢中的分配和偏析

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The partitioning of the trace element Sn into Cu-rich precipitates in a low-alloy pressure-vessel steel has been characterized using the three-dimensional atom probe (3DAP) technique. This investigation has revealed for the first time that the trace element Sn, present at only 0.007 at.% in the steel, partitions strongly to both small spherical precipitates (<4 nm in diameter) and to large non-spherical precipitates (largest dimension 10-50 nm) during thermal ageing. Sn was also seen to segregate strongly to the precipitate/matrix interface of a large Cu precipitate and particularly in the region where a dislocation appears to intersect the precipitate. The strong attraction of large solute atoms to special sites probably drives the interfacial segregation of Sn. This is consistent with the observation of stronger segregation of Sn to the interface of large precipitates than to the coherent interface of smaller precipitates.
机译:使用三维原子探针(3DAP)技术已表征了痕量元素Sn在低合金压力容器钢中分配为富Cu析出物的过程。该研究首次揭示出微量元素Sn(仅以0.007 at。%的含量存在于钢中)强烈地分配给小的球形沉淀物(直径<4 nm)和较大的非球形沉淀物(最大尺寸10)。 -50 nm)。还可以看出,Sn强烈地偏析于大的Cu沉淀物的沉淀物/基体界面,特别是在位错似乎与沉淀物相交的区域。大溶质原子对特殊位点的强烈吸引可能会驱动Sn的界面偏析。这与观察到较大的析出物界面上的Sn偏析比较小的析出物的相干界面更强的偏析相一致。

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