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The influence of Mo addition on the microstructure and its thermal stability for electrodeposited Ni films

机译:Mo添加对电沉积Ni膜微观结构的影响及其热稳定性

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摘要

An investigation was conducted to study the effect of molybdenum (Mo) alloying on the grain size and lattice defect structure in nanocrystalline nickel (Ni) films processed by electrodeposition. Moreover, the influence of saccharin addition to the electrolyte bath on the microstructure of Ni-Mo layers with low and high Mo contents was studied. It was found that the higher Mo content resulted in a larger dislocation density and twin fault probability as well as a smaller grain size. The addition of saccharin to the bath resulted in a further increase in the density of both dislocations and twin faults. It was also revealed that Mo alloying improved the thermal stability of the nanostructure in Ni films while saccharin addition yielded a reduction of stability. The reasons for these opposite behaviors were discussed in detail. In addition, the defect structure and its stability in Ni-Mo layers were compared with that for fine-grained bulk samples with the same composition but processed by severe plastic deformation.
机译:进行了研究以研究钼(Mo)合金化对电沉积加工纳米晶镍(Ni)膜中晶粒尺寸和晶格缺陷结构的影响。此外,研究了糖精对电解质浴的影响,对具有低和高Mo含量的Ni-Mo层的微观结构。发现较高的Mo含量导致较大的位错密度和双故障概率以及较小的晶粒尺寸。向浴中添加糖精导致脱位和双断层的密度进一步增加。还揭示了Mo合金化改善了Ni膜中纳米结构的热稳定性,而糖精添加稳定性降低。详细讨论了这些相反行为的原因。此外,将缺陷结构及其在Ni-Mo层中的稳定性与具有相同组成的细粒堆积样品进行比较,但通过严重的塑性变形处理。

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