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Grain growth and texture changes in a Ni foil during diffusion bonding to ZrO2

机译:扩散结合到ZrO2期间镍箔中的晶粒生长和织构变化

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We have studied the changes in microstructure which occur in a Ni foil when it is diffusion bonded to cubic ZrO2. The foil undergoes a change in preferred orientation during bonding to produce a texture distinctly different from that found in a foil annealed in vacuum. The rate of grain growth in the Ni is significantly faster during diffusion bonding than is found during annealing a foil under the same conditions. It can be argued that the different texture occurs because the Ni-ZrO2 interface has a lower energy when the Ni(111) plane is parallel to the interface. This is consistent with the fact that the (111) face is a lowest-energy interface in other metal-ceramic systems. However, there is no clear expanation for the more rapid grain growth kinetics which may occur because of the difference in driving force, the absence of thermal grooving in the Ni foil when bonded, or a supersaturation of point defects in the Ni foil during diffusion bonding.
机译:我们已经研究了当镍箔扩散键合到立方ZrO2时发生的微观结构变化。箔在粘合期间经历优选取向的变化,以产生明显不同于在真空中退火的箔中发现的织构的织构。与在相同条件下退火箔时发现的相比,扩散键合过程中Ni的晶粒生长速率明显更快。可以认为,由于Ni(111)平面平行于Ni-ZrO2界面具有较低的能量,因此会出现不同的织构。这与(111)面是其他金属陶瓷系统中最低能量的界面这一事实是一致的。但是,由于驱动力的差异,结合时镍箔中没有热开槽或扩散结合时镍箔中的点缺陷过饱和,可能没有出现更迅速的晶粒生长动力学的清晰扩展。 。

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