TMT Treatment

Various types of heat treatment cause structural unevenness, which in many cases leads to the formation of structures with lower energy, and once formed, such a structure will be very stable. Especially when aluminum is deformed at a moderate creep temperature or during medium and high-temperature annealing after severe cold deformation. This has led to an evolution from interconnected tolerance structures to other polygonal structures. In the case of high purity aluminum, this development is accompanied by a gradual disappearance of the internal friction peak P1 due to bearing losses, resulting in a very straight formation as a result of running in. Tolerance for polygonal configurations This creates an additional boundary that we can assume is a low energy structural tolerance. These polygonal structures made of various aluminum-aluminum alloys have been studied, however, we wondered if these low-energy structures were mobile. Or any changes in the non-destructive subband arrangement require an increase in power. This is tantamount to saying that movement is impeded. The answer to this question is that there is strong empirical evidence for the movement of these subregions. However, there have been few studies and models regarding mobility in sub-regions. In particular, in the case of three families of contrasting subregions, Caillard and Martin suggested that submigrations pass from the {111} level to the {100} level.

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