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Precipitation study on Mg-12 wt% Ti alloy obtained by physical vapour deposition

机译:物理气相沉积法制备Mg-12 wt%Ti合金的析出研究

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The thermal stability of Mg-12wt%Ti alloy processed by physical vapour deposition has been studied using differential scanning calorimetry (DSC) and transmission electron microscopy. The alloy in the as-deposited condition is a solid solution of titanium in magnesium. During DSC experiments, three exothermal transformations have been observed. The first at 430 K is related to the stress relaxation of defects introduced during the growth process. The second transformation is associated with the precipitation of titanium in the magnesium matrix, which occurs in two stages. In the first stage, small coherent precipitates around 1 nm in size are present in the basal plane. The second stage has been associated with the growth of the titanium precipitates along the [0001] direction. The activation energies for these transformations are 144 and 155 kJ mol(-1) respectively. At higher temperatures., above 703 K, an increase in heat flow takes place that is related to the strong oxidation of the magnesium matrix. [References: 27]
机译:利用差示扫描量热法(DSC)和透射电子显微镜研究了通过物理气相沉积法处理的Mg-12wt%Ti合金的热稳定性。处于沉积状态的合金是钛在镁中的固溶体。在DSC实验期间,已经观察到三个放热转变。首先在430 K与在生长过程中引入的缺陷的应力松弛有关。第二个转变与钛在镁基质中的沉淀有关,这是分两个阶段发生的。在第一阶段,在基面上存在大小约为1 nm的小的相干沉淀。第二阶段与钛沉淀物沿[0001]方向的生长有关。这些转变的活化能分别为144和155 kJ mol(-1)。在高于703 K的较高温度下,发生的热流增加与镁基质的强氧化有关。 [参考:27]

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