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The relationship between thermal decomposition properties of titanium hydride and the Al alloy melt foaming process

机译:氢化钛热分解性能与铝合金熔体发泡过程的关系

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摘要

Using a new temperature programmed decomposition (TPD) theory and related experimental technique, a set of thermal decomposition kinetics equations of titanium hydride can be acquired by separating and simulating its TPD spectrum. According to these equations, the relation curve of decomposition quantity and time for titanium hydride at temperature of 940 K is obtained and the result coincides well with the Al alloy melt foaming process, which provides a scientific basis for controlling the Al alloy melt foam and then the Al alloy foams with different pore structure are successfully prepared.
机译:利用一种新的程序升温分解(TPD)理论和相关的实验技术,通过分离和模拟其TPD谱图,可以得到一组氢化钛的热分解动力学方程。根据这些方程,得到了氢化钛在940 K温度下的分解量与时间的关系曲线,其结果与铝合金熔体发泡过程吻合得很好,为控制铝合金熔体的泡沫化提供了科学依据。成功制备了具有不同孔结构的铝合金泡沫。

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