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Kinetics and mechanism of titanium hydride powder and aluminum melt reaction

机译:氢化钛粉和铝熔体反应的动力学和机制

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Based on the measurement of the released hydrogen gas pressure (P_(H2)), the reaction kinetics between TiH_2 powder and pure aluminum melt was studied at various temperatures. After cooling the samples, the interface of TiH_2 powder and aluminum melt was studied. The results show that the P_(H2) -time curves have three regions; in the first and second regions, the rate of reaction conforms zero and one order, respectively; in the third region, the hydrogen gas pressure remains constant and the rate of reaction reaches zero. The main factors that control the rate of reaction in the first and second regions are the penetration of hydrogen atoms in the titanium lattice and the chemical reaction between molten aluminum and titanium, respectively. According to the main factors that control the rate of reaction, three temperature ranges are considered for the reaction mechanism: (a) 700-750°C, (b) 750-800°C, and (c) 800-1000°C. In the first temperature range, the reaction is mostly under the control of chemical reaction; at the temperature range of 750 to 800°C, the reaction is controlled by the diffusion and chemical reaction; at the third temperature range (800-1000°C), the dominant controlling mechanism is diffusion.
机译:基于释放氢气压力的测量(P_(H2)),在各种温度下研究了TIH_2粉末和纯铝熔体之间的反应动力学。冷却样品后,研究了TiH_2粉末和铝熔体的界面。结果表明,P_(H2)--Time曲线有三个区域;在第一和第二区域中,反应速率分别符合零和一个订单;在第三区域中,氢气压力保持恒定,反应速率达到零。控制第一和第二区域中反应速率的主要因素是分别在钛晶格中的氢原子和熔融铝和钛之间的化学反应渗透。根据控制反应速率的主要因素,考虑三个温度范围的反应机理:(a)700-750℃,(b)750-800℃,和(c)800-1000℃。在第一温度范围内,反应主要是在化学反应的控制下;在750至800℃的温度范围内,反应由扩散和化学反应控制;在第三温度范围(800-1000°C),主导控制机制是扩散的。

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