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On the production of ultra-fine titanium hydride powder at room temperature

机译:常温下超细氢化钛粉的生产

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摘要

A reactive mechanical grinding (RMG) method has been proposed for producing fine titanium hydride powders. The kinetics of the hydrogen/metal interaction are significantly increased by the high metal deformation under balls shocks and by the reduction of the particles size thanks to metal embrittlement by work hardening and hydriding. Also important is the significant local temperature increase related to the high rate of deformation. On the other hand, RMG tends to increase slightly the powder contamination by the metallic elements constituting the milling tools. The efficiency of the method is dependent on the rotation speed of the planetary system of milling aid depends also on sufficient hydrogen pressure during RMG. The important density of defects generated in the grains by the technique is expected to facilitate the hydrogen extraction during dehydriding.
机译:已经提出了反应性机械研磨(RMG)方法来生产氢化钛细粉。氢/金属相互作用的动力学通过球冲击下的高金属变形以及由于加工硬化和氢化引起的金属脆化而减小了颗粒尺寸而大大提高。同样重要的是与高变形率有关的局部温度显着升高。另一方面,RMG倾向于稍微增加构成铣削工具的金属元素对粉末的污染。该方法的效率取决于研磨助剂的行星系统的转速,也取决于RMG期间足够的氢气压力。预期通过该技术在晶粒中产生的重要缺陷密度将促进脱水过程中的氢提取。

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