Hydrogen-phase naklep as a result of single isothermal hydride transformations

G. I. Zhirov, M. V. Goltsova
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Abstract

Hydrogen treatment of metallic materials is a promising area of controlled hydrogen action on metals and alloys in order to impart special properties to them. In this work, the changes in the mechanical properties of palladium during single hydride transformations, which are initiated in the initially non-nakleped palladium hydride, have been experimentally studied. Were investigated wire palladium samples with a purity of 99.98 %, a diameter of 0.5 mm and a length of 165 mm. Samples for research were preliminarily subjected to hydrogen treatment, and then mechanical tests were carried out. The mechanical properties of non-nakleped palladium hydride are presented. Hydrogen-phase naklep of palladium during hydrogen treatment has been studied. It is shown that palladium hydride is a plastic material with low strength characteristics. During the reverse hydride transformation, the hydrogen phase naklep of palladium develops. Experimental facts of the appearance of hydrogen-phase naklep during the interaction of hydrogen with other metals and alloys are discussed.
单等温氢化物转变的结果——氢相裸露
金属材料的氢处理是控制氢作用于金属和合金以赋予其特殊性能的一个有前途的领域。本文通过实验研究了钯的单氢化物转变过程中力学性能的变化。得到了纯度为99.98%、直径为0.5 mm、长度为165 mm的金属钯丝样品。对研究样品进行初步的氢处理,然后进行力学试验。介绍了非裸层氢化钯的力学性能。研究了钯在加氢处理过程中的氢相变化。结果表明,氢化钯是一种低强度的塑性材料。在反氢化转变过程中,钯的氢相裸露。讨论了氢与其他金属和合金相互作用过程中氢相裸露现象的实验事实。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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