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Wearing of Friction Pair Parts in Technogeneous Hydrogen-Containing Media

机译:技术性含氢介质中摩擦副零件的磨损

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The results of theoretical and experimental investigations into the mechanism of hydrogen wearing of machine friction units exposed to microbiological media are presented. It is shown that reactions of biochemical synthesis, activated by friction, speed up considerably the dissociation of hydrogen molecules on a metal surface. This also intensifies adsorption and diffusion of hydrogen in a metal since in these conditions, the rate of dissociation of hydrogen molecules into atoms is much higher than that in a gas medium. This fact is very important because saturation and penetration of hydrogen into metals is determined by the rate of surface processes under friction on the phase boundary, and this influences the selection of techniques and materials to be used for developing protective coatings.
机译:介绍了暴露于微生物介质中的机械摩擦装置的氢磨损机理的理论和实验研究结果。结果表明,通过摩擦激活的生化合成反应大大加快了金属表面上氢分子的离解。由于在这些条件下,氢分子分解成原子的速率比气体介质中的高得多,这也加剧了氢在金属中的吸附和扩散。这个事实非常重要,因为氢的饱和和渗透到金属中是由相边界上的摩擦作用下的表面处理速率决定的,这会影响用于开发保护涂层的技术和材料的选择。

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