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METHODS OF PROTECTING FRICTION UNIT PARTS OF MACHINES AND EQUIPMENT USED IN MICROBIOLOGICAL AND PHARMACEUTICAL INDUSTRIES FROM HYDROGEN WEARING

机译:氢气磨损保护微生物,制药工业中使用的机器和设备的摩擦部件的方法

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The results of theoretical and experimental investigations into strengthening friction unit parts of the machines operating in contact with biochemically reactive technogeneous media are presented. As it has already been shown the agent intensifying the failure of friction surfaces of machine parts in these conditions is biogeneous hydrogen. One of the effective methods for improving their wear resistance is the gas-thermal spraying of powder self-fluxing chrome-nickel alloys and compositions on their base on the working surfaces of machine parts with the subsequent alloying of a coating top layer with copper. It is shown that the addition of small amounts of copper results in the formation of a multicomponent coating with a three-layer structure. Possessing the properties of a biocide, copper retards the biofailures and because of servo-like film formed at a friction contact ensures the operation of kinematic couples under self-shifting selective transfer, which reduces the saturation of the surface with hydrogen.
机译:介绍了加强与生化反应性技术介质接触的机器的摩擦单元部件的理论和实验研究的结果。如已经显示的,在这些条件下加剧机械零件的摩擦表面失效的试剂是生物源性氢。改善其耐磨性的有效方法之一是对粉末自熔铬镍合金及其组合物进行气体热喷涂,将其喷涂在机械零件的工作表面上,然后在涂层顶层与铜合金化。已经表明,少量的铜的添加导致形成具有三层结构的多组分涂层。拥有杀生物剂的特性,铜可延缓生物失效,并且由于在摩擦接触处形成的伺服类膜可确保运动对在自移选择性转移下的运行,从而降低了氢表面的饱和度。

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