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Wear of Composites Based on Bearing Steel under Action of Electric Current at Boundary Friction against Copper under Different Pressures

机译:基于轴承钢的复合材料磨损在不同压力下铜跨界摩擦下的电流作用

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Composites based on recycled bearing steel were obtained. They had a high porosity and were sintered without vacuum furnace using. The structure of pore space was characterized by the presence of large pores and a high content of closed pores. It has been shown that these composites, being impregnated with oil, were able to form a sliding electrical contact with high electrical conductivity and quite low wear rate at a contact current density of up to 250 A/cm~2. Increase of the contact pressure to 0.19 MPa caused an increase in the electrical conductivity of the contact and the wear resistance of the composite. It was noted that sliding in such conditions did not lead to a change in the structure of the surface layer.
机译:得到基于再循环轴承钢的复合材料。它们具有高孔隙率,并且在没有真空炉的情况下烧结。孔隙空间的结构的特征在于存在大孔的存在和高含量的封闭孔。已经表明,用油浸渍的这些复合材料能够以高达250A / cm〜2的接触电流密度的高电导率和相当低的磨损率形成滑动电接触。接触压力的增加至0.19MPa导致接触的导电性和复合材料的耐磨性增加。注意到,在这种条件下滑动并未导致表面层结构的变化。

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