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Structural mechanism of action of some additives to lubricant

机译:某些添加剂对润滑剂的作用机理

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摘要

Antiwear mechanism of action of some chemical elements added to lubricant is studied. These elements are transferred from the lubricant into the surface layers of the sliding pair during friction. The mechanism is based on the influence of these elements on the stacking fault energy (SFE) of the materials in the friction pair and leads to changes in the fragmented structure formed in the metals under plastic deformation. Work hardening of the metal surface layers and their predisposition to wear are changed accordingly. Copper and Armco iron, as typical FCC and BCC metals, were chosen for the friction pair materials. Si, Ni, Zn, Co and Ti were used as the additive components to the lubricant. It was found that the addition of different elements to the lubricant leads to alloying by these elements of the surface layers of the metal during the process of friction. It was found that alloying by elements which decreases the SFE of the metal, the average size of surface layer fragments formed during friction increases and the wear rate decreases. The possibility of controlling the wear resistance of metals during friction through the use of appropriate additives is discussed.
机译:研究了添加到润滑剂中的某些化学元素的抗磨作用机理。这些元素在摩擦过程中从润滑剂转移到滑动副的表面层中。该机理基于这些元素对摩擦副中材料的堆垛层错能(SFE)的影响,并导致塑性变形下金属中形成的碎片结构发生变化。金属表面层的加工硬化及其易磨损性也随之改变。选择铜和Armco铁作为典型的FCC和BCC金属作为摩擦副材料。 Si,Ni,Zn,Co和Ti用作润滑剂的添加剂成分。已经发现,向润滑剂中添加不同的元素会导致在摩擦过程中金属表面层的这些元素合金化。已经发现,通过降低金属的SFE的元素合金化,在摩擦期间形成的表面层碎片的平均尺寸增加并且磨损率降低。讨论了通过使用适当的添加剂来控制金属在摩擦过程中的耐磨性的可能性。

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