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Dry Adhesive Friction Process Regularities during Frictional Contact of Heterogeneous 'Copper-Aluminum' System Materials

机译:异构“铜铝”系统材料摩擦接触期间干粘合摩擦过程规律

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By means of optical and scanning electron microscopy the surface layer structure of aluminum alloy AMg5 samples with introduced copper part after adhesive frictional contact with AISI 420 steel counterbody was studied. It is revealed that under plastic deformation and material fragmentation in the frictional contact zone a complex mixture of different phase layers is formed due to the formation of different flows of aluminum alloy and copper during friction. Mechanical mixing of a material occurs on all length of a friction path with different intensity depending on distance to copper fragment. Both laminar and turbulent flows of material are formed in the surface layer, as well as a wide range of solid solutions, intermetallic phases and mechanical mixtures.
机译:通过光纤和扫描电子显微镜,研究了铝合金AMG5样品的表面层结构,其中研究了与AISI 420钢对立面的粘合摩擦接触后引入的铜部分。 据透露,在摩擦接触区域中的塑性变形和材料碎片下,由于在摩擦期间形成不同流动的铝合金和铜而形成不同相层的复杂混合物。 材料的机械混合发生在具有不同强度的摩擦路径的所有长度,这取决于与铜片段的距离的距离。 层叠的材料和湍流的材料形成在表面层中,以及各种固溶体,金属间相和机械混合物。

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