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Frictional seizure of aluminium observed by X-ray imaging

机译:X射线成像观察到铝的摩擦咬合

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Friction and wear of non-ferrous metals and coatings are of considerable interest in the light of use of the above in tribo-contacts. As most of the mechanisms governing the seizure of materials are concentrated at the center of the contact and are hidden, it is difficult to observe any precipitate changes in the behavior of such materials using conventional tools. In this work, we have used an X-ray microscope for in-situ observation of frictional seizure, wear and interfacial features daring the testing of aluminium (AA1100) specimens sliding against Al 6061 disk. This technique enables the observation of interfacial features of the hidden contact despite the small density differences that exist between the sliding pair of materials. Seizure tests were conducted at different sliding speeds of 2 and 4 m/s. Aluminium was found to undergo incipient melting daring sliding at a sliding speed of 2 m/s whereas the specimen tested at 4 m/s was found to undergo a severe plastic distortion thus restricting further testing of the same. Frictional heating of concentrated spots resulted in melting wear and diffusion assisted bonding of surface layers. This was later found to develop into a conformal contact following a lumpy transfer of material. The mechanisms of seizure and wear were affected by the sliding speeds during testing. At lower sliding speed (2 m/s) the transfer and bonding of deposits occurred due to direct contact of nascent sliding surfaces.
机译:鉴于上述在摩擦接触中的使用,有色金属和涂层的摩擦和磨损引起了极大的关注。由于控制材料扣押的大多数机制都集中在接触的中心并被隐藏起来,因此使用常规工具很难观察到此类材料行为的任何沉淀变化。在这项工作中,我们使用X射线显微镜对摩擦咬合,磨损和界面特征进行了原位观察,以期对在Al 6061圆盘上滑动的铝(AA1100)标本进行测试。尽管滑动材料对之间存在很小的密度差异,但该技术仍可以观察到隐藏触点的界面特征。在2和4 m / s的不同滑动速度下进行了咬合测试。发现铝以2 m / s的滑动速度开始大胆地滑动,而以4 m / s的速度进行测试的样品则经历了严重的塑性变形,因此限制了对其的进一步测试。集中点的摩擦加热导致表面层熔化磨损和扩散辅助结合。后来发现,在块状材料转移之后,该材料发展为共形接触。测试过程中的滑动速度会影响癫痫发作和磨损的机制。在较低的滑动速度(2 m / s)下,由于新生滑动表面的直接接触而发生沉积物的转移和结合。

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