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Laser alloying of aluminum alloy AA 6061 with Ni and Cr. Part II. The effect of laser alloying on the fretting wear resistance

机译:铝合金AA 6061与镍和铬的激光合金化。第二部分激光合金化对微动磨损的影响

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摘要

The probability of encountering fretting in machines and engineering structures is extremely high, and it is well known that aluminum alloys have poor fretting wear resistance. In this investigation, the effect of laser surface alloying of Ni and Cr on the fretting resistance of 6061 aluminum alloys under unlubricated conditions was studied. The fretting wear performance of the laser-treated alloys was characterized by evaluating the wear volume loss, the coefficient of friction and fretting mechanisms. It was found that the fretting wear resistance of 6061 aluminum alloy was improved by a factor of three after laser alloying, while the coefficient of friction was decreased. The effects of fretting conditions such as load and amplitude on the fretting wear behavior were evaluated. The fretting wear mechanisms of both untreated and laser-treated specimens were adhesive, abrasive, oxidation and delamination wear. At the beginning of fretting cycles, adhesive and abrasive wear were the main wear mechanisms. During long-time running, delamination and oxidation were the main wear mechanisms for both laser-treated and untreated specimens. (C) 1998 Elsevier Science S.A. [References: 19]
机译:在机器和工程结构中发生微动磨损的可能性非常高,众所周知,铝合金的微动磨损性较差。在这项研究中,研究了镍和铬的激光表面合金化对6061铝合金在非润滑条件下耐微动磨损的影响。通过评估磨损量损失,摩擦系数和微动机理来表征激光处理合金的微动磨损性能。发现在激光合金化后6061铝合金的抗微动磨损性能提高了三倍,而摩擦系数却降低了。评估了微动条件(例如载荷和振幅)对微动磨损行为的影响。未经处理和经激光处理的试样的微动磨损机理为粘着,磨蚀,氧化和分层磨损。在微动周期开始时,粘合剂和磨料磨损是主要的磨损机制。在长时间运行中,分层和氧化是激光处理和未处理样品的主要磨损机理。 (C)1998 Elsevier Science S.A. [参考:19]

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