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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >The machinability and tribological characteristics of aluminum alloys with improved elevated temperature properties using rapidly solidified powder
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The machinability and tribological characteristics of aluminum alloys with improved elevated temperature properties using rapidly solidified powder

机译:使用快速凝固粉末改善高温性能的铝合金的切削性能和摩擦学特性

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摘要

In this investigation the tribological characteristics of rapidly solidified Al-8Fe-4Ce with improved elevated temperature properties were studied. Such characteristics were compared with cast aluminum-silicon alloy and cast zinc-aluminum alloy. These materials included Al-13Si, Zn-35Al, Zn-35Al-Si, Zn-35Al-3.75Si and Zn-35Al-5.8Si. The wear rates of all materials were tested on a crossed-cylinders wear machine against 440C stainless steel counterface lapped by random abrasion using diamond paste to the desired average surface roughness. The effects of sliding distance on both the worn volume and the coefficient of friction were examined. The aluminum-iron-cerium alloy (Al-8Fe-4Ce) showed the lowest wear rate. The experiments were then extended on this material to examine the effect of varying the applied load and sliding speed on its wear rate. It was found that increasing the applied load increased the wear rate while it was slightly sensitive to the change in sliding speed. As the wear results showed that the Al-8Fe-4Ce alloy has the lowest wear rates, its machinability during turning operation was studied. Statistically-based experimental design (response surface methodology) using central composite second-order rotatable design technique was used to improve the experimentation design without loss of accuracy of the results. The interaction of cutting parameters (cutting speed, feed rate and depth of cut) was examined and their effect on the average surface roughness was reported. It was found that employing a combination of high cutting speed and small depth of cut with small feed rate causes a significant reduction in R-a. The data were represented in three-dimensional and contour graphs for selecting the appropriate machining conditions required to achieve desired values of surface roughness. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 17]
机译:在这项研究中,研究了具有提高的高温性能的快速凝固的Al-8Fe-4Ce的摩擦学特性。将这种特性与铸铝硅合金和铸锌铝合金进行比较。这些材料包括Al-13Si,Zn-35Al,Zn-35Al-Si,Zn-35Al-3.75Si和Zn-35Al-5.8Si。所有材料的磨损率均在交叉圆筒磨损机上针对440C不锈钢对接面进行测试,该对接面通过使用金刚石糊料至所需平均表面粗糙度的随机磨损进行研磨。研究了滑动距离对磨损量和摩擦系数的影响。铝铁铈合金(Al-8Fe-4Ce)的磨损率最低。然后对该材料进行了实验,以研究改变施加的载荷和滑动速度对其磨损率的影响。发现增加施加的载荷会增加磨损率,而它对滑动速度的变化稍有敏感。磨损结果表明,Al-8Fe-4Ce合金的磨损率最低,因此研究了其在车削过程中的切削性能。使用基于中央复合二阶可旋转设计技术的基于统计的实验设计(响应面方法)来改进实验设计,而不会降低结果的准确性。检查了切削参数(切削速度,进给速度和切削深度)的相互作用,并报告了它们对平均表面粗糙度的影响。已经发现,将高切削速度和小切削深度与小进给速度结合使用会显着降低R-a。数据以三维图和轮廓图表示,用于选择实现所需表面粗糙度值所需的适当加工条件。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:17]

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