首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Initiation and evolution of the aluminium-alloy transfer on hot-work tool steel at temperatures from 20℃ to 500℃
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Initiation and evolution of the aluminium-alloy transfer on hot-work tool steel at temperatures from 20℃ to 500℃

机译:20℃至500℃温度下热作工具钢上铝合金转移的发生和演化

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摘要

During the forming of aluminium alloys there are several difficulties associated with controlling the process parameters and the product quality due to the severity of the contact. Adhesion and, in particular, the formation of transfer films of aluminium alloys on the surfaces of hot-work tool steels are very negative phenomena in this process and require a better understanding. The present work is focused on the initiation and evolution of the transfer of the aluminium alloy EN AW-6060 to the nitrided hot-work tool steel AISI H13 in the temperature range from 20℃ to 500℃. All the tests were performed under cross cylinder single-pass, dry-sliding-contact conditions over different sliding distances. The contact was investigated in terms of the surface area and the volume of the transferred aluminium alloy to the surface of the tool steel, the topography of the wear trace and the corresponding coefficient of friction. The results show the strong dependence of the tribological properties in the contacts of the nitrided hot-work tool steel and the aluminium alloy on the temperature. However, it was found that the whole tribological behaviour is largely already defined during the very early stages of sliding, i.e., at the initiation of sliding, after which it becomes even more pronounced as the temperature increases. At low temperatures (20-200℃) the surface roughness of the tool steel was found to be the key initial cause of the aluminium alloy's transfer, while at higher temperatures (300-500℃) this transfer occurred predominantly due to strong adhesion.
机译:在铝合金的成型过程中,由于接触的严重性,在控制工艺参数和产品质量方面存在一些困难。在此过程中,粘附性,特别是在热作工具钢表面上形成铝合金的转移膜是非常不利的现象,需要更好地理解。目前的工作集中于在20℃至500℃的温度范围内,铝合金EN AW-6060向渗氮热作工具钢AISI H13的转移的开始和演化。所有测试均在十字圆柱单程,干式滑动接触条件下,不同的滑动距离下进行。根据表面积和转移到工具钢表面的铝合金的体积,磨损痕迹的形貌和相应的摩擦系数研究了这种接触。结果表明,渗氮的热作工具钢与铝合金接触时的摩擦学性能与温度有很大的关系。但是,已经发现,在滑动的非常早期阶段,即在滑动开始时,已经基本确定了整个摩擦学行为,此后随着温度升高,摩擦学行为变得更加明显。在低温(20-200℃)下,发现工具钢的表面粗糙度是铝合金转移的关键初始原因,而在高温(300-500℃)下,这种转移主要是由于牢固的附着力引起的。

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