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Initiation of Galling in Metal Forming: Differences Between Aluminium and Austenitic Stainless Steel Studied In Situ in the SEM

机译:金属成形中起毛的引发:在SEM中原位研究铝和奥氏体不锈钢之间的差异

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摘要

High friction and transfer of work material to tool surfaces constitute important industrial problems in forming of many metals and alloys. However, it is very hard to gain a deeper understanding of these phenomena by studying real forming operations. In this paper, we have tried to gain fundamental understanding by avoiding as much as possible of the complexity of real forming. This has been realised by studying the friction and material transfer between well-defined tool material surfaces; uncoated and DLC-coated tool steel, and a needle shaped austenitic stainless steel tip, in situ in the SEM. The tool materials were tested in two conditions; well polished and well polished with local intentional scratches. It was found that work material was immediately transferred to the tool steel surface. When passing an intentional scratch, the local transfer was on a much larger scale, and the friction was higher, but the effect was mostly local. For the polished DLC-coated surface, almost no work material was transferred and the friction was low. An intentional scratch in the polished DLC surface barely influenced the galling behaviour. The present results are discussed in the light of previously published results from an analogous study with aluminium as work material.
机译:在许多金属和合金的成型中,高摩擦力以及工作材料向工具表面的转移构成了重要的工业问题。但是,很难通过研究实际的成形操作来更深入地了解这些现象。在本文中,我们试图通过尽可能避免实际成形的复杂性来获得基本的了解。这是通过研究定义明确的工具材料表面之间的摩擦和材料传递来实现的。 SEM中原位镀有未涂层和DLC涂层的工具钢,以及针状奥氏体不锈钢尖端。工具材料在两个条件下进行了测试:抛光良好,且抛光良好,并有局部刻痕。发现工作材料被立即转移到工具钢表面。当通过有意的刮擦时,局部传递的范围更大,摩擦也更高,但效果大多是局部的。对于抛光的DLC涂层表面,几乎没有工作材料被转移,并且摩擦很小。在抛光的DLC表面上故意划伤几乎不会影响磨损行为。根据以前发表的以铝为工作材料进行的类似研究得出的结果,对本研究结果进行了讨论。

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