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Initial tool wear behavior during machining of titanium metal matrix composite (TiMMCs)

机译:钛金属基复合材料(TiMMCs)加工过程中的初始刀具磨损行为

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This article presents the findings from a study of the initial-tool wear behavior when machining the TiMMCs. The results show that the initial wear mechanism of diffusion and adhesion are primarily found for all cutting conditions tested, even though it has been reported that abrasion is the most important mechanism when machining the metal matrix composites. Rapid wear occurs within a very brief period as soon as the cutting action begins and extends to only few seconds at the most. More importantly, we discovered in this study a new wear form, a hard thin layer, at the first transition period. In this case, the effect of chemical stresses under accelerated cutting force and cutting temperature gradient lead to the diffusion wear and built-up edge (BUE) where the tool layer material reacts spontaneously with atmospheric oxygen and oxidizes the titanium and aluminum. These elements then participate in the machining process where the combination of these diffusion wear layer are burnished thermo-chemically under high stress pressure and form a hard smooth layer at the first transition period. Therefore, this layer, herein coined "wear shield", is considered a protection layer at the beginning of the steady wear period. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了对TiMMC进行加工时初始刀具磨损行为的研究结果。结果表明,尽管在机械加工金属基复合材料时,磨损是最重要的机理,但据报道,在所有测试的切削条件下,磨损和粘附的初始磨损机理都是最主要的。切削动作一开始就在很短的时间内就发生了快速磨损,并且最多仅持续几秒钟。更重要的是,我们在本研究中发现了第一个过渡期的一种新磨损形式,即坚硬的薄层。在这种情况下,化学应力在加速切削力和切削温度梯度下的作用会导致扩散磨损和堆积边缘(BUE),在该处工具层材料会与大气中的氧气自发反应并氧化钛和铝。这些元素然后参与机加工过程,在这些过程中,这些扩散磨损层的组合在高应力压力下进行了热化学抛光,并在第一个过渡阶段形成了坚硬的光滑层。因此,该层,在本文中被称为“磨损防护层”,被认为是稳定磨损期开始时的保护层。 (C)2016 Elsevier Ltd.保留所有权利。

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