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Wear development of cemented carbide inserts coated with mono and multilayer PVD films, considering their strength properties, adhesion and the cutting loads

机译:考虑到单层和多层PVD膜涂层的硬质合金刀片的磨损发展,考虑到它们的强度特性,附着力和切削负荷

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In this work, we investigated the feasibility of increasing the cutting performance of coated tools through the application of multilayered PVD film structures. A monolayer TiAlN and a multilayer TiN/TiAlN coating of the same overall thickness deposited on K35 cemented carbide inserts, were investigated concerning their mechanical, adhesion properties and wear behavior in milling operations. The mechanical properties of both applied films were determined with the aid of nanoindentations and then the evaluation of the corresponding results by appropriate FEM supported algorithms. Impact tests were also conducted to determine film fatigue and adhesion data and the film failure development after the coating fracture initiation. Based on a FEM simulation and on experimental results, the stress field in the cutting wedge region was calculated and the wear initiation and propagation in the investigated mono and multilayer coating cases was explained. (c) 2006 Elsevier B.V. All rights reserved.
机译:在这项工作中,我们研究了通过应用多层PVD薄膜结构来提高涂层工具的切削性能的可行性。研究了在K35硬质合金刀片上沉积的总厚度相同的单层TiAlN和多层TiN / TiAlN涂层的机械,粘合性能以及在铣削过程中的磨损行为。借助于纳米压痕确定两种涂覆膜的机械性能,然后通过适当的有限元分析支持的算法评估相应的结果。还进行了冲击试验,以确定膜疲劳和粘附性数据以及涂层断裂开始后膜破坏的发展。基于有限元模拟和实验结果,计算了切削楔区域的应力场,并解释了所研究的单层和多层涂层情况下的磨损萌生和扩展。 (c)2006 Elsevier B.V.保留所有权利。

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