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The influence of the coating thickness on its strength properties and on the milling performance of PVD coated inserts

机译:涂层厚度对其强度性能和PVD涂层刀片铣削性能的影响

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The evolution of the physical vapour deposition (PVD) process has contributed to the wide application of thin hard coatings on cutting tools. The film thickness can significantly affect the tool cutting performance. In the present paper, PVD (Ti46Al54)N coatings with thickness from 2 to 10 mum were deposited on cemented carbide inserts. The coating material properties and especially their stress-strain relationship for the various coating thicknesses were determined by means of a FEM-based evaluation procedure on nanohardness measurement results. An increasing of the coating thickness deteriorates the coating mechanical strength, however it can lead to higher effective cutting edge radii, thus inducing lower stresses on the cutting edge, as the related FEM simulation results of the cutting edge region during the material removal show. Moreover, the substrate is better protected against abrasive wear and thermal loads occurring during the cutting process. The tool wear investigations conducted in milling are depicted by the numerically extracted dependencies, explaining the increased cutting performance of thicker coatings which, on the other hand, cause higher PVD costs. (C) 2003 Elsevier Science B.V All rights reserved. [References: 16]
机译:物理气相沉积(PVD)工艺的发展促进了薄硬涂层在切削工具上的广泛应用。膜厚会严重影响刀具的切削性能。在本文中,将厚度为2到10微米的PVD(Ti46Al54)N涂层沉积在硬质合金刀片上。借助于基于纳米硬度测量结果的基于FEM的评估程序,确定了涂层材料的性能,尤其是它们对于各种涂层厚度的应力-应变关系。涂层厚度的增加会降低涂层的机械强度,但是会导致较高的有效切削刃半径,从而在切削刃上产生较低的应力,因为在材料去除过程中切削刃区域的相关FEM模拟结果表明。此外,可以更好地保护基材免受切割过程中出现的磨料磨损和热负荷的影响。铣削过程中进行的刀具磨损研究通过数值提取的依赖关系进行了描述,从而解释了较厚涂层的切削性能提高,另一方面,这会导致更高的PVD成本。 (C)2003 Elsevier Science B.V保留所有权利。 [参考:16]

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