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A Critical Review of Measures for an Effective Application of Nano-Structured Coatings in Milling

机译:纳米结构涂层在铣削中有效应用的措施的批判性评论

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The evolution of the coating deposition technologies led, among others, to the production of nano-structured coatings. Such coatings are often deposited on cutting tools since they contribute to an impressive enhancement of the coated tool life. Hereupon, attention has to be given for avoiding a rapid crack propagation due to a potential coating brittleness increase and for achieving a sufficient film adhesion. In this context, film residual stresses and structure may affect the film adhesion. This paper introduces characteristic measures for an effective application of nano-structured PVD and diamond coatings on cemented carbide tools in milling. More specifically, the adhesion of PVD HPPMS nano-structured coatings can be improved via an appropriate adhesive interlayer. Besides, the coating brittleness can be restricted through the application of nano multi-layer film structures. Furthermore, for improving the diamond coated tool performance, the diamond film nano-structure may be interrupted by micro diamond layers. The introduction of successive nano- and micro-structured layers restricts the film brittleness since micro-structured layers are more deformable compared to nano-structured ones. Finally, the interfacial fatigue strength of diamond coatings is affected by the film residual stresses. Inclined impact tests supported by appropriate FEM simulations facilitate the quantitative adhesion characterization of such films.
机译:涂层沉积技术的发展尤其导致了纳米结构涂层的生产。这样的涂层通常沉积在切削刀具上,因为它们有助于显着提高涂层刀具的使用寿命。因此,必须注意避免由于潜在的涂层脆性增加而引起的快速裂纹扩展以及实现足够的膜粘附性。在这种情况下,膜的残余应力和结构可能会影响膜的附着力。本文介绍了在硬质合金刀具铣削中有效应用纳米结构PVD和金刚石涂层的特征性措施。更具体地说,可以通过适当的粘合剂夹层来改善PVD HPPMS纳米结构涂层的粘附性。此外,可以通过应用纳米多层膜结构来限制涂层脆性。此外,为了改善金刚石涂层工具的性能,金刚石膜纳米结构可以被微金刚石层打断。连续的纳米和微结构层的引入限制了膜的脆性,因为与纳米结构层相比,微结构层更易变形。最后,金刚石涂层的界面疲劳强度受薄膜残余应力的影响。适当的FEM模拟支持的倾斜冲击试验有助于对此类薄膜进行定量粘合表征。

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