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Tribological compatibility and improvement of machining productivity and surface integrity

机译:摩擦相容性,提高加工生产率和表面完整性

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Machining process productivity and machined part quality improvement is a considerable challenge for modern manufacturing. One way to accomplish this is through the application of PVD coatings on cutting tools. In this study the wear rate and wear behavior of end milling cutters with mono-layered TiAlCrN and nano-multilayered self-adaptive TiAlCrN/WN PVD coatings have been studied under high performance dry ball-nose end-milling conditions. The material being machined in this case is hardened H13 tool steel. The morphology of the worn surface of the cutting tool has been studied using SEM/EDX. The microstructure of the cross-section of the chips formed during cutting was analyzed as well. The surface integrity of the workpiece material was also evaluated. Surface roughness and microhardness distribution near the surface of the workpiece material was also investigated. The data presented shows that achieving a high degree of tribological compatibility within the cutting tool/workpiece system can have a big impact on tool life and surface integrity improvement during end milling of hardened tool steel.
机译:加工过程的生产率和机械零件质量的提高对现代制造是一个巨大的挑战。实现此目的的一种方法是在切削工具上涂覆PVD涂层。在这项研究中,已经研究了在高性能干球鼻立铣条件下,单层TiAlCrN和纳米多层自适应TiAlCrN / WN PVD涂层的立铣刀的磨损率和磨损行为。在这种情况下,要加工的材料是硬化的H13工具钢。已经使用SEM / EDX研究了切削工具的磨损表面的形态。还分析了切削过程中形成的切屑横截面的微观结构。还评估了工件材料的表面完整性。还研究了工件材料表面附近的表面粗糙度和显微硬度分布。所提供的数据表明,在淬硬工具钢的端铣削过程中,在切削工具/工件系统内实现高度的摩擦相容性可能会对工具寿命和表面完整性的改善产生重大影响。

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