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Development of Advanced Surface Engineering Technologies for the Benefit of Multipoint Cutting Tools

机译:开发高级刀具益处的先进表面工程技术

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The benefits of applying advanced coatings on both single point and multipoint cutting tools such as improvement of productivity, tool life, machined surface quality etc. have been realised by the surface engineering researchers [1], commercial coaters [2-4] and end users [5]. The demand for advanced coatings in cutting tool industries is continually growing to meet the challenges of high speed machining, dry machining, near net-shape machining, machining of hard-to-cut materials etc.. Advanced coatings with excellent properties on flat coupon in a laboratory deposited by modern deposition technologies should not be taken for granted in improving the performance of complex shaped cutting tools [6] in aggressive cutting environments. This is because the end performance of coated cutting tools is not only dependant on the coating itself but also on the tool substrate material, geometry, surface finish and cutting edge conditions prior to coating deposition. The paper presents case studies with examples of successes and failures of advanced coatings on different multipoint cutting tools (e.g., milling cutters, bandsaws, circular saws, holesaws etc.). The future strategy for developing successful coating technology for cutting tools should be directed towards adopting a systems approach to bridge the communication gap amongst the cutting tool manufactures, tool coaters and end users.
机译:表面工程研究人员[1],商业涂布器[2-4]和最终用户,实现了在单点和多点切割工具上应用先进涂层的诸如提高生产率,工具寿命,加工的表面质量等的益处。 [5]。切割工具行业的先进涂层的需求不断增长,以满足高速加工,干燥加工,靠近网状加工,难以切割材料的加工等挑战。高级涂料在平面优惠券上具有优异的特性不应通过现代沉积技术沉积的实验室,以改善复杂的切削工具[6]在积极的切割环境中的性能。这是因为涂层切削刀具的最终性能不仅取决于涂层本身,而且在涂覆沉积之前还取决于涂层本身,还取决于刀具基板材料,几何形状,表面光洁度和切削刃条件。本文呈现了不同多点切割工具上的先进涂层的成功和故障的例子的案例研究(例如,铣刀,带锯,圆锯,孔锯等)。用于切割工具的成功涂装技术的未来策略应针对采用系统方法来桥接刀具制造商,工具涂料和最终用户之间的通信差距。

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