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Influence of Workpiece Hardness on Tool Wear in Profile Micro-milling of Hardened Tool Steel

机译:淬硬工具钢轮廓微铣削中工件硬度对工具磨损的影响

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Machining of engineering metallic materials on micro-level is very complicated. Micro-milling with solid tools, as one of microengineering technologies, is an acceptable process to machining of complex metallic micro-parts. The main problem in micro-milling is sensitivity of cutting tool, due its suppleness and short tool life, and its influences to workpiece accuracy and quality. In this paper is experimentally investigated tool wear of micro-milling tool. During machining tests, influence of workpiece hardness and process parameters is evaluated. Workpiece was cold work alloyed tool steel X155CrVMo12, hardened to different hardness 45, 54 and 63 HRc. Cutting tool was carbide ball-end micro-mill with TiAlN coating, and diameter of 0.6 mm. For different combination of input parameters, tool wear curves is presented, and signification of input parameters on tool wear is evaluated and discussed.
机译:在微观层面上加工工程金属材料非常复杂。作为一种微工程技术,使用实体工具进行微铣削是加工复杂金属微零件的可接受方法。微铣削的主要问题是切削刀具的敏感性,由于其柔韧性和较短的刀具寿命以及对工件精度和质量的影响。本文通过实验研究了微型铣刀的刀具磨损情况。在机加工测试中,评估工件硬度和工艺参数的影响。工件为冷作合金工具钢X155CrVMo12,淬火至不同硬度45、54和63 HRc。切削工具是带有TiAlN涂层的硬质合金球头微型铣刀,直径为0.6 mm。对于输入参数的不同组合,给出了工具磨损曲线,并评估和讨论了输入参数对工具磨损的意义。

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