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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >The influence of the microstructure of hardened tool steel workpiece on the wear of PCBN cutting tools
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The influence of the microstructure of hardened tool steel workpiece on the wear of PCBN cutting tools

机译:淬硬工具钢工件的显微组织对PCBN刀具磨损的影响

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摘要

Due to the recent developments of advanced cutting tool materials in the superharasive family, such as cubic boron nitride (CBN) tools, the interest in cutting hardened steels has increased significantly. High flexibility and ability to manufacture complex workpiece geometry in one set up is the main advantage of hard turning compared to grinding. The focus of this study is to investigate the performance and wear behavior of CBN tools in finish, dry turning of four different hardened steels, treated to the same hardness R{sub}c = 54. The following four materials were machined: X155CrMoV 12 cold work steel (AISI D2), X38CrMoV5 (AISI H11) hot work steel, 35NiCrMo16 hot work steel and 100Cr6 bearing steel (AISI 52100). A large variation in tool wear rate was observed in the machining of these steels. The tool flank grooves have been correlated to the microstructure of these steels, namely the presence of various carbides. The chip study reveals that there is presence of different amounts of white layers in machining these steels.
机译:由于超磨削族中先进的切削刀具材料(例如立方氮化硼(CBN)刀具)的最新发展,切削硬化钢的兴趣显着增加。与磨削相比,硬车削的主要优点是高灵活性和一次加工制造复杂几何形状的能力。这项研究的重点是研究在以相同的硬度R {sub} c = 54处理的四种不同淬硬钢的精加工,干车削过程中CBN工具的性能和磨损行为。加工了以下四种材料:X155CrMoV 12冷工作钢(AISI D2),X38CrMoV5(AISI H11)热作钢,35NiCrMo16热作钢和100Cr6轴承钢(AISI 52100)。在这些钢的加工过程中,观察到工具磨损率有很大变化。刀具侧面的凹槽已与这些钢的微观结构相关,即存在各种碳化物。芯片研究表明,在加工这些钢时存在不同数量的白色层。

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