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Modelling and Experimental Investigation of Cutting Temperature when Rough Turning Hardened Tool Steel with PCBN Tools

机译:用PCBN工具粗糙转动硬化工具钢的切削温度建模与实验研究

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In this study the cutting tool temperature that develops during rough turning of hardened cold-work tool steel is modelled on the basis of experimental data. The data obtained from a series of thermocouples, placed on a PCBN insert, into an anvil, and into a toolholder, were used as the input for the model. An inverse problem was solved, where the heat fluxes and heat transfer coefficients were computed and where the developed temperature field was reconstructed from the experimental readings. The temperature was modelled for the case of new tools, as well as for the case of its development in the course of tool wear. The machining case involved utilization of a high-cBN content and a binderless PCBN grade, both possessing high thermal conductivity of 110 and 190 W/m K respectively.
机译:在这研究中,在硬化冷工刀钢的粗糙转动期间开发的切削刀具温度是在实验数据的基础上建模的。从一系列热电偶获得的数据,放置在PCBN插入物中,进入砧座,进入刀架,作为模型的输入。解决了逆问题,其中计算了热通量和传热系数,并且从实验读数重建了所发育的温度场。温度为新工具的情况,以及在工具磨损过程中的开发的情况下建模。加工案例涉及利用高CBN含量和粘合剂的PCBN等级,分别具有110和190W / m k的高导热率。

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