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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Modeling the Progression of Flank Wear on Uncoated and Ceramic-Coated Polycrystalline Cubic Boron Nitride Tools in Hard Turning
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Modeling the Progression of Flank Wear on Uncoated and Ceramic-Coated Polycrystalline Cubic Boron Nitride Tools in Hard Turning

机译:硬车削中未涂层和陶瓷涂层的多晶立方氮化硼刀具侧面磨损的进程建模

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摘要

Accurate wear modeling has always been desired, but has also been difficult and elusive. Most useful wear models have relied on experimental calibration because the physical wear mechanisms are not fully understood. This is particularly true in machining, where contact stresses and temperatures can be extremely high. In machining, the two wear modes most frequently discussed are crater wear and flank wear. Flank wear receives much more attention because it is easier to measure and the mechanism of material loss is thought to be better understood for most machining situations. This work focuses on flank wear for the same reasons. In hard turning, tool life is relatively short and both crater wear and flank wear influence the cutting process substantially. Understanding the progression of flank wear at various cutting conditions is beneficial in itself, but the ability to predict this progression will be extremely valuable. This work addresses both. Experimental flank wear progression is shown for uncoated and ceramic-coated polycrystalline cubic boron nitride (PCBN) tools at a range of cutting conditions. These data are used to calibrate a proposed mechanical wear model that predicts the progression of flank wear and tool failure points based on the cutting speed, feed, and cutting depth. The model was validated by additional experiments, which show good agreement with the predictions.
机译:一直以来都希望有精确的磨损模型,但也很难而且难以捉摸。由于尚未完全了解物理磨损机制,因此大多数有用的磨损模型都依赖于实验校准。在接触应力和温度可能非常高的机械加工中尤其如此。在机加工中,最经常讨论的两种磨损模式是月牙洼磨损和侧面磨损。侧面磨损得到了更多的关注,因为它更易于测量,并且在大多数加工情况下,人们对材料损失的机理也有了更好的理解。出于相同的原因,这项工作着重于侧面磨损。在硬车削中,刀具寿命相对较短,并且月牙洼磨损和后刀面磨损都会严重影响切削过程。了解各种切削条件下的侧面磨损的进展本身是有益的,但是预测这种进展的能力将非常有价值。这项工作解决了这两个问题。显示了在一系列切削条件下,未涂层和陶瓷涂层的多晶立方氮化硼(PCBN)工具的实验齿面磨损进度。这些数据用于校准建议的机械磨损模型,该模型根据切削速度,进给和切削深度预测侧面磨损和刀具故障点的进展。该模型已通过其他实验验证,这些实验与预测结果吻合良好。

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