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Modeling Flank Wear Hardness of Selected HSS and HCS Single Point Cutting Tools with or without Cutting Fluid

机译:使用或不具有切割液的选择HSS和HCS单点切割工具的侧翼磨损硬度

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Conventional tool monitoring instruments are usually costly to acquire. The instruments are inadequate for real time wear measurement in the uncertain environmental conditions of developing countries. A modeling approach relating relevant parameters causing wear on cutting tools' flank will be useful in predicting wear in machining operations. Mild steel turning experiment was carried out on the lathe using selected High Speed Steel (HSS) and High Carbon Steel (HCS) single point cutting tools. Speed, feed, and time of machining were varied accordingly, while running with, and without coolant. Hardness of the cutting tips of the tools was measured using Rockwell, R hardness tester. The corresponding speed, feed and time of machining were also noted. Turning operation was continued until the tool was totally blunt. At this stage recorded values of hardness, time of machining, feed and speed were modeled using multiple regression technique, with and without cutting fluid. The resulting models were strongly in agreement with the measured values. Therefore, the model is a good predictor of flank wear for the selected tools commonly used in developing countries. The findings showed that wear of the cutting tools can be predicted during machining at predetermined cutting conditions.
机译:传统的工具监测仪器通常昂贵。该仪器在发展中国家的不确定环境条件下实时磨损测量不足。在切割工具侧面引起的相关参数的建模方法对于预测加工操作的磨损将是有用的。使用选定的高速钢(HSS)和高碳钢(HCS)单点切割工具,在车床上进行温和钢转动实验。加工的速度,进料和时间相应地变化,同时运行,无需冷却剂。使用Rockwell,R硬度测试仪测量工具的切割尖端的硬度。还注意到加工的相应速度,进料和时间。持续转动操作直到工具完全钝。在该阶段,使用多元回归技术,使用多元回归技术进行建模的硬度,加工时间,进料和速度的值。由此产生的模型与测量值相一致。因此,该模型是发展中国家常用的所选工具的侧翼磨损的良好预测因子。结果表明,在预定的切割条件下,可以在加工过程中预测切削刀具的磨损。

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