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Investigation of chip-tool interface temperature during turning of hardened AISI 4340 alloy steel using multi-layer coated carbide inserts

机译:用多层涂层硬化碳化物插入件硬化AISI 4340合金钢转动过程中芯片工具界面温度的研究

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In the present work, effect of work material hardness and cutting parameters on chip-tool interface temperature was investigated during turning of AISI 4340 steel hardened at two different levels of hardness 35 and 45 HRC, respectively, using CVD applied multi-layer TiCN/Al_2O_3/TiN coated carbide inserts. A tool-work thermocouple principle was used to measure the interface temperature during turning. The correlation coefficient between experimental and predicted values of interface temperature found close to 0.95, which showed that the developed model is reliable and could be used effectively for predicting the interface temperature for the given tool and work material pair and within the domain of the cutting parameters. Experimental observations indicate that the interface temperature is higher for harder work material and get affected mostly by cutting speed followed by feed. However, depth of cut has little influence on interface temperature irrespective of the hardness of the workpiece.
机译:在目前的工作中,使用CVD施加的多层TICN / AL_2O_3,在分别在两种不同水平的硬度35和45HRC硬化时,研究了工作材料硬度和切削参数对芯片工具界面温度的影响。 /镀锡碳化物插入物。工具工作热电偶原理用于测量转弯期间的界面温度。界面温度的实验性和预测值之间的相关系数,接近0.95,表明开发的模型可靠,可以有效地用于预测给定工具和工作材料对的界面温度以及切割参数的域内。实验观察表明,对于更硬的工作材料,界面温度更高,并且通过切割速度随后受到饲料而受到影响。然而,无论工件的硬度如何,切割深度对界面温度都没有影响。

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