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Experimental Investigation of Heat Partition Ratio for the Cutting Tool at a Cutting Speed Ranging from 38 to 6500 m/min

机译:切削速度下切削速度的热分隔壁的实验研究范围从38至6500米/分钟

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This paper investigated the variation in a heat partition ratio of the cutting tool with the cutting speed ranging from 38 m/min to 6500 m/min. The orthogonal high-speed cutting experiment was performed utilizing an impact cutting tester developed. The cutting length in this study was 60 mm. The temperatures at the tool-chip interface were measured directly with three pairs of Cu/Ni micro thermocouples fabricated on the rake face. The temperature rises rapidly from the beginning of cutting, and then levels off when a cutting distance exceeds about 10 to 20 times the depth of cut. The distance depends on the cutting speed. Using the temperatures measured, a variation in the heat partition ratio with cutting time was estimated with the aid of a FEA. The heat partition ratio at the end of cutting estimated decreases approximately from 7% to 1% as the cutting speed increases from 38 m/min to 6500 m/min. The heat partition ratio estimated is quite higher than that calculated by employing an analysis assuming the steady state, particularly under the high speed cutting conditions.
机译:本文研究了切削刀具的热分隔壁的变化,切削速度范围为38米/分钟至6500米/分钟。使用冲击切割测试仪进行正交高速切削实验。本研究中的切割长度为60毫米。工具芯片界面处的温度直接测量,用在耙面上制造的三对Cu / Ni微型热电偶测量。温度从切割开始时迅速上升,然后当切割距离超过切割深度的大约10到20倍时,水平截止。距离取决于切割速度。使用测量的温度,借助于FEA估计与切割时间的热分隔壁的变化。切割估计结束时的热分隔比例约为7%至1%,因为切削速度从38米/分钟增加至6500米/分钟。估计的热分配比率远高于通过采用假设稳态的分析来计算的,特别是在高速切削条件下。

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