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Contribution to dynamic characteristics of the cutting temperature in the drilling process considering one dimension heat flow

机译:考虑一维热流的钻削过程中切削温度动态特性的贡献

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The machining of hardened steels has always been a great challenge in metal cutting, particularly for drilling operations. Generally, drilling is the machining process that is most difficult to cool due to the tool's geometry. The aim of this work is to determine the heat flux and the coefficient of convection in drilling using the inverse heat conduction method. Temperature was assessed during the drilling of hardened AISI H13 steel using the embedded thermocouple technique. Dry machining and two cooling/lubrication systems were used, and thermocouples were fixed at distances very close to the hole's wall. Tests were replicated for each condition, and were carried out with new and worn drills. An analytical heat conduction model was used to calculate the temperature at tool-workpiece interface and to define the heat flux and the coefficient of convection. In all tests using new and worn out drills, the lowest temperatures and decrease of heat flux were observed using the flooded system, followed by the MQL, considering the dry condition as reference. The decrease of temperature was directly proportional to the amount of lubricant applied and was significant in the MQL system when compared to dry cutting.
机译:淬硬钢的加工一直是金属切削(尤其是钻孔操作)中的巨大挑战。通常,由于工具的几何形状,钻孔是最难冷却的加工过程。这项工作的目的是使用逆导热方法确定钻井中的热通量和对流系数。使用嵌入式热电偶技术在硬化AISI H13钢的钻孔过程中评估温度。使用了干式加工和两个冷却/润滑系统,并且热电偶被固定在非常靠近孔壁的距离处。针对每种条件重复进行测试,并使用新的和磨损的钻头进行测试。分析热传导模型用于计算工具-工件界面的温度,并定义热通量和对流系数。在所有使用新钻和旧钻的测试中,使用满溢系统观察到最低温度并降低了热通量,其次是MQL,并将干燥条件作为参考。温度下降与所用润滑剂的量成正比,与干切削相比,在MQL系统中温度下降显着。

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