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Investigations on the thermal workpiece distortion in MQL deep hole drilling of an aluminium cast alloy

机译:铝合金MQL深孔钻削中工件热变形的研究

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摘要

Dry machining is frequently applied in cutting operations, in order to reduce the energy consumption and the production costs. In deep hole drilling operations minimum quantity lubrication (MQL) is used to obtain a reliable chip evacuation, since completely dry machining is not feasible. Due to the low cooling effect of MQL, the drilling process generates a high thermal load on the workpiece, which leads to thermally induced workpiece deformations. This paper presents fundamental experimental investigations on the workpiece temperature, the resulting in-process deformations and the achievable straightness accuracy of the borehole. The investigations focus on two different strategies for enhancing the deep hole drilling using MQL. Initially, a high-feed process guiding is introduced, in order to obtain a higher productivity and to reduce the heat input into the workpiece. The second approach is a novel radial spindle compensation, which performs a directional control of the straightness deviation of the deep hole. (C) 2015 CIRP.
机译:为了减少能耗和生产成本,干式机械加工经常用于切割操作中。在深孔钻削操作中,使用最小量润滑(MQL)可获得可靠的排屑,因为完全干式加工是不可行的。由于MQL的冷却效果差,钻孔过程会在工件上产生较高的热负荷,从而导致工件产生热变形。本文介绍了有关工件温度,所产生的加工变形和可达到的钻孔平直度的基础实验研究。研究集中在使用MQL增强深孔钻探的两种不同策略上。最初,引入了高进给工艺指导,以便获得更高的生产率并减少输入到工件中的热量。第二种方法是一种新颖的径向主轴补偿,它可以对深孔的直线度偏差进行方向控制。 (C)2015年CIRP。

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