首页> 外文期刊>Production Engineering: Research and Development >Investigations on the formation of straightness deviation in MQL deep-hole drilling of thin-walled aluminium components: Experimental and simulation-based analysis of thermomechanical effects in deep-hole drilling using single-lip drills and twist drills
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Investigations on the formation of straightness deviation in MQL deep-hole drilling of thin-walled aluminium components: Experimental and simulation-based analysis of thermomechanical effects in deep-hole drilling using single-lip drills and twist drills

机译:薄壁铝部件MQL深孔钻削中直线度偏差的形成研究:基于实验和基于仿真的单唇钻和麻花钻在深孔钻削中的热机械效应分析

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摘要

One of the most challenging machining operation, particularly with regard to the difficult chip evacuation, is the deep-hole drilling process. Due to the high length-to-diameter ratio of the drill holes and of the tools no complete dry machining is possible, thus minimum quantity lubrication is used to provide a lubrication film at the contact surface of the tribological partners and to ensure a reliable chip removal capability. This paper presents a fundamental comparison of the in-process heat input into the workpiece and the resulting straightness deviations for two different tool concepts - a single-lip drill and a twist drill. In particular, the deep-hole drilling of components with small wall thicknesses, down to a minimum value of s_w = 1 mm, was analysed to gather information about the mechanisms leading to straightness deviations. Due to the conclusions, particularly using a single-lip drill, a novel experimental approach for the determination of the force distribution over the drill radius was developed. It enables the incremental force measurement along the cutting edge and has been used to generate input data for a finite element analysis of the tool deflection and the contact conditions between tool and workpiece. The results indicate that the single-lip drill is a competitive alternative to the twist drill, but the asymmetric cutting edge design and the required guide pad support limit its productivity, in particular with regard to the heat input and the straightness deviation in the manufacturing of drill holes in thin-walled workpieces.
机译:深孔钻加工是最具挑战性的加工操作之一,尤其是在排屑困难方面。由于钻孔和工具的长径比高,无法进行完整的干式加工,因此使用最小量的润滑可在摩擦伙伴的接触表面上形成润滑膜并确保可靠的切屑清除功能。本文对两种不同工具概念(单唇钻和麻花钻)的过程中热量输入到工件中以及由此产生的直线度偏差进行了基本比较。尤其是,分析了壁厚较小的零件的深孔钻削,该零件的最小厚度s_w = 1 mm,以收集有关导致直线度偏差的机理的信息。由于这些结论,特别是使用单唇钻时,开发了一种新颖的实验方法来确定钻头半径上的力分布。它可以测量沿切削刃的增量力,并已用于生成输入数据,以对刀具偏斜以及刀具与工件之间的接触条件进行有限元分析。结果表明,单刃钻头是麻花钻头的替代产品,但非对称切削刃设计和所需的导向垫支撑限制了它的生产率,特别是在热输入和直线度制造方面。在薄壁工件上钻孔。

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