首页> 外文期刊>Journal of Tribology >Influence of Minimum Quantity Lubrication on Friction Coefficient and Work-Material Adhesion During Machining of Cast Aluminum With Various Cutting Tool Substrates Made of Polycrystalline Diamond, High Speed Steel, and Carbides
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Influence of Minimum Quantity Lubrication on Friction Coefficient and Work-Material Adhesion During Machining of Cast Aluminum With Various Cutting Tool Substrates Made of Polycrystalline Diamond, High Speed Steel, and Carbides

机译:用多晶金刚石,高速钢和硬质合金制成的各种切削刀具基底,在铸造铝加工过程中的最小润滑量对摩擦系数和工作材料附着力的影响

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摘要

Due to the increasing emphasis on environmental constraints, industry works on how to limit the massive use of lubricants by using the micro-pulverization of oil in machining processes and, especially, in the machining of aluminum alloys for the automotive industry. The success of a machining operation is dependent on a friction coefficient and weak adhesion with the tool-work material interface. This paper aims at identifying the influence of cutting tool substrates (high speed steel (HSS), carbide, polycrystalline diamond (PCD)) and of minimum quantity lubrication (MQL) on the friction coefficient and on adhesion in tribological conditions corresponding to the ones observed in the cutting of aluminum alloys (sliding velocity: 20-1500m/min). An open ball-on-cylinder tribometer, especially designed to simulate these tribological conditions through Hertz contact, has been used. It has been shown that HSS and carbide substrates lead to large friction coefficients (0.8-1) and substantial adhesion in dry conditions, whereas PCD substrates would lead to lower average friction coefficient values (0.4-0.5) and very limited adhesion, which proves the necessity of using PCD tools in the dry machining of aluminum. It has also been shown that the application of MQL leads to a large decrease of the friction coefficient (0.1-0.2) and eliminates almost all traces of adhesions on pins for any substrates, which shows that MQL is an interesting compromise between dry machining and flood cooling.
机译:由于对环境约束的日益重视,工业上正在研究如何通过在机械加工过程中,尤其是在汽车行业的铝合金机械加工中使用油的微粉化来限制润滑剂的大量使用。机加工操作的成功与否取决于摩擦系数和与工具-材料界面的附着力弱。本文旨在确定切削刀具基材(高速钢(HSS),硬质合金,多晶金刚石(PCD))和最小量润滑(MQL)对摩擦系数和在与所观察到的相对应的摩擦学条件下的附着力的影响在铝合金切割中(滑动速度:20-1500m / min)。使用了开放式汽缸式摩擦计,特别设计为通过赫兹接触来模拟这些摩擦学条件。结果表明,HSS和碳化物基材在干燥条件下会导致较大的摩擦系数(0.8-1)和大量附着力,而PCD基材会导致较低的平均摩擦系数值(0.4-0.5)和非常有限的附着力,这证明了在铝的干法加工中使用PCD工具的必要性。还显示出,MQL的使用导致摩擦系数大大降低(0.1-0.2),并消除了几乎任何引脚上销钉上的粘附痕迹,这表明MQL是干式加工和浸入之间的有趣折衷方案冷却。

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