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IONIC LIQUIDS AS ADDITIVES TO CUTTING FLUIDS TO REDUCE MACHINE TOOL FRICTION AND WEAR

机译:离子液体可作为切削液的添加剂以减少机床的摩擦和磨损

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In manufacturing processes, the cost of tooling contributes to a significant portion of operating costs. Several papers have been dedicated to various improvements on tool life, including monitoring the effect of temperature conditions and flood cooling. Flood cooling is not economical, so research has also been done to investigate minimum quantity lubrication and the effects of different additives, such as nanofluids. Another additive, ionic liquids, have become popular in tribological studies because they have unique properties that allow them to form ordered molecular structures, which is ideal in lubrication. Research has proven ionic liquids to be effective in reducing wear and friction coefficients. Currently, utilizing ionic liquids specifically to reduce tool wear has been almost exclusively limited to titanium and steel applications. The goal of this study is to improve tribological performance of the subtractive manufacturing process using ionic liquid add-ins to widely available machine shop coolants and oils. A series of reciprocating ball-on-flat experiments will be conducted using a 1.5mm diameter 250 Chrome Steel G25 ball and 6061-T6 aluminum disk to simulate cutting conditions often seen in manufacturing processes. 6061 Aluminum is an alloy commonly seen in machine shops and large-scale manufacturing scenarios because of its versatile material properties and wide availability. The tests were run at constant sliding distance, velocity and load. The lubricating mixtures were prepared by adding 5 wt % of a phosphonium based ionic liquid, Trihexyltetradecylphosphonium bis(trifluoromethylsulfonyl)amide ([THTDP][NTf2]), to the base fluids Trim Sol™ emulsion fluid and Mobilmet™ 766 high performance neat cutting oil. The addition of the ionic liquid to both base lubricants (oil and coolant) increased the friction coefficient (18.60% and 4.89%, respectively) while the wear volume was reduced (28.75% and 7.84%, respectively). The results for the oil provided evidence that the ionic liquid did have an effect to reduce wear, however, the same conclusion could not be drawn for the coolant.
机译:在制造过程中,工装成本占运营成本的很大一部分。有几篇论文致力于改善刀具寿命,包括监测温度条件和洪水冷却的影响。洪流冷却是不经济的,因此也进行了研究以研究最小量的润滑以及不同添加剂(例如纳米流体)的作用。另一类添加剂离子液体已在摩擦学研究中广受欢迎,因为它们具有独特的特性,可使其形成有序的分子结构,这是润滑的理想选择。研究证明离子液体在降低磨损和摩擦系数方面是有效的。当前,专门使用离子液体来减少工具磨损几乎只限于钛和钢应用。这项研究的目的是通过使用离子液体添加物到广泛使用的机加工冷却剂​​和机油中来改善减法制造工艺的摩擦学性能。将使用直径1.5mm的250铬钢G25球和6061-T6铝盘进行一系列往复式平底球实验,以模拟在制造过程中经常遇到的切削条件。 6061铝是一种在机加工车间和大规模生产场景中常见的合金,因为它具有多种材料特性和广泛的可用性。测试在恒定的滑动距离,速度和负载下进行。通过向基础流体Trim Sol™乳化液和Mobilmet™766高性能净切削油中添加5 wt%的based基离子液体三(三氟甲基磺酰基)三己基十四烷基phosph([THTDP] [NTf2])来制备润滑混合物。 。在两种基础润滑剂(机油和冷却液)中添加离子液体均增加了摩擦系数(分别为18.60%和4.89%),同时减少了磨损量(分别为28.75%和7.84%)。油的结果提供了证据,证明离子液体确实具有减少磨损的作用,但是,对于冷却剂无法得出相同的结论。

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