首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >EFFECT OF CARBON NANOTUBE-PHOSPHINATE IONIC LIQUID THIN BOUNDARY LAYER ON THE TRIBOLOGICAL BEHAVIOR OF ALUMINUM ALLOY IN STEEL-ON-ALUMINUM CONTACT
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EFFECT OF CARBON NANOTUBE-PHOSPHINATE IONIC LIQUID THIN BOUNDARY LAYER ON THE TRIBOLOGICAL BEHAVIOR OF ALUMINUM ALLOY IN STEEL-ON-ALUMINUM CONTACT

机译:碳纳米管 - 磷酸离子液薄边界层对铝合金摩擦学行为的影响

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In this study, the tribological behavior of the Trihexyl tetradecylphosphonium-bis(2,4,4-trimethylpentyl)phosphinate [THTDP][Phos] ionic liquid with and without single-wall carbon nanotubes (SWCNT) dispersion as a thin boundary layer was intended for investigation. However, the surface heat treatment process was not sufficient to form a thin film on the sample surfaces. Thus, in each test condition, the lubricating agents were used as external (liquid) lubricants. Specifically, [THTDP][Phos] and ([THTDP][Phos]+0.1wt.% SWCNT) boundary film layers were applied on 6061-T6 aluminum alloy disk samples and tested under sliding contact with 1.5 mm diameter 420C stainless steel balls using a ball-on-flat linearly reciprocating tribometer. A commercially available Mobil Super 10W-40 engine oil (MS10W40) was also tested and used as this investigation's datum. The tribological behavior of [THTDP][Phos] and ([THTDP][Phos]+SWCNT) boundary film layers was analyzed via wear volume calculations from optical microscopy measurements, as well as by observation of the transient coefficient of friction (COF) obtained through strain gauge measurements made directly from the reciprocating member of the tribometer. Results indicate the potential for reduction of wear volume and coefficient of friction in the IL lubricated steel-on-aluminum sliding contact through (SWCNT) dispersion in the ionic liquid. Wear results are based on measurements obtained using optical microscopy (OM). Results discussed display improved tribological performance for both [THTDP][Phos] and ([THTDP][Phos]+SWCNT) over baseline MS10W40 oil lubricant for both roughness values tested for the steel-on-aluminum contact. No measurable improvements were observed between [THTDP][Phos] and ([THTDP][Phos]+SWCNT) tests.
机译:在该研究中,预先用与薄边界层的单壁碳纳米管(SWCNT)分散的三氧基四亚氨基鏻 - 双(2,4,4-三甲基戊基)膦酸酯[THTDP] [THTDP]离子液体的摩擦学行为调查。然而,表面热处理过程不足以在样品表面上形成薄膜。因此,在每个测试条件下,润滑剂用作外部(液体)润滑剂。具体地,在6061-T6铝合金盘样品上施加[THTDP] [PHOS]和([THTDP] [PHOS] + 0.1wt。%SWCNT)边界膜层并在滑动接触下与直径为1.5mm直径的420℃不锈钢球进行测试球形线性往复往复摩擦计。商业上可获得的Mobil Super 10W-40发动机油(MS10W40)也被测试并用作本研究的基准。通过光学显微镜测量的磨损体积计算分析[THTDP]和([THTDP]和([THTDP] [PHOS] + SWCNT)边界膜层的摩擦学行为,以及观察获得的瞬态摩擦系数(COF)通过应变计直接从摩擦计的往复成员进行的测量。结果表明IL在离子液体中通过(SWCNT)分散的IL润滑钢铝滑动接触磨损体积和摩擦系数的可能性。磨损结果基于使用光学显微镜(OM)获得的测量值。讨论的结果显示[THTDP] [THTDP] [THTDP] [THTDP] [PHOS]和([THTDP] [PHOS] + SWCNT)的摩擦学性能,用于基线MS10W40油润滑剂,用于对铝合金接触测试的粗糙度值。在[THTDP] [PHOS]和([THTDP] + SWCNT)测试之间没有观察到可测量的改进。

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