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The tribological properties of zinc borate ultrafine powder as a lubricant additive in sunflower oil

机译:硼酸锌超细粉作为向日葵油润滑油添加剂的摩擦学性能

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摘要

This paper presents an investigation on the tribological properties of zinc borate ultrafine powder employed as a lubricant additive in sunflower oil. The stable dispersions of 0.5 wt%, 1 wt% and 2 wt% zinc borate ultrafine powder in sunflower oil were achieved by using an ultrasonic homogeniser. Both a 4-ball tester and a pin-on-disc tester were employed to evaluate the anti-wear and friction reduction capabilities of zinc borate ultrafine powder. Tribo-films with dark colour were generated on the worn surfaces and showed a good contrast with the substrate. The worn surface with different morphologies reflected as the colour alterations on the worn surface were observed when different lubricants were applied. The morphology and elemental analysis of the worn surfaces were studied using atomic force microscopy (AFM) and scanning electronic microscopy (SEM). Mechanical properties of the tribo-films and substrates were studied with a nano-indentation tester. Test results suggest that tribo-films generated on the worn surface have a relatively low hardness compared with the steel substrate. The substrates on the worn surfaces lubricated in sunflower oil with the powder demonstrated higher hardness than that of the substrate lubricated with pure sunflower oil due to the possible tribo-chemical reaction between the zinc borate additive and substrate. The combination of sunflower oil with 0.5% zinc borate ultrafine powder has delivered the most balanced performance in friction and wear reduction. This study has demonstrated the possibility of application of this industrially applicable solid lubricant additive (zinc borate) with a decomposable vegetable based lubricant oil.
机译:本文对用作向日葵油润滑剂添加剂的硼酸锌超细粉的摩擦学性能进行了研究。通过使用超声均化器,获得了0.5wt%,1wt%和2wt%的硼酸锌超细粉在向日葵油中的稳定分散体。同时使用4球测试仪和针盘测试仪来评估硼酸锌超细粉的抗磨性和降低摩擦的能力。在磨损的表面上会产生深色的摩擦膜,并与基材形成良好的对比。当使用不同的润滑剂时,观察到具有不同形态的磨损表面反映为磨损表面上的颜色变化。使用原子力显微镜(AFM)和扫描电子显微镜(SEM)研究了磨损表面的形貌和元素分析。用纳米压痕测试仪研究了摩擦膜和基材的机械性能。测试结果表明,与钢基底相比,在磨损表面上产生的摩擦膜具有较低的硬度。由于用硼酸锌添加剂和底物之间可能发生的摩擦化学反应,用粉末状的葵花籽油润滑的磨损表面上的基材比用纯葵花籽油润滑的基材具有更高的硬度。葵花籽油与0.5%硼酸锌超细粉的组合在减少摩擦和磨损方面提供了最平衡的性能。这项研究证明了将这种工业上适用的固体润滑剂添加剂(硼酸锌)与可分解的植物基润滑油一起使用的可能性。

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