lithium grease

英 [ˈlɪθiəm ɡriːs] 美 [ˈlɪθiəm ɡriːs]

网络  锂基润滑脂; 锂基脂; 锂润滑脂; 锂基油脂

化学



双语例句

  1. The study on the preparation of high dropping point lithium grease from waste fat and oil
    利用废油脂制备高滴点锂基润滑脂的研究
  2. Experiment results shows that the preparation process is exothermic reaction, and infrared results indicates that lithium grease has been synthesized.
    试验表明该制备过程是个放热反应,红外结果说明合成了锂基润滑脂。
  3. Preparation and Tribological Properties of CaF_2 Nanocluster Capped with Oleic Acid as Lithium Grease Additive
    油酸修饰纳米氟化钙的萃取法制备及其摩擦学性能
  4. The main technical index of it exceeds the extreme pressure lithium grease from Japan, and the lifespan of it is six times longer than the same product in China.
    它的主要技术指标超过了日本极压锂基脂,使用寿命超过国产同名润滑脂的六倍以上,填补了国内轧辊轴承润滑脂的空白。
  5. Fourth, a variety of grease Series: car grease, industrial grease, military lipid, special use of fat, Lithium Grease, grease guns and so on.
    各种润滑脂系列:车用脂、工业用脂、军用脂、特种用脂、锂基脂、枪炮脂等。
  6. The worn steel surface was analyzed by means of scanning electron microscopy and X-ray photoelectron spectroscopy. As the results, the PI/ MoS_2 intercalation composite as the additive in lithium grease at proper concentrations was effective in improving the antiwear and friction-reducing behavior of the lithium grease.
    结果表明,所合成的PI/MoS2插层复合材料作为锂基脂添加剂对钢-钢摩擦副表现出良好的减摩抗磨作用。
  7. The metal protectant may influence other properties of complex lithium grease, but the polar polymer may not in-fluence ones of complex lithium grease.
    金属保护剂会影响复合锂基脂的其它性能,而极性聚合物不会对复合锂基脂的其他性能产生不良影响。
  8. The preparation method and parameter for lithium grease from waste fat and oil are studied.
    研究了餐饮业废油脂制备皂基润滑脂的工艺路线和工艺条件。
  9. Preparation and Application of Lithium Grease
    锂基润滑脂的研制与应用
  10. Application of Borate in Lithium Grease
    硼酸盐在锂基脂中的应用
  11. Analytical results indicate that SiO_2 nanoparticles as additive can increase antiwear ability and load-carrying capacity of lithium grease.
    结果表明:SiO2纳米微粒作为锂基脂添加剂具有良好的抗磨损性能,能够显著提高锂基脂的失效载荷。
  12. Tribological Properties of a Steel-Steel Pair under the Lubrication of Lithium Grease Containing Various Nano-Particulates as Additives
    几种纳米微粒作为锂基脂添加剂对钢-钢摩擦副摩擦磨损性能的影响研究
  13. MRH-3 friction and wear tester were utilized to investigate tribological property of nano-Al_2O_3, Cu, Al, MgO, ZnO particles as additive in lithium grease, and antifriction mechanism of nano-particles as lubricating additives were analyzed.
    在MRH-3高速环块摩擦磨损实验机上,研究了纳米微粒Cu,Al,Al2O3,MgO,ZnO加入到通用锂基脂中的摩擦学性能,并分析了纳米粒子作为润滑添加剂的减摩机理。
  14. Properties and Applications of Complex Lithium Grease
    复合锂基润滑脂的性能及应用
  15. Effect of Additives on Complex Lithium Grease Fretting Wear
    添加剂对复合锂基脂微动磨损的影响
  16. Effect of SiO_2 Nanoparticles as Additive on Antiwear and Extreme Pressure Properties of Lithium Grease
    表面修饰SiO2纳米微粒对锂基脂抗磨性能影响的研究
  17. Study of Compound Lithium Grease
    复合锂基脂的研究
  18. Having excellent overall properties, the complex lithium grease can be used as anti-wear bear-ings grease industrial multiple purpose grease and automobile grease.
    复合锂基润滑脂综合性能优良,可作为抗磨轴承润滑脂、工业多效润滑脂、汽车润滑脂使用。
  19. The Effect of Several Tetrazole Derivatives as Additives on the Extreme-pressure and Antiwear Properties of Liquid Paraffin and a Lithium Grease
    四氮唑衍生物添加剂对液体石蜡和锂基脂的极压抗磨性能的影响
  20. Effect of Unmodified and Surface-modified Nano SiO_2 as Additives on the Tribological Properties of Lithium Grease
    表面未修饰及修饰纳米SiO2对锂基脂摩擦学性能的影响
  21. 'Great Wall' 00# EP Lithium Grease Property and Application of Polyether Lubricant
    长城牌00极压锂基脂的研制、性能特点及应用
  22. Experimental Study on Tribological Performance of Lithium Grease Containing Various Nano-particles as Reconditioned Additives
    几种纳米粒子作为润滑脂修复添加剂的试验研究
  23. Under water lubrication, the wear mechanism is ploughing, spalling and plastic deformation. Under lithium grease+ 3% MoS 2 lubrication, the main wear mechanism is ploughing.
    结果发现,被测试材料的磨损机理在水润滑条件下为犁沟、剥落和塑性涂抹3种,在锂基脂+3%MoS2润滑条件下主要是犁沟磨损。
  24. By means of test on five kinds of the Bearing cup grease which don't dissolve in the lithium grease solvate, we select the formulation of new solvate and develop new solvates.
    通过对五种不溶于锂基脂助溶剂的轴承润滑脂的助溶试验,选配出新助溶剂的配比,研制出新型助溶剂。
  25. Borate has unique properties as extreme pressure additive in grease, and the overall performances of extreme pressure lithium grease manufactured by borate combined in other additives are excellent, and also is used as environmental friendly product.
    硼酸盐作为润滑脂中极压添加剂具有独特的性能,与其它添加剂复合制备的极压锂基润滑脂有优异的综合性能,可作为环境友好产品使用。
  26. Rotated rheometer was used to determine the yield stress of lithium lubricating grease.
    选用旋转流变仪测定了锂基润滑脂的屈服应力。
  27. It is discovered that metal protectant and polar polymer can reduce fretting wear of complex lithium grease largely by utilizing Fafnir friction oxidation tester investigates fretting wear of complex lithium grease.
    用费夫纳摩擦氧化试验机考察复合锂基润滑脂的微动磨损时,发现金属保护剂和极性聚合物可大幅度降低复合锂基脂的微动磨损。
  28. As the results, the tetrazole derivatives as additives in liquid paraffin and/ or commercial lithium grease help to increase the load carrying capacities and anti wear ability.
    结果表明:含四氮唑官能团的衍生物添加剂能在一定程度上提高3锂基脂和液体石蜡的承载能力,并具有较好的抗磨性能。
  29. Experimental Study of Tribological Properties of Various NanoParticles as Additive in Lubrication of Lithium Grease
    几种纳米粒子润滑脂添加剂的摩擦学性能