行车试验

  • 网络field test;road test;running test,road test
行车试验行车试验
  1. ~(31)P-NMR技术考察CD/SF5W/30通用内燃机油中ZDDP在行车试验中的氧化降解机理

    Degradation of ZDDP in CD / SF 5W / 30 engine oil during field test investigated by ~ ( 31 ) P-NMR spectroscopy

  2. 并按照API基础油互换规则的要求,通过了ⅢE台架试验,研制产品满足APICH415W/40柴油机油规格,并在行车试验中表现出较好的使用性能。

    Under the demands of API base oil exchange law , the formulated oil has successfully past the evaluation in ⅲ E bench test . The oil meets the specifications of API CH 4 15W / 40 diesel engine oil and shows a good performances in field test .

  3. 南海牌SJ10W/40汽油机油富康轿车8万km行车试验

    The field test of Fukang car 80,000 km with Nanhai SJ 10w / 40 gasoline engine oil

  4. SG级汽油机油高温高速行车试验

    A review in field test of SG grade gasoline engine oil performances at high-temperature and high-speed

  5. 使用两辆不同型号的富康新轿车,装入南海牌SJ10W/40汽油机油进行了8万km行车试验。

    Two different type new cars filled with NANHAI SJ 10W / 40 gasoline engine oil in field test were driven for 80,000 km .

  6. 汽油机油(SE和SF级)用国产轿车在低中速和长换油期的行驶条件下进行行车试验,考察试油生成低温沉积物的倾向、合理的换油期以及对车辆的适应性。

    The field tests of gasoline engine oils ( SE and SF grades ) were conducted under conditions of mid low speed and long drain period .

  7. 主要介绍了TD机车牵引齿轮脂在韶山&Ⅰ型机车上的使用情况,行车试验表明:TD机车牵引齿轮脂能满足机车牵引齿轮对润滑的要求。

    Application of TD locomotive traction gear grease in Shaoshan - 1 locomotive is introduced . The result shows the grease can satisfy the lubricating requirement of locomotive traction gear .

  8. 玻璃器皿腐蚀试验和行车试验结果表明,由高效的无机缓蚀剂和有机羧酸盐组成的防冻液具有良好的防腐蚀性能,通过了法国PSA集团的产品检测。

    The results of glass corrosion and car running tests show that the anti-freezing fluid composed of high - efficiency inorganic inhibitor and organic carboxylate has excellent corrosion resistance , which has passed the product examination of France PAS Group .

  9. 同时,通过科学设计的行车试验与OBD验证试验,研究分析了不同等级汽油对车辆排放耐久性以及OBD系统的影响。

    Also through scientific designed fleet road test and OBD certification test , study and analyze the effect of the different grade gasoline on the vehicle emission durability and OBD system .

  10. 采用M111发动机台架试验和行车试验,考察了中国汽油的清净性。

    The detergency performance of Chinese gasoline was investigated by M111 engine bench and road tests .

  11. 通过研究不同组份LPG在不同环境温度下的发动机台架性能试验以及行车试验,提出适合北方地区低温条件下车辆使用的最佳LPG组份。

    In different environmental temperature the engine experiment of LPG in the different component is investigated along with the experiment of the whole car , the optimum component of LPG adapt to the low temperature condition of the north area was brought forward at last .

  12. 开发了包括六个功能模块的组件式LBS信息服务系统,以此为平台开发出地图匹配原型系统,并且在行车试验的基础上,验证地图匹配完整解决方案的正确性和可行性。

    A component LBS system including six function modules is developed , based on this platform a prototype system of map matching is developed . Finally experiments are carried out to test correctness and feasibility of the complete map-matching solution .

  13. 500W连续型YAG固体激光加工机研制成功,应用于汽车发动机气缸及缸套的淬火处理,经发动机气缸缸套模拟磨损台架试验及行车试验,激光用于气缸(缸套)淬火性能可靠。

    The YAG solid laser machine , 500W continuance , is deve loped and applied to quench the engine cylinders and cylinder jackets of the automobiles . The platform wear simulated test and driving test shows that the properties of the laser quenched cylinders ( cylinder jackets ) are reliable .

  14. 介绍了四冲程摩托车专用发动机油的特点、规格及应用,并对南海牌四冲程摩托车专用发动机油进行了12000km行车试验考察。

    The characteristics , main specification requirements and application of the specific engine oil for four-stroke motor was introduced , and in order to investigate " NANHAI " specific engine oil quality for four-stroke motor , 12000 km field test was carried .

  15. 二冲程汽油机油清净性行车试验研究

    Investigation on the Detergency of Two-Stroke Motorcycle Oil in Field Test

  16. 10W/40SJ神龙专用油行车试验研究

    Road Test of 10W / 40 SJ Citroen Appropriative Oil

  17. 含纳米陶瓷添加剂的汽油机油行车试验研究

    Study on the Field Test of Gasoline Engine Oil Containing Nano-ceramics Additives

  18. 有机钼添加剂在成品油和行车试验中的应用

    Application of Organic Mo Lubricating Additive on the Operating Test and Product Oil

  19. 介绍了多级四代油的配方研制、发动机台架评定及行车试验结果。

    Its formulation development and the platform test as well as the road test are presented .

  20. 本文介绍了甲醇燃料金属腐蚀抑制剂的实验室评定、台架试验及行车试验结果。

    This paper presents the evaluation results of metal corrosion inhibitors with different formulations through laboratory tests .

  21. 介绍了汽油清洁燃烧剂的主要组分,模拟评定和规范行车试验结果,以及实际应用的试验效果。

    The simulation evaluation , standard field test and road test results of gasoline detergent additive are presented .

  22. 甲醇燃料发动机台架试验和行车试验的在用油组成十分复杂。

    The composition of used oil from engine test and road test of methanol fuelled engine is rather complicated .

  23. 通过行车试验和数据分析,获得了驾驶员行车时心率与横向力系数、半径与车速之间的回归模型。

    Passing driving test and data analyzing , the model among heart rate , radius and speed are obtained .

  24. 本文介绍了铁路内燃机车非锌第四代油的研制、评定及行车试验结果。

    The preparation , evaluation and field test of the fourth generation zinc-free locomotive oil is de - scribed .

  25. 高温高速行车试验中油品运动粘度与磷谱分析相关性的研究

    The Study of Correlation between Dynamic Viscosities of Oils in High Temp . & High Speed Road Tests and Phosphorescence Spectrum Analysis

  26. 经SANTANT轿车行车试验表明:研制的燃气汽车发动机油能满足燃气汽车发动机的润滑要求。

    From the road test of SANTANA , it shows that fuel gas automobile engine lubricating oil can satisfy the lubricating requirement of fuel gas engine .

  27. 同时还用掺水汽油微乳状液进行汽车道路行车试验,并取得了节油约10%的好结果。

    Furthermore , the road tests indicate that , as a motor fuel , the water-in-gasoline microemulsions reduces the fuel consumption by more than 10 % .

  28. 通过室内性能试验和整车台架及行车试验,充分显示了高强度钢板优良的力学性能和成形性能。

    It was found that high strength steel sheet had excellent mechanical and forming properties in perfor-mance test , complete vehicle rig test and running test .

  29. 对QE10W/30高温高速行车试验在用油进行了分离分析,将极性组分分成酸性组分、碱性组分和中性组分;

    The polar components in used engine oil QE 10W / 30 through high-temperature and high-speed road test were separated into acidic , basic and neutral fractions .

  30. 本文详细叙述了四种台架的试验条件与行车试验的关系,对我国车辆齿轮油评定技术的提高和发展有一定借鉴。

    The relationship between four kinds of bench test conditions and field test was described in detail with providing a reference for upgrading domestic automotive gear oil evaluation technology .