汽车内燃机

汽车内燃机汽车内燃机
  1. 汽车内燃机曲轴锻件生产论述

    Superficial Discussion on Production of Auto Crankshaft Forgings Domestic & Overseas

  2. 燃油添加剂在汽车内燃机排气净化中的应用研究

    Application and Research of Fuel Additives for Automotive Engine Exhaust Emissions Control

  3. 汽车内燃机状态监控油液分析技术研究

    Research on Oil Analyzing Technology of State Supervising of Automobile Internal Combustion Engine

  4. 所以依然解决不了汽车内燃机的充分燃烧问题。

    So still can not solve the problem of full combustion engine vehicles .

  5. 汽车内燃机曲轴断裂探析

    Talking about crankshaft breakdown of automobile engine

  6. 汽车内燃机润滑油换油期研究现状及趋势

    The Present Status and Trend of the Research on Lube Oil Change Period for Auto I.C.Engines

  7. 目前,节能、高效、低排放成为现代汽车内燃机的发展方向。

    At present , energy saving , high efficiency and low emission are becoming the direction of vehicle internal combustion engine .

  8. 本文以某汽车内燃机配气机构为研究对象,在假设凸轮与挺杆为“赫芝”接触的情况下,对配气机构建立了多质量动力学模型。

    A multi-mass dynamic model was established for a valve train of a automotive diesel engine on the assumption that cam and tappet are in Hertzian contact .

  9. 概述了机械增压器的主要技术特征及其与涡轮增压器性能的区别,并介绍了国外机械增压器技术的发展过程及汽车内燃机行业应用的现状;

    This paper summarizes the main technique characteristics of supercharger and the differences from turbocharger in performance . Introduces the developing process and the application status of supercharger technique .

  10. 本文从优化设计、更换材料、革新工艺三个方面分析了汽车内燃机的减重途径;

    In this paper , the three ways including the optimization of design , the change of materials , and innovation of techniques of weight reduction of automotive internal combustion engine are analyzed .

  11. 均质压燃(HCCI,homogeneouschargecompressionignition)发动机结合了传统汽油机与柴油机的优点,具有高热效率和低排放的特点,为此得到汽车和内燃机业界人士的广泛关注。

    Homogeneous charge compression ignition ( HCCI ) combustion technology integrates the advantages of traditional engines with high thermal efficiency and ultra-low NOX and PM emissions , thus receiving increased attentions in the automotive field .

  12. 有许多现有的技术可以很好地提高我们汽车的内燃机引擎效率。

    There is a host of existing technologies that could radically improve the internal combustion engines that power our cars .

  13. 对燃料电池汽车与内燃机汽车的效率、排气特性等作了比较。

    Comparison of fuel cell car and the car with internal combustion engine is made in the field of efficiency , exhaust gas etc.

  14. 在一个巷道是自行车最常见的位置崩溃涉及与无显着性差异都混合电动汽车和内燃机车辆。

    On a roadway was the most common location of bicyclist crashes involving both HEVs and ICE vehicles with no statistically significant difference .

  15. 阿的撞击各种因素进行审查以确定混合电动汽车与内燃机汽车的相对发病率在各种情况下的撞击。

    A variety of crash factors were examined to determine the relative incidence rates of HEVs versus ICE vehicles in a range of crash scenarios .

  16. 并联混合动力汽车中内燃机和电机之间存在动力的耦合和分离过程,能量管理策略比较复杂。

    There is a power coupling and separating process between ICE and motor in the parallel-type hybrid vehicle , and the energy management strategy is comparatively complex .

  17. 当蒸汽机把理想变成了现实,那么驱动了现在世界上数以百万计的汽车的内燃机就是一种必然技术进步。

    Once the steam engine put that idea into practice , developments such as the internal-combustion engine-which now powers the world 's millions of automobiles-came as almost inevitable refinements .

  18. 混合动力汽车兼具内燃机车辆和电动车辆的优点,在当前的技术条件下最有发展优势。

    Hybrid electric vehicle ( HEV ), which combines the advantage of both combustion engine vehicle and pure electric vehicle , is one of the most attractive solutions under current technical conditions .

  19. 在汽车的内燃机引擎里,电火花引爆气缸里的燃料气体,然后热能推动活塞,成为机械能推动汽车行驶。

    In the internal - combustion engine of a car , an electric spark explodes gasses in the cylinder ; the heat energy moves the pistons , becoming mechanical energy to move the car .

  20. 根据国内外汽车和内燃机以及汽车动力传动系匹配的设计和测试技术的现状与发展,开发了一套以PC机为基础的汽车动力传动系匹配计算、试验和管理软件;

    A set of computation , test and management softwares of automobile power-transmission system matching has been developed for personal microcomputer based on the status quo and development of design and test technology of automobile , internal combustion engine and power-transmission system matching , domestic and foreign .

  21. 中国汽车制造商在内燃机汽车生产方面严重依赖外国技术。

    Chinese vehicle makers rely heavily on foreign technology to produce internal combustion cars .

  22. 在汽车领域里内燃机似乎是用的最为普遍的发动机。

    The internal combustion engine seems to be the one most commonly used in the automobile field .

  23. 根据燃料电池汽车与传统内燃机汽车的不同,介绍了燃料电池汽车的底盘布置、热量管理、电子控制。

    The article introduces the chassis layouts , heat management and electronic control of fuel cell vehicle based on the difference between fuel cell vehicle and traditional internal combustion engine .

  24. 随着汽车工业、内燃机工业的迅速发展,作为汽车、摩托车、内燃机、柴油发动机的关键零件,凸轮轴的需求量越来越大。

    The current rapid developments of the automobile industry and the internal combustion engine industry have created a great demand for camshaft which is the crucial part of the automobile , the motorcycle , the internal combustion engine and the diesel engine .

  25. 阐述了新能源汽车取代传统内燃机汽车的基本思路和发展态势预测,对新能源汽车的开发提出了建议。

    The basic thoughts of the vehicle with traditional internal combustion engine replaced by the one with new energy and prediction of its developing trend are set forth . The suggestions to the development of the vehicle with new energy are put forward .

  26. 目前,一些新能源汽车仍然沿用传统内燃机汽车的车身结构,仅对动力系统进行置换。

    At present , some new energy vehicles are still used traditional vehicle body structure , only the power system replaced .

  27. 它在航空、航天领域、汽车、家电、内燃机、压缩机等行业的潜在市场非常广大。

    It possesses a large market potential in aviation , spaceflight , auto , household appliances , gas engine , Compressor etc industries .

  28. 要使各种电动汽车能与传统内燃机汽车相竞争,关键是提高动力蓄电池的性能。

    In order to let a variety of electric vehicles compete with conventional internal combustion engine cars , the performance of power battery must be improve .

  29. 凸轮轴是汽车发动机和其它内燃机的重要零件,其加工质量直接影响汽车产品的质量。

    Camshaft is very important part of automobile engine and other internal combustion engines . Their machining quality and efficiency directly influences the quality of car products .

  30. 混合动力汽车具备了传统内燃机和电动机双重优势,其将在较长一段时间内占据重要地位。

    HEV with advantages of both internal-combustion engine and electric motor , will be more and more important in the global auto industry for a long time .