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柴油机方面的论文题目大全初中物理

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guo369qin

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看看这个行不行嘛。柴油机电控技术阐述-技术论文-佳工机电网 柴油机电控技术阐述 云南交通职业技术学院 张爱山 摘要:介绍了柴油机电子控制技术的发展状况、控制原理和应用特点及高压共轨技术的工作原理、研究方向、应用前景。 关键词:柴油机电控技术;高压共轨技术;应用前景 1 柴油机电子控制技术的发展状况及发展趋势 1柴油机电子控制技术的发展状况 柴油机电子控制技术始于20世纪70年代,20世纪80年代以来,英国卢卡斯公司、德国博世公司、奔驰汽车公司、美国通用的底特律柴油机公司、康明斯公司、卡特彼勒公司、日本五十铃汽车公司及小松制作所等都竞相开发新产品并投放市场,以满足日益严格的排放法规要求。 由于柴油机具备高扭矩、高寿命、低油耗、低排放等特点,柴油机成为解决汽车及工程机械能源问题最现实和最可靠的手段。因此柴油机的使用范围越来越广,数量越来越多。同时对柴油机的动力性能、经济性能、控制废气排放和噪声污染的要求也越来越高。依靠传统的机械控制喷油系统已无法满足上述要求,也难以实现喷油量、喷油压力和喷射正时完全按最佳工况运转的要求。近年来,随着计算机技术、传感器技术及信息技术的迅速发展,使电子产品的可靠性、成本、体积等各方面都能满足柴油机进行电子控制的要求,并且电子控制燃油喷射很容易实现。 实际上,柴油机排气中CO和HC比汽油机少得多,NOX排放量与汽油机相近,只是排气微粒较多,这与柴油机燃烧机理有关。柴油机是一种非均质燃烧,可燃混合气形成时间很短,而且可燃混合气形成与燃烧过程交错在一起。通过分析柴油机喷油规律得到:喷入燃料的雾化质量、汽缸内气体的流动以及燃烧室形状等均直接影响燃烧过程的进展以及有害排放物的生成。提高喷油压力和柴油雾化效果、使用预喷射、分段喷射等可以有效的改善排放。 经过多年的研究和新技术应用,柴油机的现状已与以往大不相同。现代先进的柴油机一般采用电控喷射、高压共轨、涡轮增压中冷等技术,在重量、噪音、烟度等方面已取得重大突破,达到了汽油机的水平。随着国际上日益严格的排放控制标准(如欧洲Ⅳ、Ⅴ标准)的颁布与实施,无论是汽油机还是柴油机都面临着严峻的挑战,解决的办法之一是采用电子控制燃油喷射的技术。现在,柴油机电子控制技术在发达国家的应用率已达到60%以上。 Electric control technology on diesel engine - technical papers - good koki grid Diesel electric control technology of Traffic Yunnan Vocational and Technical College Ai Shan Abstract: The introduction of the diesel engine electronic control technology development, control theory and application features and high-pressure common-rail technology works, research direction, application Key words: diesel engine electronic control technology; high-pressure common-rail technology; application prospects One diesel engine electronic control technology development status and development trend 1 diesel engine electronic control technology development Electronically controlled diesel engine technology started in the 20th century, 70s, 80s since the 20th century, the United Kingdom Lucas company, Robert Bosch GmbH of Germany, Mercedes-Benz Motor Company, American General Detroit Diesel Corporation, Cummins I, Caterpillar I, Japan 50 Ling Motor C and Komatsu L are competing to develop new products and market to meet the increasingly stringent emissions Because diesel engines have high torque, high-life, low fuel consumption and low emissions characteristics of diesel engine vehicles and solving the energy problem of construction machinery the most realistic and most reliable Therefore the use of diesel engines has become an increasingly widespread, more and more At the same time, the power of diesel engine performance, economic performance, emission control and noise pollution are also getting higher and To rely on traditional mechanical control fuel injection system has been unable to meet the above requirements, but also difficult to achieve fuel injection quantity, injection pressure and injection timing fully functioning in accordance with the best working condition In recent years, with computer technology, sensor technology and information technology is developing rapidly, so that the reliability of electronic products, cost, size, to all diesel engines to meet the requirements for electronic control and electronically controlled fuel injection easy to In fact, diesel exhaust CO and HC than gasoline engines much less, NOX emissions and gasoline engine similar to, but more exhaust particles, which is related to diesel engine combustion Diesel is a non-homogeneous combustion, combustible mixture formed a very short time, and combustible gas mixture formation and combustion process interlaced Diesel Fuel Injection through the analysis of the law to be: the atomization of fuel injected into the quality of the gas flow inside the cylinder and combustion chamber shape, directly affect the progress of the combustion process, as well as the generation of harmful Improve atomization of diesel fuel injection pressure and the effect of the use of pre-injection, such as sub-jet can effectively improve the After years of research and new technology applications, diesel engine with the past very different from the status Modern diesel engines generally use electric controlled injection, high pressure common rail, turbo-charged in the cold technology, in terms of weight, noise, smoke, has made a major breakthrough, reaching the level of With the increasingly stringent international emission control standards (such as Europe, Ⅳ, Ⅴ standard) the promulgation and implementation, whether it is gasoline or diesel engines are faced with severe challenges, the solution is the use of electronically controlled fuel injection Now, the diesel engine electronic control technology developed at the application rate has reached more than 60%

柴油机方面的论文题目大全初中物理

233 评论(11)

原谅我的尘埃

这个题目不要图也可以说明的,应该从以下几个方面来加以区别: 1、从结构上来区别:汽油机的汽缸顶端是火花塞,而柴油机的汽缸顶端的喷油嘴。 2、从工作过程中来区别: (1)在吸气冲程中:汽油机吸入汽缸的是汽油和空气的混合燃气,而柴油机吸入汽缸的只是空气; (2)在做功冲程中:汽油机是靠火花塞把燃气点燃的,称之为点燃式;而柴油机则是靠高温高压的燃气把雾状的柴油引燃的,称之为压燃式。 3、从热机效率上看:汽油机的效率低于柴油机的效率 4、从占用体积上来看:汽油机比较小巧儿柴油机却比较笨重。所以汽油机一般应用于小汽车等上面,而柴油机一般应用在拖拉机、轮船等大型的机械上面。 所谓压燃式,就是在压缩冲程末,汽缸内形成了高温高压的空气,这个温度已经达到了柴油的燃点,当喷油嘴喷出的雾状柴油遇到高温高压的空气时就引燃了。
152 评论(14)

kupicool

结构上,汽油机有火花塞,而柴油机是喷油嘴点燃方式上,汽油机是点燃式,而柴油机是压燃式压缩率上,汽油机压缩率小些,而柴油机压缩率大吸进气缸的气体 汽油机是空气和汽油的混合气体,而柴油机吸进的是空气功率方面来讲汽油机一般的功率小,而柴油机一般的功率大些
209 评论(8)

hrf114

提供一些内燃机车专业毕业论文的题目,供参考。1、机车主电路接地判断与查找 2、机车无流无压的分析与处理3、机车动轮擦伤原因分析及防止 4、励调器在内燃机车上的应用5、柴油机飞车原因分析 6、机车运用中突然停机的分析与处理7、JZ—7机车制动系统的改进 8、电喷系统在柴油机上的应用9、东风4B 内燃机车空气滤清系统存在的问题及改进10、机车轮缘喷油器的改进 11、联合调节器在运用中存在的问题及改进12、异步牵引电动机恒功率调节的分析 13、LKJ—2000型监控装置常见问题分析及处理14、DF4B 内燃机车辅助传动系统交流化研究 15、提高机车粘着重量利用率的措施16、东风4B 内燃机车抱轴瓦辗片故障分析及对策 17、增压器常见故障原因分析及预防措施18、机车行车安全 24、铁路内燃机车修理制度研究25、内燃机车车体损伤形式分析 26、内燃机车气缸活塞部件损伤分析27、内燃机车维修制度发展研究 28、内燃机车节能研究29、内燃机车实行部分状态修研究 30、降低内燃机车运用成本研究31、机务段布局设计 33、内燃机车维修研究34、机车制动系统研究 35、DF4型机车机油压力低故障原因分析及对策43、重载列车制动计算方法的探讨 45、货运内燃机车交路调整的探讨46、内燃机车柴油机运行故障分析及处理方法研究 47、内燃机车柴油机连杆无损探伤工艺研究48、机车柴油机故障诊断的趋势分析方法探讨 49、机车司机室人机工程分析50、计算机在内燃机车上的应用 51、机车轴承的故障诊断
324 评论(10)

majingaaa123

汽油很精细,C很小,燃烧不会产生剩余的C 。柴油很粗糙,C很大,燃烧不完全,产生大量含C浓烟,
217 评论(12)

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