好想你chen
很高兴你向我求助提问这个题,我之前帮别人找过的关于发动机的许多英文文献,我发给你,十来篇吧,也不是很多,主要关键词为mobile engine,不过没有英语翻译,一般而言由于这些论文都是高质量的都是没有现成翻译的,因为毕业论文,自己翻译下也好,这样出来的论文也更有说服力些。已经发到你邮箱,注意查收下。如果觉得好,不要忘记了采纳哦。
馨怡FANG
题目:电控悬架系统的结构控制原理与检修电子技术与汽车技术的结合形成了一门新技术——汽车电子技术,随着汽车电子技术的日趋完善,时至今日,汽车电子化已达到相当高的程度。汽车电子技术已成为一个国家汽车工业发展的标志。汽车中悬架的作用是连接车身与车轮, 以适当的刚性支撑车轮, 并吸收路面的冲击, 改善车辆的舒适性和平顺性; 还可以稳定汽车行驶, 改善操纵性。悬架作用中的平顺性与操纵稳定性, 有着相互矛盾的联系。电子控制悬架在其电子控制装置的控制下, 能根据外界接受的信息或车辆本身状态的变化, 进行动态的自适性调节, 即电控悬架没有固定的悬架刚度和阻尼系数。这样可以随着道路条件的变化和行驶需要的不同要求而自动地调节, 从根本上解决平顺性和操纵稳定性之间的矛盾, 提高汽车的使用性能。一、课题来源课题《电控悬架系统的结构控制原理与检修》来源于湖北汽车工业学院下发的毕业论文选题。二、国内外现状电子控制悬架在国外高速客车和豪华城市客车上的使用率已接近100%,在其中、重型载货汽车和挂在车上使用率已超过80% ,部分高级轿车也逐渐将电控作为标准配置在列车上应用也日益广泛在一些特种车辆上对防震性要求高的仪表车、救护车及要求带高度调节的集装箱运输车空气弹簧悬架的应用更为广泛我国汽车悬架技术的研究和应用与欧美等发达国家相比还处于明显的落后地位随着高档客车制造技术的引进以及满足人们对舒适性要求的提高加上国家对客车等级划分的标准要求电控悬架才开始逐步应用起来。目前国内拥有空气悬架项目的公司为数众多但真正拥有电控悬架系统设计开发、制造的却寥寥无几。国内具有代理性质但无实际设计能力的公司居多对设计匹配等技术环节往往存在先天不足。但是由于种种原因这些研究成果大多还停留在理论上产业转化率非常低。其我国早在20世纪50年代就开始对电控弹簧进行研究, 1957年,长春汽车研究所开始了空气悬架技术的研究,不少高校的相关专家学者及研究机构多年来也做了大量富有效的工作,并取得了许多重要研究成果。三、研究内容及综合分析本课题主要的研究电子控制悬架系统的构造、工作原理、故障类型原因以及其检修方法。通过查阅相关书籍和在网搜资料,本课题主要研究的内容如下:(1)电子控制悬架系统概述(2)电子控制悬架系统传感器 (3)电子控制悬架系统的电子控制模块 (4)电子控制悬架系统故障诊断与检测
詹姆斯尐雪
Abstract In recent years, with the improvement of people's living standards, the requirements of the car ride comfort is also getting higher and higher. Car travelling on the ride and handling stability has gradually become in the modern market competition to win a very important advantage of the performance indicators. In this paper, through the establishment of the seven car suspension system as a whole model of freedom, the use of structural dynamics and vibration knowledge derived sine incentive system in the Lagrange equation, and to simplify the form of differential equations for the vibration through the optimization of procedures for the preparation of MATLAB , Calculated the value of complex features and specific parameters in response to changes in the graphic. Then, briefly Hyundai Motor suspension system of control, simulation system in a different stiffness and damping of the graphics output response, through a comparative analysis of semi-active suspension system for the shock absorber damping, and elastic element Under the control of the stiffness. Finally, come to this conclusion. That is, vehicle suspension and control the dynamic response analysis and stiffness and damping of the close link between changes. Key words: automotive suspension; response; control of
恶魔小郡主
In the 20th century, bridge construction technology evolved and was fueled by the Industrial Revolution. At the turn of the century, steel bridges were riveted together, not bolted; concrete bridges were cast in place, not precast; and large bridge members were built from lacing bars and smaller sections, not rolled in one piece. Plastic had not yet been invented. Construction techniques such as post-tensioning, slurry walls, soil freezing, and reinforced earth walls had not yet been conceived. Surveying was performed mechanically since infrared, optical technology was still 75 years away. Bridge construction is changing as the new millennium begins. New construction techniques and new materials are emerging. There are also new issues facing the bridge building industry relative to the research needs associated with these new techniques and materials. LONG-SPAN BRIDGES Suspension Bridges While suspension bridge building was conducted at a modest pace throughout the 20th century, an unprecedented number of spans of remarkable record lengths were built in the Far East and Denmark. Both the Akashi Kaikyo Bridge in Japan and the Great Belt Bridge in Denmark were completed in 1998. The Akashi Kaikyo Bridge is the largest suspension bridge in the world, with a span of 1991 m, and the Great Belt Bridge is the second largest, with a span of 1624 m. While spans lengths have increased nearly fivefold during the course of this century, they may have reached their physical limits with today’s materials. Research will be necessary to develop the new, ultra-high-strength steel wire or carbon fiber wire required to build the longer main suspension cables that will make it possible to increase span lengths to beyond 2000 m. As we enter the new millennium, rehabilitation and ongoing maintenance of the existing suspension bridges must continue as well. Recent rehabilitation measures for the main cables and suspension systems of these bridges have uncovered degradation through corrosion and hydrogen embrittlement. Research is needed to determine the remaining useful service life of suspension bridge cables and what measures can be taken to slow or halt the degradation process. Transportation in the New Millennium 2 Other components of long-span bridges, existing and new, are being revolutionized as technology moves forward. Advances in deck technology are producing stronger, lighter decks. Orthotropic and exodermic decks are becoming increasingly popular on long-span structures as a means of reducing dead load. Bearings, joint systems, and seismic retrofitting components are becoming increasingly efficient as more large-scale testing facilities are built.在20世纪,桥梁施工技术,是由进化而来的 工业革命。随着新世纪的到来,钢桥受到铆接在一起,而不是 螺栓、混凝土桥梁被扔在的地方,不是预制、大型桥梁成员 从系酒吧和小的部分,不卷在一块。塑料尚未 发明了。制作等施工工艺、浆墙、土壤冻结, 加筋土墙尚未怀了孕。测量进行机械 自从红外、光学技术仍然是75年。 大桥建设是新千年开始转变。新建筑 技术和新材料正在浮出水面。也有新的解决面临的桥 建筑行业的相关研究的需要,这些新技术 材料。 大跨度桥梁 悬挂的桥梁 虽然悬索桥建设进行了整个20速度不快 世纪,前所未有的跨越了卓越的长度是建在记录 远东和丹麦。双方在日本明石海峡大桥正式通车,伟大的带桥 在丹麦是在一九九八年完成。这个明石海峡大桥正式通车是世界上最大的悬架 在这个世界上,与桥梁的m,1991年是中国的第二大带桥, 用一段1624)。 虽然已经增加了近5倍长度的跨世纪的过程中, 他们已经达到了他们的物理极限与今天的材料。研究将 必须发展新的、ultra-high-strength钢丝、碳纤维丝要求 建立了悬索,将不再主要可能增加到跨度的长度 超出2000米。 当我们进入新千年、康复和持续的维护现有的 悬索桥必须继续。最近的戒毒措施为主要 电缆悬架系统与这些桥梁发现退化 氢脆腐蚀,。研究还剩下的 寿命悬索桥电缆和什么措施可以减缓或 停止退化的过程。 在新千年的运输 其他组件的大跨度桥梁,现有的和新的,正在发生了革命性的变化 技术的进步。提出了在甲板上技术生产强的,更轻的 甲板。正交各向异性和exodermic牌是大跨度越来越受欢迎 作为一种手段,降低结构自重荷载。轴承、联合系统和抗震能力 越来越多的有效成分是更大规模的测试设备 建造。 50分!!~~谢谢 参考资料:我的大脑
蔷薇紫馨524
摘 要Pick to 电动观光车是随着旅游业的发展逐渐兴起的,旅游业的蓬勃发展带动了关于电动观光车设计的研究,本次的课题就是关于电动观光车总体设计的研究,设计的主要内容如下所述。Electric sightseeing car is gradually rise along with the development of the tourism industry, the vigorous development of tourism, and so did the research on electric sightseeing car design, the topic is about the overall design of the electric sightseeing car, the main content of the design are described below. 首先,根据已知参数,对电动观光车总体做出整体布局设计。电池和电机作为观光车的动力系统,根据负载和动力要求,结合计算的数据,选择出最适合电动观光车的电机和电池。然后再对电动观光车前后悬架、车桥、车架、转向系统和制动系统一一进行分析和设计,其中转向系统的设计包括方向盘的设计、转向节的设计,制动系统的设计包括制动器和变速箱体的设计。最后在部分重要布置基本可以确定的基础上,对减速比和续航行程进行参数校核,确定电动观光车进行总体的布置设计。First of all, according to the known parameters, electric sight-seeing cars make overall layout design as a whole. The battery and motor as the power of the driving system, depending on the load and power requirements, combining with calculation data, choose the most suitable for electric sightseeing car motor and battery. Then for electric sightseeing car front and rear suspension, axles and chassis, steering system and brake system analysis and design, including the design of the steering system design including the design of the steering wheel, steering knuckle, the braking system design including the design of the brake and gear case. Finally decorate in the part of the important basic can be determined on the basis of the parameters was carried out on the reduction ratio and the life journey, identify electric sight-seeing cars for the general layout design. 本次所设计的这台低速的电动观光车,它的传动系十分简单方便,是由电机直接和主减速器用齿轮啮合直接连接,这样的设计可以使得整个底盘的空间得到了释放,整个底盘的布置也可以变的更加自由了。The design of the low speed of electric sightseeing car, its transmission system is very simple and convenient, are the direct and main reducer motor with gear mesh connected directly, this design can make the whole space of the chassis has been released, the entire chassis layout can also be more free. 关键词:旅游电动汽车;总体设计;底盘布置Keywords: tourism electric vehicles; The overall design; Chassis arrangement
电控发动机与化油器式发动机最大的不同在燃油供给系。电控发动机的燃油供给系取消了化油器,却增加了不少电子自动控制装置。其中包括许多传感器,执行元件和ECU。电控发
我有自己的,不舍得给你
麦弗逊(macphersan)式悬挂是独立悬挂的一种,是当今最为流行的独立悬挂之一,一般用于轿车的前轮 麦弗逊(mcpherson)是个人名。他是美国伊利诺斯州
城市热岛的成因及控制 论文导读:“城市热岛效应”也称“大气热污染现象”,是指城市市区气温高于郊区气温,高温城区处于低温郊区的包围之中,在用等温线表示的气温分布图
自己的事情自己干!!