汽车理论课件汽车理论英文.ppt
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1、Elementary Vehicle Dynamics(汽车理论)PrefaceWhat can we learn from this course?The six fundamental performances of vehicleAcceleration Performance(动力性)动力性)Economical Performance(经济性)(经济性)Braking Performance(制动性)(制动性)Passing Ability(通过性)(通过性)Handling Performance(操纵稳定性操纵稳定性)Connering&Rollover Ride Perform
2、ance(行驶平顺性)行驶平顺性)Whats the aim of this courselTo find out the reasonable method to design and use vehicle according to the relationship among the parameters of structure and performance of vehicle.(通过车辆结构参数与性能之间的关系,找到正确设计汽车的方法和合理使用汽车的途径)Chapter one Acceleration Performance1.1 Evaluation Index(评价指标)1
3、.Maximum Vehicle Speed(Velocity)最高车速uauamax(km/h):(1)Definition:The maximum speed which the vehicle can get under good and flat road with rated load(额定载荷).(2)Actual Measurement of uauamax2.Acceleration Ability(加速能力)(1)The acceleration ability for starting(原地起步加速能力)Test Condition:Full engine power(油门
4、全开);Optimal shift point between gears(最佳换档时机)which are from low gear(第档)for start-up to high gear(最高档)for fuel economy.Evaluation IndexT T is the time needed by the vehicle to accelerate from 0 to 0.8Uamax under the above test condition or the time needed to pass through a fixed distance(400 m or mi
5、le(402.5m)).(用档起步,按最佳换档时间,逐次换至高档,油门全开,以最大加速度行驶,全力加速至 0.8uamax所需时间,或通过某 一预定距离所需时间)(2)The acceleration ability for high speed driving(超车加速能力)Test condition:Full engine power ;High gear(最高档)or inferior high gear(次高档)Evaluation indexTT is the time need to accelerate from the minimum stable speed of high
6、 gear(最高档的最小稳定车速)to 0.8Uamax or the time needed to pass through a fixed distance(400 m or mile).(在直接档工作时,油门全开,由该档的最小稳定车速全力加速至 0.8Uamax所需时间,或通过某一预定距离所需的时间)3.Maximum Gradeability of Vehicle imax(最大爬坡度)(1)Definition:The maximum grade which the vehicle can climb in the first gear(档)under good road condi
7、tion with fully rated load(额定满载).i=tg EQ140 imax=28%EQ240 imax=58%=30(2)Actual Measurement of imax1.2 Driving Mechanics of Vehicle To analyze the balance between Total Roads(行驶阻力)and Tractive Force(驱动力驱动力)along one degree of freedom(自由度)that is longitudinal direction(纵向).1.Tractive Force(驱动力)Torque
8、of Engine Flying Wheel Numerical Ratio of the Transmission Numerical Ratio of the Final drive Total efficiency of driveline Torque of Driving Wheel(1)Torque of Engine Engine maybe characterized by its torque and power curve as a function of speed.Figure 1.shows typical curves for gasoline engine.Fig
9、ure 1.Performance characteristics(外特性曲线)of gasolineFull performance and Full performance with all the accessories(外特性与使用外特性外特性与使用外特性)Useful formulas for Power calculationUnit:Pe(kW);Ttq(Nm);n(r/min)。(2)Efficiencies of DrivelinelThe necessity of the introduction of T:The inefficiencies due to mechani
10、cal and viscous losses in the driveline components(transmission;driveshaft;differential and axles)have not been taken into account.These act to reduce the engine torque in proportion to the products of the efficiencies of the individual components.l T(combined efficiency of driveline)consists of fou
11、r primary parts:离合器 变速箱 传动轴 驱动桥 (3)Tire RadiusDefinition:lNominal Radius(自由半径):the radius of tire without load(spare tire 备胎 radius).lStatic Loaded Radius(静力半径):the distance from the center of static tire to the contact point with ground under vertical load only.lRolling Radius(滚动半径):the radius whic
12、h is measured by S(distance passed by vehicle)and n(rolling numbers).(4)Graph of Tractive Force(驱动力图)lHow to make tractive force-speed characteristics graph:1)Mathematical conversion between n(engine revolution speed)and (vehicle speed)Note:(km/h);n(r/min);r(m)2)Make the graphlTwo basic formulas for
13、 making the graph:lMake the tractive force line of each gear(given )of the vehicle(given&given r and given ):lMake all the curves of the vehicle figure1.2:Figure 1.2 Tractive force-speed characteristics for a manual transmission3)Conclutions from the graph of tractive force:l“Constant Engine Power”i
14、s equal to the maximum power of the engine;which is the upper limit of tractive force available,less any losses in the driveline.lThe curves illustrate visually the need to provide a number of gear ratios for operation of the vehicle(low gearing for start-up,and high gearing for high-speed driving).
15、lFor maximum acceleration performance the optimum shift point between gears is the point where the line cross.lThe area between the lines for the different gears and the constant power curve is indicative of the deficiencies of(缺乏,不足)the transmission in providing maximum acceleration performance.2.R
16、oad Load force(行驶阻力)(1)Rolling Resistance Force F f(滚动阻力)l Energy losses:Due to the deflection of tires:Due to the deflection of road surface:converted into the heat within the tires caused by the friction of rubber particlesl Rolling resistance torque T f(滚动阻力偶矩)T f=F zaThe mechanics analysis of dr
17、iven wheel with constant revolution assume Rolling Resistant Force of driven wheel (从动轮的滚动阻力)assume a/r=f(Coefficient of rolling resistant)滚动阻力系数滚动阻力系数 conclution:under given conditions(stiff road;constant revolution speed)assumed:driving force rolling resistance force of driving wheel total rolling
18、 resistance :The mechanics analysis of driving wheel with constant revolutionNote:1.Rolling resistance is present from the instant the wheels begin to turn.2.The rolling resistance is the primary motionresistance force.3.For off-high way,level ground operation,the rolling resistance is the only sign
19、ificant retardation force.4.usually is equal to 0.012.(2)Aerodynamic Drag(空气阻力)Aerodynamic Drag(空气阻力)(空气阻力)Pressure Drag(压力阻力)(压力阻力)Vicious Friction(摩擦阻力)(摩擦阻力)Form Drag-形状阻力形状阻力 58%Total Protuberance Drag-干扰阻力干扰阻力 14%Total Internal Drag-内循环阻力内循环阻力 12%Induced Drag-诱导阻力诱导阻力 7%lAerodynamic forces inte
20、ract with the vehicle causing drag,lift(or down load),lateral forces,and their individual moments.lThe Aerodynamic forces produced on a vehicle arise from two sources:Note:1)Total Internal Drag comprises of air flow management of cooling system and inside ventilation of the body.(发动机冷却、车身通风)With no
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