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An Investigation on the Design and Manufacturing of Powertrain System for Student Formula Japan (SFJ) Vehicle

机译:用于学生方程式的动力系统系统设计和制造研究(SFJ)车辆

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The main purpose of Student Formula Japan competition (hereafter called “SFJ”) is to let students learn the basic ability necessary for engineers through design, fabrication and test projects. In this study the authors decided to adopt Honda BC-PC37E which was an engine for motor cycles. Then the engine have strength enough for the light weight, downsizing design. As the course of the competition consists of short straights and many corners for running within equal to or less than middle speed range, the engine must have excellent acceleration performance to reduce the lap times in the corners. The effective engine performance is necessary for the flat torque in all of engine speed range, especially in low engine speed range. As the regulation allows that a turbocharger is fitted to an engine, its introduction is effective for getting high torque in the low engine speed range. In this study the authors investigate the influences of the main specifications and the characteristics of important power train components, such as turbocharger, throttle, air restrictor, air collector, intake manifold (intake system), exhaust manifold (exhaust system), camshaft, valve timing and dual system of injection, on the improvement of the engine performance by analytical methods, experiments and driving tests. The conclusions are as follows: (1) The brake torque of the engine by adopting the turbocharger in the lower range of A/R (Area of inlet port/Radius of turbine, hereafter called “A/R”) has become higher in the low engine speed range. (2) In the case that the length of intake pipe is extended, the brake torque has been increased in the low engine speed range and decreased greatly in the high engine speed range.
机译:学生方程式的主要目的是比赛(以下称为“SFJ”)是让学生通过设计,制造和测试项目来学习工程师所需的基本能力。在这项研究中,作者决定采用本田BC-PC37E,这是一种用于电机循环的发动机。然后发动机具有足够强度的重量轻,缩小设计。由于竞争的过程包括短直线和许多角落,用于在等于或小于中速范围内运行,发动机必须具有出色的加速性能,以减少角落中的圈时间。在发动机速度范围内的扁平扭矩,特别是在低发动机速度范围内,有效发动机性能是必要的。由于该调节允许涡轮增压器安装到发动机上,因此其引入可有效地在低发动机速度范围内获得高扭矩。在本研究中,作者研究了主要规格的影响和重要的动力传动系统的特点,如涡轮增压器,节流器,空气限制器,空气收集器,进气歧管(进气系统),排气歧管(排气系统),凸轮轴,阀门计时和双系统注射器,通过分析方法,实验和驾驶测试改进发动机性能。结论如下:(1)通过采用涡轮增压器在较低范围的A / R(入口区域/涡轮的半径区域)中,发动机的制动扭矩(以下称为“A / R”)变得更高低发动机速度范围。 (2)在进气管长度延伸的情况下,在低发动机速度范围内,制动扭矩增加,并且在高发动机速度范围内大大降低。

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