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Improvement of the Startability with Reverse Stroke Intake Devices for a Motorcycle Engine

机译:用于摩托车发动机的反向行程进气装置的可启动性改进

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This paper proposes a novel engine starter system composed of a small-power electric motor and a simple mechanical valve train. The system makes it possible to design more efficient starters than conventional systems, and it is especially effective to restart engines equipped with idling stop systems. Recently, several idling stop systems, having intelligent start-up functions and highly-efficient generate capabilities have been proposed for motorcycles. One of challenges of the idling stop systems is the downsizing of electric motors for starting-up. However, there are many limitations to downsize the electric motors in the conventional idling stop systems, since the systems utilize the forward-rotational torque of the electric motors to compress the air-fuel mixture gas in the cylinders. Our studies exceeded the limitations of downsizing the electric motors by mainly using the engine combustion energy instead of the electric energy to go over the first compression top dead center. The starter system described in this paper consists of (A) an electric motor which can rotate an engine crank shaft in normal or reverse directions, (B) a valve train to initiate the intake valve during the exhaust stroke in the reverse rotation, and (C) a control unit to inject and ignite at arbitrary timing. Then, this engine starts-up with the following: (1) the electric motor rotates the crank shaft in the reverse direction, (2) a fuel is injected to the intake port, (3) a generated air-fuel mixture gas is led to the cylinder from the intake port during the exhaust stroke, and (4) the air-fuel mixture gas is ignited in the expansion stroke. Since the ignition generates the combustion energy to push back the piston, the piston is forced to be fallen down and the crank shaft is driven in the normal direction. At last the piston goes over the first compression top dead center by the normal-direction without the torque of the starter motor. After that it begins the normal operation. The mechanism above can decrease the required time and the required torque to start-up the engine, and it leads to the downsizing of the starter motor, as well as a reduction in the battery consumption. When the mechanism is applied to starter-generator systems for motorcycles, the excess capability of the electric generation can be suppressed because it is not necessary to install the large-power starter-generators.
机译:本文提出了一种由小型电动电动机和简单机械阀门系组成的新型发动机启动系统。该系统使得可以比传统系统设计更高效的初学者,并且尤为有效地重启配备空闲停止系统的发动机。最近,已经提出了几种怠速停止系统,具有智能启动功能和高效的生成功能,为摩托车提出。怠速停止系统的挑战之一是用于启动的电动机的缩小大小。然而,在传统空转停止系统中缩小电动机的电动机有许多限制,因为系统利用电动机的前旋转扭矩以压缩气缸中的空气燃料混合物气体。我们的研究超出了通过主要使用发动机燃烧能量而不是电能来缩小电动机的局限性,而不是电动能量来越过第一压缩顶部死亡中心。本文中描述的起动系统由(a)的电动机组成,该电动机可以在正常或反向方向上旋转发动机曲柄轴,(b)阀门系,以在反向旋转期间在排气冲程期间启动进气阀,并且( c)在任意时序注入和点燃的控制单元。然后,该发动机用以下启动:(1)电动机在反向方向上旋转曲轴,(2)将燃料喷射到进气口,(3)产生的空气燃料混合物气体LED在排气行程期间从进气口的圆柱体,(4)空气 - 燃料混合物气体在膨胀行程中点燃。由于点火产生燃烧能量以推回活塞,因此活塞被迫下降,并且曲轴在正常方向上被驱动。最后,活塞通过正常方向越过第一压缩顶部死点而没有起动电机的扭矩。之后它开始正常操作。上面的机构可以减小所需的时间和所需的扭矩来启动发动机,并且它导致起动电机的缩小大小,以及减少电池消耗。当该机构应用于用于摩托车的起动发电机系统时,可以抑制发电的过剩能力,因为没有必要安装大功率启动器发生器。

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