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Magnetic driven valve system and valve timing control mechanism for internal combustion engines

机译:内燃机的磁力驱动阀系统和气门正时控制机构

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摘要

A new type driven valve system for combustion engines has been presented, in which a cam is made of permanent magnet, and a roller rocker arm is made of cylindrical permanent magnet. In this system, an attractive force between the cam and the rocker arm due to the magnetic force suppresses jumps and bounces. This makes the friction in the driven valve system decrease. Hence, the resisting torque is decreased by use of this system. This implies that the energy loss decreases. In addition, since the attractive force suppresses the bounce phenomenon, noise due to the bounce is also suppressed in the present system. The analysis for obtaining the critical speed has been presented, and to validate the theoretical results, experimental test has been carried out. In order to have high-energy efficiency, an electric drive valve phase control system is presented. The valve phase control is carried out for the proposed driven valve system by using our control system.
机译:已经提出了一种用于燃烧发动机的新型驱动阀系统,其中凸轮由永磁体制成,并且滚子摇臂由圆柱形永磁体制成。在该系统中,凸轮和摇臂之间的吸引力由于磁力而抑制跳跃和弹跳。这使得驱动阀系统中的摩擦降低。因此,通过使用该系统降低抗蚀剂扭矩。这意味着能量损失降低。另外,由于吸引力抑制了反弹现象,因此在本系统中也抑制了由于反弹引起的噪声。已经提出了获得临界速度的分析,并验证理论结果,已经进行了实验测试。为了具有高能效,提出了电动驱动阀相位控制系统。通过使用我们的控制系统对所提出的驱动阀系统进行阀门相控制。

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