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Analysis of Rotational Vibration Mechanism of Camshaft at High Engine Speed in Engines with In-Line Four-Cylinder DOHC Configuration

机译:凸轮轴旋转振动机理分析在线四缸软件技术的高发动机速度

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In engines having an inline four cylinder DOHC configuration, the rotational vibrations of camshaft increase at high engine speeds above 10000 rpm, causing an increase of tension in the cam chain. It is therefore difficult to realize an optimum designing of a cam chain system when the durability has to be taken into considerations. Using the simulation we analyzed in this research how the rotational vibrations and tension increase at high engine speeds in an inline four cylinder DOHC engine. As its consequent, it is understood that the increases of rotational vibrations and tension caused by the resonance of the spring mass vibration system in which the cam chain serves as springs and the camshafts as the equivalent masses. Also it is found out that the vibration system is of a unique non-linear type in which the resonance of the fourth order frequency is also excited by the crankshaft torque fluctuations of the second order frequency. Furthermore, it is uncovered that the natural frequency of the vibration system shifts from a value to another with the shifting point at the engine speed where the tensioner resonates.
机译:在具有内联四缸DOHC配置的发动机中,凸轮轴的旋转振动在10000rpm高于10000rpm的高发动机速度下增加,导致凸轮链中的张力增加。因此,当必须考虑耐久性时,难以实现凸轮链系统的最佳设计。使用我们在本研究中进行分析的模拟,如何在内联四缸DOHC发动机中以高发动机速度的旋转振动和张力增加。因此,应理解,旋转振动和由弹簧质量振动系统的共振引起的旋转振动和张力的增加,其中凸轮链作为运动块和凸轮轴的弹簧和凸轮轴。此外,发现振动系统是一种独特的非线性类型,其中通过二阶频率的曲轴扭矩波动也激发了第四阶频率的共振。此外,揭示振动系统的固有频率从张紧器谐振的发动机速度以换档点从值移位到另一个。

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