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Experimental dynamic analysis of the piston assembly of a running single-cylinder diesel engine

机译:运行单缸柴油机活塞组件的实验动态分析

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In the study, the dynamic analysis of the engine piston assembly was compared with the experimental measurements and the stable working speed was tried to be determined. The theoretical model was developed in addition to the experimental results. The relationships between the forces and torques applied in the crank mechanism, such as gas force and inertial force, are properly addressed. In the stationary conditions, the engine life and vibration should be observed besides the fuel consumption for the efficiency of single-cylinder engines. The result of the analysis shows that the torque value that is low though the vibration is high at low speeds. In high speeds, it was seen that the torque value is more when the vibration is low. This is interpreted that the specific engine should not be operated at low speeds about not vibration. According to the performance analysis, the band between 1600 and 2000 rpm seems convenient for ideal engine operation.
机译:在该研究中,将发动机活塞组件的动态分析与实验测量进行比较,并且尝试确定稳定的工作速度。 除了实验结果外,还开发了理论模型。 施加在曲柄机构(例如气体和惯性)中施加的力和扭矩之间的关系被适当地解决。 在静止条件下,除了用于单缸发动机的效率的燃料消耗之外,应观察到发动机寿命和振动。 分析结果表明,诸如振动的扭矩值低于低速。 在高速时,可以看出,当振动低时,扭矩值更多。 这被解释为特定发动机不应以低速运行,无振动。 根据性能分析,1600至2000 rpm之间的频段似乎方便理想的发动机操作。

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