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Optimization design of downsize engine structure based on dynamic knock excitation

机译:基于动态爆震激励的缩小发动机结构优化设计

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The small size of the city vehicle gasoline engine is the key point of the current energy saving and emission reduction. The application of multi stage turbocharger technology has become a research hotspot, which leads to a higher compression ratio, the average effective pressure in the combustion chamber is further increased, and the engine knock phenomenon is frequent. In this paper, based on the measurement of the pressure in the cylinder of the gas suction, the influence of the knock excitation on the strength of the piston is studied, pressure of the detonation is taken as the dynamic excitation of the piston, and the stress distribution under the dynamic excitation is studied. Then simulate the actual working conditions of the engine by changing the maximum value of cylinder pressure.
机译:城市车辆汽油发动机的小尺寸是当前节能减排的关键点。多级涡轮增压器技术的应用已成为研究热点,导致更高的压缩比,燃烧室的平均有效压力进一步增加,发动机爆震现象频繁。本文基于气瓶中的气缸压力的测量,研究了爆震激发对活塞的强度的影响,将爆炸的压力作为活塞的动态激发,以及研究了动态励磁下的应力分布。然后通过改变气缸压力的最大值来模拟发动机的实际工作条件。

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