首页> 外文会议>ASME Fluids Engineering Division summer meeting >VIBRATION CHARACTERISTICS DUE TO CAVITATION IN STATOR ELEMENT OF AUTOMOTIVE TORQUE CONVERTER AT STALL CONDITION
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VIBRATION CHARACTERISTICS DUE TO CAVITATION IN STATOR ELEMENT OF AUTOMOTIVE TORQUE CONVERTER AT STALL CONDITION

机译:失速条件下汽车扭矩转换器定子元件中空位引起的振动特性

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Cavitation behaviors in an automotive torque converter at pump speed of 600, 700 and 800 min~(-1) at the stall condition are investigated by means of the transparent model. At the same time, the influences of cavitation on mechanical vibration are studied. As a result, at the onset of cavitation, the longitudinal corner vortex cavitation is formed at the corner between outer wall and either suction or pressure surface of stator blades. After the further decrease of charge pressure, the cavitation bubbles are observed in the flow separation region formed at the leading edge on the suction surface of stator blades. Vibration spectrum peaks are found in the wide range of frequency, which increase with the development of cavitation but then decrease with its excessive development. Discussions are made for higher and lower frequency ranges separately to understand the relation between mechanical vibrations and cavitation.
机译:利用透明模型研究了汽车变矩器在失速工况下泵速为600、700和800 min〜(-1)时的空化行为。同时研究了空化对机械振动的影响。结果,在气蚀开始时,在外壁与定子叶片的吸力或压力表面之间的拐角处形成了纵向角涡流气蚀。在增压压力进一步减小之后,在静叶片的吸入表面的前缘处形成的流分离区域中观察到气蚀气泡。在很宽的频率范围内发现振动频谱的峰值,随着空化的发展而增加,而随着空化的发展而减少。分别讨论了较高和较低的频率范围,以了解机械振动和气蚀之间的关系。

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