基于透明模型的液力变矩器空化特性实验研究

Y. Katayama, Y. Hosoi, Y. Fukuda, S. Watanabe, S. Tsuda, Yoshihide Mori, Kazuyoshi Ito
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引用次数: 0

摘要

在本研究中,我们实验研究了工作液中溶解空气量和涡轮与泵元件转速比对汽车变矩器空化现象的影响。为了直接观察空化现象,采用透明模型。通过改变施加的装药压力来改变空化的意义。同时测量了泵和涡轮的转矩,阐明了转矩性能与空化现象的关系。结果表明,空化区域与速比有关;低速比时,汽蚀发生在叶片吸力侧,高速比时,汽蚀发生在泵区。溶解空气量的影响是显著的,溶解空气的沉积促进了空化气泡的生长。在这种情况下,随着装药压力的进一步降低,整个流道中出现了大量的气体空化气泡。该阶段转矩性能恶化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Investigation on Cavitation Performance of Torque Converter Using Transparent Model
In this study, we experimentally investigated the influence of the amount of dissolved air in working fluid and the rotation speed ratio of turbine to pump elements on cavitation phenomenon in automotive torque converter. In order to directly observe the cavitation phenomenon, transparent model was used. The applied charge pressure was varied to change the significance of cavitation. The pump and turbine torques were simultaneously measured to clarify the relation between torque performance and cavitation phenomenon. As a result, the cavitation region was found to depend on the speed ratio; cavitation occurred on the suction side of turbine blades at low speed ratios while in the pump region at high speed ratios. The effect of the amount of dissolved air was significant, which enhanced the growth of cavitation bubbles through the deposition of dissolved air. In such cases, with the further decrease of charge pressure, a large number of gaseous cavitation bubbles appeared in the whole flow passage. The torque performance was deteriorated at this stage.
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