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Effects of cavitation on performance of automotive torque converter:

机译:空化对汽车液力变矩器性能的影响:

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Cavitation is a phenomenon whereby vapor bubbles of a flowing liquid are formed in a local region where the pressure of the liquid is below its vapor pressure. It is well known that cavitation in torque converters occurs frequently when a car with an automatic transmission makes an abrupt start. Cavitation is closely related to a performance drop and noise generation at a specific operating condition in a car and a torque converter itself. This study addressed the relation between cavitation and performance in an automotive torque converter in a quantitative and qualitative manner using numerical simulations. The cavitation was calculated at various operating conditions using a commercial flow solver with the homogeneous cavitation model, and the torque converter performance was compared with the experimental data. Numerical results well match to the data and indicate that the cavitation causes significant performance drop, as the pump speed increases or both speed ratio and reference pressure decrease.
机译:空化是在液体的压力低于其蒸气压的局部区域中形成流动的液体的蒸气气泡的现象。众所周知,当带有自动变速器的汽车突然启动时,变矩器中经常发生气穴现象。空化与汽车和变矩器本身在特定操作条件下的性能下降和噪声产生密切相关。这项研究使用数值模拟以定量和定性的方式解决了汽车液力变矩器中气蚀与性能之间的关系。使用具有均质气蚀模型的商用流量求解器在各种工况下计算气蚀,并将变矩器性能与实验数据进行比较。数值结果与数据非常吻合,表明当泵速增加或速比和参考压力均降低时,气蚀会导致性能显着下降。

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