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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Mathematical Model for Elliptic Torus of Automotive Torque Converter and Fundamental Analysis of Its Effect on Performance
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Mathematical Model for Elliptic Torus of Automotive Torque Converter and Fundamental Analysis of Its Effect on Performance

机译:汽车液力变矩器椭圆环的数学模型及其对性能的影响的基本分析

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Passenger car torque converters have been designed with an increasingly flatter profile in recent years for the purpose of achieving a weight saving and more compact size. However, a flatter design tends to result in the reduced hydrodynamic performance. To improve its performance, a new flat torus of elliptic type method concentrating on the solution to flat TC was put forward, and four torque converters of different flatness ratios were designed to judge the superiority of the flat torus design method. The internal flow characteristics were numerically investigated using CFD codes and resulted in good agreement with experimental data. The results indicate that the main cause of this performance degradation can be attributed to deterioration of the velocity fields of the pump, and a case of flatness ratio 0.8 illustrates the reason that the performance designed by the flat torus design method based on the elliptic shape is more excellent than that of the traditional one. Furthermore, this study proposed a structure of removal of inner ring to improve the performance of torque converter.
机译:近年来,乘用车变矩器被设计成具有越来越扁平的轮廓,以实现减轻重量和更紧凑的尺寸的目的。然而,较平坦的设计倾向于导致降低的流体动力学性能。为了提高其性能,提出了一种新的椭圆型扁平圆环方法,重点解决扁平TC问题,并设计了四个不同扁平度比的变矩器,以判断扁平圆环设计方法的优越性。使用CFD代码对内部流动特性进行了数值研究,结果与实验数据吻合良好。结果表明,这种性能下降的主要原因可以归因于泵的速度场的恶化,平面度比为0.8的情况说明了采用基于椭圆形状的扁平环形设计方法设计的性能为比传统的更出色。此外,本研究提出了一种去除内圈的结构,以提高变矩器的性能。

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