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Estimation Technique of Air Content in Automatic Transmission Fluid by Measuring Effective Bulk Modulus

机译:通过测量有效散装模量来估计自动变速器流体中的空气含量

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It is well known that the entrained air in oil causes appreciable reduction in the stiffness of hydraulic systems. It makes the response delays of the systems and sometimes destroys the stability. Because the hydraulic systems used in most of automatic transmissions are operated in relatively low pressure and high temperature, it is very important to analyze the effects of the air included in automatic transmission fluid. However, it is hard to derive the generalized model to describe the effective bulk modulus theoretically or measure it in actual operating conditions of automatic transmissions. This paper reviews the previous studies of the air effects in hydraulic systems and the measurement techniques of the effective bulk modulus in operating conditions. Based on this work, the theoretical model with moderate complexity and the measurement technique of the effective bulk modulus considering entrained air effect at real operating conditions are suggested. Also, it shows that the quantity of the entrained air in the automatic transmission fluid can be estimated from the experimental results.
机译:众所周知,油中的夹带空气导致液压系统的刚度降低。它使系统的响应延迟延迟,有时会破坏稳定性。因为大多数自动变速器中使用的液压系统在相对低的压力和高温下操作,所以分析包括在自动变速箱中的空气的效果非常重要。然而,很难导出广义模型理论上以理论上描述有效体积模量或在自动变速器的实际操作条件下测量它。本文综述了对液压系统中的空气效应的先前研究以及操作条件下有效散装模量的测量技术。基于这项工作,提出了考虑在实际操作条件下考虑夹带空气效果的中等复杂性和测量技术的理论模型。而且,它表明,可以从实验结果估计自动变速器流体中夹带空气的量。

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