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Effective utilizing axial nonlinear characteristics of diaphragm spring and waveform plate to enhance breakaway performances of a clutch

机译:有效利用膜片弹簧和波形板的轴向非线性特性来增强离合器的分离性能

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For general-purpose passenger cars with a manual transmission, breakaway performances of a clutch have great effects on ride of clutch operation system. Breakaway performances of a clutch is defined as force versus displacement applied at clutch fingers, and it is non-linear decided by nonlinear characteristics of diaphragm spring and waveform plate. The relationship between characteristics of clutch breakaway and the ride of clutch operation system is investigated in this paper. A finite element (FE) model is proposed and used to estimate characteristics of clutch breakaway, and the calculated results are compared with experiments and these obtained by simple analytical method that deformation of a diaphragm spring is ignored. In the FE model, the nonlinear characteristics of diaphragm spring and waveform plate at axis direction are included. The influence of nonlinear characteristics of waveform plate and diaphragm spring on clutch breakaway is analyzed using the proposed model and the method for how to utilize nonlinear characteristics of diaphragm spring and waveform plate to enhance breakaway performances of a clutch is proposed. An example is given to demonstrate the effectiveness of the developed in the paper. (C) 2018 Elsevier Ltd. All rights reserved.
机译:对于具有手动变速器的通用乘用车,离合器的分离性能对离合器操作系统的行驶有很大影响。离合器的分离性能定义为力与施加在离合器指上的位移的关系,它是非线性的,取决于膜片弹簧和波形板的非线性特性。研究了离合器分离特性与离合器操纵系统行程之间的关系。提出了有限元模型,用于估计离合器分离特性,并将计算结果与实验结果进行比较,并通过简单的分析方法获得了忽略膜片弹簧变形的结果。在有限元模型中,包括了膜片弹簧和波形板在轴方向上的非线性特性。利用该模型分析了波形板和膜片弹簧的非线性特性对离合器分离的影响,提出了利用膜片弹簧和波形板的非线性特性提高离合器分离性能的方法。举例说明了本文开发的有效性。 (C)2018 Elsevier Ltd.保留所有权利。

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