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A New Method for Analysing the Pressure Response Delay in a Pneumatic Brake System Caused by the Influence of Transmission Pipes

机译:一种分析输送管道影响引起的气动制动系统压力响应延迟的新方法

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This study aims to propose an analysis method for resolving the pressure response of a pneumatic brake circuit considering the effect of a transmission pipe. Pneumatic brake systems (PBS) are widely used in commercial vehicles. The pressure response characteristic of the PBS is the key factor affecting braking performance. By using the thermodynamics of a variable-quality system, the pressure response model of the brake chamber is established, which includes the dynamic model of the pipe considering the unsteady friction and heat transfer. The partial-differential control equations of pipe are solved by introducing the constrained interpolation profile (CIP) method, and a virtual chamber model is proposed to set the boundary condition so as to solve the pressure response in the brake chamber simultaneously. Thus, the regularity of the brake pressure response is obtained by considering the influence of the pipe. Lastly, the model is verified experimentally. The present study indicates that the main factors that affect the pressure response delay are the pipe length and the combination forms of the sonic conductances of the orifices inlet and outlet. Furthermore, it helps to verify that the CIP method is an effective way of solving the pressure response of a brake circuit because of its high accuracy. The present study serves as a foundation for the design and analysis of a PBS.
机译:这项研究的目的是提出一种分析方法,以解决考虑到传输管影响的气动制动回路的压力响应。气动制动系统(PBS)广泛用于商用车辆。 PBS的压力响应特性是影响制动性能的关键因素。利用质量可变系统的热力学,建立了制动腔的压力响应模型,其中包括考虑了非定常摩擦和传热的管道动力学模型。通过引入约束插值曲线(CIP)方法求解管道的偏微分控制方程,并提出了虚拟腔室模型来设置边界条件,以便同时解决制动腔内的压力响应。因此,通过考虑管道的影响来获得制动压力响应的规律性。最后,对该模型进行了实验验证。目前的研究表明,影响压力响应延迟的主要因素是管的长度以及孔口进出口的电导率的组合形式。此外,由于它具有较高的精度,因此有助于验证CIP方法是解决制动回路压力响应的有效方法。本研究为PBS的设计和分析奠定了基础。

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