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The Effect of a Variable Disc Pad Friction Coefficient for the Mechanical Brake System of a Railway Vehicle

机译:可变盘垫摩擦系数对铁路车辆机械制动系统的影响

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摘要

A brake hardware-in-the-loop simulation (HILS) system for a railway vehicle is widely applied to estimate and validate braking performance in research studies and field tests. When we develop a simulation model for a full vehicle system, the characteristics of all components are generally properly simplified based on the understanding of each component’s purpose and interaction with other components. The friction coefficient between the brake disc and the pad used in simulations has been conventionally considered constant, and the effect of a variable friction coefficient is ignored with the assumption that the variability affects the performance of the vehicle braking very little. However, the friction coefficient of a disc pad changes significantly within a range due to environmental conditions, and thus, the friction coefficient can affect the performance of the brakes considerably, especially on the wheel slide. In this paper, we apply a variable friction coefficient and analyzed the effects of the variable friction coefficient on a mechanical brake system of a railway vehicle. We introduce a mathematical formula for the variable friction coefficient in which the variable friction is represented by two variables and five parameters. The proposed formula is applied to real-time simulations using a brake HILS system, and the effectiveness of the formula is verified experimentally by testing the mechanical braking performance of the brake HILS system.
机译:铁路车辆的制动硬件在环仿真(HILS)系统被广泛用于评估和验证研究研究和现场测试中的制动性能。当我们为整个车辆系统开发仿真模型时,通常在了解每个组件的用途以及与其他组件的交互作用的基础上,适当简化所有组件的特性。传统上,在模拟中使用的制动盘和制动衬块之间的摩擦系数一直被认为是恒定的,并且在可变性对车辆制动性能影响很小的前提下,可变摩擦系数的影响可以忽略。然而,盘垫的摩擦系数由于环境条件而在一定范围内显着变化,因此,该摩擦系数会相当大地影响制动器的性能,特别是在车轮滑动时。在本文中,我们应用了可变摩擦系数,并分析了可变摩擦系数对铁路车辆机械制动系统的影响。我们引入了可变摩擦系数的数学公式,其中可变摩擦由两个变量和五个参数表示。将所提出的公式应用于使用制动HILS系统的实时仿真中,并且通过测试制动HILS系统的机械制动性能,通过实验验证了该公式的有效性。

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  • 作者

    Nam-Jin Lee; Chul-Goo Kang;

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  • 年(卷),期 -1(10),8
  • 年度 -1
  • 页码 e0135459
  • 总页数 18
  • 原文格式 PDF
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