The Effect of a Variable Disc Pad Friction Coefficient for the Mechanical Brake System of a Railway Vehicle
Влияние переменного коэффициента трения между тормозным диском и колодкой на механическую тормозную систему железнодорожного транспортного средства
2015-08-12
SCID: 54.1/4q3y2wq7
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brake hardware-in-the-loop simulationrailway vehicle brakingreal-time simulationvariable friction coefficientwheel slide
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Abstract (AI)
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.
Key Findings
1
Brake simulations conventionally assume a constant disc-pad friction coefficient, but this simplification can substantially affect predicted braking performance, particularly wheel-slide behavior.
2
Disc-pad friction varies significantly with environmental conditions, making variable-friction modeling important for realistic railway braking analysis.
3
Experimental testing of the brake HILS system verifies the formula’s effectiveness for representing mechanical braking performance.
4
The study introduces a variable friction-coefficient formula represented by two variables and five parameters.
5
The variable-friction model is implemented in real-time railway brake hardware-in-the-loop simulations.
Research Object
Mechanical brake system of a railway vehicle
Research Subject
Effects of an environmentally variable brake disc–pad friction coefficient on braking performance, especially wheel-slide behavior, evaluated through real-time brake HILS simulations and experiments
Publication Details
Publication Date
2015-08-12
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