首页> 外文会议>ASME Joint Rail Conference >EXPERIMENTAL INVESTIGATION OF THE INFLUENCE OF THE SUPPORTING MECHANISM OF A SELF-ENERGIZING HYDRAULIC BRAKE ON TORQUE OSCILLATIONS
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EXPERIMENTAL INVESTIGATION OF THE INFLUENCE OF THE SUPPORTING MECHANISM OF A SELF-ENERGIZING HYDRAULIC BRAKE ON TORQUE OSCILLATIONS

机译:自激液压制动器支撑机理对扭矩振荡影响的实验研究

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摘要

Friction force oscillations caused by changes in the properties of the contact zone between brake disc and pad are well known from various applications. Resulting effects like brake judder are known phenomena in brake technologies and in the scope of various scientific work. A new potential measure to reduce brake torque oscillations is the active compensation with the use of the control system of a self-energizing hydraulic brake (SEHB). The SEHB for railway application developed at the Institute for Fluid Power Drives and Controls (IFAS) of RWTH Aachen University offers high dynamic properties with its capability to reduce brake torque oscillations actively. New - in comparison to other braking systems - is the fact that the brake torque is measured by sensing the pressure in an additional supporting cylinder. Within this paper the influence of the hydraulic-mechanical system of the supporting cylinder on the oscillation properties of the SEHB is analyzed. The experimental investigation is conducted using a full scale brake test for railway applications. The brake disc is driven by hydraulic motors in secondary control mode. Measurement results will be used to define requirements of a superimposed dynamic pressure control to minimize brake torque oscillations. Future work will be experimental investigation of the influence of the self-energizing effect and the development of measures to compensate brake torque oscillations actively with the hydraulic actuator of the SEHB.
机译:由刹车盘和垫之间的接触区的性质变化引起的摩擦力振荡是从各种应用中公知的。制动施法等产生的效果是制动技术的已知现象,以及各种科学工作的范围。用于减少制动扭矩振荡的新潜在措施是利用自激液压制动器(SEHB)的控制系统的主动补偿。在RWTH Aachen大学的流体电力驱动器和控制研究所(IFAS)开发的铁路应用的SEHB提供了高动态性能,其能力积极减少制动扭矩振荡。与其他制动系统相比 - 是通过在附加支撑圆筒中传感压力来测量制动扭矩的事实。在本文中,分析了支撑缸液压系统对SEHB振荡性质的影响。使用用于铁路应用的全规模制动试验进行实验研究。制动盘由辅助控制模式下的液压马达驱动。测量结果将用于定义叠加的动态压力控制的要求,以最小化制动扭矩振荡。未来的工作将是对自我激励效果的影响的实验研究以及通过SEHB的液压执行器主动地补偿制动扭矩振荡的措施的影响。

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