首页> 外文会议>EuroBrake Conference >INVESTIGATION OF BRAKE RESIDUAL DRAG TORQUES MEASURED ON INERTIA DYNAMOMETER, APPLIED TO ONE CONVENTIONAL BRAKE CALIPER ONE CALIPER WITH PREDEFINED AIR GAP
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INVESTIGATION OF BRAKE RESIDUAL DRAG TORQUES MEASURED ON INERTIA DYNAMOMETER, APPLIED TO ONE CONVENTIONAL BRAKE CALIPER ONE CALIPER WITH PREDEFINED AIR GAP

机译:在惯性测功机上测量的制动和剩余阻力扭矩的调查,适用于一种传统的制动钳和一个具有预定气隙的卡钳

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Fuel Economy is one of the most important requirements for modern vehicles. To increase efficiency many factors need consideration. In addition to the engines the entire power train, the tires, and the aerodynamics of the body, the properties of the foundation brakes need to be optimized. The automotive industry and brake manufacturers have focused on reducing residual drag torque, which is generated between brake rotor and friction linings. This is mainly caused by incorrectly released callipers and/or pads. In the past, the industry relied on the simple approach that the air gap corresponding to the piston roll-back allows low residual drag torque between pads and disc. However, this is not always the case. Being aware of the phenomena an "Active-Retraction Caliper" (ARC) was developed, which is designed to guarantee a pressure independent constant running clearance. This technique needs to be validated on a suitable test bench as well. Traditionally, Brake R&D focused on providing a reliable braking performance, low wear, and acceptable low brake noise and vibrations. For managing these tasks a wide range of proven measurement and testing equipment is available. In comparison, the methods for precise determination of residual drag torque are in an early stage. However, in recent years several innovative approaches for the determination of residual drag torque were defined and brought into practical test. One of these methods is to use a dynamic inertia brake dynamometer combined with a special torque measuring system. This measuring device must be optimized to measure high brake torques, as well as minimal residual drag torques, following realistic test cycles with regard to speed, torque, and energy. The consideration of real brake pressures and energy profiles (dynamometer load collectives) is possible.
机译:燃油经济性是现代车辆最重要的要求之一。提高效率许多因素需要考虑。除了发动机整个动力列车,轮胎和身体的空气动力学之外,还需要优化基础制动器的性质。汽车工业和制动器制造商集中于减少剩余拖曳扭矩,这在制动转子和摩擦衬里之间产生。这主要是由错误释放的卡尺和/或垫引起的。在过去,行业依赖于简单的方法,即对应于活塞回来的气隙允许垫和盘之间的低剩余拖曳扭矩。然而,这并非总是如此。了解开发了“有源 - 缩回卡钳”(ARC)的现象,这旨在保证压力独立恒定的运行间隙。该技术也需要在合适的测试台上验证。传统上,制动研发专注于提供可靠的制动性能,低磨损和可接受的低制动噪音和振动。为了管理这些任务,可提供各种经过验证的测量和测试设备。相比之下,用于精确测定残余拖轮的方法是早期阶段。然而,近年来,定义了几种用于确定残留阻力扭矩的创新方法并进入实际测试。其中一种方法是使用动态惯性制动测功机与特殊的扭矩测量系统相结合。该测量装置必须优化以测量高制动扭矩,以及在速度,扭矩和能量方面的实际测试周期之后的最小剩余阻力扭矩。考虑真正的制动压力和能量型材(测力计装载集集团)是可能的。

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