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Analysis of Changes in Disc-Brake Squeal Characteristic due to Regenerative Braking Simulation on Brake-Inertia-Dynamometer

机译:圆盘制动尖端特性因制动惯用计再生制动模拟而分析

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Brake is very crucial functional part of automobile, therefore need a robust testing for validation in order to ensure its failsafe functionality under harsh circumstances. For performance testing and foundation brake system design optimization purpose Brake-Inertia-Dynamometer (BID) being used extensively since its inception, and from last two decades for optimization of brake Noise, Vibration, and Harshness (NVH) performance too. In brake NVH the major issue is brake squeal or squeak generation, which is very difficult to predict its occurrences and standardized its prerequisite conditions. Since, brake is the only device which is designed for power absorption in automobile and therefore the regenerative braking concept come to the picture for energy conservation. The loss of energy in braking in case of Hybrid Electric Vehicle (HEV) and Electric Vehicle (EV) is more crucial and hence implementation of regenerative-braking is more discernible in HEVs and EVs to enhance the efficiency. Furthermore, the propensity of brake squeal generation plays very important role as its gain more attention by occupants and rise questions against vehicle’s level of sophistication especially in case of HEVs and EVs, since squeal is very annoying in perception. Above reasons motivate to investigate the squeal performance of conventional friction disc brake when it is subjected to the regenerative braking. The regenerative braking has been simulated on BID through blending of braking torques of electric (regenerative) brake and friction brake using electrical inertia simulation technology in which, part of inertia acting as a resisting rotational torque which is equivalent to that of utilizing to conserve energy through regeneration. In this paper, the disc-brake squeal noise occurrence has been characterized without and with regenerative braking respectively. Also emphasis the changes in squeal characteristic for the same disc brake through comparison. Brake squeal noise occurrence has been evaluated using SAEJ2521 test cycle.
机译:刹车是汽车非常关键的功能部分,因此需要进行验证一个强大的测试,以确保在恶劣的情况下,它的故障安全功能。对于性能测试和基础制动系统优化设计的目的刹车惯性测功器(BID)被自成立以来广泛使用,并从过去的二十年制动的优化噪音,振动和不平顺性(NVH)的性能了。在制动NVH的主要问题是制动噪声或吱吱声代,这是很难预测它的出现,规范公司的前提条件。因为,制动器是设置在汽车设计用于功率吸收,并因此再生制动的概念来对图片节能的唯一设备。能量在混合动力电动汽车(HEV)和电动车(EV)的情况下,制动损耗是比较关键的并且因此执行再生制动的是在HEV和EV多种可辨别,以提高效率。此外,制动尖叫一代的倾向扮演其获得更多的关注尤其是在HEV和EV的情况下非常重要的作用居住者和上升的问题对复杂的车辆的水平,因为叫声是在感知很讨厌。上述原因激励,当它经受再生制动来调查现有的摩擦盘式制动器的尖叫性能。再生制动已经通过使用电惯量模拟技术,其中,的充当抗旋转转矩惯性部件,它是等效于通过利用以节约能源的电动(再生)制动和摩擦制动的制动力矩的混合模拟上BID再生。在本文中,在圆盘制动尖叫噪声发生已经被表征,而不和分别与再生制动。还强调的变化尖叫特性,用于通过比较在相同的盘制动器。制动尖叫噪声发生已经使用SAEJ2521测试循环进行评价。

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