用有限元法分析汽车单、双鼓式制动器的尖叫声

Q3 Physics and Astronomy
Anderson L Dias, Rômulo dN Rodrigues, Roberto dA Bezerra, P. Lamary
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引用次数: 2

摘要

尽管盘式制动器几乎用于整个批量生产的车辆,但鼓式制动器仍然适用于轻型、中型和重型车辆。然而,两者都表现出高水平的制动噪音,其中尖叫声是最令人不舒服的,也是汽车行业关注的高保修成本背后的原因之一。因此,制动噪声预测方法和模型的发展促使人们做出了重大努力。本研究旨在分析商业汽车应用中的两种类型的鼓式制动器。他们的参数有限元模型包括鼓、蹄和摩擦衬片,并提交到一个计算过程中,该过程包括系统在制动力下的静态计算,以获得预应力状态,在预应力状态周围计算系统的复杂特征值,这些特征值表征了系统的稳定性。这些计算表明了整个系统的不稳定频率。通过实验设计(DOE)过程,可以看出鼓式制动器参数对系统稳定性的影响。摩擦系数和杨氏模量与啸叫发生率有很强的相关性。最后给出了比较和最佳材料参数,以减少这些制动器的尖叫噪声的发生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Automotive simplex and duplex drum brake squeal analysis using the finite element method
Despite the fact that disk brakes are used on almost entire mass produced vehicle, drum brakes are still applied on light-, medium-, and heavy-duty vehicles. However, both exhibit a high level of brake noises in which squeal is the most uncomfortable and one of the reasons behind high warranty costs that concern the automotive industry. Hence, the development of prediction methods and models of brake noise have prompted significant efforts. This study intends to analyze two types of drum brakes of a commercial automotive application. Their parametric finite element model comprises drum, shoes, and frictional linings and are submitted to a computational process that includes static calculations of the system under the brake forces to get a pre-stress state around which is computed the complex eigenvalues of the system which characterize their stability. These calculations indicate the unstable frequencies of the entire system. After the design of experiments (DOE) process, the influence of drum brake parameters on system stability can be seen. The friction coefficient and Young’s modulus presented a strong correlation with squeal incidence. At the end is presented a comparison and the optimal material parameters to decrease squeal noise occurrence of these brakes.
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来源期刊
Noise and Vibration Worldwide
Noise and Vibration Worldwide Physics and Astronomy-Acoustics and Ultrasonics
CiteScore
1.90
自引率
0.00%
发文量
34
期刊介绍: Noise & Vibration Worldwide (NVWW) is the WORLD"S LEADING MAGAZINE on all aspects of the cause, effect, measurement, acceptable levels and methods of control of noise and vibration, keeping you up-to-date on all the latest developments and applications in noise and vibration control.
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