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Experimental Investigation of Low-Frequency Vibration Patterns in Automotive Disk Brake Systems: Utilization Study for Modal Simulation Methods

机译:汽车磁盘制动系统低频振动模式的实验研究:模态仿真方法的利用研究

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Increasing demands on automotive comfort as well as diminishing vehicle noise levels draw new attention towards low-frequency vibration and noise issues of disk brake systems such as creep groan and moan. In view of this problem, the experimental investigation of relevant phenomena is within the scope of this article. The related experiments concerning two different setups have been performed at a drum driven suspension and brake test rig. Both assemblies consisted of a front axle corner including all parts of the integrated brake system. In order to gain understanding of characteristic triggering mechanisms and fundamental subsystem interactions, and moreover, to verify the suitability of modal methods for simulative evaluations of creep groan or moan, specifically elaborated Operating Deflection Shape (ODS) techniques have been applied. Via analyses of four different creep groan emergences, global stick-slip cycles between disk and pads are revealed. For two dissimilar vibrations in the typical frequency range of moan, mechanisms rather associated with dynamic instabilities are identified. Based on measurement results and further theoretical considerations, the suitability of a disk brake Complex Eigenvalue Analysis (CEA), which is a linear modal simulation method designated to efficiently evaluate disk brake squeal noise, is verified with respect to the relevant friction-induced low-frequency phenomena. Even though the disk brake CEA is inappropriate to estimate a highly non-linear behavior such as involved in all four creep groan signatures, its application for accompanying damped natural oscillations as well as for both observed moan appearances is plausible. By investigation of characteristic pad vibration patterns and speeds belonging to the disk rotation, generic parameter spaces for the utilization of modal methods on harmonic low-frequency phenomena are deduced.
机译:越来越多的汽车舒适的需求以及越来越少的车辆噪音水平引起了磁盘制动系统的低频振动和噪声问题,如蠕变呻吟和呻吟。鉴于此问题,相关现象的实验调查在本文的范围内。已经在鼓从动悬架和制动试验台上进行了关于两个不同设置的相关实验。两个组件都包括一个前轴角,包括集成制动系统的所有部件。为了获得对特征触发机制和基本子系统相互作用的理解,而且,为了验证蠕变呻吟或呻吟的模拟评估模拟方法的适用性,专门施加了精细的操作偏转形状(ODS)技术。通过分析四种不同的蠕变呻吟突出,揭示了盘和垫之间的全球粘滑周期。对于典型频率范围的摩兰的两个不同振动,识别与动态不稳定性相关的机制。基于测量结果和进一步的理论考虑,磁盘制动复合特征值分析(CEA)的适用性是指指定用于有效地评估盘式尖叫声噪声的线性模拟模拟方法,得到了相关的摩擦诱导的低 - 频率现象。尽管磁盘制动CEA是不合适的,但估计了诸如涉及的所有四个蠕变呻吟群体的高度线性行为,其用于伴随阻尼的自然振荡以及观察到的呻吟似乎是合理的。通过调查特征垫振动模式和属于磁盘旋转的速度,推导出用于利用谐波低频现象模态方法的通用参数空间。

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