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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Reduction in the moan noise by frequency-response-function-based substructuring and optimization techniques
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Reduction in the moan noise by frequency-response-function-based substructuring and optimization techniques

机译:通过基于频率响应函数的子结构和优化技术来降低the吟噪声

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Moan' noise in a vehicle causes discomfort and anxiety to passengers. In the previous study, the causes of moan noise were identified, and a coherence analysis of the components was conducted. It was found that moan noise was generated by the attribution of resonance when the exciting force produced by the stick-slip motion in a brake system was transmitted to a coupled torsional beam axle module. The analysis involved calculation of the response of the coupled torsional beam axle module on a full suspension brake system reconstructed by consideration of the transfer functions and the joint conditions of the coupled torsional beam axle module and the brake system. Each transfer function is decomposed by a frequency-response-function-based substructuring technique. In this study, when using the sensitivity analysis and optimization techniques for moan-noise reduction, the frequency-response-function-based substructuring technique was performed to calculate the response of the modified coupled torsional beam axle module by considering the joint conditions and the transfer functions of the brake system. Highly sensitive design parameters regarding the response of the coupled torsional beam axle module were identified after the sensitivity analysis. The most sensitive design parameters were selected to enhance the efficiency and the robustness of optimization. The optimal values for the design variables were obtained by applying a progressive quadratic response surface method as a optimization algorithm. The application of an optimization technique was possible using the finite element model and the results of the finite element analysis from the previous study. After optimization, a prototype was re-designed, manufactured and tested. Finally, it was verified that the moan noise was reduced, as the natural frequency of 387 Hz for the coupled torsional beam axle module was moved to a higher frequency.
机译:车辆中的吟声会引起乘客的不适和焦虑。在先前的研究中,确定了发出an吟声的原因,并对组件进行了相干分析。已经发现,当制动系统中由粘滑运动产生的激振力传递到耦合的扭力梁轴模块时,由于共振的归因产生了mo吟声。该分析涉及计算扭力轴联轴器模块在完全悬架制动系统上的响应,该系统通过考虑传递函数以及扭力轴联轴器模块和制动系统的联合条件而重建。每个传递函数都由基于频率响应函数的子结构技术分解。在这项研究中,当使用灵敏度分析和优化技术来降低mo声时,基于频率响应函数的子结构技术通过考虑关节条件和传递来计算改进的耦合扭力梁轴模块的响应。制动系统的功能。灵敏度分析后,确定了有关耦合扭力梁轴模块响应的高灵敏度设计参数。选择最敏感的设计参数以提高效率和优化的鲁棒性。设计变量的最佳值是通过应用渐进二次响应面方法作为优化算法而获得的。通过使用有限元模型和先前研究的有限元分析结果,可以应用优化技术。经过优化后,对原型进行了重新设计,制造和测试。最终,可以证明,由于耦合扭力梁轴模块的387 Hz固有频率提高到更高的频率,因此降低了the吟声。

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