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Reducing force transmission through exhaust mounts of a vehicle

机译:通过车辆的排气安装减小力传输

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摘要

Under the excitation of an engine, an exhaust system vibrates, and the vibrational energy is transmitted to the vehicle body through the exhaust mounts. The transmitted energy makes contribution to the vibration of the body, which in turn increases the overall vehicle noise level. Noise contributed by the exhaust can be eliminated up to a certain level by reducing the force transmitted through the exhaust mounts. In this study, an objective function, which represents the force transmitted through the exhaust mounts, is defined. The aim is to minimise the transmitted force to achieve better vibration isolation. First, structural dynamic analysis of the vehicle exhaust system is evaluated using computational and experimental procedures. The finite element model of the exhaust system is complemented and validated by following an experimental modal analysis procedure. In the correlation procedure, it is observed that boundary conditions of the exhaust system have significant effects on the results. Hence, the definitions and the assumptions of boundary conditions are studied in detail to achieve a better correlation between the computational and the experimental models. Then, the validated computational model is used for optimisation studies. Moreover, a mass is attached to the exhaust system to reduce the forces transmitted to the vehicle body. For the optimisation problem, the stiffness and the location of exhaust mounts and the weight and the location of hanging mass are defined as design variables. Significant improvements are achieved compared to the initial design.
机译:在发动机的激励下,排气系统振动,并且振动能量通过排气盖传递到车身。传输的能量对身体的振动作出贡献,这又增加了整个车辆噪声水平。通过减少通过排气盖透过的力,可以通过减小排气的噪声来消除到一定水平。在该研究中,定义了表示通过排气座透过的力的目标函数。目的是最小化透射力以实现更好的振动隔离。首先,使用计算和实验程序评估车辆排气系统的结构动态分析。通过遵循实验模态分析程序补充和验证排气系统的有限元模型。在相关过程中,观察到排气系统的边界条件对结果具有显着影响。因此,详细研究了边界条件的定义和假设,以实现计算和实验模型之间的更好相关性。然后,验证的计算模型用于优化研究。此外,质量附着到排气系统上以减小传递到车身的力。对于优化问题,排气盖的刚度和位置和悬挂质量的位置和位置被定义为设计变量。与初始设计相比,实现了显着的改进。

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