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Vibration and noise attenuation performance of compounded periodic struts for helicopter gearbox system

机译:直升机齿轮箱系统复合周期支柱的振动和噪声衰减性能

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摘要

To reduce the helicopter cabin noise generated from a gearbox, a novel compounded periodic strut is designed with periodic structures connected in series/parallel in the axial direction. In this paper, the emphasis is placed on exploring the vibration transfer performance of the strut in both the axial and lateral directions, along with its attenuation effects on fuselage vibration and cabin noise. First, considering all directions, a complete dynamic model of the designed strut is established based on the spectral finite element method and the transfer matrix method and is extended to the model of the gearbox/struts system. Based on this model, simulation predictions indicate that the designed strut exhibits better broadband vibration attenuation in the lateral directions compared to that in the axial direction. Under this combined action, the translational vibration transmitted to the fuselage floor can be effectively isolated. The maximum acceleration attenuation can be more than 40 dB. These conclusions are verified by further experimental studies, which confirm that the numerical model can accurately predict the strut's vibration control results in the helicopter model. Subsequently, the noise transfer performance from the gearbox to the cabin noise field is experimentally studied using the helicopter model. Similar to the vibration control results, satisfactory broadband noise attenuation is obtained when using the designed compounded periodic strut. Among the frequencies of the stop bands, the maximum noise attenuation is more than 30 dB. (C) 2019 Elsevier Ltd. All rights reserved.
机译:为了减少从齿轮箱产生的直升机驾驶室噪音,设计了一种新的复合的周期支柱,设计有周期性结构,轴向串联/平行连接。在本文中,重点探讨了轴向和横向方向上支柱的振动传递性能,以及对机身振动和舱室噪声的衰减效应。首先,考虑到所有方向,基于光谱有限元方法和传输矩阵方法建立了设计的Strut的完整动态模型,并扩展到变速箱/支柱系统的模型。基于该模型,模拟预测表明,设计的支柱与沿轴向相比,在横向方向上表现出更好的宽带振动衰减。在这种组合动作下,可以有效地分离传递给机身底板的平移振动。最大加速度衰减可以大于40 dB。通过进一步的实验研究验证了这些结论,该研究证实了数值模型可以准确地预测支柱的振动控制导致直升机模型。随后,使用直升机模型进行实验研究来自齿轮箱到机舱噪声场的噪声传递性能。类似于振动控制结果,在使用设计的复合的周期支柱时获得令人满意的宽带噪声衰减。在止动频带的频率中,最大噪声衰减大于30dB。 (c)2019 Elsevier Ltd.保留所有权利。

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