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Application of Experimental Transfer Path Analysis and Hybrid FRF-Based Substructuring Model to Structure-Borne Noise

机译:实验转移路径分析及基于混合FRF的子结构模型在结构噪声中的应用

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This paper describes a structure-borne noise reduction process that was developed using a combination of experimental and analytical methods. First, the major noise paths were identified using experimental Transfer Path Analysis (TPA). Next, FEA-Experimental modeling and forced response simulation were conducted using the Hybrid FEA-Experimental FRF method. The Hybrid FEA-Experimental FRF-Based Substructuring (FBS) model was used along with Operational Deflection Shape (ODS) and Modal Analysis. The Hybrid FEA-Experimental model consisted of an experimental FRF representation of the body and a finite element model of a sub-frame. The finite element of the sub-frame was created by using Altair HyperMesh from CATIA images and the dynamic analysis was carried out by using MSC Nastran. The natural frequency and frequency response function of the finite element sub-frame model were compared with that of a real sub-frame to determine the validity of applying the Hybrid FBS method. By comparing the results based on the finite element model with the predicted results of a real sub-frame, the usefulness of the Hybrid FBS application was confirmed. The Hybrid FEA-Experimental FRF model was then used to simulate the structure-borne noise reduction that would be obtained using a modified frame, prior to the availability of a prototype. Modified hardware testing was used as the final step in the process to confirm the results of the simulation.
机译:本文介绍了一种使用实验和分析方法的组合开发的结构传播的降噪过程。首先,使用实验转移路径分析(TPA)鉴定主要噪声路径。接下来,使用杂化FEA实验FRF方法进行FEA实验建模和强制响应模拟。基于混合的FEA-实验FRF的子结构(FBS)模型与操作偏转形状(ODS)和模态分析一起使用。杂交FEA实验模型由身体的实验FRF表示和子框架的有限元模型组成。通过使用CATIA图像的Altair HyperMesh创建子帧的有限元,并且使用MSC Nastran进行动态分析。将有限元子帧模型的固有频率和频率响应函数与实际子帧的固定频率和频率响应函数进行比较,以确定应用混合FBS方法的有效性。通过将基于有限元模型的结果与实际子帧的预测结果进行比较,确认了混合FBS应用的有用性。然后,使用混合FEA实验FRF模型来模拟在原型的可用性之前使用修改框架获得的结构 - 传播的降噪。修改后的硬件测试用作过程中的最终步骤,以确认模拟结果。

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