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High Frequency Vibration Transmission Analysis on Agricultural Tractor by Using Combined Dynamical Energy Analysis and Transfer Path Analysis Approach

机译:利用组合动力学能量分析和转移路径分析方法对农业拖拉机高频振动传输分析

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Dynamical Energy Analysis (DEA) has recently been introduced as a mesh-based high frequency method modelling structure borne sound for complex built-up structures. Using DEA, the structure-borne sound of an assembled agricultural tractor was calculated and good agreement between measurement and DEA calculations has been shown. However, it is still difficult to model a solid structure as currently DEA is based on wave-transmission calculations through plates and plate-to-plate junctions. Additionally, it is often difficult to generate accurate FE meshes of assembled complex structures because of welds, bolts, and rubber brushes between components. In this paper, we propose a novel method to generate DEA elements based on measurement data in order to model solid parts of a complex structures. The method of Advanced Transfer Path Analysis (ATPA) is employed to extract energy-transmission characteristics of a structure. Firstly, Frequency Response Functions (FRFs) are measured between interface points on a structure. Then the direct transfer functions between all interface points are calculated using ATPA. Finally, DEA elements connecting interface points are calculated. They are based on the ATPA result and therefore represent energy-transmission characteristics of the structure. the proposed method is applied to an agricultural tractor structure in order to generate DEA-TPA elements of a gear casing demonstrating the effectiveness of the proposed method.
机译:最近被引入动态能量分析(DEA)作为基于网格的高频方法建模结构,用于复杂的内置结构的声音。使用DEA,计算了组装的农业拖拉机的结构,并显示了测量和DEA计算之间的良好一致性。然而,仍然难以模拟一种实心结构,因为目前DEA基于波传输计算通过板和板与板连接。另外,由于部件之间的焊接,螺栓和橡胶刷,通常难以产生组装的复合结构的精确Fe网格。在本文中,我们提出了一种基于测量数据产生DEA元素的新方法,以便模拟复杂结构的固体部分。采用高级传输路径分析(ATPA)来提取结构的能量传输特性。首先,在结构上的接口点之间测量频率响应函数(FRF)。然后使用ATPA计算所有接口点之间的直接传输功能。最后,计算连接接口点的DEA元件。它们基于ATPA结果,因此代表结构的能量传输特性。该方法应用于农业拖拉机结构,以产生齿轮壳的DEA-TPA元件,证明了所提出的方法的有效性。

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