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Coupling loss factor evaluation using loss factor based on the SEA

机译:基于海的损耗因子耦合损耗因子评估

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The overall aim of this paper is to determine coupling loss factor using loss factor and structural loss factor. For this purpose, two kinds of loss factor were adopted. One is loss factor of each sub structure, another is structural loss factor based on the complex welded or assembled structure. Using these two parameters, it is possible to derive the coupling loss factor which represent characteristic condition of SEA theory. Coupling loss factor of conjunction in complex structure was expressed as power balance equation. The derived equation for a coupling loss factor has been simplified on the assumption of one directional power flow between two sub structures. Using these conditions, it is possible to find the coupling loss factor equation. The comparison between theory of power transmission on conjunction and above equation, show a good agreement in simple beam structure. To check the effectiveness of above equation, it was adopted rotary compressor. Rotary compressor has three main conjunctions between shell and internal vibration part. This equation was applied to find out the optimum welding point with respect to reduce the noise propagation. It shows the effective tool to evaluate the coupling loss factor in complex structure.
机译:本文的总体目的是使用损耗因子和结构损失因子确定耦合损耗因素。为此目的,采用了两种损耗因子。一个是每个子结构的损耗因子,另一个是基于复合焊接或组装结构的结构损耗因子。使用这两个参数,可以推导出代表海理论的特征条件的耦合损耗因子。复杂结构结合的耦合损耗因子表示为功率平衡方程。耦合损耗因子的导出方程已经在两个子结构之间的一个定向功率流的假设上简化了。使用这些条件,可以找到耦合损耗因子方程。电力传输理论与高于等式的比较,在简单的光束结构中表现出良好的一致性。为了检查上方方程的有效性,采用旋转压缩机。旋转式压缩机在壳体和内部振动部分之间有三个主要的连词。应用该方程以找出相对于降低噪声传播的最佳焊接点。它显示了评估复杂结构中的耦合损耗因子的有效工具。

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