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首页> 外文期刊>SAE International Journal of Aerospace >Energy Finite Element Analysis Developments for Vibration Analysis of Composite Aircraft Structures
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Energy Finite Element Analysis Developments for Vibration Analysis of Composite Aircraft Structures

机译:复合材料飞机结构振动分析的能量有限元分析进展

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The Energy Finite Element Analysis (EFEA) has been utilized successfully for modeling complex structural acoustic systems with isotropic structural material properties. In this paper, a formulation for modeling structures made out of composite materials is presented. An approach based on spectral finite element analysis is utilized first for developing the equivalent material properties for the composite material. These equivalent properties are employed in the EFEA governing differential equations for representing the composite materials and deriving the element level matrices. The power transmission characteristics at connections between members made out of non-isotropic composite material are considered for deriving suitable power transmission coefficients at junctions of interconnected members. These coefficients are utilized for computing the joint matrix that is needed to assemble the global system of EFEA equations. The global system of EFEA equations is solved numerically and the vibration levels within the entire system can be computed. The new EFEA formulation for modeling composite laminate structures is validated through comparison to test data collected from a representative composite aircraft fuselage that is made out of a composite outer shell and composite frames and stiffeners. NASA Langley constructed the composite cylinder and conducted the test measurements utilized in this work.
机译:能量有限元分析(EFEA)已成功用于对具有各向同性结构材料特性的复杂结构声学系统进行建模。在本文中,提出了一种由复合材料制成的结构建模的公式。首先使用基于光谱有限元分析的方法来开发复合材料的等效材料特性。在EFEA控制微分方程中采用了这些等效属性,以表示复合材料并导出元素级矩阵。考虑由非各向同性复合材料制成的构件之间的连接处的动力传递特性,以推导互连构件的接合处的合适的动力传递系数。这些系数用于计算联合EFEA方程的全局系统所需的联合矩阵。 EFEA方程的整体系统可以通过数值求解,并且可以计算整个系统内的振动水平。通过与从由复合材料外壳,复合材料框架和加劲肋制成的代表性复合材料飞机机身收集的测试数据进行比较,验证了用于复合材料层压结构建模的新EFEA配方。 NASA Langley建造了复合材料圆柱体,并进行了这项工作中使用的测试测量。

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