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THREE DIMENSIONAL EFFECTIVE PROPERTIES OF COMPOSITE MATERIALS FOR FINITE ELEMENT APPLICATIONS

机译:有限元应用中复合材料的三维有效特性

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A model has been developed to compute the effective properties for an arbitrarily shaped element with multiple anisotropic material regions. The analysis utilizes a finite element technique to resolve the complexity of three-dimensional layer geometry, anisotropy, ply orientations, and multi-material regions within an element. Accordingly, the model accounts for complex geometries requiring changes in mesh density and/or arbitrarily shaped elements that cannot be readily aligned with the layers of the laminate. Discontinuity due to ply drop-off or layer terminations within an element is also considered. The computed elastic constants are accurate, especially for the transverse shear properties. The analysis is particularly suitable for finite element applications of near-net shaped thick-section structures. A preprocessor was developed incorporating the effective property model to allow for generation of finite element representations for computer codes such as DYNA3D and ABAQUS. [References: 9]
机译:已经开发出一种模型来计算具有多个各向异性材料区域的任意形状元素的有效特性。该分析利用有限元技术来解决三维三维几何图形的复杂性,各向异性,层定向以及元素内的多材料区域。因此,该模型考虑了复杂的几何形状,这些几何形状需要改变网格密度和/或任意形状的元素,而这些元素不能轻易地与层压板的层对齐。还应考虑由于单元中的层脱落或层终止而导致的不连续性。计算出的弹性常数是准确的,特别是对于横向剪切特性而言。该分析特别适合于近净形厚截面结构的有限元应用。开发了一种包含有效属性模型的预处理器,以允许生成诸如DYNA3D和ABAQUS的计算机代码的有限元表示形式。 [参考:9]

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