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Geometric modeling of 3D woven preforms in composite T-joints

机译:复合T型接头中3D编织预制件的几何建模

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摘要

A common method to fabricate net-shaped three-dimensional (3D) woven preforms for composite T-joints is to weave flat 3D preforms via a standard weaving machine with variation in binder yarn path and then separate the preform in the form of a bifurcation. Folding introduces fiber architecture deformation at the 3D woven bifurcation area. In this paper, a geometric modeling approach is proposed to represent the realistic fiber architecture, as a preprocessor for finite element analyses to predict composite structural performance. Supported by X-ray micro-computed tomography (mCT), three important deformation mechanisms are observed including yarn stack shifting, cross-section bending, and cross-section flattening resulting from the folding process. Furthermore, a set of mathematical formulae for simulation of the deformations in the junction region are developed and satisfactory agreement is observed when compared with mCT scan results.
机译:制造用于复合T形接头的网状三维(3D)编织预成型坯的常用方法是,通过标准编织机编织平整的3D预成型坯,并改变接结纱的路径,然后以分叉的形式分离预成型坯。折叠会在3D编织分叉区域引入纤维结构变形。在本文中,提出了一种几何建模方法来代表实际的纤维体系结构,作为有限元分析的预处理器来预测复合结构的性能。在X射线微计算机断层扫描(mCT)的支持下,观察到了三个重要的变形机制,包括纱线叠放移位,横截面弯曲和折叠过程导致的横截面变平。此外,开发了一组用于模拟接合区域变形的数学公式,与mCT扫描结果相比,观察到令人满意的一致性。

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