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MESOSCOPIC MODELING OF 3D FOUR-DIRECTIONAL BRAIDED COMPOSITES

机译:3D四方向编织复合材料的介观模型

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3D four-directional braided composites are becoming widely used in the aeroengines due to their excellent transverse properties such as stiffness, strength, fracture toughness and damage resistance. In spite of great achievements in composite materials, the model of 3D four-directional braided composites gives rise to considerable challenge in establishing interior fiber bundle structure which is curved and twisted in jamming condition. Original circular cross-section of fiber bundle is squeezed into oval shape ellipse in manufacturing process of the jamming action. Thus, a novel mesoscopic modeling approach for 3D four-directional braided composites was proposed in this study, which considered the fiber bundle cross-section's deformation. Firstly, an analytic equation to describe the transformation of fiber bundle cross-section was established based on the equal area of the ellipse and circle. Secondly, the parameters of this equation were achieved using the Matlab simulation. It was concluded that the compacted, non-interfered fiber bundle model constructed was in good agreement with actual structure. This paper provides the mathematical relationship between braiding parameters and geometric dimensions of unit cell model. Numerical results showed that the value of braiding pitch length has a relative calculation error less than 4% compared with test data. The modeling technique lays a foundation for further mesomechanics investigation on 3D four-directional braided composites.
机译:三维四方向编织复合材料由于其优异的横向特性,例如刚度,强度,断裂韧性和耐损伤性成为在航空发动机广泛使用。尽管在复合材料巨大成就,三维四方向编织复合材料模型产生了相当大的挑战在建立其被弯曲,并且在干扰条件加捻内部纤维束结构。纤维束的原来圆形的横截面被挤压成椭圆形椭圆形在制造干扰动作的处理。因此,对于3D四方向编织复合材料的新型介观建模方法在该研究中,这被认为束横截面的变形的纤维中提出的。首先,解析方程来描述纤维束横截面的基础上,椭圆和圆的面积相等的变换成立。其次,利用Matlab仿真实现了这个方程的参数。得出的结论是建立在压缩,无干扰的纤维束模型是与实际结构一致。本文提供编织参数和单元电池模型的几何尺寸之间的数学关系。数值计算结果表明,与试验数据进行比较编织节距长度的值具有相对计算误差小于4%。建模技术奠定了三维四向编织复合材料进一步细观力学研究奠定了基础。

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