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DESIGN OF MTB FRAME USING THREE DIMENSIONAL BRAIDED COMPOSITE

机译:三维编织复合材料的MTB框架设计

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The mechanical behavior of 3D multi-layered braided composite was analyzed using a multi-scale modelling approach. Considering the braiding parameters and the fiber volume fraction of the composite, firstly a unit-cell inside the braided composites was modelled considering the motion of yarn carriers. The unit-cell was imported into finite element software to calculate its meso-scale material properties. In this calculation the yarns in the unit-cell were assumed to be solid constituents without considering each filament in them, i.e., a meso-scale approach was adopted for the yarn modelling. As for the material law, the linear elastic constitutive equation was used for both yarn and matrix, from which the orthotropic material properties of the unit-cell were obtained. Then, the calculated properties of the unit-cell were imported to analyze the macroscopic deformation behaviour of the 3D braided composite using a finite element shell model. The validity of the current meso- and macro-scale analysis was investigated using experimental results, concluding that the linear elastic assumption for the yarn and matrix was too restrict to predict the deformation behaviour of the composites beyond the small deformation regions and thus a nonlinear constitutive equation is required for the matrix or yarns. Finally a case study, an optimum design of mountain bike (MTB) frames using 3D multi-layed braided composites, is in progress to validate the current modelling approach and will be presented at the conference.
机译:使用多尺度建模方法分析了3D多层编织复合材料的力学行为。考虑到编织参数和复合材料的纤维体积分数,首先在编织复合材料内部对单元格进行建模,考虑到纱架的运动。将晶胞导入到有限元软件中以计算其介观材料性能。在该计算中,假定单元格中的纱线是固体成分,而不考虑其中的每根细丝,即,采用中尺度方法进行纱线建模。关于材料定律,对纱线和基体均使用线性弹性本构方程,由此获得了晶胞的正交各向异性材料特性。然后,输入计算出的晶胞属性,以使用有限元壳模型分析3D编织复合材料的宏观变形行为。使用实验结果研究了当前的中尺度和宏观尺度分析的有效性,认为纱线和基体的线性弹性假设过于局限,无法预测复合材料在较小变形区域之外的变形行为,因此是非线性本构关系基质或纱线需要方程式。最后,正在进行案例研究,即使用3D多层编织复合材料的山地自行车(MTB)车架的优化设计,以验证当前的建模方法,并将在会议上进行介绍。

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