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Design of filament-wound composite structures with arch-shaped cross sections considering fiber tension simulation

机译:考虑纤维张力模拟的拱形截面长丝缠绕复合结构设计

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The binding effect of fiber materials due to the winding tension during the filament winding process of arch-shaped cross sections was successfully evaluated using the Finite Element Method (FEM). The use of FEM was validated by comparing results obtained with the results from the numerical analysis of a classic cylindrical mandrel winding model. In this study, four methods were combined in the commercial finite element code ANSYS to predict the change trend of the residual stress of the layer and explore the relationship between the winding layer thickness and the winding relaxation effect. These methods include the element birth and death option, which was used to simulate the step-by-step winding process, the thermal parameter method, which produced the equivalent filament winding tension, contact analysis, which was used to carry out the transmission of radial pressure and deformation, and the restart method, which was used to simulate the procuring process. Compared with the mathematical algorithm and test of variable thickness, the results of FEM were in the range of allowable error. Therefore, these results provide a useful reference in designing the filament wound composite structures with considerably high fiber tensions.
机译:使用有限元方法(FEM)成功评估了纤维材料在拱形截面细丝缠绕过程中由于缠绕张力而产生的粘合效果。通过将获得的结果与经典圆柱心轴缠绕模型的数值分析结果进行比较,验证了有限元法的使用。在这项研究中,将四种方法结合到商业有限元代码ANSYS中,以预测层残余应力的变化趋势,并探索绕组层厚度与绕组松弛效应之间的关系。这些方法包括元素生死选项(用于模拟逐步缠绕过程),热参数方法(产生等效的细丝缠绕张力),接触分析(用于进行径向传递)压力和变形,以及重新启动方法,该方法用于模拟采购过程。与数学算法和变厚度试验相比,有限元方法的结果在允许误差范围内。因此,这些结果为设计具有高纤维张力的长丝缠绕复合结构提供了有用的参考。

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