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Generating virtual specimens for complex non-periodic woven structures by converting machine instructions into topological ordering rules

机译:通过将机器指令转换为拓扑排序规则,为复杂的非周期性编织结构生成虚拟样本

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We describe the generation of geometrical models of complex, non-periodic, three-dimensional (3D) textile structures, which combine reinforcing tows and open spaces formed by the use of fugitive tows or alloy rods. Modeling begins with the machine instructions that are executed on the weaving loom to create a 3D textile architecture, including instructions for unusual machine operations that create functional features such as holes or joints. Data include only simple specifications of the nature of each tow, such as its cross-sectional area and approximate stiffness. The weave architecture is defined by sets of bounded integers, an ideal input data structure for computational design optimization. Models are generated automatically via simple algorithms based on topological ordering rules. Diverse outcomes are illustrated by a sandwich structure and a cooled airfoil component. The generation of complex structures that are built from very many machine instructions is simplified by identifying "design instructions", which consist of repeated patterns of machine instructions that can be entered into the input deck very quickly, rather than by entering each machine instruction separately. Yet symmetry, including periodicity, is not necessarily present: the airfoil exemplar demonstrates the use of design instructions to form an asymmetric structure along whose length the number of tows and their interlacing pattern both vary. (C) 2016 Elsevier Ltd. All rights reserved.
机译:我们描述了复杂,非周期性,三维(3D)纺织结构的几何模型的生成,这些模型结合了加固丝束和使用逃逸丝束或合金棒形成的开放空间。建模从在织机上执行以创建3D纺织体系结构的机器指令开始,其中包括用于异常机器操作的指令,这些指令会创建功能功能,例如孔或接头。数据仅包括每个丝束的性质的简单说明,例如其横截面积和近似刚度。编织架构由有界整数集定义,这是用于计算设计优化的理想输入数据结构。通过基于拓扑排序规则的简单算法自动生成模型。三明治结构和冷却翼型部件说明了不同的结果。通过识别“设计指令”,简化了由许多机器指令构建的复杂结构的生成,该“设计指令”由可以快速输入到输入平台的机器指令的重复模式组成,而不是通过分别输入每个机器指令来实现。然而,包括周期性在内的对称性并不一定存在:机翼示例演示了使用设计说明来形成不对称结构的情况,沿着该结构长度,丝束的数量及其交错图案都在变化。 (C)2016 Elsevier Ltd.保留所有权利。

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