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首页> 外文期刊>Royal Society Open Science >Computational analysis of hygromorphic self-shaping wood gridshell structures
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Computational analysis of hygromorphic self-shaping wood gridshell structures

机译:潮流自塑木格栅结构的计算分析

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Bi-layered composites capable of self-shaping are of increasing relevance to science and engineering. They can be made out of anisotropic materials that are responsive to changes in a state variable, e.g. wood, which swells and shrinks by changes in moisture. When extensive bending is desired, such bilayers are usually designed as cross-ply structures. However, the nature of cross-ply laminates tends to prevent changes of the Gaussian curvature so that a plate-like geometry of the composite will be partly restricted from shaping. Therefore, an effective approach for maximizing bending is to keep the composite in a narrow strip configuration so that Gaussian curvature can remain constant during shaping. This represents a fundamental limitation for many applications where self-shaped double-curved structures could be beneficial, e.g. in timber architecture. In this study, we propose to achieve double-curvature by gridshell configurations of narrow self-shaping wood bilayer strips. Using numerical mechanical simulations, we investigate a parametric phase-space of shaping. Our results show that double curvature can be achieved and that the change in Gaussian curvature is dependent on the system’s geometry. Furthermore, we discuss a novel architectural application potential in the form of self-erecting timber gridshells.
机译:能够自模的双层复合材料具有与科学和工程相关的相关性。它们可以由响应于状态变量的变化的各向异性材料制成,例如,响应于状态变量的变化。木材,通过水分的变化膨胀并缩小。当需要大量弯曲时,这种双层通常被设计为交叉层结构。然而,十字形层压板的性质倾向于防止高斯曲率的变化,使得复合材料的板状几何形状将部分地限制成形。因此,最大化弯曲的有效方法是将复合材料保持在窄带构造中,使得高斯曲率在成形过程中可以保持恒定。这代表了许多应用自形状双弯曲结构可能是有益的许多应用的基本限制,例如,在木材建筑中。在这项研究中,我们建议通过狭窄的自模木材双层条纹的GridShell配置来实现双曲率。使用数值机械仿真,研究了成形的参数间空间。我们的结果表明,可以实现双曲率,并且高斯曲率的变化取决于系统的几何形状。此外,我们讨论了一种以自行式木格壳的形式讨论了一种新颖的建筑应用潜力。

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