Grönquist Philippe, Panchadcharam Prijanthy, Wood Dylan, Menges Achim, Rüggeberg Markus, Wittel Falk K
Laboratory for Cellulose & Wood Materials, Empa, 8600 Dübendorf, Switzerland.
Institute for Building Materials, ETH Zurich, 8093 Zürich, Switzerland.
R Soc Open Sci. 2020 Jul 1;7(7):192210. doi: 10.1098/rsos.192210. eCollection 2020 Jul.
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.
能够自我成型的双层复合材料在科学与工程领域的相关性日益增加。它们可以由对状态变量变化有响应的各向异性材料制成,例如木材,其会因湿度变化而膨胀和收缩。当需要进行大幅度弯曲时,此类双层材料通常设计成交叉铺层结构。然而,交叉铺层叠层板的特性往往会阻止高斯曲率的变化,从而使复合材料的板状几何形状在成型时会受到部分限制。因此,实现最大化弯曲的有效方法是将复合材料保持在窄条配置中,以便在成型过程中高斯曲率能够保持恒定。对于许多自成型双曲结构可能有益的应用来说,这是一个基本限制,例如在木材建筑中。在本研究中,我们提议通过窄的自成型木材双层条带的网格壳配置来实现双曲率。使用数值力学模拟,我们研究了成型的参数相空间。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,我们还讨论了以自搭建木材网格壳形式存在的新型建筑应用潜力。