首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >4D pine scale: biomimetic 4D printed autonomous scale and flap structures capable of multi-phase movement
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4D pine scale: biomimetic 4D printed autonomous scale and flap structures capable of multi-phase movement

机译:4D松树秤:生物摩摩素4d印刷自动规模和软盘结构能够多相运动

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摘要

We developed biomimetic hygro-responsive composite polymer scales inspired by the reversible shape-changes of Bhutan pine (Pinus wallichiana) cone seed scales. The synthetic kinematic response is made possible through novel four-dimensional (4D) printing techniques with anisotropic material use, namely copolymers with embedded cellulose fibrils and ABS polymer. Multi-phase motion like the subsequent transversal and longitudinal bending deformation during desiccation of a natural pinecone scale can be structurally programmed into such printed hygromorphs. Both the natural concept generator (Bhutan pinecone scale) and the biomimetic technical structure (4D printed scale) were comparatively investigated as to their displacement and strain over time via three-dimensional digital image correlation methods. Our bioinspired prototypes can be the basis for tailored autonomous and selfsufficient flap and scale structures performing complex consecutive motions for technical applications, e.g. in architecture and soft robotics.
机译:我们开发了由不丹松(松丘岛)锥形鳞片的可逆形状变化的仿生浓度敏感复合聚合物尺度。通过具有各向异性材料使用的新型四维(4D)印刷技术,即具有嵌入纤维素原纤维和ABS聚合物的共聚物来实现合成运动响应。如在天然Pinecone秤的干燥期间的后续横向和纵向弯曲变形的多相运动可以在结构上被编程为这种印刷的潮旋晶素。通过三维数字图像相关方法,自然概念发生器(Bhutan Pinecone Scale)和仿生技术结构(4D印刷规模)随着时间的推移而相对调查它们随着时间的推移和应变。我们的BioinSpired原型可以是定制的自主和自我放射性的襟翼和尺度结构对技术应用进行复杂的连续动作的基础,例如,为技术应用进行复杂的动作。在建筑和软机器人中。

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