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Self-Activated Morphing Carbon Fiber Composites via Cyclic Internal Stresses

机译:通过循环内应力自活化变形碳纤维复合材料

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摘要

An innovative concept to exploit self-activated morphing composite materials is presented and demonstrated experimentally. In this design, shape changes of a carbon fiber composite are achieved by combining two key ingredients: fibers orientation and temperature-sensitive epoxy resin. When the fibers are properly oriented in each layer, internal stresses can be induced or gradually released by hardening or softening, respectively, the hosting epoxy resin. The epoxy resin stiffness is controlled with the help of internal heaters (e.g. the carbon fibers as demonstrated in this paper). The proposed mechanism results in a large scale and cyclic shape-changing capability which, together with the corresponding tunable stiffness, represent the fundamental features of morphing structural materials.
机译:提出并通过实验证明了利用自活化变形复合材料的创新概念。在此设计中,碳纤维复合材料的形状变化是通过结合两个关键成分来实现的:纤维方向性和对温度敏感的环氧树脂。当纤维在每一层中正确取向时,可通过分别硬化或软化主体环氧树脂来引起或逐渐释放内应力。借助内部加热器(例如,如本文所述的碳纤维)控制环氧树脂的刚度。所提出的机制具有较大的规模和周期性的变形能力,其与相应的可调刚度一起代表了变形结构材料的基本特征。

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