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Multi-shape active composites by 3D printing of digital shape memory polymers

机译:通过数字形状记忆聚合物进行3D打印的多形状活性复合材料

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摘要

Recent research using 3D printing to create active structures has added an exciting new dimension to 3D printing technology. After being printed, these active, often composite, materials can change their shape over time; this has been termed as 4D printing. In this paper, we demonstrate the design and manufacture of active composites that can take multiple shapes, depending on the environmental temperature. This is achieved by 3D printing layered composite structures with multiple families of shape memory polymer (SMP) fibers – digital SMPs - with different glass transition temperatures (Tg) to control the transformation of the structure. After a simple single-step thermomechanical programming process, the fiber families can be sequentially activated to bend when the temperature is increased. By tuning the volume fraction of the fibers, bending deformation can be controlled. We develop a theoretical model to predict the deformation behavior for better understanding the phenomena and aiding the design. We also design and print several flat 2D structures that can be programmed to fold and open themselves when subjected to heat. With the advantages of an easy fabrication process and the controllable multi-shape memory effect, the printed SMP composites have a great potential in 4D printing applications.
机译:最近使用3D打印创建主动结构的研究为3D打印技术增加了令人兴奋的新维度。这些活性材料(通常是复合材料)在印刷后可以随时间改变形状。这被称为4D打印。在本文中,我们演示了可以根据环境温度采取多种形状的活性复合材料的设计和制造。这可以通过3D打印具有多种形状记忆聚合物(SMP)纤维系列(数字SMP)的分层复合结构来实现,该结构具有不同的玻璃化转变温度(Tg)以控制结构的转变。经过简单的单步热机械编程过程,可以在温度升高时依次激活光纤族以使其弯曲。通过调节纤维的体积分数,可以控制弯曲变形。我们开发了一个理论模型来预测变形行为,以更好地理解现象并帮助设计。我们还设计并打印了多个平面2D结构,这些结构可以编程为在受热时折叠并打开。凭借易于制造的过程和可控的多形状记忆效果,已打印的SMP复合材料在4D打印应用中具有巨大的潜力。

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