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4D Printing of Recyclable Lightweight Architectures Using High Recovery Stress Shape Memory Polymer

机译:使用高回复应力形状记忆聚合物的可回收轻型建筑的4D打印

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摘要

High-performance lightweight architectures, such as metallic microlattices with excellent mechanical properties have been 3D printed, but they do not possess shape memory effect (SME), limiting their usages for advanced engineering structures, such as serving as a core in multifunctional lightweight sandwich structures. 3D printable self-healing shape memory polymer (SMP) microlattices could be a solution. However, existing 3D printable thermoset SMPs are limited to either low strength, poor stress memory, or non-recyclability. To address this issue, a new thermoset polymer, integrated with high strength, high recovery stress, perfect shape recovery, good recyclability, and 3D printability using direct light printing, has been developed in this study. Lightweight microlattices with various unit cells and length scales were printed and tested. The results show that the cubic microlattice has mechanical strength comparable to or even greater than that of metallic microlattices, good SME, decent recovery stress, and recyclability, making it the first multifunctional lightweight architecture (MLA) for potential multifunctional lightweight load carrying structural applications.
机译:高性能轻质结构,例如具有出色机械性能的金属微晶格已进行3D打印,但是它们不具有形状记忆效应(SME),限制了它们在高级工程结构中的用途,例如在多功能轻质夹心结构中用作核心。 3D可打印的自愈形状记忆聚合物(SMP)微晶格可能是一种解决方案。但是,现有的3D可打印热固性SMP限于强度低,应力记忆差或不可回收。为了解决这个问题,本研究开发了一种新的热固性聚合物,该聚合物具有高强度,高回复应力,完美的形状回复性,良好的可回收性和使用直接光印刷的3D可打印性。印刷并测试了具有各种晶胞和长度刻度的轻型微晶格。结果表明,立方微晶格具有与金属微晶格相当甚至更高的机械强度,良好的SME,良好的恢复应力和可回收性,使其成为潜在的多功能轻质承重结构应用中的第一个多功能轻质结构(MLA)。

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