形状记忆聚合物的4D打印:光聚合丙烯酸酯基材料的简要综述

Rhaye Stephen B. Sosa, Davison T. Baldos, B. Basilia
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引用次数: 0

摘要

本文简要介绍了形状记忆聚合物的4D打印,重点介绍了丙烯酸酯基材料的光聚合。立体光刻(SLA),数字光处理(DLP),喷墨印刷(IJP)和UV辅助直接墨水书写(UV- diw)是使用丙烯酸酯基材料的光聚合印刷技术。这些以丙烯酸酯为基础的原料将在印刷过程中通过紫外线的存在而聚合,形成形状记忆聚合物(SMPs)。基于丙烯酸酯的SMPs将根据热、水、光和ph值改变其形状。这些4D打印丙烯酸酯基SMPs的演示应用是在生物医学、软机器人、柔性电子和结构材料中。然而,4D打印仍处于早期阶段,存在许多挑战,如增强机械性能,生物相容性,有限种类的smp, 4D打印系统的高成本,以及在可行产品生产之前需要解决的更多问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
4D Printing of Shape Memory Polymers: A Concise Review of Photopolymerized Acrylate-Based Materials
This paper presents a concise review on 4D printing of shape memory polymers that focuses on the use of acrylate-based materials using photopolymerization. Stereolithography (SLA), Digital Light Processing (DLP), Inkjet Printing (IJP), and UV assisted Direct ink Writing (UV-DIW) are the photopolymerization printing techniques that uses acrylate-based materials. These acrylate-based feedstocks will be polymerized during printing by the presence of UV light to form shape memory polymers (SMPs). Acrylate-based SMPs will change their shape in response to heat, water, light, and pH. Demonstrated applications of these 4D printed acrylate-bases SMPs are in biomedical, soft robotics, flexible electronics, and structural materials. However, 4D printing is still in the early stage and there are a lot of challenges like enhancing mechanical properties, biocompatibility, limited kind of SMPs, high cost of 4D printing system, and many more that needs to be addressed before a viable product can be produced.
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