Gao Haoyu, Huang Xianmei, Arockiyasamy Abilash Rosario, Zhou Xuan, Ding Xiaohong, Zheng Longhui, Liu Yilong, Ye Fuquan, Weng Zixiang, Wu Lixin
Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, 350002, P.R. China.
College of Chemistry and Materials Science, Fujian Normal University, Fuzhou, 350007, P.R. China.
Nat Commun. 2025 May 22;16(1):4756. doi: 10.1038/s41467-025-60087-8.
Vat photopolymerization 3D printed flexible polymer foams, characterized by their porosity and lightweight nature, are in high demand for applications in thermal insulation, sound absorption, noise reduction, and biomedicine. The vat photopolymerization used UV-curable resin composed of oligomer can provide excellent fabrication accuracy, however the high cross-linking density after curing prevents the green part from expanding and further being processed into foam parts. In this work, a facile additive manufacturing polyurethane foam preparation method that successfully balances fabrication accuracy and expansion ratio is presented. The oligomer containing difunctional dynamic polyurea bonds in the resin system ensures the printing accuracy. Additionally, the dynamic urea bonds disassociate under a heating condition, reducing the cross-linking density and providing free space for expansion. Moreover, heat stimulated chain extension and crosslinking enhance the stretchability of the foams, demonstrating a strain of up to 650% at a density of 0.25 g/cm. This work addresses the challenge associated with fabricating free foaming parts via vat photopolymerization by delivering favourable surface quality and high expansion ratio without compromising mechanical properties.
光固化3D打印柔性聚合物泡沫材料,因其孔隙率和轻质特性,在隔热、吸音、降噪及生物医学等应用领域需求旺盛。光固化采用由低聚物组成的紫外光固化树脂,可提供出色的制造精度,然而固化后高交联密度会阻止生坯膨胀,进而无法进一步加工成泡沫部件。在这项工作中,提出了一种简便的增材制造聚氨酯泡沫制备方法,成功平衡了制造精度和膨胀率。树脂体系中含双官能团动态聚脲键的低聚物确保了打印精度。此外,动态脲键在加热条件下会解离,降低交联密度并为膨胀提供自由空间。而且,热刺激链增长和交联增强了泡沫的拉伸性,在密度为0.25 g/cm时应变高达650%。这项工作通过提供良好的表面质量和高膨胀率且不损害机械性能,解决了通过光固化制造自由发泡部件相关的挑战。