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用于SLA 3D打印技术的不同硅烷偶联剂的光固化陶瓷/聚合物复合材料的流变学和力学性能研究

A Study on the Rheological and Mechanical Properties of Photo-Curable Ceramic/Polymer Composites with Different Silane Coupling Agents for SLA 3D Printing Technology.

作者信息

Song Se Yeon, Park Min Soo, Lee Jung Woo, Yun Ji Sun

机构信息

Electronic Convergence Materials Division, Korea Institute of Ceramic Engineering and Technology, 101, Soho-ro, Jinju, Gyeongsangnamdo 52851, Korea.

Department of Materials Engineering, Pusan National University, 2, Busandaehak-ro 63beon-gil, Geumjeong-gu, Busan 46241, Korea.

出版信息

Nanomaterials (Basel). 2018 Feb 7;8(2):93. doi: 10.3390/nano8020093.

Abstract

Silane coupling agents (SCAs) with different organofunctional groups were coated on the surfaces of Al₂O₃ ceramic particles through hydrolysis and condensation reactions, and the SCA-coated Al₂O₃ ceramic particles were dispersed in a commercial photopolymer based on interpenetrating networks (IPNs). The organofunctional groups that have high radical reactivity and are more effective in UV curing systems are usually functional groups based on acryl, such as acryloxy groups, methacrloxy groups, and acrylamide groups, and these silane coupling agents seem to improve interfacial adhesion and dispersion stability. The coating morphology and the coating thickness distribution of SCA-coated Al₂O₃ ceramic particles according to the different organofunctional groups were observed by FE-TEM. The initial dispersibility and dispersion stability of the SCA-coated Al₂O₃/High-temp composite solutions were investigated by relaxation NMR and Turbiscan. The rheological properties of the composite solutions were investigated by viscoelastic analysis and the mechanical properties of 3D-printed objects were observed with a nanoindenter.

摘要

通过水解和缩合反应,将具有不同有机官能团的硅烷偶联剂(SCA)包覆在Al₂O₃陶瓷颗粒表面,然后将包覆有SCA的Al₂O₃陶瓷颗粒分散在基于互穿网络(IPN)的商用光聚合物中。在紫外线固化体系中具有高自由基反应活性且更有效的有机官能团通常是基于丙烯酸酯的官能团,如丙烯酰氧基、甲基丙烯酰氧基和丙烯酰胺基,这些硅烷偶联剂似乎能改善界面附着力和分散稳定性。通过场发射透射电子显微镜(FE-TEM)观察了根据不同有机官能团包覆SCA的Al₂O₃陶瓷颗粒的包覆形态和包覆厚度分布。通过弛豫核磁共振(NMR)和Turbiscan研究了包覆SCA的Al₂O₃/高温复合溶液的初始分散性和分散稳定性。通过粘弹性分析研究了复合溶液的流变性能,并用纳米压痕仪观察了3D打印物体的力学性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/feb7/5853725/98aa455a1c74/nanomaterials-08-00093-g001.jpg

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