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生物活性玻璃的陶瓷立体光刻:树脂组成对固化行为和坯体性能的影响。

Ceramic Stereolithography of Bioactive Glasses: Influence of Resin Composition on Curing Behavior and Green Body Properties.

作者信息

Chen Qirong, Schmidt Franziska, Görke Oliver, Asif Anila, Weinhold Joachim, Aghaei Erfan, Rehman Ihtesham Ur, Gurlo Aleksander, Shah Asma Tufail

机构信息

Technische Universität Berlin, Faculty III Process Sciences, Institute of Materials Science and Technology, Fachgebiet Keramische Werkstoffe/Chair of Advanced Ceramic Materials, Straße des 17. Juni 135, 10623 Berlin, Germany.

Charité-Universitätsmedizin Berlin, Corporate Member of Freie Universität Berlin and Humboldt Universität zu Berlin, Department of Prosthodontics, Geriatric Dentistry and Craniomandibular Disorders, Aßmannshauser Str. 4-6, 14197 Berlin, Germany.

出版信息

Biomedicines. 2022 Feb 7;10(2):395. doi: 10.3390/biomedicines10020395.

Abstract

Herein we report on the preparation of a bioactive glass (BAG)-based photocurable resin for the additive manufacturing of BAG scaffolds with high filler loadings. The preparation of glass/ceramics resins for stereolithography with high filler loading is always a challenge, especially for fillers with a high refractive index variance. Various photocurable resin compositions with and without bioactive glass fillers have been investigated to see the influence of bioactive glass on physical properties of the resin and resulting green body. The effect of concentration of monomers, reactive diluent, light absorber (Sudan orange G dye), photoinitiator (PI), non-reactive diluent, and fillers (BAG) on rheology and photocuring behavior of the resin and tomography of the resulting 3D structures have been investigated. The BAG contents affect the rheology of resin and influence the rate of the polymerization reaction. The resin compositions with 55-60% BAG, 10% PEG-200 (diluent), 1% of PI and 0.015% of the dye were found to be suitable compositions for the stereolithographic fabrication. A higher percentage of PI caused over-curing, while a higher amount of dye decreased the cure depth of the resin. The micro-computed tomography (µ-CT) and scanning electron microscopic (SEM) images of the resulting green bodies display a relatively dense glass scaffold without any visible cracks and good interlayer connection and surface finishing. These properties play an important role in the mechanical behavior of 3D scaffolds. This study will be helpful to prepare high density glass/ceramic slurries and optimize their printing properties.

摘要

在此,我们报道了一种基于生物活性玻璃(BAG)的光固化树脂的制备,用于增材制造具有高填料负载量的BAG支架。制备用于立体光刻且具有高填料负载量的玻璃/陶瓷树脂一直是一项挑战,尤其是对于具有高折射率差异的填料而言。已经研究了各种含有和不含生物活性玻璃填料的光固化树脂组合物,以考察生物活性玻璃对树脂及所得生坯物理性能的影响。研究了单体、反应性稀释剂、光吸收剂(苏丹橙G染料)、光引发剂(PI)、非反应性稀释剂和填料(BAG)的浓度对树脂流变学和光固化行为以及所得三维结构断层扫描的影响。BAG含量会影响树脂的流变学,并影响聚合反应速率。发现含有55 - 60%BAG、10%聚乙二醇-200(稀释剂)、1%PI和0.015%染料的树脂组合物是用于立体光刻制造的合适组合物。较高百分比的PI会导致过度固化,而较高量的染料会降低树脂的固化深度。所得生坯的微观计算机断层扫描(µ-CT)和扫描电子显微镜(SEM)图像显示出相对致密的玻璃支架,没有任何可见裂缝,层间连接良好且表面光洁度良好。这些特性在三维支架的力学行为中起着重要作用。本研究将有助于制备高密度玻璃/陶瓷浆料并优化其印刷性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f04d/8962265/b0d9f948cf38/biomedicines-10-00395-g001.jpg

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