首页> 外文期刊>Journal of the European Ceramic Society >Fabrication of ceramic microneedles - The role of specific interactions between processing additives and the surface of oxide particles in Epoxy Gel Casting
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Fabrication of ceramic microneedles - The role of specific interactions between processing additives and the surface of oxide particles in Epoxy Gel Casting

机译:陶瓷微针的制造-环氧凝胶浇铸中加工助剂和氧化物颗粒表面之间特定相互作用的作用

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Epoxy Gel Casting (EGC) was recently coined to designate a setting mechanism based on the in situ polymerization of epoxy resins dissolved in the aqueous dispersion media of ceramic powder suspensions upon adding suitable amine-based crosslinking agents. The specific interactions between the surface of the powder particles and the processing additives are likely to determine different partitions of the crosslinking species, dissolved in the bulk solution, or adsorbed at the surface of the particles, and affect the EGC process. The present work aims at evaluating the influence of surface chemistry on the extent of the specific interactions at the solid/liquid interface and how it affects the polymerization kinetics and the properties of ceramic green bodies consolidated by EGC. Three different ceramic oxides (alumina, zirconia and fused silica) having similar particle size distributions were used. Stable colloidal suspensions with 45 vol.% solids were prepared by dispersing the powders in aqueous solutions containing a fixed amount of a common dispersant and various dissolved amounts of an epoxy resin. Zeta potential, theological measurements and calorimetry were used to assess the specific interactions and their effects on the consolidation kinetics upon adding a polyamine hardener, and on the final properties of consolidated parts. With the isoelectric point of the naked particle surface decreasing, there were noticeable decreases in gelation time, shrinkage, green density, and flexural strength of the green ceramic body's properties. An interaction model is proposed to explain the observed differences. The potential of EGC to consolidate ceramic microneedles cast in soft rubber moulds was demonstrated. (C) 2016 Elsevier Ltd. All rights reserved.
机译:最近创造了环氧凝胶浇铸法(EGC),以指定一种固化机理,该机理基于在添加合适的胺基交联剂后溶解在陶瓷粉末悬浮液水分散介质中的环氧树脂的原位聚合。粉末颗粒表面与加工助剂之间的特定相互作用可能决定交联物质的不同分配,溶解在本体溶液中或吸附在颗粒表面,并影响EGC过程。本工作旨在评估表面化学对固/液界面特定相互作用程度的影响,以及它如何影响聚合反应动力学和由EGC固结的陶瓷生坯的性能。使用具有相似粒度分布的三种不同的陶瓷氧化物(氧化铝,氧化锆和熔融二氧化硅)。通过将粉末分散在含有固定量的普通分散剂和各种溶解量的环氧树脂的水溶液中来制备具有45体积%固体的稳定的胶体悬浮液。 Zeta电位,流变学测量和量热法用于评估特定的相互作用及其对添加多胺硬化剂后固结动力学以及固结零件最终性能的影响。随着裸露颗粒表面的等电点的降低,生坯陶瓷体性能的胶凝时间,收缩率,生坯密度和抗弯强度显着降低。提出了一个交互模型来解释观察到的差异。证明了EGC巩固在软橡胶模具中铸造的陶瓷微针的潜力。 (C)2016 Elsevier Ltd.保留所有权利。

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