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Bioactive glass-ceramic scaffolds from novel 'inorganic gel casting' and sinter-crystallization

机译:新型“无机凝胶浇铸”和烧结结晶的生物活性玻璃陶瓷支架

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摘要

Highly porous wollastonite-diopside glass-ceramics have been successfully obtained by a new gel-casting technique. The gelation of an aqueous slurry of glass powders was not achieved according to the polymerization of an organic monomer, but as the result of alkali activation. The alkali activation of a Ca-Mg silicate glass (with a composition close to 50 mol % wollastonite50 mol % diopside, with minor amounts of Na2O and P2O5) allowed for the obtainment of well-dispersed concentrated suspensions, undergoing progressive hardening by curing at low temperature (40 degrees C), owing to the formation of a C-S-H (calcium silicate hydrate) gel. An extensive direct foaming was achieved by vigorous mechanical stirring of partially gelified suspensions, comprising also a surfactant. The open-celled structure resulting from mechanical foaming could be frozen' by the subsequent sintering treatment, at 900-1000 degrees C, causing substantial crystallization. A total porosity exceeding 80%, comprising both well-interconnected macro-pores and micro-pores on cell walls, was accompanied by an excellent compressive strength, even above 5 MPa.
机译:通过一种新的凝胶浇铸技术已经成功地获得了高度多孔的硅灰石-透辉石微晶玻璃。玻璃粉末的水浆料的凝胶化不是根据有机单体的聚合而实现的,而是由于碱活化的结果。 Ca-Mg硅酸盐玻璃(组成接近50 mol%硅灰石,50 mol%透辉石,含有少量的Na2O和P2O5)的碱活化得到了分散良好的浓缩悬浮液,通过在较低温度下固化进行渐进硬化由于形成了CSH(水合硅酸钙)凝胶,因此温度(40摄氏度)。通过剧烈机械搅拌还包含表面活性剂的部分胶凝悬浮液,可实现广泛的直接发泡。机械发泡产生的开孔结构可以通过随后的900-1000摄氏度的烧结处理而冻结,从而导致大量结晶。总孔隙率超过80%,包括孔壁上互连良好的大孔和微孔,都具有出色的抗压强度,甚至高于5 MPa。

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