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Bioactive Glass-Ceramic Foam Scaffolds from ‘Inorganic Gel Casting’ and Sinter-Crystallization

机译:来自“无机凝胶铸造”和烧结结晶的生物活性玻璃陶瓷泡沫支架

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摘要

Highly porous bioactive glass-ceramic scaffolds were effectively fabricated by an inorganic gel casting technique, based on alkali activation and gelification, followed by viscous flow sintering. Glass powders, already known to yield a bioactive sintered glass-ceramic (CEL2) were dispersed in an alkaline solution, with partial dissolution of glass powders. The obtained glass suspensions underwent progressive hardening, by curing at low temperature (40 °C), owing to the formation of a C–S–H (calcium silicate hydrate) gel. As successful direct foaming was achieved by vigorous mechanical stirring of gelified suspensions, comprising also a surfactant. The developed cellular structures were later heat-treated at 900–1000 °C, to form CEL2 glass-ceramic foams, featuring an abundant total porosity (from 60% to 80%) and well-interconnected macro- and micro-sized cells. The developed foams possessed a compressive strength from 2.5 to 5 MPa, which is in the range of human trabecular bone strength. Therefore, CEL2 glass-ceramics can be proposed for bone substitutions.
机译:基于碱活化和凝胶化,通过无机凝胶铸造技术有效地制造高度多孔的生物活性玻璃陶瓷支架,其次是粘性流动烧结。已经已知产生生物活性烧结玻璃陶瓷(Cel2)的玻璃粉末分散在碱性溶液中,玻璃粉末的部分溶解。由于形成C-S-H(硅酸钙水合物)凝胶,所获得的玻璃悬浮液通过在低温(40℃)下固化进行逐渐加固。通过剧烈的机械搅拌来实现成功的直接发泡,所述凝胶化悬浮液搅拌,包括表面活性剂。在900-1000℃下,发育的蜂窝结构后来进行热处理,形成塞米玻璃陶瓷泡沫,具有丰富的总孔隙率(从60%至80%)和良好互连的宏观和微尺寸细胞。开发的泡沫具有从2.5至5MPa的压缩强度,这是人的小梁骨强度的范围。因此,可以提出Cel2玻璃陶瓷用于骨取代。

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