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Mullins effect behaviour under compression in micelle-templated silica and micelle-templated silica/agarose systems

机译:在胶束模板二氧化硅和胶束模板二氧化硅/琼脂糖体系中,Mullins效应在压缩下表现

摘要

The mechanical properties of bioceramic conformed pieces based on micelle-templated silica (MTS) such as SBA15, MCM41 and MCM48 as well as MTS/ agarose systems have been evaluated under static and cyclic compressive tests. The MTS pieces exhibited a brittle behaviour. Agarose, a biocompatible and biodegradable hydrogel, has been used to shape ceramic-agarose pieces following a low temperature shaping method. Agarose conferred toughness, ductility and a rubbery consistency up to a 60% strain in ceramic MTS/agarose systems leading to a maximum strength of 10-50 MPa, without losing their initial cylindrical structure. This combination of ceramic and organic matrix contributes to avoiding the inherent brittleness of the bioceramic and enhances the compression resistance of hydrogel. The presence of mechanical hysteresis, permanent deformation after the first cycle and recovery of the master monotonous curve of MTS/agarose systems indicate a Mullins-like effect similar to that found in carbon-filled rubber systems. We report this type of mechanical behaviour, the Mullins effect, for the first time in MTS bioceramics and MTS bioceramic/agarose systems. © 2011 Springer Science+Business Media, LLC.
机译:已经在静态和循环压缩测试下评估了基于胶束模板二氧化硅(MTS)的生物陶瓷仿形件的机械性能,例如SBA15,MCM41和MCM48以及MTS /琼脂糖系统。 MTS件表现出脆性。琼脂糖是一种生物相容性和可生物降解的水凝胶,已被采用低温成型方法来成型陶瓷琼脂糖块。在陶瓷MTS /琼脂糖体系中,琼脂糖赋予了韧性,延展性和高达60%应变的橡胶稠度,导致最大强度为10-50 MPa,而不会失去其最初的圆柱结构。陶瓷和有机基质的这种结合有助于避免生物陶瓷固有的脆性,并增强水凝胶的抗压性。机械滞后的存在,第一个循环后的永久变形以及MTS /琼脂糖体系的主单调曲线的恢复表明类似于Mullins效应,类似于碳填充橡胶体系。我们首次在MTS生物陶瓷和MTS生物陶瓷/琼脂糖系统中报告了这种机械行为,即穆林斯效应。 ©2011 Springer Science + Business Media,LLC。

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