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Preparation of silica-poly(methyl methacrylate) composite with a nanoscale dual-network structure and hardness comparable to human enamel

机译:纳米级双网状结构和硬度与人类牙釉质相当的二氧化硅-聚甲基丙烯酸甲酯复合材料的制备

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Objective. This study aims to prepare an organic-inorganic composite with a nanoscale dual-network structure composed of a ceramic skeleton and infiltrated resin to mimic the mechanical properties of human enamel.Methods. A porous silica block was obtained by sintering a green body composed of SiO2 nanoparticles and poly(vinyl alcohol) organic binder. Methyl methacrylate monomers were infiltrated into the porous silica block and thermally polymerized to form poly(methyl methacrylate) (PMMA). A monolithic SiO2-PMMA composite was obtained, and its nanoscale structure was investigated. Its mechanical properties were characterized by Vickers hardness, elastic modulus, and flexural strength tests.Results. The SiO2-PMMA composite had a nanoscale dual-network structure composed of a silica-ceramic skeleton with PMMA-filled continuous 10-20 nm sized pores. The mechanical properties of the composite depended on the SiO2 content, which could be adjusted by modifying sintering time of the porous silica block. The mechanical properties of the composite exhibited wide variations with Vickers hardness values of 54-756, elastic moduli of 7-54 GPa, and flexural strengths of 75-120 MPa.Significance. The preparation of a SiO2-PMMA composite with a dual-network structure at the nanoscale was demonstrated, and the composite was characterized with respect to its hardness compatibility with human enamel. (C) 2019 The Academy of Dental Materials. Published by Elsevier Inc. All rights reserved.
机译:目的。本研究旨在制备具有纳米级双网状结构的有机-无机复合材料,该结构由陶瓷骨架和渗透性树脂组成,以模拟人类牙釉质的机械性能。通过烧结由SiO 2纳米颗粒和聚乙烯醇有机粘合剂组成的生坯获得多孔二氧化硅块。将甲基丙烯酸甲酯单体渗透到多孔二氧化硅嵌段中并热聚合以形成聚(甲基丙烯酸甲酯)(PMMA)。得到了整体式SiO2-PMMA复合材料,并对其纳米结构进行了研究。其机械性能通过维氏硬度,弹性模量和抗弯强度测试表征。 SiO2-PMMA复合材料具有纳米级双网络结构,该结构由具有PMMA填充的连续10-20 nm尺寸的孔的二氧化硅陶瓷骨架组成。复合材料的机械性能取决于SiO2含量,可以通过改变多孔硅石块的烧结时间来调节。复合材料的机械性能表现出很大的变化,维氏硬度值为54-756,弹性模量为7-54 GPa,抗弯强度为75-120 MPa。演示了在纳米级制备具有双网状结构的SiO2-PMMA复合材料的方法,并就其与人牙釉质的硬度相容性进行了表征。 (C)2019牙科材料学院。由Elsevier Inc.出版。保留所有权利。

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