Structure of Polymer-cement Composite optimized with Secondary Raw Materials

P. Figala, R. Drochytka, V. Černý, J. Kolísko
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引用次数: 2

Abstract

Structure This paper focuses on possibilities of use of selected secondary raw materials for modification of developed high strength coating based on polymer-cement. The aim is achieving the same or better physical-mechanical properties of resulting material at maximal level of substitution of cement with secondary raw materials. Because of high contents of amorphous SiO2 two secondary raw materials were selected: high temperature fly ash and recycled soda-lime glass to replace cement by 20 and 40% by weight. These secondary raw materials were pre-treated in ball grinder to specific surface of the substituted Portland cement CEM I 42.5 R, 300 m∙kg and specific surface 400 m∙kg (±50 m∙kg). Selected test specimens were subjected to compressive strength determination after 3, 28 and 90 days. Samples of selected mix-designs were subjected to Computed Tomography to determine influence of substitution of cement with individual additions on structure of polymer-cement composite. The main finding is that suitable secondary raw materials can successfully substitute binder to the extent of 40%; in case of fly ash, the compressive strength after 28 days was higher by 10% and in case of ground glass by 12%. At the same time, positive influence of ground glass on density and integrity of the cement stone was proved. Based on the findings it can be stated that suitable secondary raw materials are capable of enhancing properties of the developed high strength coat. The main result is enhancement of basic physico-mechanical properties and at the same time achieving better structure of the coat, which is the elementary condition for high chemical resistance of cement based composite material.
二次原料优化聚合物-水泥复合材料结构
本文重点介绍了所研制的聚合物水泥高强涂料选用二次原料进行改性的可能性。目的是在最大程度上用二次原料替代水泥的情况下,获得相同或更好的物理力学性能。由于无定形SiO2含量高,选择了高温粉煤灰和再生钠石灰玻璃两种二次原料,分别替代水泥重量的20%和40%。这些二次原料在球磨机中预处理至替代波特兰水泥CEM I 42.5 R的比表面300 m∙kg,比表面400 m∙kg(±50 m∙kg)。选取的试件分别在3、28和90天后进行抗压强度测定。选定的混合设计样品进行了计算机断层扫描,以确定用单个添加物取代水泥对聚合物-水泥复合材料结构的影响。主要发现:合适的二次原料可成功替代粘合剂达40%;粉煤灰掺加28天后抗压强度提高10%,磨砂玻璃掺加28天后抗压强度提高12%。同时也证明了磨砂玻璃对水泥石的密度和完整性有积极的影响。研究结果表明,选用合适的二次原料可以提高所制备的高强度涂层的性能。其主要结果是提高了水泥基复合材料的基本物理力学性能,同时涂层的结构也得到了改善,这是水泥基复合材料具有高耐化学性的基本条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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