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A study on the properties of fresh self-consolidating glass concrete (SCGC)

机译:新型自固结玻璃纤维混凝土的性能研究

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The Taiwanese production of TFT-LCD front-panels comprises a global share of 43%, the highest production rate in the world. Inevitably, a large amount of waste is produced in the fabrication process. How to deal with waste LCD glass is an important work. In this study, the water-to-binder ratios were 0.28,0.32, and 0.36, and four kinds of sand replaced by glass were used at volume with replacement ratios of 0%, 10%, 20%, and 30%. Fly ash, blast furnace slag and superplasticizer were added and blended by means of a simple SCC mixing design method. The objective is to recycle waste LCD glasses in SCC. Results showed that the slump flow of self-compacting glass concrete (SCGC) increased with higher glass sand replacement. This is mainly because waste LCD glass is hydrophobic, an increase in efficient water content resulting content. V-funnel testing and U-test indicated that, when the glass sand replacement increases, the time required to flow and pass through the space between the steel bars increases, mainly because the unit weight is reduced. The air content and unit weight would be raised with glass sand contents decreasing. Hence, the partial replacement of sand by waste LCD glass can meet JAPAN SOCIETY OF CIVIL EGINEERS (JSCE) SCC R2 property standards.
机译:台湾生产的TFT-LCD前面板占全球份额的43%,是世界上最高的生产率。在制造过程中不可避免地会产生大量废物。如何处理废旧液晶玻璃是一项重要的工作。在这项研究中,水与粘结剂的比率分别为0.28、0.32和0.36,并且使用了四种被玻璃代替的砂,其体积分别为0%,10%,20%和30%。加入粉煤灰,高炉矿渣和高效减水剂,并通过简单的SCC混合设计方法进行混合。目的是回收SCC中的废旧LCD玻璃。结果表明,自密实玻璃混凝土(SCGC)的坍落度随玻璃砂更换量的增加而增加。这主要是因为LCD废玻璃是疏水的,导致有效水含量增加。 V型漏斗测试和U型测试表明,当更换玻璃砂的次数增加时,流经和穿过钢筋之间空间的时间会增加,这主要是因为单位重量降低了。空气含量和单位重量将随着玻璃砂含量的减少而增加。因此,用废旧LCD玻璃部分替代沙子可以满足日本民用建筑工人协会(JSCE)SCC R2的性能标准。

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