Control the early-stage hydration of expansive additive from calcium sulfoaluminate clinker by polymer encapsulation

Malinee Nontikansak , Phattarakamon Chaiyapoom , Wanwipa Siriwatwechakul Ph.D. , Passarin Jongvisuttisun Ph.D. , Chalermwut Snguanyat
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引用次数: 1

Abstract

Ye′elimite (C4A3S¯), a main compound in calcium sulfoaluminate (CSA) clinker, is an important ingredient as expansive additive in shrinkage compensating cement. This study proposes to modify the expansive additive by encapsulating it with polyethylene glycol (PEG). The polymer provides a matrix structure, in which the ye′elimite particles are embedded. When the modified expansive additive come into contact with water, the polymer matrix acts as a water barrier, but can dissolve away. This slowly exposed C4A3S¯ to hydration, resulting in gradual early-stage ettringite formation; hence control early expansion in expansive cement. The study compared the ettringite formation between the unmodified and the modified expansive additive using thermogravimetric analysis (TGA), X-ray diffraction (XRD) and scanning electron microscopy (SEM) from 1 hour to 3 days. The results show that the unmodified expansive additive generated more ettringite than the modified ones at the same hydration time. The study subsequently investigated the mortar properties with the unmodified and modified expansive additives admixtures. The results showed that the modified expansive cement showed superior flowability and drying shrinkage behaviours, while the compressive strength of the finished products underperformed that of the untreated expansive additives.

采用聚合物包封的方法控制硫铝酸钙熟料膨胀添加剂的早期水化
硫铝酸钙(CSA)熟料中的主要化合物铝酸钙(C4A3S¯)是补缩水泥中重要的膨胀助剂。本研究提出用聚乙二醇(PEG)包封对膨胀添加剂进行改性。聚合物提供了一种基体结构,在这种结构中,纳米颗粒被嵌入其中。当改性膨胀添加剂与水接触时,聚合物基体作为水屏障,但会溶解掉。这使C4A3S¯缓慢暴露于水化,导致早期钙矾石的逐渐形成;从而控制膨胀水泥的早期膨胀。通过热重分析(TGA)、x射线衍射(XRD)和扫描电子显微镜(SEM),研究了1小时至3天内未改性和改性膨胀添加剂之间钙矾石的形成情况。结果表明,在相同水化时间下,未改性膨胀剂比改性膨胀剂生成更多的钙矾石。随后研究了未改性和改性膨胀剂掺合料对砂浆性能的影响。结果表明,改性后的膨胀水泥具有较好的流动性和干燥收缩性能,但成品的抗压强度不如未经改性的膨胀添加剂。
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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