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On the interaction of Class C fly ash with Portland cement-calcium sulfoaluminate cement binder

机译:C类粉煤灰与波特兰水泥-硫铝酸钙水泥粘结剂的相互作用

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摘要

Shrinkage cracking in concrete is a widespread problem, especially in concrete structures with high surface-to-volume ratio such as bridge decks. Expansive cements based on calcium sulfoaluminate phase were developed to mitigate the shrinkage cracking of concrete. The compressive stress induced due to restrained expansion of concrete has been shown to counteract the tensile stress generated during drying shrinkage. This research attempts to address the differential behavior of fly ash type (i.e., Class C vs. Class F) on early-age expansion and hydration characteristics of ordinary Portland cement (OPC)-calcium sulfoaluminate (CSA) cement blend. It was observed earlier that the presence of Class C fly ash (CFA), unlike Class F fly ash, shortened the expansion duration of OPC-CSA cement blend, which was hypothesized to be correlated to early depletion of gypsum. This paper presents a detailed verification of the hypothesis. Addition of external gypsum to OPC-CSA-CFA blend led to simultaneous increase in expansion and disappearance of a shoulder peak in the calorimetric curve. Thermodynamic calculations using a geochemical modeling program (GEMS-PSI) revealed higher saturation levels of ettringite in presence of external gypsum, which led to higher crystallization stress, and thereby increased expansion.
机译:混凝土的收缩开裂是一个普遍存在的问题,特别是在具有高体积比的混凝土结构中,例如桥面板。开发了基于硫铝酸钙相的膨胀水泥以减轻混凝土的收缩裂缝。已经显示出由于混凝土膨胀受限而引起的压应力抵消了干缩过程中产生的拉应力。这项研究试图解决粉煤灰类型(即C级与F级)在普通硅酸盐水泥(OPC)-硫铝酸钙(CSA)水泥掺合料的早期膨胀和水化特性方面的差异行为。较早地观察到,与F类粉煤灰不同,C类粉煤灰(CFA)的存在缩短了OPC-CSA水泥掺和料的膨胀时间,这被认为与石膏的早期消耗有关。本文提出了该假设的详细验证。向OPC-CSA-CFA共混物中添加外部石膏会导致量热曲线中肩峰的膨胀和消失同时增加。使用地球化学建模程序(GEMS-PSI)进行的热力学计算表明,在外部石膏存在下钙矾石的饱和度较高,这导致较高的结晶应力,从而增加了膨胀。

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