高碱补充胶凝材料的胶凝反应活性及其对缓解碱硅反应的影响

Weiqi Wang, James Roberts, Prasad Rangaraju
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摘要

由于 F 级、C 级粉煤灰和矿渣等传统胶凝补充材料 (SCM) 越来越少,因此有必要探索以前被认为是次优的替代 SCM。尤其是高碱 SCM,由于其碱含量可能会释放到混凝土孔隙溶液中,从而加剧碱硅反应(ASR)的可能性,因此经常被避免使用。不过,初步研究表明,并非所有高碱 SCM 都会造成危害,有些高碱 SCM 在使用足够剂量的情况下可以有效抑制 ASR 膨胀反应。本研究评估了使用高碱 SCM(如高碱天然毛细管和再生粉煤灰)的可行性,重点关注其毛细管反应性以及反应性与 ASR 缓解性能之间的相关性。根据 ASTM C1897 进行的 R3 试验和根据 ASTM C311 进行的强度活性指数试验评估了单质材料的热分解反应性。热重分析用于确定 SCM 的氢氧化钙消耗量。根据美国州公路和交通官员协会 (AASHTO) T380 微型混凝土棱柱测试,对 SCM 的 ASR 缓解性能进行了评估。此外,还进行了孔隙溶液表达和糊状试样分析,以确定总碱和释放到孔隙溶液中的碱含量之间的相关性。根据这项研究的结果,所有单质材料都显示出较高的胶凝反应活性;但是,不同测试方法的单质材料性能各不相同。最终,高碱 SCM(尤其是天然毛细管)似乎不会轻易向孔隙溶液中释放大量碱,因此,在使用足够的剂量水平时,具有减轻 ASR 的潜力。
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Pozzolanic Reactivity of High-Alkali Supplementary Cementitious Materials and Its Impact on Mitigation of Alkali-Silica Reaction
The growing scarcity of conventional supplementary cementitious materials (SCMs) such as Class F, Class C fly ashes, and slag has necessitated exploring alternative SCMs previously considered suboptimal. In particular, high-alkali SCMs are often avoided because of the potential concern that their alkali content could release into the concrete pore solution, thus exacerbating the potential for alkali-silica reaction (ASR). However, preliminary research indicates that not all high-alkali SCMs are deleterious, and some can effectively suppress the ASR expansive reaction when used in sufficient dosage levels. This study evaluates the feasibility of using high-alkali SCMs, such as high-alkali natural pozzolans and reclaimed fly ashes, focusing on their pozzolanic reactivity and the correlation between the reactivity and their ASR mitigation performance. The pozzolanic reactivity of the SCMs was evaluated by the R3 test per ASTM C1897 and strength activity index test per ASTM C311. Thermogravimetric analysis was used to determine the calcium hydroxide consumption by the SCMs. ASR mitigation performance of SCMs was evaluated in accordance with American Association of State Highway and Transportation Officials (AASHTO) T380 miniature concrete prism test. Additionally, pore solution expression and analysis of paste specimens were conducted to determine the correlation between the total alkali and the released alkali levels into the pore solution. Based on the results of this study, all SCMs indicated high pozzolanic reactivity; however, individual performance varied by test method. Ultimately, the high-alkali SCMs, particularly natural pozzolans, did not appear to release any significant levels of alkalis into the pore solution readily and, therefore, show potential for ASR mitigation when used in sufficient dosage levels.
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