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Effect of activator, curing and humidity on drying shrinkage of alkali-activated fly ash

机译:活化剂,固化和湿度对碱活性粉煤灰干燥收缩的影响

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摘要

Alkali-activated fly ash (AAFA) concrete is receiving considerable attention due to its environmental benefits; however, its long-term performance still requires validation and laboratory verification. This research studied the drying shrinkage of AAFA pastes as a function of activator composition (water content and n-modulus), relative humidity (RH) and heat-curing duration. Four AAFAs activated by different sodium silicate solutions and a control ordinary Portland cement (OPC) were examined. The activating solution affected the pore structure, pore solution and shrinkage characteristics of AAFAs. Use of an activator with a higher n-modulus resulted in a finer pore structure, superior mechanical properties and a larger magnitude of shrinkage. The results indicate that heat-cured AAFA paste dried faster, and its shrinkage reached equilibrium earlier compared to that of OPC. Similar to OPC, a bilinear relationship between RH and shrinkage of AAFA was observed. The results indicate that a longer steamcuring duration can stabilize the matrix of AAFAs and reduce their shrinkage.
机译:由于环境效益,碱活性粉煤灰(AAFA)混凝土正在受到相当大的关注;但是,它的长期表现仍然需要验证和实验室验证。该研究研究了AAFA浆料的干燥收缩作为活化剂组合物(水含量和N-MODULUS),相对湿度(RH)和热固化持续时间的函数。检查了由不同硅酸钠解决方案激活的四种AAFA和对照普通波特兰水泥(OPC)。活化溶液影响AAFAS的孔结构,孔隙溶液和收缩特性。使用具有较高N模量的活化剂导致更精细的孔结构,优异的机械性能和更大的收缩幅度。结果表明,与OPC相比,热固化的AAFA浆料干燥得更快,其收缩率达到平衡。类似于OPC,观察到Rh和AAFA收缩之间的双线性关系。结果表明,较长的蒸汽持续时间可以稳定AAFA的基质并减少它们的收缩。

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