收缩率
材料科学
硅粉
复合材料
固化(化学)
刚度
相对湿度
抗压强度
物理
热力学
作者
Ming Sun,Terry Bennett,Phillip Visintin
标识
DOI:10.1016/j.cscm.2022.e00948
摘要
The magnitude of early age shrinkage of Ultra High Performance Concrete (UHPC) is markedly different from normal and high strength concretes. A series of experiments were performed to determine the influence of water to binder ratio and silica fume content on the rate of hydration, stiffness development, chemical and external shrinkage under both sealed and unsealed condi- tions. Experimental apparatus, designed for shrinkage in normal strength concretes, were adapted to accommodate the larger volume changes and minimise the influence of boundary restraint. Continuously monitored internal temperature, and relative humidity conditions, along with pe- riodic measurements of hydration degree and stiffness are used to elucidate the volumetric deformation mechanisms. Results, from as early as three hours after water addition demonstrate significant volumetric changes occurring in the early plastic state of the material.
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