应力作用下微结构变化对硬化水泥砂浆及膏体强度相关性能的影响

Hiroshi Uchikawa, Shunsuke Hanehara, Hiroshi Hirao
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引用次数: 8

摘要

研究不同应力作用下硬化水泥浆和砂浆的微观结构变化,为反复承受应力的混凝土结构的安全性判断提供基础数据。裂纹一般在断裂应力的60%处显现,裂纹扩展迅速,超过断裂应力的80%。膏体比砂浆、粉煤灰水泥比普通硅酸盐水泥和矿渣水泥、高W/C比低W/C、重复加载比单次加载时硬化体裂纹的扩展更为明显。结果与加载应力后硬化体的孔隙结构和背散射电子图像的变化有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of microstructural change under stress on the strength-related properties of hardened cement mortar and paste

Microstructural change of hardened cement paste and mortar under various stresses was studied to obtain the basic data for judging the safety of concrete structure repeatedly receiving the stress. The crack revealed generally at 60% of the fracture stress, and it grew rapidly, exceeding at 80% of the fracture stress. The growth of the cracks in the hardened body was more conspicuous in paste than in mortar, in fly ash cement than in normal portland cement and blastfurnace slag cement, at high W/C than at low W/C, and in repeated loading than in single loading. Results were discussed in connection with the changes of pore structure and backscattered electron images of hardened bodies after loading the stress.

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