比较了矿渣粉煤灰基地聚合物混凝土与opc基普通混凝土的断裂性能,包括钢和混杂纤维的影响

Pranay Singh, Brijesh Singh, P. Ojha, A. Trivedi, Abhishek Singh, Chirag Pede
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引用次数: 0

摘要

通过试验研究了硬渣、粉煤灰碱活化普通高强地聚合物混凝土与普通硅酸盐水泥(O.P.C.)混合纤维混凝土的断裂行为。实验研究中考虑的断裂参数包括断裂能、应力强度因子、能量释放率和特征长度。该研究的结论是,观察到的传统和地聚合物混凝土的断裂和力学性能的差异与过去文献中报道的这些混凝土体系之间的微观结构差异一致。矿渣基地聚合物混凝土的抗压强度与矿渣基地聚合物混凝土的抗压强度相似,但其抗压强度略低于矿渣基地聚合物混凝土。混杂纤维增强比单独钢纤维增强更能提高地聚合物混凝土的断裂性能。与地聚合物混凝土相反,钢纤维增强常规混凝土的断裂性能优于混杂纤维增强常规混凝土。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FRACTURE BEHAVIOR OF SLAG & FLY ASH-BASED GEOPOLYMER CONCRETE IN COMPARISON WITH OPC-BASED CONVENTIONAL CONCRETE, INCLUDING THE EFFECT OF STEEL AND HYBRID FIBERS
The study presents an experimental investigation of the fracture behavior of hardened slag and fly ash-based alkali-activated normal and high-strength geopolymer concrete compared with conventional Ordinary Portland Cement (O.P.C.) based concrete with steel and hybrid fibers. The fracture parameters considered in the experimental investigation include fracture energy, stress intensity factor, energy release rate, and characteristic length. The study concludes that the observed differences in conventional and geopolymer concrete's fracture and mechanical performance agree with the microstructural differences between these concrete systems reported in past literature. The slag-based geopolymer concrete is marginally inferior to the O.P.C.-based concrete, with similar compressive strength in fracture performance. Also, hybrid fiber reinforcement improves the fracture performance of geopolymer concrete more than steel fiber alone. Contrary to geopolymer concrete, steel fiber reinforced conventional concrete is superior to hybrid fiber reinforced conventional concrete in terms of fracture behavior.
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