高强度和高流动性轻质混凝土的混合比例

K. Fujii, M. Kakizake, H. Edahiro, Y. Unisuga, Y. Yamamoto
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引用次数: 3

摘要

为满足城市发展的需要,高强度混凝土取得了显著进展,在高性能引气减水剂的帮助下,混凝土强度达到了 60 兆帕的标准水平。高强度轻质混凝土在减少自重和降低建筑成本方面更具优势,已成功应用于海洋混凝土建筑。本文论述了使用富含白云石的低热水泥和硅灰水泥生产的体积密度为 1.8 至 2.0 吨/立方米、抗压强度为 60 至 90 兆帕的高强度、高流动性轻质混凝土,并讨论了材料和混合比例对新拌混凝土和硬化混凝土性能的影响。使用硅灰混合水泥时,水灰比为 0.23 的抗压强度为 65 至 79 兆帕,使用富沸石低热水泥时,抗压强度为 59 至 68 兆帕。
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Mixture Proportions of High-Strength and High-Fluidity Lightweight Concrete
Meeting the needs of urban development, high strength concrete has made remarkable progress where the standard concrete strength of 60 MPa level is attained with the help of high performance air entraining water-reducing agents. High strength lightweight concrete could be more advantageous with respect to the reduction of dead load and resulting construction cost reduction, and has been successfully applied to marine concrete constructions. This paper deals with the high strength, high fluidity lightweight concrete with bulk densities from 1.8 to 2.0 t/cu m and compressive strength from 60 to 90 MPa manufactured with belite-rich low heat cement and silica fume cement, and discusses the influences of materials and mixture proportions upon the properties of fresh and hardened concretes. Compressive strength with a water-cement ratio of 0.23 was 65 to 79 MPa when silica fume blended cement was used, and was 59 to 68 MPa when belite-rich low heat cement was used.
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Properties of High-Strength and High-Fluidity Lightweight Concrete Basic Study on the New Testing Method of Judging the Saturated Surface Dry Conditions of Fine Aggregates Investigations on Durability of High-Volume Fly Ash Concrete Thermal Properties of High Strength Concrete at Elevated Temperatures Cracking Tendency of High Strength Lightweight Aggregate Concrete at Early Ages
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