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RELATIONSHIPS BETWEEN ENGINEERING CHARACTERISTICS AND MATERIAL PROPERTIES OF HIGH STRENGTH- HIGH PERFORMANCE CONCRETE

机译:高强度高性能混凝土工程特性与材料特性的关系

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It is generally accepted that when considering relationships between microstructure, mechanical properties and durability performance, the most significant microstructural component of concrete is the pore structure. To better understand how material composition and microstructraral modifications determine the high strength concrete structrural performance, the relationships between porosity and different engineering properties including compressive strength, conductivity, autogenous and total shrinkage were evaluated. This paper illustrates the effect of silica fume, ultra fine fly ash and ground granulated blast furnace slag on the porosity, strength and conductivity of high strength-high performance concrete, and investigates the shrinkage behavior and cracking potential of these high performance mixes. The drawn correlations between porosity, conductivity and shrinkage indicate that optimizing the microstructure can be used to improve autogenous shrinkage and minimize shrinkage cracking without affecting mechanical and durability properties.
机译:通常可接受在考虑微观结构,机械性能和耐久性性能之间的关系时,混凝土最显着的微观结构部件是孔结构。为了更好地了解材料成分和微观结构的方式确定高强度混凝土结构性能,评价孔隙率和不同工程性能之间的关系,包括压缩强度,导电性,自生物和总收缩。本文说明了二氧化硅烟雾,超细粉煤灰和地造粒高炉渣的效果对高强度高性能混凝土的孔隙率,强度和导电性,并研究了这些高性能混合物的收缩行为和开裂潜力。孔隙率,导电性和收缩之间的绘制相关性表明优化微结构可用于改善自生收缩,并最小化收缩裂缝而不影响机械和耐久性特性。

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