High-Performance Concrete Mixture Proportioning

K. Sobolev, S. Soboleva
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引用次数: 8

Abstract

The report generalizes the results of wide range investigations of silica fume based superplasticized high-performance concrete. The rules of the strength and rheological behavior of cement - silica fume - superplasticizer systems are discussed. Usage of optimal superplasticizer to silica fume ratio (as 1:10) allows to obtain ultra-dense packing for super fluid cement paste and provides high-performance properties of concrete. The mathematical models of fresh and hardened high-performance concrete based on processing and computerizing empirical results are created. The models provide a calculation of water/cement ratio required for the target compressive strength level up to 130 MPa as well as mixing water quantity for planning slump of 0-200 mm. For modelling purpose, concrete slump is considered as a function of aggregates proportioning, and volume and fluidity of cement paste. This approach became a basis of proposed high-performance concrete mixture proportioning method. Further, developing and integration of the mathematical models created a new computer program for high-performance concrete mixture proportioning. The program provides a solution for wide range design and optimization projects. The results of the computer program estimation can be easily transferred to any 3-dimensional plotting or data base program for consequent processing and performing.
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高性能混凝土配合比
该报告概括了硅灰基超塑高性能混凝土的广泛调查结果。讨论了水泥-硅灰-高效减水剂体系的强度和流变性能规律。使用最佳减水剂硅灰比(1:10)可以获得超流体水泥浆的超密填料,并提供混凝土的高性能。在对试验结果进行处理和计算机化的基础上,建立了新拌高性能混凝土和硬化高性能混凝土的数学模型。该模型提供了目标抗压强度达到130 MPa所需水灰比的计算以及规划坍落度为0 ~ 200 mm的掺水量。为了建模的目的,混凝土坍落度被认为是骨料比例、水泥浆体体积和流动性的函数。该方法为高性能混凝土配合比方法的提出奠定了基础。此外,数学模型的发展和整合创造了高性能混凝土配合比的新计算机程序。该程序为广泛的设计和优化项目提供了解决方案。计算机程序估计的结果可以很容易地转移到任何三维绘图或数据库程序进行后续处理和执行。
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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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