Research on the Optimal Combination of Concrete Aggregates Based on Bolomey Equation

Concrete mixture with high density is one of the important guarantees for its high strength, especially the gradation combination of coarse or fine aggregate. In order to overcome the deficient market supply of sand and gravel for meeting the need of high strength concrete and special concrete, base...

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Main Authors: Wang Fan, Zheng Shansuo, Wang Bin
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201823802009
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author Wang Fan
Zheng Shansuo
Wang Bin
author_facet Wang Fan
Zheng Shansuo
Wang Bin
author_sort Wang Fan
collection DOAJ
description Concrete mixture with high density is one of the important guarantees for its high strength, especially the gradation combination of coarse or fine aggregate. In order to overcome the deficient market supply of sand and gravel for meeting the need of high strength concrete and special concrete, based on the Bolomey equation, combining with the corresponding regulations and grading requirements of the concrete aggregates in the current CHINA standards as follows: Standard for technical requirements and test method of sand and crushed stone (or gravel) for ordinary concrete (JGJ 52), Sand for construction (GB/T 14684), Pebble and crushed stone for construction (GB/T 14685), establish a set of practical numerical calculation methods of the optimal combination on the continuous gradation of concrete aggregates. After concretepreparation test verification, with the optimal combination of Aggregates, concrete mix proportion is easy to determine with higher guarantee rate, its strength can be raised up to 20% with better durability.
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spelling doaj.art-b8a5447028da439395c372ee8adeb1fb2022-12-21T20:33:54ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-012380200910.1051/matecconf/201823802009matecconf_icnfm2018_02009Research on the Optimal Combination of Concrete Aggregates Based on Bolomey EquationWang Fan0Zheng Shansuo1Wang Bin2School of Civil & Architecture Engineering, Xi'an Technological UniversitySchool of Civil Engineering, Xi'an University of Architecture and TechnologySchool of Civil & Architecture Engineering, Xi'an Technological UniversityConcrete mixture with high density is one of the important guarantees for its high strength, especially the gradation combination of coarse or fine aggregate. In order to overcome the deficient market supply of sand and gravel for meeting the need of high strength concrete and special concrete, based on the Bolomey equation, combining with the corresponding regulations and grading requirements of the concrete aggregates in the current CHINA standards as follows: Standard for technical requirements and test method of sand and crushed stone (or gravel) for ordinary concrete (JGJ 52), Sand for construction (GB/T 14684), Pebble and crushed stone for construction (GB/T 14685), establish a set of practical numerical calculation methods of the optimal combination on the continuous gradation of concrete aggregates. After concretepreparation test verification, with the optimal combination of Aggregates, concrete mix proportion is easy to determine with higher guarantee rate, its strength can be raised up to 20% with better durability.https://doi.org/10.1051/matecconf/201823802009
spellingShingle Wang Fan
Zheng Shansuo
Wang Bin
Research on the Optimal Combination of Concrete Aggregates Based on Bolomey Equation
MATEC Web of Conferences
title Research on the Optimal Combination of Concrete Aggregates Based on Bolomey Equation
title_full Research on the Optimal Combination of Concrete Aggregates Based on Bolomey Equation
title_fullStr Research on the Optimal Combination of Concrete Aggregates Based on Bolomey Equation
title_full_unstemmed Research on the Optimal Combination of Concrete Aggregates Based on Bolomey Equation
title_short Research on the Optimal Combination of Concrete Aggregates Based on Bolomey Equation
title_sort research on the optimal combination of concrete aggregates based on bolomey equation
url https://doi.org/10.1051/matecconf/201823802009
work_keys_str_mv AT wangfan researchontheoptimalcombinationofconcreteaggregatesbasedonbolomeyequation
AT zhengshansuo researchontheoptimalcombinationofconcreteaggregatesbasedonbolomeyequation
AT wangbin researchontheoptimalcombinationofconcreteaggregatesbasedonbolomeyequation