期刊论文详细信息
Materia
Aggregate type influence on strength and deformability of structural zero-slump concrete blocks: numerical, experimental, and statistical study
article
Cleber Eduardo Fernandes Leal1  Wallison Angelim Medeiros1  André Kazunori Maebara1  Douglas Henrique da Silva1  Guilherme Aris Parsekian1  André Luis Christoforo1 
[1]Universidade Federal de São Carlos
关键词: Structural masonry;    Hollow concrete blocks;    Concrete aggregates;    Mechanical properties;    Computational modeling;   
DOI  :  10.1590/1517-7076-RMAT-2022-0050
学科分类:工程和技术(综合)
来源: Universidade Federal do Rio de Janeiro * Coordenacao dos Programas de Pos-Graduacao de Engenharia
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【 摘 要 】
The structural masonry behavior results from the performance of each component: units, mortar joints, grouts, and reinforcement. Commercially, masonry blocks are made with called dry or zero-slump concrete. Its dosage and physical properties differ considerably from conventional concretes and depend on vibropress machines compaction efficiency. Testing full-size masonry elements is expensive and demand a specific infrastructure. Thus, computer modeling based on numerical formulations such as the Finite Element Method (FEM) can become viable and high potential alternatives. This work aims to analyze numerically and experimentally the influence of aggregate type on physical and, mainly, mechanical properties (ultimate strength and secant deformation module in compression) of hollow concrete blocks for structural masonry. Units of three different strengths (6, 12 and 24 MPa) and containing three different aggregate types (basalt, gneiss, and limestone) were tested. From results, it was observed that in less resistant blocks, the mixtures porosity influenced mechanical properties more than aggregate stiffness. As concretes become denser and stronger, this behavior changes. The models implemented and calibrated by the experimental results were satisfactory in reproducing the failure mode of the blocks, secant modulus and compressive strength results.
【 授权许可】

CC BY   

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