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      A Study on the Mechanical Properties and Microcosmic Mechanism of Basalt Fiber Modified Rubber Ceramsite Concrete

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      Buildings
      MDPI AG

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          Abstract

          In order to solve the problem of black pollution in the 21st century, a new type of rubber ceramsite concrete was prepared by pulverizing waste rubber tires into granules and adding aggregate to the ceramsite concrete. In order to reduce the weakening of mechanical properties of rubber, basalt fiber was used to modify the rubber. In this study, the compressive strength and splitting tensile strength of concrete specimens at days 3 and 28 were measured, the variation rule of compressive strength was explained based on the appearance of the microstructure, and the internal porosity of cubic specimens was characterized by the water absorption size. At the same time, an ultrasonic wave velocity test was used to test the uniformity and pore distribution of the block. The results showed that, with the increase in the rubber content, the compressive strength of rubber ceramsite concrete increases first and then decreases. The addition of basalt fiber can improve the compressive strength of the concrete. Water absorption is negatively correlated with compressive strength. Porosity is also negatively correlated with ultrasonic wave velocity. The basalt fiber length has no significant effect on the splitting tensile strength.

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          The effect of superplasticizers on the mechanical performance of concrete made with fine recycled concrete aggregates

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            Durability performance of rubberized mortar and concrete with NaOH-Solution treated rubber particles

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              Long term behaviour of cement concrete containing discarded tire rubber

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                Author and article information

                Contributors
                Journal
                Buildings
                Buildings
                MDPI AG
                2075-5309
                February 2022
                January 21 2022
                : 12
                : 2
                : 103
                Article
                10.3390/buildings12020103
                97cadb2f-e749-4255-a675-0a0d345d2eef
                © 2022

                https://creativecommons.org/licenses/by/4.0/

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