FRACTURE OF CONCRETE CONTAINING CRUMB RUBBER

Author:

Grinys Audrius1,Sivilevičius Henrikas2,Pupeikis Darius1,Ivanauskas Ernestas3

Affiliation:

1. Department of Building Materials, Kaunas University of Technology, Studentu˛ g. 48, 51367 Kaunas, Lithuania

2. Department of Transport Technological Equipment, Vilnius Gediminas Technical University, Plytine˙s g. 27, 10105 Vilnius, Lithuania

3. Research Centre for Building Materials and Construction, Kaunas University of Technology, Studentu˛ g. 48, 51367 Kaunas, Lithuania

Abstract

Every year, colossal amounts of used and non-biodegradable rubber tyres are accumulated in the world. Experience shows that the most efficient way to increase the concrete fracture energy G F (N/m) is to use metal or polypropylene fibres. The optimal content of fibre increases concrete resistance to stress (especially tensile stress under bending force). Concrete fracture is not brittle; concrete continues deforming after maximum stresses and is able to resist certain stresses, there is no abrupt decrease in loading. The research has proved that crumb rubber can be used in concretes as an alternative to metal and polypropylene fibres. The investigation has found that rubber waste additives, through their specific properties can partly take up tensile stresses in concrete and make the concrete fracture more plastic; besides, such concrete requires a significantly higher fracture energy and concrete samples can withstand much higher residual strength at 500 µm crack mouth opening displacement (CMOD) and deflection.

Publisher

Vilnius Gediminas Technical University

Subject

Strategy and Management,Civil and Structural Engineering

Reference37 articles.

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4. Properties and durability of HPC with tyre rubber wastes

5. Promoting the use of crumb rubber concrete in developing countries

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