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Properties of Concrete Containing Rubber Aggregate Derived From Discarded Tires

Author

Listed:
  • Nguyen Duc Luong
  • Hoang Vinh Long
  • Ngo Kim Tuan
  • Nguyen Duy Thai

Abstract

This study carried out the experiment to evaluate the effects of different contents and sizes of rubber particles derived from discarded tires used for replacing fine and coarse natural aggregates, on the workability of fresh rubberized concrete and the compressive and flexural strengths of hardened rubberized concrete. The study results showed that the workability of fresh rubberized concrete was improved when replacing natural fine aggregate (sand) with fine rubber particles (2.5-5 mm) at the replacing proportions of 30-50% by volume, and when replacing natural coarse aggregate (crushed stone) with coarse rubber particles (5-20 mm) at the replacing proportions of 10-30% by volume. With respect to the mechanical properties of hardened rubberized concrete, a larger reduction in the compressive and flexural strengths was generally found when the replacing proportions increased and when coarse aggregate rather than fine aggregate was replaced by rubber particles at all replacing proportions (10-50%). However, the study results also indicated that using fine rubber particles for replacing fine natural aggregate at the low replacing proportion (up to 10%) might not cause the significant effect on the compressive and flexural strength of rubberized concrete.

Suggested Citation

  • Nguyen Duc Luong & Hoang Vinh Long & Ngo Kim Tuan & Nguyen Duy Thai, 2017. "Properties of Concrete Containing Rubber Aggregate Derived From Discarded Tires," Asian Review of Environmental and Earth Sciences, Asian Online Journal Publishing Group, vol. 4(1), pages 12-19.
  • Handle: RePEc:aoj:areaes:v:4:y:2017:i:1:p:12-19:id:694
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    Cited by:

    1. Kittisak Jermsittiparsert & Thitinan Chankoson, 2019. "Behavior of Tourism Industry under the Situation of Environmental Threats and Carbon Emission: Time Series Analysis from Thailand," International Journal of Energy Economics and Policy, Econjournals, vol. 9(6), pages 366-372.

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