Title of article :
Mechanical properties of hybrid fiber reinforced lightweight aggregate concrete made with natural pumice
Author/Authors :
Peter E. Libre، نويسنده , , Nicolas Ali and Shekarchi، نويسنده , , Mohammad and Mahoutian، نويسنده , , Mehrdad and Soroushian، نويسنده , , Parviz، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2011
Pages :
7
From page :
2458
To page :
2464
Abstract :
The purpose of this study is to improve the ductility of pumice lightweight aggregate concrete by incorporating hybrid steel and polypropylene fibers. The changes in mechanical properties and also bulk density and workability of pumice lightweight aggregate concrete due to the addition of hybrid steel and polypropylene fibers have been studied. The properties were investigated include bulk density and workability of fresh concrete as well as compressive strength, flexural tensile strength, splitting tensile strength and toughness of hardened concrete. Nine concrete mixtures with different volume fractions of steel and polypropylene fibers were tested. A large increase in compressive and flexural ductility and energy absorption capacity due to the addition of steel fibers was observed. Polypropylene fibers, on the other hand, caused a minor change in mechanical properties of hardened concrete especially in the mixtures made with both steel and polypropylene fibers. These observations provide insight into the benefits of different fiber reinforcement systems to the mechanical performance of pumice lightweight aggregate concrete which is considered to be brittle. These results provide guidance for design of concrete materials with reduced density and enhanced ductility for different applications, including construction of high-rise, earthquake-resistant buildings.
Keywords :
Steel Fiber , Polypropylene fiber , Hybrid fiber , workability , ductility , Lightweight concrete , Pumice , Toughness
Journal title :
Construction and Building Materials
Serial Year :
2011
Journal title :
Construction and Building Materials
Record number :
1631487
Link To Document :
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