Durability properties of concrete reinforced with steel-polypropylene hybrid fibers

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Walter De Gruyter Gmbh

Erişim Hakkı

info:eu-repo/semantics/openAccess

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Organizasyon Birimleri

Öğe Türü: Organizasyon Birimi ,
Mühendislik Mimarlık ve Tasarım Fakültesi, İnşaat Mühendisliği Bölümü
Temel mühendislik alanlarından biri olan İnşaat Mühendisliği; toplumun yaşam kalitesinin gelişiminde, Hayatın her kesiminde ihtiyaç duyulan yapıların tasarım ve yapımında aktif rol almaktadır. Yaşanan gelişmeler, güvenli yapıların tasarım ve yapımında inşaat mühendisliğinin ve bu alanda yetişmiş iş gücünün önemini ortaya koymaktadır.

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In this study, some mechanical and durability properties of concrete specimens, with a water/cement (w/c) ratio of 0.47 and having a reference slump of 40 mm, produced by addition of steel fibers (SF) and/or polypropylene fibers (PF), were investigated. The additions of SF were 20 kg/m(3) and 40 kg/m(3) and PF additions were 0.3 kg/m(3) and 0.6 kg/m(3). Workability and unit weight tests were made on fresh concretes. Compressive stress, elastic modulus, and flexural tensile tests were performed on hardened concretes. Also, load-deflection curves and toughness indices were obtained during a three-point flexure tensile test. Freeze-thaw, abrasion and drying shrinkage tests were also carried out to determine the effects of SF and/or PF on some durability properties of concretes. It was observed that fiber inclusion to concrete decreases the workability and that the mechanical properties of concrete can be improved by the addition of fibers. Using hybrid fibers in the concrete both increases and decreases some mechanical properties of concrete. In order to see a greater effect of both SF and PF on the properties of concrete, different hybrid fiber volume fractions for different matrix strengths may be examined, since fiber type and fiber volume fractions are important parameters to be taken into account in the mix design of concrete for the performance

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Anahtar Kelimeler

Durability, Hybrid Fiber Concrete, Mechanical Properties, Polypropylene Fiber, Steel Fiber

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Science and Engineering of Composite Materials

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Cilt

19

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1

Künye

Onay

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