Effect of steel fibers on the compressive and splitting tensile strength of normal, medium and high strength concrete”, 11th International Colloquium on Structural and Geotechnical Engineering”, Cairo-Egypt, May 17-19, 2005, E05MAT13
• 2005
معلومات البحث
المؤلفون
H I El Sayad
الكلمات المفتاحية
compressive strength, high strength concrete, normal strength concrete, splitting
tensile strength, steel fibers.
المجلة العلمية
Not Available
الناشر
Not Available
المجلد
Not Available
العدد
Not Available
الصفحات
Not Available
publication.type
Local
رابط البحث
Not Available
المواد المرفقة
Not Available
الملخص
The effect of steel fiber type and content on static compressive and splitting tensile strength of
concrete was assessed for normal, medium and high strength concrete. Two different steel
fibers, namely, hooked end and corrugated fibers, and five fiber contents by volume (i.e. 0.5,
1.0, 1.5, 2.0, and 2.5%) were the main variables. It was observed that the compressive and
splitting tensile strengths increased with the addition of fibers. However, the rate of increase
was dependant on the type of concrete (normal, medium or high), fiber type and fiber content.
The highest increase in compressive and tensile strength was observed for medium strength
concrete when reinforced with 2.5 % hooked end fibers, namely 54 and 140%, respectively.
The increase in splitting tensile strength was, in some cases, triple that observed for the
compressive strength. The considerable increase in strength observed in this study is due to
the use of a superplasticizer and/or silica fume in the mixes with fibers. This helped in the
efficient preparation of the samples and improved the bond between the fibers and matrix,
which in turn improved the measured strength.
concrete was assessed for normal, medium and high strength concrete. Two different steel
fibers, namely, hooked end and corrugated fibers, and five fiber contents by volume (i.e. 0.5,
1.0, 1.5, 2.0, and 2.5%) were the main variables. It was observed that the compressive and
splitting tensile strengths increased with the addition of fibers. However, the rate of increase
was dependant on the type of concrete (normal, medium or high), fiber type and fiber content.
The highest increase in compressive and tensile strength was observed for medium strength
concrete when reinforced with 2.5 % hooked end fibers, namely 54 and 140%, respectively.
The increase in splitting tensile strength was, in some cases, triple that observed for the
compressive strength. The considerable increase in strength observed in this study is due to
the use of a superplasticizer and/or silica fume in the mixes with fibers. This helped in the
efficient preparation of the samples and improved the bond between the fibers and matrix,
which in turn improved the measured strength.
أعضاء هيئة التدريس - جامعة بنها