• English
    • العربية
  • English
  • تسجيل الدخول
  • جامعة قطر
  • مكتبة جامعة قطر
  •  الصفحة الرئيسية
  • الوحدات والمجموعات
  • حقوق النشر
عرض التسجيلة 
  •   مركز المجموعات الرقمية لجامعة قطر
  • المستودع الرقمي لجامعة قطر
  • أكاديمية
  • إصدارات جامعة قطر
  • وقائع مؤتمرات
  • International Conference on Civil Infrastructure and Construction (CIC 2020)
  • Theme 4: Sustainability, Renovation, and Monitoring of Civil Infrastructure
  • عرض التسجيلة
  • مركز المجموعات الرقمية لجامعة قطر
  • المستودع الرقمي لجامعة قطر
  • أكاديمية
  • إصدارات جامعة قطر
  • وقائع مؤتمرات
  • International Conference on Civil Infrastructure and Construction (CIC 2020)
  • Theme 4: Sustainability, Renovation, and Monitoring of Civil Infrastructure
  • عرض التسجيلة
  •      
  •  
    JavaScript is disabled for your browser. Some features of this site may not work without it.

    Mechanical Properties of Concrete Made with Electric Wires, Steel Fibers, Basalt Fibers and Polypropylene Fibers

    Thumbnail
    عرض / فتح
    CIC2020_ Artcile112.pdf (2.662Mb)
    التاريخ
    2020
    المؤلف
    Murad, Yasmin Zuhair
    Abdel-Jabbar, Haneen
    البيانات الوصفية
    عرض كامل للتسجيلة
    الملخص
    An experimental program is conducted in this research to investigate the mechanical properties of concrete made with electric wires, steel fibers, basalt fibers, and polypropylene fibers. Fibers are added to the concrete mix in three different percentages (48, 32 and 16 kg/m3 for steel and wire fibers) and (2, 4 and 8 kg/m3 for basalt and polypropylene fibers). Fifty two concrete cylinders are tested under compression and splitting tensile strength tests to investigate the compressive and tensile behaviors of the fibrous concrete. Test results have shown that steel fiber is superior over the other types of fibers in increasing the compressive and tensile strengths of concrete. The addition of 48 kg/m3 steel fiber has increased the compressive strength of concrete up to 9% and has duplicated its tensile strength compared to the control specimen. The addition of 2 kg/ m3 polypropylene fibers has increased the compressive and tensile strengths of concrete up to 8.6% and 10.3% respectively. Increasing the percentage of polypropylene fibers to 8 kg/m3 has resulted in increasing the tensile strength of concrete up to 22.8% while it has reduced its compressive strength by 9.6% compared to the control specimen. The addition of basalt fibers and wire fibers has resulted in decreasing the compressive and tensile strengths of concrete. The maximum reduction in concrete compressive strength is measured with 48 kg/m3 wire fibers where concrete compressive strength is reduced by 32.6%. The lowest tensile strength is measured with 8 kg/m3 basalt fibers where the tensile strength is reduced by 27.7%.
    معرّف المصادر الموحد
    http://www.cic.qa
    DOI/handle
    http://dx.doi.org/10.29117/cic.2020.0119
    http://hdl.handle.net/10576/14705
    المجموعات
    • Theme 4: Sustainability, Renovation, and Monitoring of Civil Infrastructure [‎36‎ items ]

    entitlement

    وثائق ذات صلة

    عرض الوثائق المتصلة بواسطة: العنوان، المؤلف، المنشئ والموضوع.

    • Thumbnail

      Humidity sensor based on poly(lactic acid)/PANI-ZnO composite electrospun fibers 

      Parangusan, Hemalatha; Bhadra, Jolly; Ahmad, Zubair; Mallick, Shoaib; Touati, Farid; Al-Thani, Noora... more authors ... less authors ( Royal Society of Chemistry , 2021 , Article)
      The electrospinning technique has been successfully used to prepared micro-fibers of the poly(lactic acid)/polyaniline–zinc oxide (PLA/PANI–ZnO) composite. The polyaniline–zinc oxide (PANI–ZnO) nanocomposites are synthesized ...
    • Thumbnail

      Impact of the Fiber Distribution Characteristics on the Uniaxial Behaviour of Fiber-Reinforced Composites- An Experimental Study 

      Rao , C.B. Kameswara; Prathipati, S.R.R. Teja; Kasagani, Hanuma ( Qatar University Press , 2023 , Conference)
      The demand for development of fiber-reinforced composites has enhanced as the practise of integrating fibres into concrete has become prevalent over the past few decades.. The intersection zone where the fiber crossing the ...
    • Flexural Behavior of Basalt Fiber-Reinforced Concrete Slab Strips with BFRP Bars: Experimental Testing and Numerical Simulation 

      Attia, Karim; El Refai, Ahmed; Alnahhal, Wael ( American Society of Civil Engineers (ASCE) , 2020 , Article)
      This study investigated the flexural behavior of a new one-way concrete slab system reinforced longitudinally with basalt fiber-reinforced polymer (BFRP) bars and cast with basalt fiber-reinforced concrete (BFRC). The study ...

    مركز المجموعات الرقمية لجامعة قطر هو مكتبة رقمية تديرها مكتبة جامعة قطر بدعم من إدارة تقنية المعلومات

    اتصل بنا
    اتصل بنا | جامعة قطر

     

     

    الصفحة الرئيسية

    أرسل عملك التابع لجامعة قطر

    تصفح

    محتويات مركز المجموعات الرقمية
      الوحدات والمجموعات تاريخ النشر المؤلف العناوين الموضوع النوع اللغة الناشر
    هذه المجموعة
      تاريخ النشر المؤلف العناوين الموضوع النوع اللغة الناشر

    حسابي

    تسجيل الدخول

    إحصائيات

    عرض إحصائيات الاستخدام

    مركز المجموعات الرقمية لجامعة قطر هو مكتبة رقمية تديرها مكتبة جامعة قطر بدعم من إدارة تقنية المعلومات

    اتصل بنا
    اتصل بنا | جامعة قطر

     

     

    Video