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Effect of high fibre content in ultra high performance fibre reinforced concrete as a repair material on bond characteristics with fire damaged concrete

Effect of high fibre content in ultra high performance fibre reinforced concrete as a repair material on bond characteristics with fire damaged concrete / Siti Zubaidah Mohammad Hanipah
Konkrit Gentian Bertetulang Prestasi Tinggi (UHPFRC) dengan ciri-ciri unik kekuatan yang tinggi dan mempunyai kebolehtelapan yang rendah mencatatkan satu peningkatan yang besar dalam teknologi konkrit. Terdapat banyak aplikasi UHPFRC ini, salah satu daripadanya digunakan sebagai bahan untuk kerja pembaikan struktur konkrit merosak. Walau bagaimanapun, data mengenai ciri ikatan antara UHPFRC dan konkrit merosak terutamanya konktit rosak disebabkan api adalah terhad. Oleh itu, kajian ini telah dijalankan bagi mengkaji ciri-ciri ikatan tersebut bagi meningkatkan pengunaan UHPFRC dalam kerja permbaikan konkrit merosak. Matlamat utama kajian ini adalah untuk mencirikan sifat mekanik UHPFRC dengan reka bentuk campuran yang berbeza dan untuk menyiasat prestasi reka bentuk campuran UHPFRC yang dipilih sebagai bahan untuk pembaikan kerosakan konkrit disebabkan api. Kaedah yang digunakan dalam kajian ini adalah penyediaan campuran yang berbeza yang mengandungi peratusan yang berbeza gentian keluli untuk mendapatkan campuran optimum UHPFRC. Sifat mekanik segar dan keras UHPFRC diuji seperti kebolehkerjaan, kekuatan mampatan dan kekuatan lenturan. Kesesuaian campuran optimum UHPFRC yang dipilih untuk kerja-kerja pembaikan telah dikaji melalui ujian ricih condong dan ujian tegangan berpecah. Hasil kajian menunjukkan bahawa di antara bahagian campuran yang berbeza UHPFRC, 10% daripada gentian keluli adalah sebahagian campuran optimum yang boleh dipilih sebagai bahan untuk pembaikan konkrit rosak disebabkan api. Kekuatan mampatan dan kekuatan lenturan adalah masing-masing 169.3 MPa dan 29.9 MPa. Keputusan ujian condong ricih dan ujian tegangan perpecahan, campuran ini boleh membentuk satu ikatan yang baik dengan substratum konkrit yang telah dibakar. Oleh itu, penggunaan kandungan serat sehingga 10% pada UHPFRC harus dapat menyediakan pembaikan konkrit berkesan dan tahan lama. _______________________________________________________________________________________________________ Ultra High Performance Fibre Reinforced Concrete (UHPFRC) with unique properties of very high strength and have extremely low permeability marks a quantum leap in concrete technology. There are many applications of this UHPFRC, one of it is being used as strengthening material for repair work for the deteriorated concrete structure. However, there is limited data for bonding characteristic between the concrete substrate especially fire damaged concrete substrate and UHPFRC overlay. In this study, the bonding characteristic on different mix proportion of UHPFRC with fire damaged concrete substrate was evaluated to improve the application of UHPFRC for repair work especially for fire damaged concrete structure. The main goal of this research is to characterize the mechanical properties of UHPFRC with different mix design and to investigate the performance of the selected mix design of UHPFRC as repair material for fire damaged concrete. In short, the methodology is preparation of different mixes containing different percentage of steel fibre to obtain optimum mix of UHPFRC. The fresh and hardened mechanical properties of UHPFRC were tested such as workability, compressive strength and flexural strength. The effect of using different steel fibre doses on these properties are obtained within the research work. The suitability of the selected optimum mix of UHPFRC for repair work were investigated through slant shear test and split tensile test. Results show that among the different mix proportion of UHPFRC, 10% of steel fibre is the optimum mix proportion which can be selected as repair material for fire damaged concrete. The compressive strength and flexural strength is 169.3 MPa and 29.9 MPa respectively. From the slant shear test and split tensile test results, this mix can form a good bond with fire damaged concreted substrate. Hence, it is envisaged that the use of fibre content up to 10% in UHPFRC should be able to provide effective and durable concrete repair.
Contributor(s):
Siti Zubaidah Mohammad Hanipah - Author
Primary Item Type:
Final Year Project
Identifiers:
Accession Number : 875005544
Language:
English
Subject Keywords:
(UHPFRC); permeability; concrete
First presented to the public:
6/1/2015
Original Publication Date:
7/22/2020
Previously Published By:
Universiti Sains Malaysia
Place Of Publication:
School of Civil Engineering
Citation:
Extents:
Number of Pages - 81
License Grantor / Date Granted:
  / ( View License )
Date Deposited
2020-07-22 10:28:30.612
Submitter:
Mohd Jasnizam Mohd Salleh

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Effect of high fibre content in ultra high performance fibre reinforced concrete as a repair material on bond characteristics with fire damaged concrete1 2020-07-22 10:28:30.612