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Dive into the research topics where M. Talha Junaid is active.

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Featured researches published by M. Talha Junaid.


IOP Conference Series: Materials Science and Engineering | 2017

Properties of ambient cured blended alkali activated cement concrete

M. Talha Junaid

This paper presents results of the development and strength properties of ambient-cured alkali activated geopolymer concrete (GPC). The study looks at the strength properties, such as compressive strength, splitting tensile strength, and elastic modulus of such concretes and its dependency on various parameters. The parameters studied in this work are the type and proportions of pre-cursor materials, type of activator and their respective ratios and the curing time. Two types of pre-cursor material; low calcium fly ash (FA) and ground granulated blast furnace slag (GGBFS) were activated using different proportions of sodium silicate and sodium hydroxide solutions. The results indicate that ambient cured geopolymer concrete can be manufactured to match strength properties of ordinary Portland cement concrete (OPC). The strength properties of GPC are dependent on the type and ratio of activator and the proportion of GGBFS used. Increasing the percentage of GGBFS increased the compressive and tensile strengths, while reducing the setting time of the mix. The effect of GGBFS on strength was more pronounced in mixes that contained sodium silicate as activator solution. Unlike OPC, ambient-cured GPC containing sodium silicate gain most of their strength in the first 7 days and there is no change in strength thereafter. However, GPC mixes not containing sodium silicate only achieve a fraction of their strength at 7 days and extended curing is required for such concretes to gain full strength. The results also indicate that the elastic modulus values of GPC mixes without sodium silicate are comparable to OPC while mixes with sodium silicate have elastic modulus values much lower than ordinary concrete.


Construction and Building Materials | 2015

A mix design procedure for low calcium alkali activated fly ash-based concretes

M. Talha Junaid; Obada Kayali; Amar Khennane; Jarvis Black


Materials and Structures | 2015

Performance of fly ash based geopolymer concrete made using non-pelletized fly ash aggregates after exposure to high temperatures

M. Talha Junaid; Amar Khennane; Obada Kayali


Thin-walled Structures | 2017

Shear buckling and stress distribution in trapezoidal web corrugated steel beams

Moussa Leblouba; M. Talha Junaid; Samer Barakat; Salah Altoubat; M. Maalej


Materials and Structures | 2017

Response of alkali activated low calcium fly-ash based geopolymer concrete under compressive load at elevated temperatures

M. Talha Junaid; Obada Kayali; Amar Khennane


Cement & Concrete Composites | 2017

Effectiveness of fly ash on the restrained shrinkage cracking resistance of self-compacting concrete

Salah Altoubat; M. Talha Junaid; Moussa Leblouba; Deena Badran


Construction and Building Materials | 2016

Restrained shrinkage behavior of Self-Compacting Concrete containing ground-granulated blast-furnace slag

Salah Altoubat; Deena Badran; M. Talha Junaid; Moussa Leblouba


Materials and Structures | 2017

Short- and long-term restrained shrinkage cracking of fiber reinforced concrete composite metal decks: an experimental study

Salah Altoubat; Klaus-Alexander Rieder; M. Talha Junaid


Construction and Building Materials | 2018

Mechanical and microstructural properties of fly ash based geopolymer concrete incorporating alccofine at ambient curing

Parveen; Dhirendra Singhal; M. Talha Junaid; Bharat Bhushan Jindal; Ankur Mehta


MATEC Web of Conferences | 2017

Deformational behaviour of fly-ash based geopolymer concrete at temperatures of up to 150°c

M. Talha Junaid

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Amar Khennane

University of New South Wales

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Obada Kayali

University of New South Wales

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M. Maalej

University of Sharjah

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Jarvis Black

University of New South Wales

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