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Engineering and Technology

D-Index
60
Citations
9269
World Ranking
2267
National Ranking
26

Overview

Mahmood Md. Tahir is affiliated with the University of Technology Malaysia in Malaysia. Their research predominantly focuses on engineering, specifically within civil and structural engineering, building and construction, and mechanics of materials. Additional areas of interest include ocean engineering and mechanical engineering.

The scientist's work extensively covers topics related to:

  • Structural Behavior of Reinforced Concrete
  • Innovative concrete reinforcement materials
  • Structural Load-Bearing Analysis
  • Concrete and Cement Materials Research
  • Recycled Aggregate Concrete Performance
  • Innovations in Concrete and Construction Materials
  • Structural Engineering and Materials Analysis

Mahmood Md. Tahir has published research in several venues with multiple contributions in key journals and conferences, such as:

  • Journal of Building Engineering (9 publications)
  • IOP Conference Series Materials Science and Engineering (8 publications)
  • Construction and Building Materials (6 publications)
  • Journal of Cleaner Production (4 publications)
  • Sustainability (4 publications)

Some of the recent papers authored or co-authored by Mahmood Md. Tahir include:

  • Waste ceramic as low cost and eco-friendly materials in the production of sustainable mortars, 2020, Journal of Cleaner Production
  • A Combination of Feature Selection and Random Forest Techniques to Solve a Problem Related to Blast-Induced Ground Vibration, 2020, Applied Sciences
  • Random Forest and Bayesian Network Techniques for Probabilistic Prediction of Flyrock Induced by Blasting in Quarry Sites, 2020, Natural Resources Research
  • RETRACTED: Drying shrinkage and creep properties of prepacked aggregate concrete reinforced with waste polypropylene fibers, 2020, Journal of Building Engineering
  • A SVR-GWO technique to minimize flyrock distance resulting from blasting, 2020, Bulletin of Engineering Geology and the Environment

The scientist has collaborated frequently with other researchers, with notable co-authors including:

  • Hossein Mohammadhosseini
  • Rayed Alyousef
  • Poi Ngian Shek
  • Hisham Alabduljabbar
  • Nor Hasanah Abdul Shukor Lim

Best Publications

  • Improvement of Problematic Soils with Biopolymer—An Environmentally Friendly Soil Stabilizer

    Nima Latifi;Suksun Horpibulsuk;Christopher L. Meehan;Muhd Zaimi Abd Majid

  • Developing GEP tree-based, neuro-swarm, and whale optimization models for evaluation of bearing capacity of concrete-filled steel tube columns

    Payam Sarir;Jun Chen;Panagiotis G. Asteris;Danial Jahed Armaghani

  • Supervised machine learning techniques to the prediction of tunnel boring machine penetration rate

    Hai Xu;Jian Zhou;Panagiotis G. Asteris;Danial Jahed Armaghani

  • Prediction of ground vibration due to quarry blasting based on gene expression programming: a new model for peak particle velocity prediction

    R Shirani Faradonbeh;D Jahed Armaghani;M. Z. Abd Majid;M. Md Tahir

  • Airblast prediction through a hybrid genetic algorithm-ANN model

    Danial Jahed Armaghani;Mahdi Hasanipanah;Amir Mahdiyar;Muhd Zaimi Abd Majid

  • Application of PSO to develop a powerful equation for prediction of flyrock due to blasting

    Mahdi Hasanipanah;Danial Jahed Armaghani;Hassan Bakhshandeh Amnieh;Muhd Zaimi Abd Majid

  • Properties of porous concrete from waste crushed concrete (recycled aggregate)

    Muhammad Aamer Rafique Bhutta;Nor Hasanah;Nur Farhayu;Mohd Warid Hussin

  • Waste ceramic as low cost and eco-friendly materials in the production of sustainable mortars

    Mostafa Samadi;Ghasan Fahim Huseien;Ghasan Fahim Huseien;Hossein Mohammadhosseini;Han Seung Lee

  • RETRACTED ARTICLE: Analysis of influential factors forpredicting the shear strength of a V-shaped angle shear connector in composite beamsusing an adaptive neuro-fuzzy technique

    I. Mansouri;M. Shariati;M. Safa;Z. Ibrahim

  • Evaluation of alkali-activated mortars containing high volume waste ceramic powder and fly ash replacing GBFS

    Ghasan Fahim Huseien;Ghasan Fahim Huseien;Abdul Rahman Mohd Sam;Kwok Wei Shah;Jahangir Mirza

  • A review on steel/CFRP strengthening systems focusing environmental performance

    Mehran Gholami;Abdul Rahman Mohd Sam;Jamaludin Mohamad Yatim;Mahmood Md Tahir

  • Investigation of through beam connection to concrete filled circular steel tube (CFCST) column

    M.M. Arabnejad Khanouki;N.H. Ramli Sulong;Mahdi Shariati;M.M Tahir

  • Deep neural network and whale optimization algorithm to assess flyrock induced by blasting

    Hongquan Guo;Jian Zhou;Mohammadreza Koopialipoor;Danial Jahed Armaghani

  • Properties of ceramic tile waste based alkali-activated mortars incorporating GBFS and fly ash

    Ghasan Fahim Huseien;Abdul Rahman Mohd Sam;Kwok Wei Shah;Mohammad Ali Asaad

  • Impact of curing temperatures and alkaline activators on compressive strength and porosity of ternary blended geopolymer mortars

    Ziyad Kubba;Ghasan Fahim Huseien;Abdul Rahman Mohd Sam;Kwok Wei Shah

  • Numerical analysis of tilted angle shear connectors in steel-concrete composite systems

    Koosha Khorramian;Shervin Maleki;Mahdi Shariati;Abdolrahim Jalali

  • Enhanced corrosion resistance of reinforced concrete: Role of emerging eco-friendly Elaeis guineensis/silver nanoparticles inhibitor

    Mohammad Ali Asaad;Mohammad Ismail;Mahmood Md. Tahir;Ghasan Fahim Huseien

  • Performance prediction of tunnel boring machine through developing a gene expression programming equation

    Danial Jahed Armaghani;Roohollah Shirani Faradonbeh;Ehsan Momeni;Ehsan Momeni;Ahmad Fahimifar

  • Waste ceramic powder incorporated alkali activated mortars exposed to elevated Temperatures: Performance evaluation

    Ghasan Fahim Huseien;Abdul Rahman Mohd Sam;Jahangir Mirza;Mahmood Md. Tahir

  • A Monte Carlo simulation approach for effective assessment of flyrock based on intelligent system of neural network

    Jian Zhou;Nasim Aghili;Nasim Aghili;Ebrahim Noroozi Ghaleini;Dieu Tien Bui

  • Intelligent Prediction of Blasting-Induced Ground Vibration Using ANFIS Optimized by GA and PSO

    Haiqing Yang;Mahdi Hasanipanah;M. M. Tahir;Dieu Tien Bui

Frequent Co-Authors

Danial Jahed Armaghani
Danial Jahed Armaghani University of Technology Sydney
Mohammadreza Koopialipoor
Mohammadreza Koopialipoor Amirkabir University of Technology
Mahdi Hasanipanah
Mahdi Hasanipanah Duy Tan University
Mahdi Shariati
Mahdi Shariati Duy Tan University
Muhd Zaimi Abd Majid
Muhd Zaimi Abd Majid University of Technology Malaysia
Panagiotis G. Asteris
Panagiotis G. Asteris School of Pedagogical and Technological Education
Dieu Tien Bui
Dieu Tien Bui University of South-Eastern Norway
Aminaton Marto
Aminaton Marto University of Technology Malaysia
N.H. Ramli Sulong
N.H. Ramli Sulong Queensland University of Technology
Zainah Ibrahim
Zainah Ibrahim University of Malaya

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