Karthik S

@dsce.edu.in

Dayananda Sagar College of Engineering

59

Scholar Citations

4

Scholar h-index

2

Scholar i10-index

RECENT SCHOLAR PUBLICATIONS

  • Improving the flexural and post‐cracking behavior of fly ash‐based concrete using hybrid steel fibers
    K Santhanam, C George, A Pandey, Somdutta, S Karthik, A Mohan, ...
    Structural Concrete , 2026
    2026.0
    Citations: 1
  • Scalable fabrication of carbon quantum dot-based electrochemical sensors for trace-level detection of organic contaminants in environmental matrices
    C George, MS Christo, M Sumesh, S Karthik, YH Sudeep, M Karthik
    Microchemical Journal, 115317 , 2025
    2025.0
    Citations: 4
  • Machine learning approach for predicting the compressive strength of biomedical waste ash in concrete: a sustainability approach
    R Kumar, S Karthik, A Kumar, A Tantri, Shahaji, S Sathvik
    Discover Materials 5 (1), 46 , 2025
    2025.0
    Citations: 25
  • On the gradient-enhanced damage model for a hyperelastic material
    S Karthik, T Yamashita, A Rajagopal
    Mechanics of Advanced Materials and Structures , 2023
    2023.0
    Citations: 1
  • Framework and numerical algorithm for a phase field fracture model
    S Karthik, A Nasedkina, A Nasedkin, A Rajagopal
    East Asian Journal on Applied Mathematics 13 (1), 162-176 , 2023
    2023.0
    Citations: 2
  • Phase field vs gradient enhanced damage models: a comparative study
    S Karthik, KSS Reddy, A Nasedkina, A Nasedkin, A Rajagopal
    Procedia Structural Integrity 35, 173-180 , 2022
    2022.0
    Citations: 4
  • Nonlocal phase field approach for modeling damage in brittle materials
    S Karthik, A Rajagopal, JN Reddy
    Mechanics of Materials 157, 103797 , 2021
    2021.0
    Citations: 18
  • A PHASE FIELD FRACTURE MODEL FOR QUASI-BRITTLE MATERIAL
    S Karthik, A Nasedkin, A Nasedkina, A Rajagopal
    Современные информационные технологии: тенденции и перспективы развития, 198-201 , 2021
    2021.0
  • Characterization of crushed fine aggregate for use in concrete based on methylene blue test
    MC Nataraja, S Karthik, AN Madhusudan
    Indian Concr. J 92 (5), 18-25 , 2018
    2018.0
    Citations: 4
  • Characterisation of manufactured fine aggregates based on uncompacted void content as per ASTM C 1252-03 – Urgent need for Indian scenario
    ANM MC Nataraja, S. Karthik
    Indian Concrete Journal 90 (1), 59-68 , 2016
    2016.0
  • Improving the flexural and post-cracking behavior of fly ash-based concrete using hybrid steel fibers
    S Karthik, A Mohan, SS Chandra, GU Alaneme

MOST CITED SCHOLAR PUBLICATIONS

  • Machine learning approach for predicting the compressive strength of biomedical waste ash in concrete: a sustainability approach
    R Kumar, S Karthik, A Kumar, A Tantri, Shahaji, S Sathvik
    Discover Materials 5 (1), 46 , 2025
    2025.0
    Citations: 25
  • Nonlocal phase field approach for modeling damage in brittle materials
    S Karthik, A Rajagopal, JN Reddy
    Mechanics of Materials 157, 103797 , 2021
    2021.0
    Citations: 18
  • Scalable fabrication of carbon quantum dot-based electrochemical sensors for trace-level detection of organic contaminants in environmental matrices
    C George, MS Christo, M Sumesh, S Karthik, YH Sudeep, M Karthik
    Microchemical Journal, 115317 , 2025
    2025.0
    Citations: 4
  • Phase field vs gradient enhanced damage models: a comparative study
    S Karthik, KSS Reddy, A Nasedkina, A Nasedkin, A Rajagopal
    Procedia Structural Integrity 35, 173-180 , 2022
    2022.0
    Citations: 4
  • Characterization of crushed fine aggregate for use in concrete based on methylene blue test
    MC Nataraja, S Karthik, AN Madhusudan
    Indian Concr. J 92 (5), 18-25 , 2018
    2018.0
    Citations: 4
  • Framework and numerical algorithm for a phase field fracture model
    S Karthik, A Nasedkina, A Nasedkin, A Rajagopal
    East Asian Journal on Applied Mathematics 13 (1), 162-176 , 2023
    2023.0
    Citations: 2
  • Improving the flexural and post‐cracking behavior of fly ash‐based concrete using hybrid steel fibers
    K Santhanam, C George, A Pandey, Somdutta, S Karthik, A Mohan, ...
    Structural Concrete , 2026
    2026.0
    Citations: 1
  • On the gradient-enhanced damage model for a hyperelastic material
    S Karthik, T Yamashita, A Rajagopal
    Mechanics of Advanced Materials and Structures , 2023
    2023.0
    Citations: 1
  • A PHASE FIELD FRACTURE MODEL FOR QUASI-BRITTLE MATERIAL
    S Karthik, A Nasedkin, A Nasedkina, A Rajagopal
    Современные информационные технологии: тенденции и перспективы развития, 198-201 , 2021
    2021.0
  • Characterisation of manufactured fine aggregates based on uncompacted void content as per ASTM C 1252-03 – Urgent need for Indian scenario
    ANM MC Nataraja, S. Karthik
    Indian Concrete Journal 90 (1), 59-68 , 2016
    2016.0
  • Improving the flexural and post-cracking behavior of fly ash-based concrete using hybrid steel fibers
    S Karthik, A Mohan, SS Chandra, GU Alaneme