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Prof. B Satish Ben

PhD (Andhra University)

Professor

Department of Mechanical Engineering

Room No: +91-870-246
satishben@nitw.ac.in
9848065254 Edit Profile Bio Sketch

Research Areas

 Adhesion and Adhesive Joints

 Retrofitting and rehabilitation of structures

 Self-Healing Composite Materials

 Structural Health Monitoring

  • Courses Handled
  • Research IDs
  • Selected Publications
  • Project/Consultancy
  • Current PhD Students
  • Awards and Accolades
  • Additional Responsibilities
  • Kinematics and Dynamics Laboratory(ME203)
  • Mechanics of Composite Materials(ME46029)
  • Mechanics of Composite Materials(ME477)
  • Computer Aided Machine Drawing(ME257)
  • Finite Element Analysis for Design(ME46004)
  • Mechanics of Composite Materials(ME5411)
  • Machine Dynamics Lab(ME5409)
  • Finite Element Analysis in Design(ME5452)
  • Seminar - I(ME5448)
  • Condition Monitoring and Fault Diagnostics(ME5462)
  • Seminar - II(ME5498)
  • ORC ID: 0000-0002-3767-7854
  • SCOPUS ID: 36779436100
  • Google Scholar ID: 6K5T_OUAAAAJ


  • Investigation on interfacial bonding strength between Aluminum hub and CFRP exposed to accelerated aging conditions, By Darla VenkataRamanaiah, B Satish Ben, and K V Sai Srinadh, Taylor & Francis, Adhesion Science and Technology, vol.38, pp.31-43, 2024
  • Self-healing of matrix cracking and delamination damage assessment in microcapsules reinforced carbon fibre epoxy composite under flexural loading, By Raj Kumar Pittala, Goteti Dhanaraju, B Satish Ben, B Avinash Ben, Elsevier, Composite Structures, vol.291, pp.115691, 2022
  • Thermally remendable bismalemide-MWCNT/DA-epoxy nanocomposite via Diels-Alder bonding, By Goteti Dhanaraju, B. Satish Ben and Raj Kumar Pittala, Elsevier, Polymer, vol.245, pp.124734, 2022
  • Interfacial and matrix healing of thermally reversible bismaleimide infused Graphene Nano Platelets reinforced polymer nanocomposite through Diels-Alder bonding, By Goteti Dhanarajua, Sivaparwathi Golla, B. SatishBen and K. Arun Vikram, Elsevier, Materials Today Communications, vol.31, pp.103753, 2022
  • Evaluation of aluminum to composite bonded lap joints, By VenkataRamanaiah Darla, B Satish Ben, KV Sai Srinadh and K. Venkata Rao, Sage, High Performance Polymers, vol.34, pp.1152-1163, 2022
  • Damping behaviour and self-healing performance evaluation of microcapsules reinforced epoxy composites by impulse excitation technique, By Pittala RK, Dhanaraju G, Beera SB, Beera AB, Sage, Journal of Reinforced Plastics and Composites, vol.41, pp.870-881, 2022
  • A comparative study on cutting forces and power consumption in plain and ultrasonic vibration helical milling of AISI 1020 steel, By Rao KV, Prasad VUSV, Ben BS, Sage, Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, vol.236, pp.1726-1737, 2022
  • Effect of epoxy resin healing agent viscosity on the self‑healing performance of capsules reinforced polymer composite, By Raj Kumar Pittala, Satish Ben B, Avinash Ben B, Springer, Journal of polymer research, vol.28, pp.102, 2021
  • Synthesis and characterization of amine hardener filled microcapsules for self-healing composite applications, By Raj kumar Pittala, B. Satish Ben, IOP, Materials Research Express, vol.6, pp., 2019
  • Prediction of average surface roughness and formability in single point incremental forming using artificial neural network, By Amrut Mulay, Satish Ben, Syed Ismail, Andrzej Kocanda, Elsevier, Archives Civil Mech. Engg., vol.19, pp.1135-1149, 2019

Development of self-healing materials based on thermally reversible polymers for biomimetic structural applications

  • Role Principal Investigator
  • Type Research
  • Sponsor DST SERB
  • Duration 36 Months
  • Project Cost (INR) 2411325
  • Status Completed

"Development of FRP Composites with Crack Arrest and Sel~-Healing to Maintain Structural Integrity

  • Role Principal Investigator
  • Type Research
  • Sponsor DST SERB
  • Duration 36 Months
  • Project Cost (INR) 2876640
  • Status Completed

Lightweight Technologies for Automotive Applications

  • Role Principal Developer
  • Type GIAN Course
  • Sponsor Ministry of education government of India
  • Duration 0 Months
  • Project Cost (INR) 500000
  • Status Completed

Fabrication and characterization of porous nano carbon from activated bio waste for tribological and structural applications

  • Role Co-Principal Investigator
  • Type Research
  • Sponsor SERB
  • Duration 35 Months
  • Project Cost (INR) 3710880
  • Status Completed

Development, Mechanical Characterization and Applications of Advanced Composites

  • Role CO-Principal Developer
  • Type GIAN Course
  • Sponsor Ministry of education government of India
  • Duration 0 Months
  • Project Cost (INR) 500000
  • Status Completed


  • Vice President SAC (May, 2023 - March, 2024)
  • Associate Dean SW (May, 2022 - May, 2023)
  • Hostel Warden (August, 2017 - August, 2019)