Dr. G.  Venkatachalam
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Dr. G. Venkatachalam

Associate Professor
VIT University, India


Highest Degree
Ph.D. in Mechanical Engineering from Vellore Institute of Technology University, India

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Biography

Dr. G. Venkatachalam is currently working as Associate Professor at VIT University, India. He obtained his PhD in Mechanical Engineering from same University. His area of interest related to Physical Science Engineering. His area of expertise includes Forming Limits, Metal Forming, FLD/FLC, Sheet Metals, Finite Element Analysis, Composite Materials, FEA/FEM, and Mechanical Characterization. He has published 18 papers in journals as well as 16 papers in national and international conferences contributed as author/co-author.

Area of Interest:

Physical Science Engineering
100%
Mechanical Engineering
62%
Finite Element Analysis
90%
Composite Materials
75%
Material Science
55%

Research Publications in Numbers

Books
0
Chapters
0
Articles
0
Abstracts
0

Selected Publications

  1. Venkatachalam, G., S.P. Nilay, P.M. Neil, P. Agarwal and S. Narayanan, 2013. Influence of Perforations on Flexural Strength of Aluminium 8090 Alloy Sheets. ARPN J. Eng. Appl. Sci., 8: 277-279.
    Direct Link  |  
  2. Venkatachalam, G., S. Nilay, D. Mishra, S. Singh and Y. Choudhary et al., 2013. Determination of forming limit diagram for perforated aluminium 1050A sheets. Int. J. Mech. Mechatron. Eng., 13: 37-39.
    Direct Link  |  
  3. Venkatachalam, G., S. Karthikeyan, M. Hitharth, K. Sumanjeet and S. Narayanan, 2013. Formulation of Novel Electroless Plating Process for Cu and Cu-P Alloys. Int. J. ChemTech Res., 5: 237-245.
    Direct Link  |  
  4. Venkatachalam, G., S. Narayanan, S.P. Nilay, P. Nishant and C.S. Narayanan, 2012. Influence of hole shape and pattern on the prediction of limiting strain for perforated commercial pure aluminium sheets. Applied Mech. Mater., 232: 961-965.
    CrossRef  |  Direct Link  |  
  5. Venkatachalam, G., S. Narayanan and N.C. Sathiya, 2012. Prediction of limiting strains for square pattern-square hole perforated commercial pure aluminium sheets. Adv. Mater. Res., 548: 382-386.
    CrossRef  |  Direct Link  |  
  6. Venkatachalam, G., S. Narayanan and C.S. Narayanan, 2012. Influence of Hole Size, Hole Shape and Hole Pattern on Spring-Back Effect in Perforated Sheet Metals Using FEM. Int. J. Eng. Sci. Technol., 4: 2636-2640.
    Direct Link  |  
  7. Venkatachalam, G., S. Narayanan and C.S. Narayanan, 2012. Ductile Fracture Criteria Based Forming Limits of Pure Commercial Perforated Aluminium Sheets in the Negative Minor Strain Region. Eur. J. Sci. Res., 77: 411-416.
  8. Venkatachalam, G., S. Narayanan and C. Sathiyanarayanan, 2012. A Finite Element Method Based Formability Analysis of Triangular Pattern of Square Hole Perforated Commercial Pure Aluminium Sheets. Int. J. Mech. Mater. Eng., 7: 209-213.
    Direct Link  |  
  9. Karthikeyan, S., S. Harikumar, G. Venkatachalam, S. Narayanan and R. Venckatesh, 2012. The Inhibitive Action of Cyclohexyl thiourea on the Corrosion and Hydrogen Permeation through Mild Steel in Acidic Solutions. Int. J. ChemTech Res., 4: 1065-1071.
    Direct Link  |  
  10. Karthikeyan, S., S. Harikumar, G. Venkatachalam and S. Narayanan, 2012. The Influence of Isopropyl thiourea (ISPT) on the Corrosion and Hydrogen Permeation through Mild Steel in Acidic Solutions. Int. J. ChemTech Res., 4: 910-917.
    Direct Link  |  
  11. Karthikeyan, S., G. Venkatachalam, K.N. Srinivasan and S. Narayanan, 2011. Development of Electroless Ni-P-Barite Composite Coatings. J. Electroplating Finishing, 30: 31-34.