Mechanical Analysis of Cutout Piezoelectric Nonlocal Nanobeam including Surface Energy Effects

Faculty Engineering Year: 2020
Type of Publication: ZU Hosted Pages:
Authors:
Journal: Structural Engineering and Mechanics Techno press, South Korea Volume:
Keywords : Mechanical Analysis , Cutout Piezoelectric Nonlocal Nanobeam    
Abstract:
This manuscript tends to investigate influences of nanoscale and surface energy on a static bending and free vibration of piezoelectric perforated nanobeam structural element, for the first time. Nonlocal differential elasticity theory of E
   
     
 
       

Author Related Publications

  • Abdallah Mahmoud Bayoumi Kabel, "Net-tension strength of double-lap joints under bearing-bypass loading conditions using the cohesive zone model", Elsevier, 2015 More
  • Abdallah Mahmoud Bayoumi Kabel, "Optimum design of laminated composite plates under dynamic excitation", Elsevier, 2012 More
  • Abdallah Mahmoud Bayoumi Kabel, "Effect of loading and lamination parameters on the optimum design of laminated plates", Springer, 2011 More
  • Abdallah Mahmoud Bayoumi Kabel, "Net-tension strength of double lap joints taking into account the material cohesive law", ScienceDirect, 2014 More
  • Abdallah Mahmoud Bayoumi Kabel, "Nominal strength of quasi-brittle open hole specimens under biaxial loading conditions", SciVerse ScienceDirect, 2013 More

Department Related Publications

  • Mohamed Ali Elsayed Mohamed Agwa , "Critical elastic parameters motivating divergence instability of frictional composite infinitely long media", Springer, 2019 More
  • Mohammed Adly AttiaIbrahiem , "On the indentation of elastoplastic functionally graded materials", ScienceDirect, 2019 More
  • Ahmed Wagih Abdallah Abdelhady Deebes, "On the indentation of elastoplastic functionally graded materials", ScienceDirect, 2019 More
  • Alaa Ahmed Abd elrahman , "On the indentation of elastoplastic functionally graded materials", ScienceDirect, 2019 More
  • Tamer Ali Abdella Sebaee, "On the indentation of elastoplastic functionally graded materials", ScienceDirect, 2019 More
Tweet