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  2. Volume 7, Issue 4
  3. Authors

Online ISSN: 2515-8260

Volume7, Issue4

MODELING AND FE ANALYSIS OF FUNCTIONALLY GRADED (FG) COMPOSITE SHELL STRUCTURES

    Rajat Yadav Anas Islam Kamal Sharma

European Journal of Molecular & Clinical Medicine, 2020, Volume 7, Issue 4, Pages 725-735

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Abstract

This manuscript comprises with FG (functionally graded) analysis and finite modeling element shell
frameworks under divergent loading like mechanical & thermal. The analysis of free vibration of FG
spherical shell framework has also been depicted. In respect to research the impact of significant aspects
on FG shell frameworks responses, divergent kinds of shells were deliberated. Here, responses were
attained for FG shells were compared to pure ceramic homogeneous shells (AI203) and EN 31 Steel (pure
metal) and it is perceived that FGM Shells responses were in between homogenous shells responses.
Furthermore, static analysis done on FG shell structure is to determine the circumferential and
longitudinal stress, strain and deformation. Furthermore, modal analysis is to be determining the natural
frequencies
Keywords:
    EN 31 steel alloys Al2O3 FG Ceramic CATIA and ANSYS
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(2020). MODELING AND FE ANALYSIS OF FUNCTIONALLY GRADED (FG) COMPOSITE SHELL STRUCTURES. European Journal of Molecular & Clinical Medicine, 7(4), 725-735.
Rajat Yadav; Anas Islam; Kamal Sharma. "MODELING AND FE ANALYSIS OF FUNCTIONALLY GRADED (FG) COMPOSITE SHELL STRUCTURES". European Journal of Molecular & Clinical Medicine, 7, 4, 2020, 725-735.
(2020). 'MODELING AND FE ANALYSIS OF FUNCTIONALLY GRADED (FG) COMPOSITE SHELL STRUCTURES', European Journal of Molecular & Clinical Medicine, 7(4), pp. 725-735.
MODELING AND FE ANALYSIS OF FUNCTIONALLY GRADED (FG) COMPOSITE SHELL STRUCTURES. European Journal of Molecular & Clinical Medicine, 2020; 7(4): 725-735.
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