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Locking alleviation technique for the peridynamic Reissner–Mindlin plate model: the developed reduced integration method.

Authors :
Bai, Ruqing
Liang, Guan
Naceur, Hakim
Zhao, Jinglei
Yi, Jin
Luo, Jun
Wang, Li
Pu, Huayan
Source :
Archive of Applied Mechanics. Mar2023, Vol. 93 Issue 3, p1167-1188. 22p.
Publication Year :
2023

Abstract

Peridynamics (PD) differs from classical continuum mechanics and other nonlocal theories that do not involve spatial derivatives of the displacement field. PD is based on the integral equation instead of differential equations to handle discontinuities and other singularities. In this paper, the standard peridynamic Reissner–Mindlin plate model (standard PD) accounting for the shear deformation is chosen to describe the thick plate kinematics. Unfortunately, when applied to very thin plate structures, the standard PD encounters shear locking phenomenon, leading to incorrect solutions. This shear locking can be successfully alleviated using the developed reduced or selective integration method. In particular, this technique has been implemented in the standard PD, which allows an accurate result for a wide range from very thin ( L / t > 10 3 ) to thick ( L / t ∼ 10 ) plate structures. It can also accelerate the computational time for particular dynamic problems using fewer neighboring integration particles. Several numerical examples are solved to demonstrate the effectiveness of the proposed method for modeling plate structures. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09391533
Volume :
93
Issue :
3
Database :
Academic Search Index
Journal :
Archive of Applied Mechanics
Publication Type :
Academic Journal
Accession number :
161963802
Full Text :
https://doi.org/10.1007/s00419-022-02320-0