DocumentCode :
3235663
Title :
Study on nonlinear dynamic buckling of single-layer elliptical paraboloid latticed shells under impact load
Author :
Liu, Qiang ; Che, Wei ; Yu, Huajin
Author_Institution :
CEFR Res. Center, China Inst. of Atomic Energy, Beijing, China
fYear :
2011
fDate :
22-24 April 2011
Firstpage :
2640
Lastpage :
2644
Abstract :
This paper simulates dynamic responses of single-layer elliptical paraboloid latticed shells under impact based on rate-dependent isotropic hardening material model, master-slave contact point searching method and penalty function method. Node displacement and structural energy are analyzed under impact of freely falling with certain initial height. The dynamic buckling of plasticity is judged according to the dynamic responses. The effects of all kinds of parameters (such as span, rise-to-span ratio and cross-sectional areas of members etc.) are analyzed on the structural dynamic buckling. The results show that the displacements of characteristic nodes, stain energy and total energy of the structure increase all of a sudden. The vertical stiffness of the latticed shells strengthens and critical momentums are enhanced with rise-to-span ratio´s aggrandizement, and cross-sectional areas of members increasing. Supporting condition has a slight effect on critical loads and the latticed shells are sensitive highly to initial geometric imperfection.
Keywords :
buckling; dynamic response; elasticity; geometry; hardening; impact (mechanical); plasticity; shells (structures); structural engineering; critical load; critical momentum; cross-sectional area; dynamic response; geometric imperfection; impact load; master-slave contact point searching method; node displacement; nonlinear dynamic buckling; penalty function; plasticity; rate-dependent isotropic hardening material model; rise-to-span ratio; single-layer elliptical paraboloid latticed shell; structural dynamic buckling; structural energy; vertical stiffness; Heuristic algorithms; Manuals; Master-slave; Materials; Nonlinear dynamical systems; Stability criteria; Elliptical parabolic latticed shells; Impact load; Nonlinear dynamic buckling; Penalty function algorithm;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electric Technology and Civil Engineering (ICETCE), 2011 International Conference on
Conference_Location :
Lushan
Print_ISBN :
978-1-4577-0289-1
Type :
conf
DOI :
10.1109/ICETCE.2011.5775209
Filename :
5775209
Link To Document :
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