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Vibration analysis of new cosine functionally graded microplates using isogeometric analysis
被引:1
|作者:
Khatir, Bochra
[1
]
Filali, Sarra
[1
]
Belabdeli, Sarra
[1
]
Daikh, Ahmed Amine
[2
,3
]
Khatir, Samir
[4
]
Capozucca, Roberto
[5
]
Cuong-Le, Thanh
[4
]
机构:
[1] Univ Ctr Naama, Dept Technol, Naama 45000, Algeria
[2] Univ Ctr Naama, Artificial Intelligence Lab Mech & Civil Struct &, POB 66, Naama 45000, Algeria
[3] Univ Mustapha Stambouli, Fac Sci & Technol, Dept Genie Civil, Lab Etud Struct & Mecan Mat, BP 305, Mascara 29000, Algeria
[4] Ho Chi Minh City Open Univ, Ctr Engn Applicat & Technol Solut, Ho Chi Minh, Vietnam
[5] Univ Polytech Marche, Dept DICEA, Ancona, Italy
来源:
关键词:
Vibration;
Isogeometric analysis;
FG microplates;
Porosities;
Couple stress theory;
Size-dependent;
Porosity;
SHEAR DEFORMATION-THEORY;
HIGHER-ORDER SHEAR;
FG PLATES;
BUCKLING ANALYSIS;
FOUNDATION;
FLUTTER;
PANELS;
MODEL;
D O I:
10.1016/j.istruc.2024.107467
中图分类号:
TU [建筑科学];
学科分类号:
0813 ;
摘要:
This paper investigates the free vibration characteristics of a novel functionally graded (FG) porous microplate using isogeometric analysis (IGA). The study incorporates two types of FG microplates, FG-A and FG-B, with material properties varying continuously through thickness as defined by a new cosine function. Modified couple stress theory and higher-order shear deformation plate theory are employed to formulate the governing equations, incorporating size-dependent effects under various boundary conditions. A numerical model based on IGA is used to compute fundamental frequencies. To validate the proposed solution model, a comparison study with existing literature is conducted. The results indicate that increasing the size-dependent ratio enhances plate rigidity and vibration frequencies, while higher porosity reduces plate stiffness, and dimensionless frequencies decrease with an increasing aspect ratio and a decreasing thickness ratio. These findings underscore the model's robustness and its accuracy in capturing the effects of material and geometric parameters on vibration behavior.
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页数:12
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