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作 者:Hanxing Zhao Pengyu Cao Fengfeng Li Xin Lan Liwu Liu Yanju Liu Jinsong Leng
机构地区:[1]Centre of Composite Materials and Structures,Harbin Institute of Technology(HIT),Harbin,150080,China [2]Department of Astronautical Science and Mechanics,Harbin Institute of Technology(HIT),Harbin,150001,China
出 处:《Acta Mechanica Solida Sinica》2024年第2期271-284,共14页固体力学学报(英文版)
基 金:supported by the National Natural Science Foundation of China(Grant Nos.12102107 and 12272113);China National Postdoctoral Program for Innovative Talents(No.BX2021090).
摘 要:The mismatch in thermal expansion coefficients between the fiber-rich and resin-rich regions of a shape memory polymer composite(SMPC)laminate,along with the residual strain during SMPC fabrication,results in buckling deformation of the inhomogeneous laminate.This paper presents a macroscopic model for buckling of an inhomogeneous SMPC laminate under initial biaxial prestrains.Both linear and nonlinear buckling analyses are carried out using the energy method.The influences of prestrain biaxiality,temperature,and ply angle on the buckling wavelength,critical buckling prestrain,and buckling amplitude are calculated.The results demonstrate that the critical buckling wavelength of the SMPC laminate is independent of the prestrain,while the amplitude is almost independent of temperature.In addition,the optimal fiber stacking configuration with the maximum critical buckling prestrains of inhomogeneous SMPC laminates is determined by a genetic algorithm.
关 键 词:Shape memory polymer composite Buckling behavior Inhomogeneous laminate Biaxial prestrains
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