Theoretical Analysis of the Buckling Behaviors of Inhomogeneous Shape Memory Polymer Composite Laminates Considering Prestrains

IF 2 3区 工程技术 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Hanxing Zhao, Pengyu Cao, Fengfeng Li, Xin Lan, Liwu Liu, Yanju Liu, Jinsong Leng
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Abstract

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.

Abstract Image

考虑预应变的非均质形状记忆聚合物复合层压板屈曲行为的理论分析
形状记忆聚合物复合材料(SMPC)层压板的纤维富集区和树脂富集区之间的热膨胀系数不匹配,加上 SMPC 制造过程中的残余应变,导致不均匀层压板发生屈曲变形。本文提出了非均质 SMPC 层压板在初始双轴预应变下发生屈曲的宏观模型。采用能量法进行了线性和非线性屈曲分析。计算了预应变双轴性、温度和层角对屈曲波长、临界屈曲预应变和屈曲振幅的影响。结果表明,SMPC 层压板的临界屈曲波长与预应变无关,而屈曲振幅几乎与温度无关。此外,还通过遗传算法确定了非均质 SMPC 层压板具有最大临界屈曲预应变的最佳纤维堆叠配置。
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来源期刊
Acta Mechanica Solida Sinica
Acta Mechanica Solida Sinica 物理-材料科学:综合
CiteScore
3.80
自引率
9.10%
发文量
1088
审稿时长
9 months
期刊介绍: Acta Mechanica Solida Sinica aims to become the best journal of solid mechanics in China and a worldwide well-known one in the field of mechanics, by providing original, perspective and even breakthrough theories and methods for the research on solid mechanics. The Journal is devoted to the publication of research papers in English in all fields of solid-state mechanics and its related disciplines in science, technology and engineering, with a balanced coverage on analytical, experimental, numerical and applied investigations. Articles, Short Communications, Discussions on previously published papers, and invitation-based Reviews are published bimonthly. The maximum length of an article is 30 pages, including equations, figures and tables
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