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BUCKLING AND POSTBUCKLING OF LAMINATED THIN CYLINDRICAL SHELLS UNDER HYGROTHERMAL ENVIRONMENTS 被引量:4
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作者 SHEN Hui-shen(沈惠申) 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2001年第3期270-281,共12页
The influence of hygrothermal effects on the buckling and postbuckling of composite laminated cylindrical shells subjected to axial compression is investigated using a micro-to-macro-mechanical analytical model. The m... The influence of hygrothermal effects on the buckling and postbuckling of composite laminated cylindrical shells subjected to axial compression is investigated using a micro-to-macro-mechanical analytical model. The material properties of the composite are affected hy the variation of temperature and moisture, and are hosed on a micromechanical model of a laminate. The governing equations are based on the classical laminated shell theory, and including hygrothermal effects. The nonlinear prebuckling deformations and initial geometric imperfections of the shell were both taken into account. A boundary layer theory of shell buckling was extended to the case of laminated cylindrical shells under hygrothermal environments, and a singular peturbation technique was employed to determine buckling loads and postbuckling equilibrium paths. The numerical illustrations concern the postbuckling behavior of perfect and imperfect, cross-ply laminated cylindrical shells under different sets of environmental conditions. The influences played by temperature rise, the degree of moisture concentration, fiber volume fraction, shell geometric parameter, total number of plies, stacking sequences and initial geometric imperfections are studied. 展开更多
关键词 structural stability POSTbuckling hygrothermal environments composite laminated cylindrical shell a boundary layer theory of shell buckling singular perturbation technique
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Postbuckling of Imperfect Stiffened Cylindrical Shells Under Combined External Liquid Pressure and Axial Compression 被引量:1
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作者 Shen HuishenProfessor, Department of Civil Engineering. Shanghai Jiao Tong University. Shanghai 200030 《China Ocean Engineering》 SCIE EI 1996年第4期367-390,共24页
posthuckling analysis is presented for the stilTened cylindrical shell of finite length subjected to combined loading of external liquid pressure and axial compression. The formulations are based on a boundary layer t... posthuckling analysis is presented for the stilTened cylindrical shell of finite length subjected to combined loading of external liquid pressure and axial compression. The formulations are based on a boundary layer theory of shell buckling, which includes the effects of nonlinear prebuckling deformations, nonlinear large deflections in the postbuckling range and initial geometrical imperfections of the shell. The 'smeared stifl'cner' approach is adopted for the stiffencrs. In the analysis a singular perturbation technique is used (o determine the interactive buckling loads and the postbuckling paths. Numerical examples cover the performance of perfect and imperfect, stringer and ring stiffened cylindrical shells. Typical results arc presented in the dimcnsionless graphical form. 展开更多
关键词 structural stability ptwtbuckling stiffened cylindrical shell combined loading boundary layer theory of shell buckling singular perturbation technique.
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POSTBUCKLING OF IMPERFECT STIFFENED CYLINDRICAL SHELLS UNDER COMBINED EXTERNAL PRESSURE AND HEATING
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作者 沈惠申 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 1998年第5期411-423,共16页
A postbuckling analysis is presented for a stiffened cylindrical shell of finite length subjected to combined loading of external pressure and a uniform temperature rise. The formulations are based on a boundary layer... A postbuckling analysis is presented for a stiffened cylindrical shell of finite length subjected to combined loading of external pressure and a uniform temperature rise. The formulations are based on a boundary layer theory of shell buckling, which includes the effects of nonlinear prebuckling deformations, nonlinear large deflections in the postbuckling range and initial geometrical imperfections of the shell. The 'smeared stiffener' approach is adopted for the stiffeners. The analysis uses a singular perturbation technique to determine the interactive buckling loads and the postbuckling equilibrium paths. Numerical examples cover the performances of perfect and imperfect, stringer and ring stiffened cylindrical shells. Typical results are presented in dimensionless graphical form. 展开更多
关键词 POSTbuckling thermal postbuckling stiffened cylindrical shell combined loading a boundary layer theory of shell buckling singular perturbation technique
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POSTBUCKLING OF PRESSURE-LOADED SHEAR DEFORMABLE LAMINATED CYLINDRICAL PANELS
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作者 沈惠申 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2003年第4期402-413,共12页
A postbuckling analysis is presented for a shear deformable laminated cylindrical panel of finite length subjected to lateral pressure. The governing equations are based on Reddy's higher order shear deformation... A postbuckling analysis is presented for a shear deformable laminated cylindrical panel of finite length subjected to lateral pressure. The governing equations are based on Reddy's higher order shear deformation shell theory with von Krmn_Donnell_type of kinematic nonlinearity. The nonlinear prebuckling deformations and initial geometric imperfections of the panel are both taken into account. A boundary layer theory of shell buckling, which includes the effects of nonlinear prebuckling deformations, large deflections in the postbuckling range, and initial geometric imperfections of the shell, is extended to the case of shear deformable laminated cylindrical panels under lateral pressure. A singular perturbation technique is employed to determine the buckling loads and postbuckling equilibrium paths. The numerical illustrations concern the postbuckling response of perfect and imperfect, moderately thick, cross_ply laminated cylindrical panels. The effects played by transverse shear deformation, panel geometric parameters, total number of plies, fiber orientation, and initial geometric imperfections are studied. 展开更多
关键词 structural stability buckling POSTbuckling cylindrical panel higher order shear deformable shell theory boundary layer theory of shell buckling singular perturbation technique
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THERMO-PIEZOELECTRIC EFFECTS ON THE POSTBUCKLING OF AXIALLY-LOADED HYBRID LAMINATED CYLINDRICAL PANELS
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作者 沈惠申 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2004年第1期24-38,共15页
A compressive postbuckling analysis is presented for a laminated cylinderical panel with piezoelectric actuators subjected to the combined action of mechanical, electrical and thermal loads. The temperature field cons... A compressive postbuckling analysis is presented for a laminated cylinderical panel with piezoelectric actuators subjected to the combined action of mechanical, electrical and thermal loads. The temperature field considered is assumed to be a uniform distribution over the panel surface and through the panel thickness and the electric field is assumed to be the transverse component E_Z only. The material properties are assumed to be independent of the temperature and the electric field. The governing equations are based on the classical shell theory with von Krmn-Donnell-type of kinematic nonlinearity. The nonlinear prebuckling deformations and initial geometric imperfections of the panel are both taken into account. A boundary layer theory of shell buckling,which includes the effects of nonlinear prebuckling deformations, large deflections in the postbuckling range,and initial geometric imperfections of the shell,is extended to the case of hybrid laminated cylindrical panels of finite length. A singular perturbation technique is employed to determine the buckling loads and postbuckling equilibrium paths. The numerical illustrations concern the compressive postbuckling behavior of perfect and imperfect, cross-ply laminated cylindrical thin panels with fully covered or embedded piezoelectric actuators under different sets of thermal and electrical loading conditions.The effects played by temperature rise,applied voltage,stacking sequence,the character of in-plane boundary conditions,as well as initial geometric imperfections are studied. 展开更多
关键词 POSTbuckling hybrid laminated cylindrical panel thermo-piezoelectric effect boundary layer theory of shell buckling singular perturbation technique
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Nonlinear buckling and postbuckling behavior of cylindrical shear deformable nanoshells subjected to radial compression including surface free energy effects
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作者 S.Sahmani M.M.Aghdam M.Bahrami 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2017年第2期209-222,共14页
The objective of the present investigation is to predict the nonlinear buckling and postbuckling characteristics of cylindrical shear deformable nanoshells with and without initial imperfection under hydrostatic press... The objective of the present investigation is to predict the nonlinear buckling and postbuckling characteristics of cylindrical shear deformable nanoshells with and without initial imperfection under hydrostatic pressure load in the presence of surface free energy effects.To this end, Gurtin-Murdoch elasticity theory is implemented into the irst-order shear deformation shell theory to develop a size-dependent shell model which has an excellent capability to take surface free energy effects into account. A linear variation through the shell thickness is assumed for the normal stress component of the bulk to satisfy the equilibrium conditions on the surfaces of nanoshell. On the basis of variational approach and using von Karman-Donnell-type of kinematic nonlinearity, the non-classical governing differential equations are derived. Then a boundary layer theory of shell buckling is employed incorporating the effects of surface free energy in conjunction with nonlinear prebuckling deformations, large delections in the postbuckling domain and initial geometric imperfection. Finally, an eficient solution methodology based on a two-stepped singular perturbation technique is put into use in order to obtain the critical buckling loads and postbuckling equilibrium paths corresponding to various geometric parameters. It is demonstrated that the surface free energy effects cause increases in both the critical buckling pressure and critical end-shortening of a nanoshell made of silicon. 展开更多
关键词 Nanoscale structures Size effect Nonlinear buckling Surface free energy boundary layer theory
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各向异性复合材料圆柱薄壳轴压下的屈曲性能 被引量:4
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作者 王毅 罗永峰 沈惠申 《同济大学学报(自然科学版)》 EI CAS CSCD 北大核心 2002年第6期673-679,共7页
复合材料具有强度高 ,比强度大 ,材料性能可设计等优点 ,由各向异性复合材料制成的薄壳广泛地应用于海洋、航空和军工工业之中 .根据边界层理论 ,采用奇异摄动法 ,考虑非线性前屈曲、大挠度和初始几何缺陷的影响 ,分析在两端固支条件下 ... 复合材料具有强度高 ,比强度大 ,材料性能可设计等优点 ,由各向异性复合材料制成的薄壳广泛地应用于海洋、航空和军工工业之中 .根据边界层理论 ,采用奇异摄动法 ,考虑非线性前屈曲、大挠度和初始几何缺陷的影响 ,分析在两端固支条件下 ,各向异性层合圆柱壳在轴压下的屈曲和后屈曲性态 ,以挠度为摄动参数 ,求后屈曲平衡方程的渐进解并导出后屈曲平衡路径的四级表达式 ,同时给出了确定临界荷载的方法 . 展开更多
关键词 边界层理论 奇异摄动 屈曲荷载 后屈曲
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湿热环境中复合材料层合圆柱薄壳的屈曲和后屈曲 被引量:14
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作者 沈惠申 《应用数学和力学》 EI CSCD 北大核心 2001年第3期228-238,共11页
在宏_细观力学模型框架下 ,讨论湿热环境对复合材料层合圆柱薄壳在轴向压缩作用下屈曲和后屈曲行为的影响· 基于细观力学模型复合材料性能与湿度和温度变化有关· 壳体控制方程基于经典层合壳理论 ,并包括湿热效应· ... 在宏_细观力学模型框架下 ,讨论湿热环境对复合材料层合圆柱薄壳在轴向压缩作用下屈曲和后屈曲行为的影响· 基于细观力学模型复合材料性能与湿度和温度变化有关· 壳体控制方程基于经典层合壳理论 ,并包括湿热效应· 壳体屈曲的边界层理论被推广用于湿热环境的情况 ,相应的奇异摄动法用于确定层合圆柱薄壳的屈曲荷载和后屈曲平衡路径· 分析中同时计及壳体非线性前屈曲变形和初始几何缺陷的影响· 数值算例给出完善和非完善正交铺设层合圆柱薄壳在不同湿热环境中的后屈曲行为· 讨论了温度和湿度 ,纤维体积比率 ,壳体几何参数 ,铺层数 。 展开更多
关键词 结构稳定性 后屈曲 湿热环境 层合圆柱壳 复合材料 屈曲
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复合材料层合剪切圆柱曲板在侧压作用下的后屈曲 被引量:4
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作者 沈惠申 《应用数学和力学》 EI CSCD 北大核心 2003年第4期357-366,共10页
基于Reddy高阶剪切变形理论的Karmam-Donnell型非线性壳体方程,给出复合材料层合剪切圆柱曲板在侧压作用下的后屈曲分析。将壳体屈曲的边界层理论推广到复合材料层合剪切圆柱曲板受侧压作用的情况。相应的奇异摄动法,用于确定圆柱曲板... 基于Reddy高阶剪切变形理论的Karmam-Donnell型非线性壳体方程,给出复合材料层合剪切圆柱曲板在侧压作用下的后屈曲分析。将壳体屈曲的边界层理论推广到复合材料层合剪切圆柱曲板受侧压作用的情况。相应的奇异摄动法,用于确定圆柱曲板的屈曲荷载和后屈曲平衡路径。分析中同时考虑非线性前屈曲变形和初始几何缺陷的影响。数值算例给出完善和非完善,中等厚度正交铺设层合圆柱曲板的后屈曲荷载-挠度曲线。讨论了横向剪切变形,曲板几何参数,铺层数,铺展方式和初始几何缺陷等各种参数变化的影响。 展开更多
关键词 结构稳定性 屈曲 后屈曲 圆柱曲板 高阶剪切变形理论 壳体屈曲 边界层理论 奇异摄动法
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非完善加筋圆柱壳在外压和热荷载共同作用下的后屈曲 被引量:1
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作者 沈惠申 《应用数学和力学》 CSCD 北大核心 1998年第5期385-398,共14页
基于壳体屈曲的边界层理论,本文给出有限长加筋圆柱壳在侧向外压和均布热荷载共同作用下的后屈曲分析·分析中同时考虑壳体非线性前屈曲变形,大挠度和初始几何缺陷的影响·肋条的处理采用“平均刚度”法·采用奇异摄动方... 基于壳体屈曲的边界层理论,本文给出有限长加筋圆柱壳在侧向外压和均布热荷载共同作用下的后屈曲分析·分析中同时考虑壳体非线性前屈曲变形,大挠度和初始几何缺陷的影响·肋条的处理采用“平均刚度”法·采用奇异摄动方法导得壳体屈曲载荷关系曲线和后屈曲平衡路径,并给出完善和非完善,纵向加筋或环向加筋圆柱壳数值算例· 展开更多
关键词 后屈同工 加筋圆柱壳 复合加载 壳体 屈曲
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三维编织复合材料圆柱壳轴压下的屈曲分析 被引量:4
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作者 李志敏 《强度与环境》 2007年第4期14-21,共8页
根据边界层理论,采用奇异摄动法,考虑非线性前屈曲、大挠度和初始几何缺陷的影响,分析在固支条件下,三维四向编织复合材料圆柱壳在轴压下的屈曲和后屈曲性态,讨论了纤维体积含量、几何参数等因素对圆柱壳屈曲的影响。结果表明,纤维体积... 根据边界层理论,采用奇异摄动法,考虑非线性前屈曲、大挠度和初始几何缺陷的影响,分析在固支条件下,三维四向编织复合材料圆柱壳在轴压下的屈曲和后屈曲性态,讨论了纤维体积含量、几何参数等因素对圆柱壳屈曲的影响。结果表明,纤维体积含量、编织角和初始缺陷对编织复合材料圆柱壳的影响是不可忽视的。 展开更多
关键词 三维编织 边界层理论 轴压 屈曲分析 奇异摄动
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热-压电效应对轴压混合层合圆柱曲板后屈曲的影响
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作者 沈惠申 《应用数学和力学》 EI CSCD 北大核心 2004年第1期22-34,共13页
基于Kármán-Donnell型非线性壳体方程,给出带压电作动器混合层合圆柱曲板在机械荷载、电荷载和热荷载作用下的后屈曲分析。假定温度场为均匀分布,电场仅有沿板厚方向的分量E_Z,且假定材料性能常数与温度和电场的变化无关。将... 基于Kármán-Donnell型非线性壳体方程,给出带压电作动器混合层合圆柱曲板在机械荷载、电荷载和热荷载作用下的后屈曲分析。假定温度场为均匀分布,电场仅有沿板厚方向的分量E_Z,且假定材料性能常数与温度和电场的变化无关。将壳体屈曲的边界层理论推广到混合层合圆柱曲板受复合荷载作用的情况。相应的奇异摄动法用于确定圆柱曲板的屈曲荷载和后屈曲平衡路径。分析中同时考虑非线性前屈曲变形和初始几何缺陷的影响。数值算例给出完善和非完善,含整体覆盖或内埋压电作动器正交铺设层合圆柱曲板的后屈曲平衡路径。讨论了温度变化、控制电压、铺层方式、面内边界条件和初始几何缺陷等各种参数变化的影响。 展开更多
关键词 后屈曲 混合层合圆柱曲板 热-压电效应 壳体屈曲的边界层理论 奇异摄动法
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湍流激励下单双层圆柱壳振动特性对比 被引量:7
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作者 魏建辉 陈美霞 +1 位作者 乔志 李飘 《华中科技大学学报(自然科学版)》 EI CAS CSCD 北大核心 2012年第8期44-48,共5页
基于随机理论,采用半解析半数值方法,以单双层圆柱壳模型为例,计算了湍流激励下单双层圆柱壳的输入功率谱密度和振动速度功率谱密度,对比分析了单双层圆柱壳的振动特性.结果表明:随着航速增高,湍流脉动压力激起壳体表面振动速度的自功... 基于随机理论,采用半解析半数值方法,以单双层圆柱壳模型为例,计算了湍流激励下单双层圆柱壳的输入功率谱密度和振动速度功率谱密度,对比分析了单双层圆柱壳的振动特性.结果表明:随着航速增高,湍流脉动压力激起壳体表面振动速度的自功率谱密度幅值变大,趋势基本相同;同一航速下,湍流脉动压力作为面分布力作用在壳体外表面上,由于双壳体的外壳较薄,因此双壳体振动速度响应大于单壳体的. 展开更多
关键词 湍流边界层 单壳体 双壳体 随机理论 半解析半数值法 振动特性
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