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Three Dimensional Coupling between Elastic and Thermal Fields in the Static Analysis of Multilayered Composite Shells 被引量:1
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作者 Salvatore Brischetto Roberto Torre Domenico Cesare 《Computer Modeling in Engineering & Sciences》 SCIE EI 2023年第9期2551-2594,共44页
This new work aims to develop a full coupled thermomechanical method including both the temperature profile and displacements as primary unknowns of the model.This generic full coupled 3D exact shell model permits the... This new work aims to develop a full coupled thermomechanical method including both the temperature profile and displacements as primary unknowns of the model.This generic full coupled 3D exact shell model permits the thermal stress investigation of laminated isotropic,composite and sandwich structures.Cylindrical and spherical panels,cylinders and plates are analyzed in orthogonal mixed curved reference coordinates.The 3D equilibrium relations and the 3D Fourier heat conduction equation for spherical shells are coupled and they trivially can be simplified in those for plates and cylindrical panels.The exponential matrix methodology is used to find the solutions of a full coupled model based on coupled differential relations with respect to the thickness coordinate.The analytical solution is based on theories of simply supported edges and harmonic relations for displacement components and sovra-temperature.The sovra-temperature magnitudes are directly applied at the outer faces through static state hypotheses.As a consequence,the sovra-temperature description is assumed to be an unknown variable of themodel and it is calculated in the sameway as the three displacements.The final systemis based on a set of coupled homogeneous differential relations of second order in the thickness coordinate.This system is reduced in a first order differential relation system by redoubling the number of unknowns.Therefore,the exponential matrix methodology is applied to calculate the solution.The temperature field effects are evaluated in the static investigation of shells and plates in terms of displacement and stress components.After an appropriate preliminary validation,new benchmarks are discussed for several thickness ratios,geometrical data,lamination sequences,materials and sovra-temperature values imposed at the outer faces.Results make evident the accordance between the uncoupled thermo-mechanical model and this new full coupled thermo-mechanical model without the need to separately solve the Fourier heat conduction relation.Both effects connected with the thickness layer and the related embedded materials are included in the conducted thermal stress analysis. 展开更多
关键词 Three-dimensional exact thermo-elastic shellmodel full coupled thermoelasticity three-dimensional fourier heat conduction relation plate and shell geometries laminated and sandwich configurations
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潜艇典型结构受多物体撞击数值仿真的试验验证 被引量:3
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作者 刘俊杰 万正权 +1 位作者 黄进浩 祁恩荣 《中国造船》 EI CSCD 北大核心 2015年第2期64-73,共10页
以双壳体潜艇的典型结构—双层环肋圆柱壳受多物体撞击为研究对象,开展了模型试验,并与仿真计算结果进行对比,验证了有限元数值仿真方法对求解该类问题的有效性。还从结构损伤变形、撞击力历程和能量转换等方面对多物体撞击壳体过程的... 以双壳体潜艇的典型结构—双层环肋圆柱壳受多物体撞击为研究对象,开展了模型试验,并与仿真计算结果进行对比,验证了有限元数值仿真方法对求解该类问题的有效性。还从结构损伤变形、撞击力历程和能量转换等方面对多物体撞击壳体过程的动响应特性进行了分析。研究成果将为潜艇抗撞能力的评估及抗撞结构的设计提供参考。 展开更多
关键词 潜艇受撞 有限元数值仿真 双层环肋圆柱壳 模型试验
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