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首页> 外文期刊>International Journal of Mechanical Sciences >Coupled thermo-mechanical finite element models with node-dependent kinematics for multi-layered shell structures
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Coupled thermo-mechanical finite element models with node-dependent kinematics for multi-layered shell structures

机译:耦合热机械有限元模型,具有多层壳结构的节点依赖性运动学

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摘要

Node-dependent Kinematic (NDK) shell finite element (FE) formulations are presented for the steady-state thermomechanical analysis of laminated structures. The displacements and temperature change are treated as primary variables in the FE models and are directly solved through the coupled thermo-mechanical models. The enforcement of distributed temperature boundary conditions on the top or the bottom surface of hierarchical shell elements is conducted through the Linear Least Squares. The effectiveness of the proposed FE approaches is verified by comparing the results against those from the literature. The application of adaptive refinement approach based on the hierarchical elements and NDK to build FE models with optimal efficiency is demonstrated through numerical examples.
机译:提供节点依赖性运动(NDK)壳有限元(Fe)制剂用于层叠结构的稳态热机械分析。 位移和温度变化被视为Fe模型中的主要变量,并通过耦合的热机械模型直接解决。 分布式温度边界条件的在分层壳元件的顶部或底表面上的执行通过线性最小二乘来进行。 通过将结果与文献中的结果进行比较来验证所提出的Fe方法的有效性。 通过数值示例演示了基于分层元素和NDK基于分层元素和NDK构建FE模型的自适应细化方法的应用。

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