首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >EVALUATION OF IN-PLANE AND OUT-OF-PLANE STRESSES IN COMPOSITE STRUCTURES SUBJECTED TO LARGE DISPLACEMENTS/ROTATIONS
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EVALUATION OF IN-PLANE AND OUT-OF-PLANE STRESSES IN COMPOSITE STRUCTURES SUBJECTED TO LARGE DISPLACEMENTS/ROTATIONS

机译:在经受大型位移/旋转的复合结构中的平面内和面内应力的评估

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In many engineering applications, such as civil, mechanical and aerospace, large displacements and rotations may occur within the working composite structures, due to the extreme loading conditions that may occur during service. This afflicts the equilibrium states of the structures and could change them, eventually, in a catastrophic manner. Therefore, it may be necessary to predict the nonlinear stress conditions of the laminated structures through numerical simulation, in order to prevent the failure of the entire system. To take into account these conditions, a geometrical nonlinear analysis has to be performed. The nonlinear framework proposed in this work is based on the Carrera Unified Formulation (CUF). CUF is a hierarchical formulation that considers the order of the structural model as an input of the analysis, so that no specific formulations are needed to obtain any refined model. The possibility to generate high-order structural elements makes possible to analyze any loading cases, including the post-buckling situation. Furthermore, this methodology allows to evaulate of the full three-dimensional stress tensor in laminated structures. In fact, as CUF is able to calculate the stiffness matrix in an automatic manner, there is no need to include any simplification to evaluate the out-of-plane components of the stress tensor.
机译:在许多工程应用中,如民事,机械和航空航天,在工作复合结构中可能发生大型位移和旋转,这是由于在服务期间可能发生的极端装载条件。这折磨了结构的均衡状态,并且可以以灾难性的方式改变它们。因此,可能需要通过数值模拟预测层叠结构的非线性应力条件,以防止整个系统的故障。要考虑到这些条件,必须进行几何非线性分析。本作作品中提出的非线性框架基于Carrera统一制剂(CUF)。 CUF是一种分层制剂,其认为结构模型的顺序作为分析的输入,因此不需要特定的制剂来获得任何细化模型。产生高阶结构元素的可能性可以分析任何装载案例,包括后屈曲情况。此外,该方法允许在层压结构中的全三维应力张量的进化。事实上,作为CUF能够计算以自动的方式刚度矩阵,也没有必要包括任何简化评估应力张量的外的平面组件。

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