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Nonlinear analysis of complex structures via residual flexibility representation of individual components

机译:通过单个组件的剩余柔韧性表示对复杂结构进行非线性分析

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An approach for the analysis of systems comprising muluiple components subjected to dynamic loading is presented. It allows for an efficient treatment, step-wise in time, of linear and nonlinear connections between components. The constraint forces at the junctions of the components are computed directly without the synthesis of component modes or the determination of system modes. This is accomplished by expressing the displacements at the junction coordinates of the components in terms of the retained component unconstrained normal modes and the residual flexibility of the unretained modes, in conjunction with a Newmark algorithm representation of modal kinematics within a time step. This leads to a set of junctionsized equations, similar in form to that of the flexibility formulation in statics, in terms of the unknown junction forces. For the linear problem, the connection forces are solved for directly. For the nonlinear problem, the connection forces are dtermined in an iterative manner. The approach is applied to a problem involving the dynamic response of a Mini-Pressurized Logistic Module (MPLM) rack in a Space Shuttle lift-off event. The results of the proposed approach are compared with pertinent results derived by relying on Component-Mode synthesis.
机译:提出了一种用于分析包括多个承受动态载荷的组件的系统的方法。它允许按时间逐步对组件之间的线性和非线性连接进行有效处理。可以直接计算零部件交界处的约束力,而无需合成零部件模式或确定系统模式。这是通过在时间步长内结合模态运动学的Newmark算法表示形式来表示的,即根据保留的组件不受约束的法向模式和未保留的模式的剩余柔韧性表示组件的交点坐标处的位移。这导致了一组结点大小的方程,就未知的结点力而言,其形式类似于静力学中的柔韧性公式。对于线性问题,直接解决连接力。对于非线性问题,以迭代方式确定连接力。该方法适用于涉及航天飞机升空事件中超小型物流模块(MPLM)机架动态响应的问题。将所提出的方法的结果与依赖于组件模式综合的相关结果进行了比较。

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