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首页> 外文期刊>Journal of Mechanical Engineering >Evaluation of Substructure Reduction Techniques with Fixed and Free Interfaces
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Evaluation of Substructure Reduction Techniques with Fixed and Free Interfaces

机译:具有固定和自由接口的子结构简化技术的评估

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摘要

Substructure reduction techniques are efficient methods to reduce the size of large models used to analyze the dynamical behavior of complex structures. The most popular approach is a fixed interface method, the Craig-Bampton method (1968), which is based on fixed interface vibration modes and interface constraint modes. In contrast, free interface methods employing free interface vibration modes together with attachment modes are also used, e.g. MacNeal's method (1971) and Rubin's method (1975). The methods mentioned so far assemble the substructures using interface displacements (primal assembly). The dual Craig-Bampton method (2004) uses the same ingredients as the two aforementioned free interface methods, but assembles the substructures using interface forces (dual assembly). This method enforces only weak interface compatibility between the substructures, thereby avoiding interface locking problems as sometimes experienced in the primal assembly approaches using free interface modes. The dual Craig-Bampton method leads to simpler reduced matrices compared to other free interface methods and the reduced matrices are sparse, similar to the classical Craig-Bampton matrices. In this contribution we evaluate the primal (classical) formulation of the Craig-Bampton method, the MacNeal method, the Rubin method and the dual formulation of the Craig-Bampton method. The presented theory and the comparison between the four substructuring methods will be illustrated on the Benfield truss, on a three-dimensional beam frame and on a two-dimensional solid plane stress problem.
机译:子结构简化技术是减少用于分析复杂结构动力学行为的大型模型尺寸的有效方法。最受欢迎的方法是固定界面方法,Craig-Bampton方法(1968),它基于固定界面振动模式和界面约束模式。相反,还使用了采用自由界面振动模式和附接模式的自由界面方法,例如。 MacNeal方法(1971)和Rubin方法(1975)。到目前为止提到的方法是使用界面位移来组装子结构的(主要组装)。双重Craig-Bampton方法(2004)使用与上述两种自由界面方法相同的成分,但是使用界面力组装子结构(双重组装)。此方法仅强制实现子结构之间的弱接口兼容性,从而避免了在使用自由接口模式的原始装配方法中有时会遇到的接口锁定问题。与其他自由接口方法相比,双重Craig-Bampton方法导致简化的简化矩阵,并且简化后的矩阵稀疏,类似于经典的Craig-Bampton矩阵。在此贡献中,我们评估了Craig-Bampton方法,MacNeal方法,Rubin方法的原始(经典)公式以及Craig-Bampton方法的双重公式。提出的理论和四种子构造方法之间的比较将在Benfield桁架,三维梁框架和二维实体平面应力问题上进行说明。

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