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Design framework for the structural analysis of free-form timber plate structures using wood-wood connections

机译:使用木木连接的自由形式木板材结构结构分析的设计框架

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Geometrically complex timber plate structures using wood-wood connections are increasingly designed thanks to digital fabrication. Whereas their fabrication has been automated using computer-aided design programming, research focused on the development of automated numerical tools for their structural analysis has been very limited. This paper presents a method to automate the generation of a finite element model for the analysis of structures with a large number of joints. The model is developed taking the example of recently developed double-layered timber plate shells. Vertical displacements obtained with the semi-rigid spring model proposed are in good agreement with experimental tests performed on small-scale prototypes, whereas rigid modelling of the connections highly underestimates displacements of the structure. Semi-rigidity of the connections in translation as well as in rotation was shown to highly influence the model. The generation of the numerical model was successfully automated for large-scale structures.
机译:由于采用了数字制造,越来越多地设计了使用木木连接的几何形状复杂的木板材结构。尽管它们的制造已使用计算机辅助设计程序实现了自动化,但针对其结构分析的自动化数值工具的开发的研究非常有限。本文提出了一种自动生成有限元模型的方法,用于分析具有大量接缝的结构。以最近开发的双层木板材壳为例开发模型。提出的半刚性弹簧模型获得的竖向位移与在小规模原型上进行的实验测试非常吻合,而连接的刚性建模则大大低估了结构的位移。显示平移和旋转连接的半刚性对模型有很大影响。数值模型的生成已成功地自动用于大型结构。

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