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首页> 外文期刊>The Masonry Society journal >Study of Tile Layer Contribution of a Thin-Tile Masonry Dome
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Study of Tile Layer Contribution of a Thin-Tile Masonry Dome

机译:薄砌体穹顶砖层贡献的研究

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摘要

Recently an article was published in this journal by the authors that discussed the component (thin dome webbing and side arches) interactions of a unique masonry structure type known as Guastavino or thin-tile domes. That paper studied a model of a Guastavino dome constructed in the Nebraska State Capitol building. However, the model studied was comprised of only one layer of tiles in the thin dome webbing. This study builds upon that paper by investigating the contribution that additional dome webbing layers of thin tile make to the system's static and modal behavior. A physical model was constructed with three layers of tiles in the thin dome webbing with experimental modal analysis performed on the structure after the completion of each tile layer. The results were used to validate finite element models which were then used to determine each layer's contribution. The constructed physical model was also tested quasi-statically to determine its stiffness at the dome webbing crown. From both the testing and the finite element analysis it was shown that the increase in the thickness of the dome webbing by incorporating additional thin tile layers increased proportionally the mass and stiffness of the structure while preserving the natural frequency of the system. Each additional layer of tiles also increases the vertical stiffness at the crown of the dome of the structure by approximately fifty percent per layer.
机译:最近,作者在该杂志上发表了一篇文章,讨论了一种独特的砖石结构类型(称为Guastavino或薄砖瓦穹顶)的组件(薄拱形腹板和侧拱)相互作用。该论文研究了在内布拉斯加州议会大厦中建造的Guastavino圆顶的模型。但是,所研究的模型仅由薄圆顶织带中的一层瓷砖组成。通过研究薄瓷砖的其他圆顶织带层对系统的静态和模态行为的贡献,本研究以该论文为基础。在薄穹顶织带中使用三层瓷砖构建物理模型,并在完成每一层瓷砖后对结构进行实验模态分析。结果用于验证有限元模型,然后用于确定每一层的贡献。还对构建的物理模型进行了准静态测试,以确定其在拱形织带拱顶处的刚度。从测试和有限元分析都可以看出,通过结合额外的薄瓷砖层来增加穹顶织带的厚度,可以在保持系统固有频率的同时,按比例增加结构的质量和刚度。每增加一层瓷砖,也可以使结构穹顶顶部的垂直刚度每层提高约50%。

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