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UHPFRC Pavilion of 3-Dimentional Pentagon Tiling

机译:三维五角大楼百草的UHPFRC亭

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The pavilion of ultra-high performance fiber reinforced concrete(UHPFRC)was fabricated in the form of 3-dimensional pentagonal tiling by wood formwork.Mann/McLoud/Von Derau discovered a 15th monohedral tiling convex pentagon in 2015 using a computer algorithm.Each unit of UHPFRC pentagon in 2-dimensional plane is the same but they are changed into different shapes in 3-dimensional vault type for the pavilion.To generate the 3-D shape two attractor points were located on the ground level.The transformation from 2-dimensional pentagonal tiling into 3-D vault was generated by Reino~R and Grass hoper~R.The data of formwork for units of UHPFRC was generated and then fabricated by wood.The fabrication of wood formwork relies on 6-axis robot cutting.To give structural stability of the vault the thickness of lower units was increased.The advantage of flow of UHPFRC enabled us to place UHPFRC into each of wood formworks.The lateral pressure of young UHPFRC was controlled by external screw jacks to avoid the deformation of wood formworks during curing.The connections between units relied on bolts and elastic pads.The connection behavior of bolts to transfer shear was guaranteed by the experimental program for strength.
机译:超高性能纤维混凝土(UHPFRC)的展示以三维五角形瓷砖的形式制造,木制模板.Mann / Mcloud / von Derau在2015年发现了第15张Monohedraling Convex Pentagon,使用计算机算法.ECH在二维平面中的UHPFRC五边形是相同的,但它们在亭子的三维拱顶类型中变成了不同的形状。生成3-D形两个吸引点位于地面上。从2-转换由Reino〜R和草Hoper〜R产生三维五边形百帘。产生UHPFRC单位的模板数据,然后由木材制造。木材模板的制造依赖于6轴机器人切削。至给出拱顶的结构稳定性增加了较低单位的厚度。UHPFRC流动的优点使我们能够将UHPFRC放入每个木材模板中。年轻UHPFRC的横向压力由外部螺钉千斤顶控制为了避免在固化过程中木材的变形。单位之间的连接依赖于螺栓和弹性垫。通过实验计划得到强度的实验计划,保证了螺栓转移剪切的连接行为。

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