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Failure Analysis and Reinforcement of 3D-printed Concrete Envelope Structure Based on Phase-field Theory (PFT)

机译:基于相场理论(PFT)的3D印刷混凝土信封结构的故障分析与加固

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The permanent 3D-printed concrete envelope formwork can realize the personalized printing of special-shaped envelope structures efficiently with a high degree of automation and obvious advantages. This paper calculated the load-bearing characteristics of the 3D-printed concrete envelope formwork and analyzed the influence of steel supports on its load-bearing characteristics based on PFT. The study showed that the structure would have the highest bearing capacity when the position of steel support reinforcement was near the bisected point of the structure and close to the resultant point of the external load; steel support reinforcement could increase the bearing capacity of structures by nearly 5 times; compared with the single support, the double support could increase the same by nearly 3 times; and triple support reinforcement played a limited role in the improvement of the bearing capacity of structures.
机译:永久3D印刷的混凝土信封模板可以实现高度自动化和明显优势的特殊形状外壳结构的个性化印刷。 本文计算了3D印刷混凝土包络模板的承载特性,并分析了钢支撑对基于PFT承载特性的影响。 该研究表明,当钢支撑加固件的位置靠近结构的分数并接近外部负荷的所得点时,该结构具有最高的承载力; 钢支撑加固可以将结构的承载力增加近5倍; 与单一支持相比,双重载体可能会增加近3次; 三重支持强化在改善结构的轴承能力方面发挥了有限的作用。

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    《E3S Web of Conferences》 |2021年第a期|共7页
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    Fu Xiao; Wu Jie;

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  • 入库时间 2022-08-19 02:24:35

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