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A 3D printed bio-composite removable connection system for bamboo spatial structures

机译:用于竹空间结构的3D印刷生物复合可拆卸连接系统

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A 3D printed bio-composite removable connection system for bamboo space structures is introduced in this paper. The system consists of a removable clipping connection for raw bamboo structures, adapted to the European market. The use of parametric design and 3D printing enables to have both design and production processes adapted to the non-uniform bamboo culm dimensions, while being standardisable. The resulting design possibilities are very large due to the high adaptability of the whole process. The efficiency of the introduced connection system has been validated experimentally. Standardized specimens of the bio-composite material, a connection detail (clip), and a structural component were examined experimentally to validate the design. A pyramidal structure made of bamboo culms of 30 mm of diameter and 4 mm in thickness was able to sustain a load of 7 kN in compression, proving the relevance of the proposed connection system. A finite element model was developed to model the clip behaviour and successfully compared to the experimental results.
机译:本文介绍了一种用于竹空间结构的3D印刷生物复合可拆卸连接系统。该系统包括用于生竹结构的可拆卸剪切连接,适用于欧洲市场。使用参数设计和3D打印使得能够具有适应非均匀竹秆尺寸的设计和生产工艺,同时是标准化的。由于整个过程的高适应性,所产生的设计可能性非常大。引入的连接系统的效率已经通过实验验证。实验检查生物复合材料,连接细节(夹子)和结构组分的标准化标本以验证设计。由直径为30毫米和4毫米的竹秆制成的金字塔结构能够在压缩中维持7 kn的负载,证明了所提出的连接系统的相关性。开发了有限元模型以模拟夹子行为并成功与实验结果相比。

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