高效材料建造用胶合竹材的机器人制造工艺

C. Cheng, Yu-Ting Sheng, Shih-Yuan Wang
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摘要

. 本文旨在介绍一种新型胶合竹材(GLB)板结构的发展和评估计算技术,旨在提高纤维材料的性能和一套数字化制造工艺。具体来说,本文开发了一种将拓扑优化概念引入纤维材料性能的方法。同时,阐述了独特的结构优化设计和制造过程(包括设计过程、数字化工具和辅助设备系统)。为了验证设计,本文将物理模型的重力悬浮试验数据与仿真结果进行了对比。通过数字化制造方法,该项目旨在建立可以提高材料效率的结构元素。进一步,可以建立符合材料经济的GLB楼面结构体系。
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Robotic Fabrication Process of Glued Laminated Bamboo for Material Efficient Construction
. This paper aims to introduce the development of a new-style glue-laminated bamboo (GLB) board structure and evaluating computational technologies aiming to enhance the performance of fibre materials and a set of digital manufacturing processes. Specifically, this paper develops a method to introduce the concept of topology optimisation into the properties of fibre materials. At the same time, it explains the unique structure optimisation design and manufacturing process (including the design process, digital tools and auxiliary equipment system). To test the design, this paper compares the data obtained via the gravity suspension test of the physical model and the simulation. Through digital manufacturing methods, the project aims to establish structural elements that could improve material efficiency. Furthermore, it may establish a GLB floor structure system in line with the material economy.
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