Digital Design and Fabrication of Surface Structures

M. Bechthold
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引用次数: 5

Abstract

This paper presents a study in digital design and manufacturing of shells, which are material-efficient systems that generate their load-bearing capacity through curvature. Their complex shapes are chal­lenging to build, and the few current shell projects employ the same shape repetitively in order to reduce the cost of concrete formwork. Can digital design and manufacturing technology make these systems suitable for the needs of the 21st century? The research developed new digitally-driven fabrication processes for Wood-Foam Sandwich Shells and Ferrocement-Concrete Sandwich Shells. These are partially pre-fabricated in order to allow for the application of Computer-Numerically Controlled (CNC) technology. Sandwich systems offer advantages for the digitally-enabled construction of shells, while at the same time improving their structural and thermal performance. The research defines design and manufacturing processes that reduce the need for repetition in order to save costs. Wood-Foam Sandwich shells are made by laminating wood-strips over a CNC-milled foam mold that eventually becomes the structural sandwich core. For Ferrocement-Concrete sandwich shells, a two-stage process is presented: pre-fabricated ferrocement panels become the permanent formwork for a cast-in-place concrete shell. The design and engineering process is facilitated through the use of parametric solid modeling envi­ronments. Modeling macros and integrated Finite-Element Analysis tools streamline the design process. Accuracy in fabrication is maintained by using CNC techniques for the majority of the shaping processes. The digital design and manufacturing parameters for each process are verified through design and fabrication studies that include prototypes, mockups and physical scale models.
表面结构的数字化设计与制造
本文介绍了壳体的数字化设计和制造研究,这是一种通过曲率产生承载能力的材料高效系统。它们复杂的形状是具有挑战性的,为了降低混凝土模板的成本,目前少数外壳项目重复使用相同的形状。数字化设计和制造技术能使这些系统适应21世纪的需求吗?该研究开发了新的数字驱动的泡沫木夹层壳和铁水泥夹层壳的制造工艺。这些部分是预制的,以便于计算机数字控制(CNC)技术的应用。夹层系统为壳的数字化构造提供了优势,同时改善了它们的结构和热性能。该研究定义了设计和制造过程,以减少重复的需要,以节省成本。木质泡沫三明治壳是通过将木条层压在cnc铣削泡沫模具上制成的,最终成为结构夹层核心。对于铁混凝土夹层壳,提出了两个阶段的过程:预制铁水泥板成为现浇混凝土壳的永久模板。通过使用参数化实体建模环境,便于设计和工程过程。建模宏和集成的有限元分析工具简化了设计过程。在制造精度是通过使用数控技术为大多数成型过程保持。通过设计和制造研究,包括原型,实体模型和物理比例模型,验证每个过程的数字设计和制造参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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