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THE APPLICATION OF WELD-BASED ADDITIVE MANUFACTURING STEEL TO STRUCTURAL ENGINEERING

机译:焊接添加剂制造钢在结构工程中的应用

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摘要

The present work aims at providing the first considerations upon the application of innovative manufacturing technology for civil engineering purposes. In particular, among the 3D printing processes currently available, Weld-Based Additive Manufacturing (WAM) results to be the most suitable technique for the realization of innovative structural forms in metal material. The great potential of taking the printing head "out of the box" allows for the construction of innovative shapes by adding layer upon layer of welded steel. In particular, the study is focused on the realization of the first 3D-printed steel footbridge by a Dutch company held in Amsterdam, called MX3D, and its Additive manufacturing process, which results in specific constraints and limitations to be taken into account for design purposes. First, the design issues are described, by considering the printing parameters to be adopted for the realization of large-dimensions structures, and then the implications in terms of specific geometrical and mechanical characteristics are studied. These first engineering evaluations are intended to pave the way towards the development of a ground-breaking technology for the fully-automated design and construction of novel 3D-printed building structures through innovative robotic manufacturing processes whose parameters are still not fully known.
机译:目前的工作旨在提供对民办工程目的的创新制造技术的应用提供第一次考虑因素。特别地,在当前可用的3D印刷过程中,基于焊接的添加剂制造(WAM)结果是实现金属材料中创新结构形式的最合适的技术。采用印刷头“开箱即用”的潜力允许通过在焊接钢层上添加层来构造创新形状。特别是,该研究专注于通过在阿姆斯特丹(Amsterdam)举行的荷兰公司,称为MX3D的荷兰公司及其添加剂制造过程的实现,这导致特定的限制和局限性地考虑到设计目的。首先,通过考虑用于实现大维结构的打印参数,描述了设计问题,然后研究了特定几何和机械特性方面的影响。这些第一个工程评估旨在通过创新的机器人制造过程对新型3D印刷建筑结构的全自动设计和构造进行奠基技术的发展,其参数尚未完全知道。

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