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Applications of additive manufacturing in the construction industry - A forward-looking review

机译:增材制造在建筑行业中的应用-前瞻性评论

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Additive manufacturing (AM), also known as 3D printing, fabricates components in a layerwise fashion directly from a digital file. Many of the early applications of AM technologies have been in the aerospace, automotive, and healthcare industries. Building on the advances in AM in these industries, there are several experimental applications of AM in the construction sector. Early investigations suggest that use of AM technologies for construction have the potential to decrease labor costs, reduce material waste, and create customized complex geometries that are difficult to achieve using conventional construction techniques. However, these initial investigations do not cover the full range of potential applications for construction or exploit the rapidly maturing AM technologies for a variety of material types. This paper provides an up-to-date review of AM as it relates to the construction industry, identifies the trend of AM processes and materials being used, and discusses related methods of implementing AM and potential advancements in applications of AM. Examples of potential advancements include use of multi-materials (e.g., use of high-performance materials only in areas where they are needed), in-situ repair in locations that are difficult or dangerous for humans to access, disaster relief construction in areas with limited construction workforce and material resources, structural and non-structural elements with optimized topologies, and customized parts of high value. AM's future in the construction industry is promising, but interdisciplinary research is still needed to provide new materials, new processes, faster printing, quality assurance, and data on mechanical properties before AM can realize its full potential in infrastructure construction.
机译:增材制造(AM)也称为3D打印,可直接从数字文件中以分层方式制造组件。 AM技术的许多早期应用已应用于航空航天,汽车和医疗保健行业。基于AM在这些行业中的进步,在建筑行业中有几种AM的实验应用。早期的研究表明,将AM技术用于建筑可能会降低人工成本,减少材料浪费并创建定制的复杂几何形状,而使用传统的建筑技术很难做到这一点。然而,这些初步研究并未涵盖建筑领域的全部潜在应用,也未涵盖针对各种材料类型迅速成熟的增材制造技术。本文提供了与建筑行业有关的AM的最新综述,确定了AM工艺和所用材料的趋势,并讨论了实施AM的相关方法以及AM应用的潜在进展。可能取得进展的例子包括使用多种材料(例如,仅在需要的区域使用高性能材料),在人类难以接近或危险的地方进行现场维修,在有灾荒的地区进行救灾建设。有限的建筑工人和材料资源,具有优化拓扑的结构和非结构元素以及定制的高价值零件。 AM在建筑行业的前景是光明的,但仍需要进行跨学科研究以提供新材料,新工艺,更快的印刷,质量保证以及有关机械性能的数据,然后AM才能充分发挥其在基础设施建设方面的潜力。

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