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AM Envelope. The potential of Additive Manufacturing for facade constructions

机译:AM信封。外墙建筑增材制造的潜力

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This dissertation shows the potential of Additive Manufacturing (AM) for the development of building envelopes: AM will change the way of designing facades, how we engineer and produce them. To achieve today’s demands from those future envelopes, we have to find new solutions. New technologies offer one possible way to do so. They open new approaches in designing, producing and processing building construction and facades. Finding the one capable of having big impact is difficult – Additive Manufacturing is one possible answer. The term ‘AM Envelope’ (Additive Manufacturing Envelope) describes the transfer of this technology to the building envelope. Additive Fabrication is a building block that aids in developing the building envelope from a mere space enclosure to a dynamic building envelope. First beginnings of AM facade construction show up when dealing with relevant aspects like material consumption, mounting or part’s performance. From those starting points several parts of an existing post-and-beam fa?ade system were optimized, aiming toward the implementation of AM into the production chain. Enhancements on all different levels of production were achieved: storing, producing, mounting and performance. AM offers the opportunity to manufacture facades ‘just in time’. It is no longer necessary to store or produce large numbers of parts in advance. Initial investment for tooling can be avoided, as design improvements can be realized within the dataset of the AM part. AM is based on ‘tool-less’ production, all parts can be further developed with every new generation. Producing tool-less also allows for new shapes and functional parts in small batch sizes – down to batch size one. The parts performance can be re-interpreted based on the demands within the system, not based on the limitations of conventional manufacturing. AM offers new ways of materializing the physical part around its?function. It leads toward customized and enhanced performance. Advancements can for example be achieved in the semi-finished goods: more effective glueing of window frames can be supported by Snap-On fittings. Solving the most critical part of a free-form structure and allowing for a smart combination with the approved standards has a great potential, as well. Next to those product oriented approaches toward future envelopes, this thesis provides the basic knowledge about AM technologies and AM materials. The basic principle of AM opens a fascinating new world of engineering, no matter what applications can be found: to ‘design for function’ rather to ‘design for production’ turns our way of engineering of the last century upside down. A collection of AM applications therefore offers the outlook to our (built) future in combination with the acquired knowledge. AM will never replace established production processes but rather complement them where this seems practical. AM is not the proverbial Swiss-army knife that can resolve all of today’s fa?ade issues! But it is a tool that might be able to close another link in the ‘file-to-factory chain’. AM allows us a better, more precise and safer realization of today’s predominantly free designs that are based on the algorithms of the available software. With such extraordinary building projects, the digital production of neuralgic system components will become reality in the near future – today, an AM Envelope is close at hand. Still, ‘printing’ entire buildings lies in the far future; for a long time human skill and craftsmanship will be needed on the construction site combined with high-tech tools to translate the designers’ visions into reality. AM Envelope is one possible result of this!
机译:这篇论文展示了增材制造(AM)在开发建筑围护结构方面的潜力:增材制造将改变外墙的设计方式,我们如何设计和生产外墙。为了从未来的信封中满足当今的需求,我们必须寻找新的解决方案。新技术提供了一种可行的方法。他们开辟了设计,生产和加工建筑结构和外墙的新方法。找到一个能够产生巨大影响的人是困难的–增材制造是一个可能的答案。术语“ AM信封”(增材制造信封)描述了将该技术转移到建筑物围护结构中的过程。增材制造是一种构建模块,有助于将建筑围护结构从单纯的空间围护结构发展为动态的建筑围护结构。当涉及材料消耗,安装或零件性能等相关方面时,AM外墙施工的最初开始就显现出来。从这些出发点,对现有光束后立面系统的几个部分进行了优化,旨在将AM应用于生产链。在所有不同生产水平上均实现了增强:存储,生产,安装和性能。 AM提供了“及时”制造外墙的机会。不再需要预先存储或生产大量零件。由于可以在AM零件的数据集中实现设计上的改进,因此可以避免最初的模具投资。 AM是基于“免工具”生产的,所有零件都可以在新一代产品中进一步开发。无需工具即可生产,甚至可以小批量生产新的形状和功能部件,甚至可以批量生产。可以根据系统内的需求而不是基于常规制造的限制来重新解释零件性能。 AM提供了围绕功能实现实体部分的新方法。它导致定制和增强的性能。例如,可以在半成品上取得进步:卡扣式配件可以支撑窗框更有效的粘合。解决自由格式结构的最关键部分并允许与已批准的标准进行巧妙的组合也具有巨大的潜力。除了面向未来信封的面向产品的方法外,本文还提供了有关增材制造技术和增材制造材料的基础知识。无论找到什么应用,AM的基本原理都为人们打开了一个引人入胜的工程新世界:“为功能设计”而不是“为生产设计”使我们上世纪的工程学方式发生了翻天覆地的变化。因此,结合所获得的知识,一系列AM应用程序将为我们(已建成的)未来提供前景。 AM绝不会取代已建立的生产流程,而是在可行的情况下对其进行补充。 AM并不是能解决当今所有外观问题的众所周知的瑞士军刀!但这是一个工具,可以关闭“文件到工厂链”中的另一个链接。通过AM,我们可以更好,更精确,更安全地实现基于可用软件算法的当今主要免费的设计。通过此类非凡的建筑项目,神经系统系统组件的数字化生产将在不久的将来成为现实-如今,AM Envelope即将面世。尽管如此,在不久的将来仍要“打印”整个建筑物。长期以来,将需要在施工现场结合高科技工具将设计师的构想变为现实,从而实现人类的技能和精湛的工艺。 AM Envelope是此的一个可能结果!

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