Fused glass deposition modelling for applications in the built environment

Fused glass deposition modelling for applications in the built environment
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适用于建筑环境应用的熔融玻璃沉积建模

DOI:
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发表时间:
2018
影响因子:
1.1
通讯作者:
J. Schneider
J. Schneider
中科院分区:
材料科学4区
文献类型:
--
作者:
M. Seel;R. Akerboom;U. Knaack;M. Oechsner;P. Hof;J. Schneider

文献摘要

被引文献

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对于建筑环境和工程师来说,玻璃是一种不可或缺的材料,具有独特的性能。最近的发展表明,基于重复次数相对较少的生产和将技术创新应用于先进建筑的趋势,附加制造技术在建筑行业中具有潜在的市场。本文主要研究在玻璃基板上熔融玻璃丝的可能性,以便为在建筑行业中的应用创造一种能够在玻璃基板上打印3D玻璃的工艺提供科学基础。这些熔融部件可以消除玻璃窗接缝的孔洞,包括相关的缺点。此外,熔融沉积玻璃组件可以作为平板玻璃的潜在增强体。为此,对钠钙硅酸盐玻璃和硼硅酸盐玻璃的熔融进行了研究。根据这些经验,制作了不同玻璃厚度的样品,并测试了熔融部件的弯曲强度。用偏振图像、三维计算机断层扫描、显微镜和能量色散X射线光谱分析了所制造的样品。本文对研究结果进行了描述、介绍和讨论,并论证了通过熔融玻璃接头传递荷载在原则上是可能的。
For the built environment and for engineers, glass is an indispensable material with unique properties. Recent developments have shown that there is a potential market for additive manufacturing technology in the building industry, based on the production with a relatively small amount of repetitions and the tendency of applying technological innovations for advanced buildings. This paper focusses on the potential of fusing glass filaments on a glass base plate in order to develop a scientific base to create a process that is able to print 3D glass on glass plates for applications in the building industry. These fused components could eliminate boreholes for joints in glass panes including related disadvantages. Also, the fused deposition glass components can be a potential reinforcement of flat glass. Therefore, the fusing of soda lime silicate glass and borosilicate glass has been investigated. Based on these experiences, samples with different glass thicknesses are manufactured and the fused components are tested for their bending strength. The manufactured samples are analysed with polarized images, 3D computer tomography, microscopy and energy dispersive X‐ray spectroscopy. This paper describes, presents and discusses the results of the investigations, and demonstrates that load transfer via fused glass joints is possible in principle.