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采用机器人无芯长丝缠绕制造的复合穹顶亭的材料监测

Material Monitoring of a Composite Dome Pavilion Made by Robotic Coreless Filament Winding.

作者信息

Mindermann Pascal, Rongen Bas, Gubetini Drilon, Knippers Jan, Gresser Götz T

机构信息

Institute for Textile and Fiber Technologies, University of Stuttgart, Pfaffenwaldring 9, 70569 Stuttgart, Germany.

German Institutes of Textile and Fiber Research Denkendorf, Körschtalstraße 26, 73770 Denkendorf, Germany.

出版信息

Materials (Basel). 2021 Sep 23;14(19):5509. doi: 10.3390/ma14195509.

Abstract

A hemispherical research demonstration pavilion was presented to the public from April to October 2019. It was the first large-scale lightweight dome with a supporting roof structure primarily made of carbon- and glass-fiber-reinforced composites, fabricated by robotic coreless filament winding. We conducted monitoring to ascertain the sturdiness of the fiber composite material of the supporting structure over the course of 130 days. This paper presents the methods and results of on-site monitoring as well as laboratory inspections. The thermal behavior of the pavilion was characterized, the color change of the matrix was quantified, and the inner composition of the coreless wound structures was investigated. This validated the structural design and revealed that the surface temperatures of the carbon fibers do not exceed the guideline values of flat, black façades and that UV absorbers need to be improved for such applications.

摘要

一个半球形的研究示范展馆于2019年4月至10月向公众开放。它是首个主要由碳和玻璃纤维增强复合材料制成支撑屋顶结构的大型轻质穹顶,采用机器人无芯长丝缠绕工艺制造。我们进行了监测,以确定支撑结构的纤维复合材料在130天内的坚固性。本文介绍了现场监测以及实验室检查的方法和结果。对展馆的热行为进行了表征,对基体的颜色变化进行了量化,并研究了无芯缠绕结构的内部组成。这验证了结构设计,并表明碳纤维的表面温度不超过黑色平面外墙的指导值,并且此类应用中紫外线吸收剂需要改进。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/98fa/8509501/70d8e00770c3/materials-14-05509-g001.jpg

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