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Evaluation of joining methods for novel timber-aluminum composite profiles for innovative louver windows and facade elements

机译:评价新型百叶窗和立面元素的新型木铝复合型材的连接方法

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摘要

The demand for efficient buildings requires improvement in window and facade design. Aluminum and steel dominate the solutions for large facades while wood is used on a much smaller scale. In order to widen the scope of wood application in facades, this paper assessed novel timber-aluminum composite profiles which have been developed for louver windows. The research focused on two different technologies suitable for joining wood to other parts of the louver window. First, the study assessed the adhesive bond between the glass unit and the wooden part of the profile. The evaluation focused on seven different wood substrates ranging from solid softwoods and hardwoods to wood-based products and modified wood. Second, a specific rolling technique was applied to join the wooden section to the aluminum component. The technology was taken from the prefabrication process of conventional composite profiles. There, plastic insulating bars are clamped onto the aluminum profiles. This joining method had not been applied to timber so far. The results show that beech wood has the most suitable properties for use in such composite profiles. The composite frames examined provide a lower energy footprint compared to standard solutions. They enable a sustainable yet durable solution for the building envelope.
机译:对高效建筑的需求要求改善窗户和立面的设计。铝和钢主导着大型外墙的解决方案,而木材的使用规模则小得多。为了扩大木材在外墙中的应用范围,本文评估了已开发用于百叶窗的新型木材-铝复合型材。研究集中在两种不同的技术上,这些技术适合将木材连接到百叶窗的其他部分。首先,研究评估了玻璃单元和型材的木质部分之间的粘合力。评估集中在七种不同的木材基材上,从实木软木和硬木到木质产品和改性木材。其次,采用了一种特殊的轧制技术将木型材连接到铝部件上。该技术取材于常规复合型材的预制过程。在那里,将塑料绝缘条夹在铝型材上。到目前为止,这种连接方法尚未应用于木材。结果表明,榉木具有最适合用于这种复合型材的性能。与标准解决方案相比,所检查的复合框架具有更低的能耗。它们为建筑围护结构提供了可持续而持久的解决方案。

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