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首页> 外文期刊>International Journal of Adhesion & Adhesives >Adhesive joints for structural timber/glass applications: Experimental testing and evaluation methods
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Adhesive joints for structural timber/glass applications: Experimental testing and evaluation methods

机译:木材/玻璃建筑用胶粘剂接头:实验测试和评估方法

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摘要

A study of three different adhesives, silicone, acrylate and polyurethane, intended for adhesive joints in structural timber/glass applications is presented in this paper. Intentionally, adhesives with a wide range of properties were chosen. The adhesive bonds between timber and glass were tested both in tension and in shear with a bond area of 800 mm~2. Special fixtures were designed both for gluing and testing the specimens. The results include strength and failure type of the adhesive bond as well as deformation of the bond lines, measured with LVDTs and a non-contact optical 3D-deformation measuring system used in combination with finite element modelling in order to obtain detailed information about the behaviour. Of the tested adhesives, the acrylate (SikaFast 5215) provided the largest strength, both in tension and shear. The mean strength obtained for this adhesive bond was 3.0 MPa in tension and 4.5 MPa in shear. Further, it is demonstrated how rotations in the specimen during the test can be detected with the optical measuring system and how finite element modelling can be used to study the stress distribution internally in the adhesive bond. One conclusion obtained from the combination of results from the optical measuring system and finite element modelling is that the behaviour of the silicone adhesive is highly influenced by its near incompressible behaviour.
机译:本文介绍了三种不同的粘合剂,有机硅,丙烯酸酯和聚氨酯,用于建筑木材/玻璃应用中的粘合缝。故意选择具有广泛性能的粘合剂。木材和玻璃之间的粘合力在拉伸和剪切力下均进行了测试,粘合面积为800 mm〜2。设计了专用夹具来粘合和测试样本。结果包括粘合强度和破坏类型以及粘合线的变形,通过LVDT和非接触式光学3D变形测量系统与有限元建模结合使用,以获取有关行为的详细信息。在测试的粘合剂中,丙烯酸酯(SikaFast 5215)在拉伸和剪切方面均提供了最大的强度。对于该粘合剂结合所获得的平均强度在拉伸下为3.0MPa,在剪切下为4.5MPa。此外,还演示了如何使用光学测量系统检测样品在测试过程中的旋转,以及如何使用有限元建模来研究粘合剂内部的应力分布。从光学测量系统的结果和有限元建模的结果中得出的一个结论是,有机硅胶粘剂的行为受其几乎不可压缩的行为的强烈影响。

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