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Failure particularities of adhesively bonded joints between pultruded GFRP composite profiles

机译:拉挤GFRP复合型材之间粘合接头的故障特征

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The failure particularities of the adhesively bonded joints between fibre reinforced polymer (FRP) composite elements represent a set of critical parameters in assessing the performance of these systems. If the failure process is not properly evaluated and controlled, it can lead to significant decrease of the overall efficiency of the joint. Usually, if the bond length is greater than the effective one, the failure process for these types of joints can be either progressive, if the initial failure is initiated in the adhesive layer, or brittle, if the failure occurs in the FRP elements. The ultimate failure occurs if any stress or strain component reaches a limit state, referring to the components (adherents and adhesive) or to the interfaces between them. This paper presents some particularities related to the failure process of the adhesively bonded joints between pultruded glass fibre reinforced polymer (GFRP) composite members. The results were obtained through a complex experimental program conducted at the Faculty of Civil Engineering and Building Services from Iasi, where the structural behaviour of adhesively bonded single lap joins (SLJ) and thick adherents' joints (TAJ) between pultruded GFRP composite flat profiles was studied. For the experimental program, 30 specimens were prepared by varying the connection type (SLJ, TAJ), the bond length (70, 100, 150 mm), the adhesive type and its thickness (1, 2, 3 mm). All specimens were loaded in axial tension, up to failure and the characteristic failure modes were investigated by in-depth microscopic analysis of the failure surfaces.
机译:纤维增强聚合物(FRP)复合元件之间的粘合接头的故障特征在评估这些系统的性能方面代表了一组关键参数。如果未正确评估和控制故障过程,则可能导致关节整体效率的显着降低。通常,如果键合长度大于有效性,则如果在粘合剂层中启动初始故障,或者在FRP元件中发生故障,则这些类型的关节的故障过程可以是渐进的。如果任何应力或应变成分达到极限状态,则会发生最终失败,从而指代组分(粘附剂和粘合剂)或它们之间的界面。本文呈现了与覆盖玻璃纤维增​​强聚合物(GFRP)复合材料构件之间的粘合接头的故障过程有关的一些特殊性。通过在来自IASI的土木工程和建筑服务部位进行的复杂实验计划获得的结果,其中粘接的单圈加入(SLJ)和厚的追随者之间的结构行为和Pulruded GFRP复合平板型(SLJ)和厚的粘附性的关节(TAJ)是研究过。对于实验程序,通过改变连接型(SLJ,TAJ),粘合长度(70,100,150mm),粘合剂型及其厚度(1,2,3mm)来制备30个样本。所有标本均匀轴张力,通过对破坏表面的深入微观分析研究了失效,并且通过深入的微观分析研究了特征性失效模式。

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