2 research outputs found

    Use of a curved adhesively bonded anchorage for a pultruded composite cable

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    7th International Conference on FRP Composites in Civil Engineering (CICE), VANCOUVER, CANADA, 20-/08/2014 - 22/08/2014In order to join a plane composite cable to the main structure of a composite footbridge designed within (Caron, 2009), it was decided to investigate structural adhesive bonding. This technique is indeed particularly adapted to composite materials. However structural adhesive bonding induces stress concentrations at the edges of the adhesive joint, which have been studied by a large number of researchers in order to reduce these phenomena and increase the capacity and service life of the bonded joint (Kinloch, 1987). These studies are all concerned with optimizing shear stress transfer in adhesively bonded joints. This paper investigates the role of hydrostatic pressure on the ultimate capacities of common civil engineering adhesives. The conclusions led us to study a new joint geometry, the 'curved' bonded joint that naturally creates compressive stresses on the edge of the bonded joint. Several experimental investigations are presented within this paper to illustrate the optimization. These are quasi-static tests that compare classical shear lap joints to curved joints. Additional testing is currently in progress, but the curved bonded joint seems to hold good prospects and a patent has been filed

    Optimisation du comportement des assemblages collés en utilisant une géométrie courbe

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    National audienceLa technique du collage structural s'avĂšre ĂȘtre de plus en plus utilisĂ©e dans le domaine du gĂ©nie civil que ce soit dans le cadre de travaux de renforcements pour le collage d'Ă©lĂ©ments additionnels ou que ce soit dans le cadre de la rĂ©alisation de nouvelles structures en remplacement des techniques d'assemblages usuelles. On s'intĂ©resse ici Ă  l'optimisation du transfert des efforts par cette technique d'assemblage en Ă©tudiant le rĂŽle de la pression hydrostatique sur les capacitĂ©s ultimes des adhĂ©sifs utilisĂ©s. Celle-ci permet de nous intĂ©resser Ă  une nouvelle forme de joint collĂ©, Ă  savoir, le joint " courbe " qui permet de crĂ©er naturellement une composante de compression hors plan du joint collĂ© en extrĂ©mitĂ©. Un brevet vient d'ĂȘtre dĂ©posĂ© pour cette nouvelle gĂ©omĂ©trie, et des essais additionnels sont en cours de rĂ©alisation, mais le joint courbe semble prometteur
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