Please use this identifier to cite or link to this item: http://elea.unisa.it/xmlui/handle/10556/4283
Title: Mechanical behavior of web-flange junctions of thin-walled pultruded fiber-reinforced polymer profiles: an experimental and numerical evaluation
Authors: Penna, Rosa
Faella, Ciro
Feo, Luciano
Ascione, Francesco
Mosallam, Ayman S.
Keywords: Polymer Matrix Composite (PMC);Mechanical testing;Strength
Issue Date: 25-Jul-2018
Publisher: Universita degli studi di Salerno
Abstract: Fibre-reinforced polymer (FRP) composites represent a class of advanced materials whose use has spread from the aeronautical, mechanical and naval industry to civil infrastructure, which has generated a new set of challenges. Composites have unique features, such as high corrosion resistance, electromagnetic transparency, low maintenance costs and high strength-to-weight ratio. During the past few decades, pultruded fibre-reinforced polymer (PFRP) composites have been used in several successful applications related to corrosive environments such as cooling towers, mining and petrochemical facilities, water and wastewater treatment plants, as well as, off-shore structures. By mid-1990s, major applications of these materials were initiated in the field of seismic and corrosion repair and strengthening of existing reinforced concrete bridges and buildings. Historically, off-the-shelf PFRP composites were developed and designed by the pultrusion industry and were intended for low-stress applications. Recently, composites have been introduced as primary structural members to replace or complement other conventional materials, such as steel, concrete and wood, in critical applications such as bridge decks, pedestrian bridges, and recently in highway bridges and other infrastructural systems. ... [edited by Author]
Description: 2012 - 2013
URI: http://elea.unisa.it:8080/xmlui/handle/10556/4283
http://dx.doi.org/10.14273/unisa-2489
Appears in Collections:Ingegneria delle strutture e del recupero edilizio e urbano

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