0000000000524724

AUTHOR

G. Galtieri

showing 5 related works from this author

Pull-off adhesion of hybrid glass-steel adhesive joints in salt fog environment

2016

The aim of this paper was to evaluate the durability behaviour of glass/steel adhesive joints exposed to salt fog environmental conditions for ten weeks, according to ASTM B117 standard. To this scope, pull-off mechanical tests were carried out in order to evaluate the performances evolution and damage phenomena of the adhesive joints during the ageing exposition. Two different types of adhesives were compared (i.e. epoxy and polyurethane ones). Moreover, the effects of the glass surface condition and the presence of a basalt mat layer within the adhesive thickness were evaluated. The mechanical performances were related with the occurred failure mechanisms. Epoxy-based joints showed higher…

adhesiveMaterials sciencegenetic structuresenvironmental degradationSalt (chemistry)02 engineering and technologybasalt fibre0203 mechanical engineeringMaterials ChemistryComposite materialchemistry.chemical_classificationHybrid jointSurfaces and InterfacesGeneral ChemistryAdhesion021001 nanoscience & nanotechnologyDurabilityPull-offsalt fogSurfaces Coatings and Filmspull-offSettore ING-IND/22 - Scienza E Tecnologia Dei Materiali020303 mechanical engineering & transportschemistryMechanics of MaterialsAdhesiveadhesives; basalt fibre; environmental degradation; Hybrid joints; pull-off; salt fog; Mechanics of Materials; Surfaces Coatings and Films; Materials Chemistry2506 Metals and Alloys; Chemistry (all); Surfaces and Interfaces0210 nano-technologyJournal of Adhesion Science and Technology
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Effects of natural fibres reinforcement in lime plasters (kenaf and sisal vs. Polypropylene)

2014

Nowadays the tendency to realize environment-friendly products is becoming more widespread to ensure sustainable and smart development. The synthetic fibres, frequently used, are harmful to the environment because they are non-degradable and non-renewable. Their use has resulted in an increase of oil consumption. Therefore, the possibility of replacing them with natural fibres becomes increasingly concrete confirmed by the researches and investigations carried out. In this work three lime based plasters were prepared and analysed to evaluate the influence on their performance of different fibres used as reinforcement. In particular each plaster was realised by adding to the mortar the same …

Materials scienceLime plasters Natural fibres Sisal Kenaf Salt spray test Freeze/thaw cyclesengineering.materialKenafSisalchemistry.chemical_compoundFlexural strengthSalt spray testGeneral Materials ScienceComposite materialLime plastersSISALCivil and Structural Engineeringcomputer.programming_languageLimePolypropylenebiologyBuilding and Constructionbiology.organism_classificationLime plasters; Natural fibres; Sisal; Kenaf; Salt spray test; Freeze/thaw cyclesKenafSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiCompressive strengthchemistryFreeze/thaw cyclesengineeringMortarSalt spray testcomputerNatural fibres
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Effects of aging in salt spray conditions on flax and flax/basalt reinforced composites: Wettability and dynamic mechanical properties

2016

Abstract In the last years, the industrial policies are more attentive to issues concerning sustainability, recycling and environmental care. Therefore, the use of natural fibres in composite materials has spread more and more. This paper deals with flax and basalt fibres within an epoxy matrix by investigating the wettability and the dynamic mechanical properties of the resulting composites, subjected to long-term aging tests in critical environmental conditions. The first laminate was constituted by stacking ten layers of bidirectional flax fabrics. The second one was produced by replacing two external flax layers with two layers of basalt mat, for each side of the laminate. Both laminate…

Materials science02 engineering and technology010402 general chemistry01 natural sciencesIndustrial and Manufacturing EngineeringA. Polymer-matrix composites (PMCs)Water uptakeB. Environmental degradationComposite materialA. HybridMechanical EngineeringEpoxy matrixDynamic mechanical analysisPolymerematrix composites (PMCs)021001 nanoscience & nanotechnologyHybrid0104 chemical sciencesEnvironmental degradationA. Hybrid; A. Polymer-matrix composites (PMCs); B. Environmental degradation; B. Wettability; Ceramics and Composites; Mechanics of Materials; Industrial and Manufacturing Engineering; Mechanical EngineeringSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiMechanics of MaterialsCeramics and CompositesWettabilityWetting0210 nano-technologyB. Wettability
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Effect of curing time on the performances of hybrid/mixed joints

2013

Abstract The aim of this work is the study of a mixed method used for the joining of aluminum alloys with glass reinforced polymer’s substrates (in the next GFRP). In particular, the technique of self-piercing riveting (in the next SPR) was applied on a co-cured joint in order to evaluate the influence of the time of inserting the rivet on the mechanical behavior of the mixed joints. Three different joints were realized: adhesive by co-curing technique, mechanical by self piercing riveting (in the next SPR) and a mixed one in which the joining techniques (i.e. adhesive and mechanical) were combined. In particular, to determine the optimum time to insert the rivet, three different times from…

Materials scienceHybrid; Adhesion; Cure behavior; E. Joints/joining; self piercing rivetingMechanical EngineeringEpoxyFibre-reinforced plasticIndustrial and Manufacturing EngineeringSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiLap jointNatural rubberMechanics of Materialsvisual_artCeramics and Compositesvisual_art.visual_art_mediumRivetOil pressureAdhesiveHybrid AdhesionCure behaviorJoints/joiningSelf piercing rivetingComposite materialCuring (chemistry)Composites Part B: Engineering
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Mechanical behaviour of SPR/co-cured composite to aluminium joints

2012

Hybrid joints self piercing riveting adhesive bondingSettore ING-IND/22 - Scienza E Tecnologia Dei Materiali
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