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Adhesives advances electric vehicle design / Christophe Van Herreweghe in ADHESION - ADHESIVES + SEALANTS, Vol. 20, N° 3/2023 (2023)
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Titre : Adhesives advances electric vehicle design Type de document : texte imprimé Auteurs : Christophe Van Herreweghe, Auteur Année de publication : 2023 Article en page(s) : p. 18-21 Langues : Multilingue (mul) Catégories : Adhésifs -- Propriétés thermiques
Adhésifs dans les automobiles
Adhésifs thermoconducteurs
Assemblages multimatériaux
Biomatériaux
Coût -- Contrôle
Gaz à effet de serre -- Réduction
Matériaux -- Allègement
Thermocinétique
Véhicules électriquesIndex. décimale : 668.3 Adhésifs et produits semblables Résumé : Adhesives play a continuously growing rote in electric vehicle design and assembly. Adhesives offer significant advancements in safety, cost optimization, durability, and performance. And, with increasing vigilance on sustainability, there is growing importance for finding ways to formulate with environmentally friendlier materials, create processes that reduce energy use, and design solutions that allow for ease of repair, reuse, and recycling. Note de contenu : - Adhesives for more sustainability
- Adhesives for vehicle safety and durability
- Cost optimization
- Enhanced performance
- Lightweighting
- Fig. 1 : 1,000 MT bio-based structural adhesive used, compared with petroleum-based materials, can achieve 2,430 MT CO2 emission reduction. This corresponds to the greenhouse gas emissions of the depicted processes
- Fig. 2 : The new adhesives with extended curing window cover a temperature range from 140 °C to 210 °C
- Fig. 3 : Adhesive technologies support stronger, lighter vehicle bodies, and enable multi-material bonding of structures, components, and modules
- Fig. 4 : Application of thermal interface materials
- Fig. 5 : Applications for thermally conductive adhesives in bonded heat exchangers (a), cell-to-module bonding (6) and cell-to-pack bonding (c)
- Fig. 6 : Adhesive technologies enable more cost-effective assembly of battery modulesEn ligne : https://drive.google.com/file/d/1J8saSxiJP4xq_uRuBRftm3a3MAcmxU6k/view?usp=drive [...] Format de la ressource électronique : Permalink : https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=39734
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Code-barres Cote Support Localisation Section Disponibilité 24158 - Périodique Bibliothèque principale Documentaires Disponible Adhesives for battery applications / Sergio Grunder in ADHESION - ADHESIVES + SEALANTS, Vol. 16, N° 2/2019 (2019)
[article]
Titre : Adhesives for battery applications Type de document : texte imprimé Auteurs : Sergio Grunder, Auteur ; Andreas Lutz, Auteur ; Felix Koch, Auteur ; Stefan Schmatloch, Auteur Année de publication : 2019 Article en page(s) : p. 20-23 Langues : Multilingue (mul) Catégories : Adhésifs dans les automobiles
Adhésifs structuraux
Adhésifs thermoconducteurs
Colles bi-composante:Adhésifs bi-composant
Epoxydes
Essais de résilience
Etanchéité
Piles électriques
Polyuréthanes
Produits d'étanchéité
Résistance au cisaillement
Thermocinétique
Véhicules électriquesIndex. décimale : 668.3 Adhésifs et produits semblables Résumé : In order to reach a long drive range of electrically driven vehicles, batteries with high storage capacities are needed. Due to the size and weight limitation of the batteries, the use of batteries with high energy density is necessary. Adhesives and sealants are crucial for the construction of the battery modules and are needed for bonding, sealing and for thermal interface tasks. Note de contenu : - Tailor made adhesive solutions for battery applications
- Structural and crash-durable adhesives for battery enclosure applications
- Adhesives and sealants for battery enclosure applications
- Adhesives for the thermal management of battery
- Fig. 1 : Adhesive application in batteries for battery enclosure sealing and thermal management inside the battery
- Fig. 2 : Strength build-up measured by lap shear tests at 60, 80 and 100°C of a two component epoxide based adhesive for battery enclosure application for artificial ageint lap shear tests were performed initial (7d room temperature cure) and after 10 weeks exposure to salt spray. It was showed that lap searr strength is maintained
- Fig. 3 : Lap shear tests performed with a one component SMP sealant show that the cleaning with heptane of bare aluminum is sufficient to achieve a good adhesion. The lap shear strength were measured after 7 days room temperature cure as well as after exposure for 7 days at 70°C, 100 % r.h., immersion for 7 days in saltwater, 4 weeks climate change test, and 12 weeks salt spray test. The failure modes show a cohesive failure mode
- Fig. 4 : Display of the thermal conductivity of regular reference polyurethane (PU) adhesives, epoxyde based adhesives (EP) as well as thermally conductive 2K PU adhesives and thermal interface materials
- Table 1 : Properties of adhesives for battery enclosure applications
- Table 2 : Properties of thermal management materials
En ligne : https://drive.google.com/file/d/14iTHHRaS_c6sF3K7dmzZ9xOT2yydYxMH/view?usp=drive [...] Format de la ressource électronique : Permalink : https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=32676
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Code-barres Cote Support Localisation Section Disponibilité 20998 - Périodique Bibliothèque principale Documentaires Disponible Agitation et mélange / Catherine Xuereb / Paris : Dunod (2006)
Titre : Agitation et mélange : Aspects fondamentaux et applications Type de document : texte imprimé Auteurs : Catherine Xuereb, Auteur ; Martine Poux, Auteur ; Joël Bertrand, Auteur Editeur : Paris : Dunod Année de publication : 2006 Autre Editeur : Paris : Editions de l'Usine Nouvelle Collection : Technique et ingénierie Sous-collection : Série Chimie Importance : XIV-398 p. Présentation : ill. Format : 25 cm ISBN/ISSN/EAN : 978-2-10-049700-3 Prix : 75 E Note générale : Index - Bibliogr. Langues : Français (fre) Catégories : Malaxeurs et mélangeurs
Mélanges (chimie)
ThermocinétiqueIndex. décimale : 660.2 Génie chimique Note de contenu : - 1. Introduction aux problèmes d'agitation et de mélange
- 2. Présentation des principaux types de systèmes d'agitation
- 3. Caractérisation globale des systèmes d'agitation
- 4. Principes du mélange / 5. Mélange de fluides de viscosité élevé
- 6. Mélange en continu en cuve agitée
- 7. Réacteurs chimiques
- 8. Transfert de chaleur dans les cuves agitées
- 9. Systèmes gaz-liquide
- 10. Systèmes solide-liquide
- 11. Dispersions liquide-liquide et émulsions
- 12. Mélange de poudres
- 13. Mélange en ligne
- 14. Micromélangeurs
- 15. Simulation numérique d'une cuve agitée
- 16. Extrapolation
- 17. Aspects mécaniquesPermalink : https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=4424 Réservation
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Code-barres Cote Support Localisation Section Disponibilité 2587 660.2 XUE Monographie Bibliothèque principale Documentaires Disponible An aeronautics and space-oriented research group / Bruno Castanié in JEC COMPOSITES MAGAZINE, N° 122 (07/2018)
[article]
Titre : An aeronautics and space-oriented research group Type de document : texte imprimé Auteurs : Bruno Castanié, Auteur Année de publication : 2018 Article en page(s) : p. 41-47 Note générale : Bibliogr. Langues : Anglais (eng) Catégories : Assemblages multimatériaux
Avions -- Matériaux
Bois
Composites -- Analyse
Composites -- Défauts
Composites -- Propriétés mécaniques
Composites à fibres -- Moulage par injection
Composites à fibres courtes
Composites à fibres de carbone
Construction sandwich
Epoxydes
Essais (technologie)
Essais dynamiques
Modélisation tridimensionnelle
Polyéther éther cétone
Polysulfures de phénylène
Simulation par ordinateur
Thermocinétique
TitaneIndex. décimale : 668.4 Plastiques, vinyles Résumé : The Clément Ader Institute's (ICA) Composite Materials and Structures research group (UMR CNRS 5312) was set up in 2010 after the Institute was created by decree in July 2009. The group conducts transversal research on materials, processes and strcutures, with a strong focus on numerical and experimental aspects. Note de contenu : - MATERIALS AND PROCESSES : Study and modelling of resin flow in fibrous reinforcements - Multiphysics analysis and functionalization of composite materials
- PROCESSES AND STRUCTURES : Understanding and modelling variability sources in composite structures - Analysis and modelling of shape defects generated during the manufacture of composite structures - Analysing the links between manufacturing/machining parameters and mechanical strength - Composites machining
- STRUCTURES AND MODELLING STRATEGIES : Short fibre injection - Modelling strategies - Wood-based eco-structures
- Fig. 1 : The Roctool process
- Fig. 2 : Simulation of resin flow in a 3D reinforcement at different scales
- Fig. 3 : Modelling thermal conductivity in a doped composite material
- Fig. 4 Example of ply thickness spatial evolution
- Fig. 5 : A350 rib spring-back computation
- Fig. 6 : Hole roughness analysis to define drilling quality indicators
- Fig. 7 : Chip formation analysis during CFRP/Ti multi-material drilling (simulation)
- Fig. 8 : Simulation of short fibre injection in a complex part (aircraft fitting)
- Fig. 9 : DPM modelling
- Fig. 10 : Semi-continuous modelling for frontal impact of rotor blades
- Fig. 11 : Analysis of wood-based structures
- Fig. 12 : The Vertex test rig
- Fig. 13 : Edge ring crack torsion test (ERCT)
- Fig. 14 : STIMPACT platform gas guns
- EXPERIMENTAL METHODS AND MEANS : Complex loading - Measuring methods and specific tests - Dynamic testingPermalink : https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=31621
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Code-barres Cote Support Localisation Section Disponibilité 20053 - Périodique Bibliothèque principale Documentaires Disponible An energy efficient process for lightweight construction / Thomas Müller in KUNSTSTOFFE INTERNATIONAL, Vol. 102, N° 6 (06/2012)
[article]
Titre : An energy efficient process for lightweight construction Type de document : texte imprimé Auteurs : Thomas Müller, Auteur ; Dietmar Drummer , Auteur ; Christoph Linn, Auteur ; Leo Hoffmann, Auteur Année de publication : 2012 Article en page(s) : p. 46-49 Note générale : Bibliogr. Langues : Anglais (eng) Catégories : Composites à fibres de carbone
Conduction électrique
Matériaux -- Imprégnation
Polyamide 6
Thermocinétique
Thermoplastiques -- Moulage par injectionIndex. décimale : 668.4 Plastiques, vinyles Résumé : In-Mould Impregnation - With a light yield of about 5 % incandescent light bulbs are not very efficient. The vast majority of the electrical energy is released to the environment as thermal energy. However, following exactly the same principle, the “In-Mould Impregnation” process makes exceptionally efficient use of this Joule heating. Electrically connected carbon fibers directly generate the heat for their own impregnation with a thermoplastic matrix. Note de contenu : - Shaping at room temperature
- Underlying principles of impregnation
- Modified polyamide accelerates impregnation
- Pore volume fraction influences mechanical properties
- Thermistor properties and impregnation quality of carbon fibersPermalink : https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=16252
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