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1K PUR dispersion with comparable performance to 2K waterborne coatings / Makoto Nakao in COATINGS TECH, Vol. 16, N° 2 (02/2019)
[article]
Titre : 1K PUR dispersion with comparable performance to 2K waterborne coatings Type de document : texte imprimé Auteurs : Makoto Nakao, Auteur Année de publication : 2019 Article en page(s) : p. 22-27 Note générale : Bibliogr. Langues : Américain (ame) Catégories : Dispersions et suspensions
Essais accélérés (technologie)
Formulation (Génie chimique)
Polyuréthanes
Résistance à l'humidité
Résistance aux taches
Résistance chimique
Revêtement monocomposant
Revêtements -- Propriétés physiquesIndex. décimale : 667.9 Revêtements et enduits Résumé : The Next-gen 1K PUD, a novel 1K PU dispersion, outperformed commercially available 1K PUDs by exceeding their chemical and stain resistance and matched even the performance of crosslinked 2KWB coatings. Moreover, the Next-gen 1KPUD demonstrated faster dry times than the 2KWB coatings, which will increase productivity during the coating application. A coating formulated with the Next-gen 1KPUD passed all the AAMA 615-13 physical performance requirements. Further, its film hardness matched that of a crosslinked 2KWB coating. Finally, accelerated weathering tests under QUV-A and Xenon arc exposure showed that a coating formulated with Next-gen 1KPUD will perform commercially available 1K PUDs and a 2KWB coating that were evaluated. Note de contenu : - EXPERIMENTAL : Physical properties comparison with high-performance PUD and 2KWB PU system - Physical properties for American Architectural Manufacturer Association 615-13 performance evaluation - Accelerated weathering
- RESULTS AND DISCUSSION : Physical properties comparison with high-performance PUD and 2KWB PU - Physical properties for AAMA 615-13 performance evaluation - Accelerated weathering performance
- Table 1 : Key properties of a Newly Developed 1KPUD
- Table 2 : Characteristics of high-performance PUDs and 2KWB systems
- Table 3 : Physical properties for AAMA 615-13
- Table 4 : Generic formulation used for this study
- Table 5 : Base formulations for accelerated weathering study
- Table 6 : Results of chemical resistance and stain resistance
- Table 7 : Results of dry times and König pendulum hardness development
- Table 8 : Results of Humidity resistance
- Table 9 : Results of physical properties for AAMA 615-13
- Fig. 1 : Gloss retention results of QUV-A ASTM D4587 (cycle 2)
- Fig. 2 : Results of Xenon arc ASTM D6695 (cycle 1)En ligne : https://drive.google.com/file/d/13a9N-bNeXZljqfVjWv9TqmOs60ImMhbd/view?usp=drive [...] Format de la ressource électronique : Permalink : https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=31851
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Code-barres Cote Support Localisation Section Disponibilité 20648 - Périodique Bibliothèque principale Documentaires Disponible Accelerated drying of water-dispersible polyurethane blends / Joseph P. Labukas in JOURNAL OF COATINGS TECHNOLOGY AND RESEARCH, Vol. 11, N° 2 (03/2014)
[article]
Titre : Accelerated drying of water-dispersible polyurethane blends Type de document : texte imprimé Auteurs : Joseph P. Labukas, Auteur ; John A. Escarsega, Auteur ; Dawn M. Crawford, Auteur Année de publication : 2014 Article en page(s) : p. 217-229 Note générale : Bibliogr. Langues : Américain (ame) Catégories : Alliages polymères
Analyse mécanique dynamique
Camouflage (science militaire)
Photoamorceurs (chimie)
Polyaddition
Polyisocyanates
Polymères -- Propriétés thermomécaniques
Polyols
Polyuréthanes
Résistance chimique
Revêtements en phase aqueuse -- Séchage sous rayonnement ultraviolet:Peinture en phase aqueuse -- Séchage sous rayonnement ultraviolet
Revêtements en phase aqueuse:Peinture en phase aqueuseIndex. décimale : 667.9 Revêtements et enduits Résumé : Mixtures of water-dispersible isocyanate and polyol-terminated oligomers were blended with methacrylate-terminated urethanes and a water-dispersible photoinitiator to accelerate the dry time of thin polymer films. Thermomechanical properties of the polyurethane blends were measured using dynamic mechanical analysis. Kinetics of the ultraviolet-initiated radical polymerization reaction and the polyol/isocyanate addition reaction were monitored using attenuated total reflectance-Fourier transform infrared spectroscopy. Note de contenu : - EXPERIMENTAL : Chemicals - Film formation - Dynamic mechanical analysis - Attenuated total reflectance-Fourier Transform infrared spectroscopy
- RESULTS AND DISCUSSION : UV-activated film formation - Crosslinking and film development - Exposure of CARC to UV - Crosslinked polyurethane films - Functional group evolution during curingDOI : 10.1007/s11998-013-9536-9 En ligne : https://link.springer.com/content/pdf/10.1007%2Fs11998-013-9536-9.pdf Format de la ressource électronique : Permalink : https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=21166
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Code-barres Cote Support Localisation Section Disponibilité 16196 - Périodique Bibliothèque principale Documentaires Disponible Accelerated weathering and chemical resistance of polyurethane powder coatings / S. Rossi in JOURNAL OF COATINGS TECHNOLOGY AND RESEARCH, Vol. 13, N° 3 (05/2016)
[article]
Titre : Accelerated weathering and chemical resistance of polyurethane powder coatings Type de document : texte imprimé Auteurs : S. Rossi, Auteur ; Michele Fedel, Auteur ; S. Petrolli, Auteur ; Flavio Deflorian, Auteur Année de publication : 2016 Article en page(s) : p. 427-437 Note générale : Bibliogr. Langues : Américain (ame) Catégories : Caractérisation
Essais accélérés (technologie)
Polyuréthanes
Résistance chimique
Revêtements -- Détérioration:Peinture -- Détérioration
Revêtements poudre:Peinture poudre
solvants
Spectroscopie d'impédance électrochimiqueIndex. décimale : 667.9 Revêtements et enduits Résumé : A study of the weathering mechanism of innovative polyurethane powder coatings has been performed. UV-B irradiation and condensation cycle accelerated tests were carried out on two different polyurethane powder coating formulations for outdoor applications. Using Fourier transform infrared spectroscopy and microscope observation, it was possible to analyze the photochemical and morphological modifications. In addition, the color and gloss changes were measured. Organic coatings are often in contact with solvents in particular during cleaning actions. The chemical resistance was then studied considering the evolution of the corrosion barrier property of the coating as a function of the solvent contact time. Electrochemical impedance spectroscopy measurements were carried out. Methylethylketone (polar) and xylene (apolar) were considered as representative solvents. Due to the strong polarity, the first solvent showed a strong interaction with the hydrogen bonds between the polyurethane chains causing the solvent uptake. The amount of solvent uptake depends on the coating chains rigidity caused by the different polyester resin monomers. The apolar xylene presented no significant interaction with the coatings. Note de contenu : - Sample characterization
- UV-B-condensation aging
- Solvent resistanceDOI : 10.1007/s11998-015-9764-2 En ligne : https://link.springer.com/content/pdf/10.1007%2Fs11998-015-9764-2.pdf Format de la ressource électronique : Permalink : https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=26284
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Code-barres Cote Support Localisation Section Disponibilité 18071 - Périodique Bibliothèque principale Documentaires Disponible Accompagner le recyclage des gaz du moteur / Martin Völker in PLASTIQUES & CAOUTCHOUCS MAGAZINE, N° 917 (12/2014)
[article]
Titre : Accompagner le recyclage des gaz du moteur Type de document : texte imprimé Auteurs : Martin Völker, Auteur Année de publication : 2014 Article en page(s) : p. 68-71 Langues : Français (fre) Catégories : Atmosphère -- Pollution -- Lutte contre
Automobiles -- Moteurs -- Pièces
Essais (technologie)
Matières plastiques dans les automobiles
Polyamide 6
Résistance chimique
Résistance thermiqueIndex. décimale : 668.4 Plastiques, vinyles Résumé : Les températures, les pressions élevées et les agressions acides résultant du recyclage des gaz d'échappement et de la suralimentation mettent les plastiques techniques des moteurs à rude épreuve. Note de contenu : - Réduire les quantités de polluants
- Résister à la chaleur et aux substances chimiques
- Une application de bouclier thermiquePermalink : https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=22642
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Code-barres Cote Support Localisation Section Disponibilité 16759 - Périodique Bibliothèque principale Documentaires Disponible Acid-resistant organic coatings for the chemical industry : a review / Victor Buhl Møller in JOURNAL OF COATINGS TECHNOLOGY AND RESEARCH, Vol. 14, N° 2 (03/2017)
[article]
Titre : Acid-resistant organic coatings for the chemical industry : a review Type de document : texte imprimé Auteurs : Victor Buhl Møller, Auteur ; Kim Dam-Johansen, Auteur ; Sarah Maria Frankaer, Auteur ; Søren Kiil, Auteur Année de publication : 2017 Article en page(s) : p. 279-306 Note générale : Bibliogr. Langues : Américain (ame) Catégories : Industries chimiques
Résistance chimique
Revêtements -- Analyse:Peinture -- Analyse
Revêtements -- Détérioration:Peinture -- Détérioration
Revêtements organiques
Revêtements protecteursIndex. décimale : 667.9 Revêtements et enduits Résumé : Industries that work with acidic chemicals in their processes need to make choices on how to properly contain the substances and avoid rapid corrosion of equipment. Certain organic coatings and linings can be used in such environments, either to protect vulnerable construction materials, or, in combination with fiber reinforcement, to replace them. However, degradation mechanisms of organic coatings in acid service are not thoroughly understood and relevant quantitative investigations are scarce. This review describes the uses and limitations of acid-resistant coatings in the chemical industry, with a comparison to alternative resistant materials based on metals or ceramics. In addition, coating degradation phenomena, caused by acid exposure, are mapped to the extent possible, and analysis methods for detecting coating degradation type and severity are listed and discussed. It is concluded that more knowledge on chemical and physical degradation mechanisms is required, and that improvements in resistance to elevated temperatures and abrasion would decrease the risk of use and increase the potential application areas of organic coatings exposed to acidic environments in the chemical industry. Note de contenu : - ORGANIC COATINGS IN ACIDIC ENVIRONMENTS : History - Process limitations of acid-resistant coatings
- ACID-RESISTANT MATERIALS : Inorganic materials - Organic coatings
- COATINGS DEGRADATION IN ACID SERVICE : Physical degradation through diffusion - Chemical degradation - Acid degradation of commercial thermosets
- EXPERIMENTAL TESTING AND ANALYSIS : Diffusion analysis - Analysis of chemical change - Visual alterationsDOI : 10.1007/s11998-016-9905-2 En ligne : https://link.springer.com/content/pdf/10.1007%2Fs11998-016-9905-2.pdf Format de la ressource électronique : Permalink : https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=28143
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Code-barres Cote Support Localisation Section Disponibilité 18781 - Périodique Bibliothèque principale Documentaires Disponible Advanced coatings based upon non-isocyanate polyurethanes for industrial applications / O. L. Figovski in SURFACE COATINGS INTERNATIONAL. PART B : COATINGS TRANSACTIONS, Vol. 87, B2 (06/2004)
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PermalinkAnti-graffiti powder coating with high chemical resistance in INTERNATIONAL SURFACE TECHNOLOGY (IST), Vol. 14, N° 2 (2021)
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PermalinkAutomobile : l'Hypalon est un matériau phare / Martin Vaughan in CAOUTCHOUCS & PLASTIQUES, N° 784 (03/2000)
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PermalinkBiosynthesis of ZnO nanoparticles and effect of silver doping in gas sensing characteristics of volatile organic compounds / Anil Kumar in JOURNAL OF COATINGS TECHNOLOGY AND RESEARCH, Vol. 19, N° 2 (03/2022)
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PermalinkInnovative self-initiating UV-curable polyurethane dispersions in COATINGS TECH, Vol. 17, N° 7 (07/2020)
PermalinkInvestigating the role of key ingredients on cathodic delamination resistance of high-build pigmented epoxy coatings / R. Balaji in JOURNAL OF COATINGS TECHNOLOGY AND RESEARCH, Vol. 10, N° 1 (01/2013)
PermalinkInvestigation of the effect of laser technology on the colouring and patterning possibilities in polyacrylonitrile socks / Riza Atav in COLORATION TECHNOLOGY, Vol. 138, N° 4 (08/2022)
PermalinkIodinated thermal-fused polymer as a biocidal additive to commercial and chemical-resistant coatings / L. di Ionno in SURFACE COATINGS INTERNATIONAL. PART B : COATINGS TRANSACTIONS, Vol. 87, B4 (12/2004)
PermalinkA light alternative / Wolfgang Dahnke in KUNSTSTOFFE INTERNATIONAL, Vol. 103, N° 9 (09/2013)
PermalinkPermalinkLiquid polysulfide polymers for chemical- and solvent-resistant sealants / Volker burkhardt in ADHESIVES & SEALANTS INDUSTRY (ASI), Vol. 25, N° 8 (08/2018)
PermalinkPermalinkLong life in the pot and a fast finish / Lars Ossenschmidt in EUROPEAN COATINGS JOURNAL (ECJ), N° 9 (09/2019)
PermalinkLonger lasting, not stressing the environment / Jürgen Lippemeier in EUROPEAN COATINGS JOURNAL (ECJ), N° 03/2010 (03/2010)
PermalinkLow-fat diet for decorative paints / Sebastian Roller in EUROPEAN COATINGS JOURNAL (ECJ), N° 6 (06/2012)
PermalinkLow-VOC high-performance waterborne epoxy systems in protective coating application / Yong Zhang in JOURNAL OF PROTECTIVE COATINGS & LININGS (JPCL), Vol. 34, N° 1 (01/2017)
PermalinkLow VOC topcoats using ultra high solids resins / Gautam Haldankar in COATINGS TECH, Vol. 18, N° 9 (09/2021)
PermalinkPermalinkMechanical, chemical, and curing characteristics of cardanol–furfural-based novolac resin for application in green coatings / Riya Srivastava in JOURNAL OF COATINGS TECHNOLOGY AND RESEARCH, Vol. 12, N° 2 (03/2015)
PermalinkMechanism and properties of coloured nanoscale SiO2 prepared from silica and reactive dyes / Liping Zhang in COLORATION TECHNOLOGY, Vol. 132, N° 5 (10/2016)
PermalinkMeeting challenges in epoxy floor coatings/floorings / Toine Dinnissen in POLYMERS PAINT COLOUR JOURNAL - PPCJ, Vol. 205, N° 4605 (02/2015)
PermalinkPermalinkMisterdolly, le premier caddie tout plastique / Thomas Malek in CAOUTCHOUCS & PLASTIQUES, N° 786 (05/2000)
PermalinkMixed powder coating film using thermoplastic polyester and its alkaline resistance / Yukitoshi Takeshit in JOURNAL OF COATINGS TECHNOLOGY AND RESEARCH, Vol. 10, N° 4 (07/2013)
PermalinkModern 2K PU waterborne / Robert Reyer in POLYMERS PAINT COLOUR JOURNAL - PPCJ, Vol. 203, N° 4580 (01/2013)
PermalinkModified soybean oil as a reactive diluent: coating performance / Priyanka P. Nalawade in JOURNAL OF COATINGS TECHNOLOGY AND RESEARCH, Vol. 12, N° 6 (11/2015)
PermalinkMortiers de joints et colles à carrelage. Partie 1 : Détermination de la résistance chimique des mortiers à base de résines réactives - Norme NF EN 12808-1 / Association Française de Normalisation (Paris) / Saint-Denis La Plaine : Association Française de Normalisation (AFNOR) (1999)
PermalinkPermalinkNano-silica-containing acrylic polyurethane and acrylic-polyester hybrid polyurethane coatings for direct-to-metal (DTM) coating applications – a comparative study / Sukanya Gangopadhyay in JOURNAL OF COATINGS TECHNOLOGY AND RESEARCH, Vol. 19, N° 6 (11/2022)
PermalinkNanocomposite coatings increasing their properties during exposure in aggressive media / O. Figovsky in DOUBLE LIAISON, N° 549 (03/2006)
PermalinkPermalinkNeuburg siliceous earth in water-based acrylic clear coats for wood : Part 2 / Hubert Oggermüller in SURFACE COATINGS INTERNATIONAL, Vol. 100.4 (08-09/2017)
PermalinkNew developments in elastomeric masonry coatings / Miriam Peralta in POLYMERS PAINT COLOUR JOURNAL - PPCJ, Vol. 204, N° 4594 (03/2014)
PermalinkNew reds hit the market / Gerd Koenig in POLYMERS PAINT COLOUR JOURNAL - PPCJ, Vol. 195, N° 4486 (03/2005)
PermalinkNon-isocyanate coatings with fast return to service and excellent appearance for industrial flooring application / Ulises Brauer in COATINGS TECH, Vol. 18, N° 7 (07/2021)
PermalinkNouveaux mélanges à base de NBR/PVC en phase latex / C. Sablowski in CAOUTCHOUCS & PLASTIQUES, N° 759 (05/1997)
PermalinkNovel acrylic polymer for architectural exterior paint and primer in one coatings application / Kaliappa Ragunathan in COATINGS TECH, Vol. 15, N° 2 (02/2018)
PermalinkNovel amine-functional dimer technology allowing new green chemistry for sustainable epoxy coatings / Eric Brouwer in DOUBLE LIAISON, N° 584 (12/2011)
PermalinkNovel isocyanate-free moisture-curable polymers for single-components polysiloxane topcoats / Erick Lezzi in COATINGS TECH, Vol. 14, N° 8 (08/2017)
PermalinkNovel oil-modified acrylic multi-domain dispersions for wood coatings in SURFACE COATINGS INTERNATIONAL, Vol. 103.3 (05-06/2020)
PermalinkNovel oil modified urethane for wook flooring applications / Yuting Li in COATINGS TECH, Vol. 15, N° 6 (06/2018)
PermalinkNuclear magnetic resonance profiling of chemical warfare agent simulant mass-transport through a multilayered polymeric coating / Ehsan Gazi in JOURNAL OF COATINGS TECHNOLOGY AND RESEARCH, Vol. 9, N° 6 (11/2012)
PermalinkOne-step synthesis of epoxy-based silicon prepolymers and its application in UV-curable coating / Fuping Bian in JOURNAL OF COATINGS TECHNOLOGY AND RESEARCH, Vol. 20, N° 1 (01/2023)
PermalinkOxazolidines in polyurethanes / Nanette Weeks in ADHESIVE TECHNOLOGY, Vol. 17, N° 3 (06/2000)
PermalinkOxidising degradation of Valonia extract and utilisation of the products. Part 1. Oxidising degradation of Valonia extract and characterisation of the products / Bi Shi in JOURNAL OF THE SOCIETY OF LEATHER TECHNOLOGISTS & CHEMISTS (JSLTC), Vol. 84, N° 6 (11-12/2000)
PermalinkOxymer M112 - Use in anionic polyurethane dispersions / Malin Rex in PAINTINDIA, Vol. LXIII, N° 5 (05/2013)
PermalinkPeintures et vernis. Détermination de la résistance aux liquides - Partie 1 : immersion dans des liquides autres que l'eau - Norme ISO 2812-1 / International Organization for Standardization (Genève, Suisse) / Geneve [Switzerland] : International Organization for Standardization (ISO) (2007)
PermalinkPeintures et vernis. Détermination de la résistance aux liquides - Partie 2 : Méthode au four à gradient - Norme ISO 2812-5 / International Organization for Standardization (Genève, Suisse) / Geneve [Switzerland] : International Organization for Standardization (ISO) (2007)
PermalinkPeintures et vernis. Détermination de la résistance aux liquides - Partie 2 : Méthode par immersion dans l'eau - Norme ISO 2812-2 / International Organization for Standardization (Genève, Suisse) / Geneve [Switzerland] : International Organization for Standardization (ISO) (2007)
PermalinkPeintures et vernis. Détermination de la résistance aux liquides - Partie 2 : Méthode à la tache - Norme ISO 2812-4 / International Organization for Standardization (Genève, Suisse) / Geneve [Switzerland] : International Organization for Standardization (ISO) (2007)
PermalinkPeintures et vernis. Détermination de la résistance aux liquides - Partie 2 : Méthode utilisant un milieu absorbant - Norme ISO 2812-3 / International Organization for Standardization (Genève, Suisse) / Geneve [Switzerland] : International Organization for Standardization (ISO) (2012)
PermalinkPerformance enhancement of one-bath pigment coloration and finishing process using eco-friendly crosslinkers / Muhammad Mohsin in COLORATION TECHNOLOGY, Vol. 137, N° 3 (06/2021)
PermalinkPerformance-increasing variation of a classic / Wolfgang Diegritz in KUNSTSTOFFE INTERNATIONAL, Vol. 106, N° 11 (11/2016)
PermalinkPermalinkPlastiques. Acquisition et présentation de données multiples comparables. Partie 3 : Effets induits par l'environnement sur les propriétés - Norme NF EN ISO 11403-3 / Association Française de Normalisation (Paris) / Saint-Denis La Plaine : Association Française de Normalisation (AFNOR) (2001)
PermalinkLe polyamide 6.6 fait de la résistance / P. Leboeuf in CAOUTCHOUCS & PLASTIQUES, N° 785 (04/2000)
PermalinkPolyamides show performance gains / Nina Musche in EUROPEAN COATINGS JOURNAL (ECJ), N° 7-8 (07-08/2017)
PermalinkPolysiloxane coating technology : a review / Sangram Grosh in PAINTINDIA, Vol. LXIV, N° 6 (06/2014)
PermalinkPolythioether advances provide new formulating / Christian Probst in ADHESIVES & SEALANTS INDUSTRY (ASI), Vol. 27, N° 1 (01/2020)
PermalinkPolyurea "loose" liners / Kristin Leonard in JOURNAL OF PROTECTIVE COATINGS & LININGS (JPCL), Vol. 31, N° 2 (02/2014)
PermalinkPolyurethane flooring : long term protection for various functional floors / Ayoub Mulla in PAINTINDIA, Vol. LXIV, N° 7 (07/2014)
PermalinkPermalinkPotential uses all the way from automotive to construction / Ronald Ligthart in KUNSTSTOFFE INTERNATIONAL, Vol. 103, N° 9 (09/2013)
PermalinkPreparation and characterization of nano-reinforced leather waste fiber-epoxy nano composite / Venkatasubramanian Sivakumar in JOURNAL OF THE AMERICAN LEATHER CHEMISTS ASSOCIATION (JALCA), Vol. CX, N° 12 (12/2015)
PermalinkPreparation and properties of thermally expandable microspheres for foam coating / Guodong Huang in JOURNAL OF THE AMERICAN LEATHER CHEMISTS ASSOCIATION (JALCA), Vol. CXVI, N° 7 (07/2021)
PermalinkPreparation of alkali-resistant aluminum pigment encapsulated with fluoropolymer by in situ polymerization / Pengchao Men in JOURNAL OF COATINGS TECHNOLOGY AND RESEARCH, Vol. 18, N° 5 (09/2021)
PermalinkPreparation of crosslinkable cationic polyacrylate latex and its film properties / Xueke Zhang in JOURNAL OF COATINGS TECHNOLOGY AND RESEARCH, Vol. 21, N° 1 (01/2024)
PermalinkPreparation of novel organo-montmorillonite and its influence on the acid resistance of hybrid cathodic electrodeposition polyurethane coating / Zijian Li in JOURNAL OF COATINGS TECHNOLOGY AND RESEARCH, Vol. 16, N° 2 (03/2019)
PermalinkProperties of polyaspartic coatings pave the way to decorative flooring applications / Steven Reinstadtler in POLYMERS PAINT COLOUR JOURNAL - PPCJ, Vol. 204, N° 4600 (09/2014)
PermalinkPermalinkProtective paint selection : guidelines for various applications / Mukund Hulyalkar in PAINTINDIA, Vol. LXV, N° 5 (05/2015)
PermalinkPure and chemical resistant colours for powder coatings / Kerstin Ahne in POLYMERS PAINT COLOUR JOURNAL - PPCJ, Vol. 202, N° 4577 (10/2012)
PermalinkPURs based on hydrogenated castor oil / Vilas D. Athawale in EUROPEAN COATINGS JOURNAL (ECJ), N° 1-2/01 (01-02/2001)
PermalinkPermalinkPushing back the boundaries / Florian E. Golling in EUROPEAN COATINGS JOURNAL (ECJ), N° 2 (02/2020)
PermalinkQualification tests for high-temperature FBE coatings / Hassan Al-Sagour in JOURNAL OF PROTECTIVE COATINGS & LININGS (JPCL), Vol. 35, N° 7 (07/2018)
PermalinkQuid des TDAE/DAE plastifiantes en vigueur ? / Almudena Iznart-Garcia in CAOUTCHOUCS & PLASTIQUES, N° 804 (05/2002)
PermalinkRapid aging prevented / Rudolf Pfaendner in KUNSTSTOFFE INTERNATIONAL, Vol. 103, N° 5 (05/2013)
PermalinkPermalinkRe-engineering resins and paints / Silfredo Javier Bohorquez in EUROPEAN COATINGS JOURNAL (ECJ), N° 1 (01/2017)
PermalinkRelca® HY-288 : water-based hybrid for coatings with superior stain resistance / Sara Roig in POLYMERS PAINT COLOUR JOURNAL - PPCJ, Vol. 210, N° 4660 (04/2020)
PermalinkPermalinkA la rescousse des diesels propres / Wolfgang Sauerer in PLASTIQUES & CAOUTCHOUCS MAGAZINE, N° 865 (03-04/2009)
PermalinkRéservoirs enterrés en plastiques renforcés de verre (PRV). Détermination du facteur α et du facteur β - Norme NF EN 978 / Association Française de Normalisation (Paris) / Saint-Denis La Plaine : Association Française de Normalisation (AFNOR) (1997)
PermalinkRéservoirs enterrés en plastiques renforcés de verre (PRV). Méthode d'exposition unilatérale d'une plaque aux fluides - Norme NF EN 977 / Association Française de Normalisation (Paris) / Saint-Denis La Plaine : Association Française de Normalisation (AFNOR) (1997)
PermalinkResistance of high-performance fibers depending on environmental conditions / Heidrun Rudolph in CHEMICAL FIBERS INTERNATIONAL, Vol. 63, N° 2 (05/2013)
PermalinkPermalinkUn revêtement acrylique incolore en poudre pour l'équipement automobile / Holger Schmidt in EUROPEAN COATINGS JOURNAL (ECJ), N° 9/94 (09/1994)
PermalinkSeamless tubular filter made of high-tech fibers in MAN-MADE FIBERS INTERNATIONAL, Vol. 73, N° 3 (2023)
PermalinkPermalinkPermalinkSelf-crosslinkable urethanes and urethane/acrylics / Ronald Tennebroek in EUROPEAN COATINGS JOURNAL (ECJ), N° 11/97 (11/1997)
PermalinkSilane-functional polyurethane-urea resins in ultra high solid coatings / Lars Ossenschmidt in SURFACE COATINGS INTERNATIONAL, Vol. 106.6 (11-12/2023)
PermalinkSilicone technology for aerospace and aircraft / Brian Burkitt in ADHESIVES & SEALANTS INDUSTRY (ASI), Vol. 20, N° 10 (10/2013)
PermalinkA simple method to make mechanically robust, adhesive and superhydrophobic surface based on epoxy resin / Aoyun Zhuang in JOURNAL OF COATINGS TECHNOLOGY AND RESEARCH, Vol. 12, N° 3 (05/2015)
PermalinkPermalinkSingle-component polysiloxane topcoat for navy surface ships / Erick B. Iezzi in JOURNAL OF PROTECTIVE COATINGS & LININGS (JPCL), Vol. 33, N° 11 (11/2016)
PermalinkSingle-layer concrete protection based on sol-gel hybrid polymers / Georg Wagner in POLYMERS PAINT COLOUR JOURNAL - PPCJ, Vol. 205, N° 4609 (06/2015)
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