[article]
Titre : |
Methylcyclohexyl diamine (Baxxodur EC 210) - a hardener for epoxy systems with superior carbamate stability |
Type de document : |
texte imprimé |
Auteurs : |
Irene Gorman, Auteur ; Michael Henningsen, Auteur ; Frank Hettche, Auteur ; Matthaeus Kopczynski, Auteur ; Alexander Panchenko, Auteur ; Marc Hofmann, Auteur ; Chin Li, Auteur ; Raj Sundar, Auteur |
Année de publication : |
2018 |
Article en page(s) : |
p. 258-262 |
Note générale : |
Bibliogr. |
Langues : |
Anglais (eng) |
Catégories : |
Calorimétrie DiamineUne diamine est un type de polyamine contenant exactement deux groupes amine. Les diamines sont principalement utilisées comme monomères pour synthétiser des polyamides, des polyimides et des polyurées. La principale diamine produite est le 1,6-diaminohexane, précurseur du Nylon 6-6, suivie de l'éthylènediamine1. L'hydrazine (H2NNH2) n'est en général pas considérée comme une diamine puisque ce n'est ni une amine (pas de carbone), ni une dibase. Epoxydes Éther de diglycidyle et de bisphénol A Réticulants Revêtements -- Additifs Revêtements -- Propriétés mécaniques Rhéologie
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Index. décimale : |
667.9 Revêtements et enduits |
Résumé : |
Epoxy-based industrial maintenance coatings «fer excellent chemical and mechanical performance. However, the amine type hardeners often employed can easily react with atmospheric carbon dioxide and moisture to form carbamate salts. These carbamate salts accumulate on the surface and cause blush and intercoat adhesion issues. Adducts based on methylcyclohexyl diamine (MCDA, Baxxodur EC 210), a cycloaliphatic diamine curative for epoxy resin systems, displayed enhanced carbamate stability when compared to adducts based on both isophorone diamine (IPDA) and m-xylylene diamine (MXDA). This behaviour was further validated in coating tests, where coating formulations based on MCDA exhibited superior gloss. The cure behaviour, mechanical properties, and thermal properties of MCDA, IPDA, and MXDA cured systems were also assessed using various analytical techniques such as differential scanning calorimetry and rheology. Overall, MCDA was proven to be an attractive building block for epoxy diamine industrial coating systems. |
Note de contenu : |
- EXPERIMENTAL : Materials - Adduct synthesis - Preparation of reactive DGEBA-adduct mixtures - Methods
- RESULTS AND DISCUSSION : Adduct production - Thermal properties - Rheological properties - Carbamate stability
- Fig. 1 : Diamine-type epoxy hardeners employed in this study
- Fig. 2 : Idealised MCDA-based adduct
- Fig. 3 : Viscosity development of DGEBA hardened with the various adducts and adduct-BnOH mixtures, at a) 23°C and b) 75°C. Viscosity data for DGEBA hardened with IPDA-A8 is not reported because the starting viscosity of this formulation exceeded 10000 mPas
- Fig. 4 : Shore D development over time of DGEBA hardened with MCDA-A16, IPDAA16, and MXDA-A16 adducts at 23°C (ambient atmosphere)
- Fig. 5 : Adducts and adduct-BnOH mixtures aged at 23°C and 50% relative humidity for 48 hours. The presence of carbamates was detected visually through the observation of white precipitate or surface irregularities, as was the case for IPDA-A2.5-BnOH
- Fig. 6 : Carbamate stability of pure adducts and adduct-BnOH mixtures aged at 23°C and 50% relative humidity, and spectral gloss readings of DGEBA hardened with A2.5-BnOH adducts at 8°C and 70% relative humidity
- Table 1 : Summary of adducts and adduct-BnOH mixtures
- Table 2 : Thermal properties of DGEBA hardened with adducts and adduct-BnOH mixtures
- Table 3 : Rheological properties of DGEBA hardened with adducts and adduct-BnOH mixtures
- Table 4 : Shore D and tack development of DGEBA hardened with adducts and adduct-BnOH mixtures |
En ligne : |
https://drive.google.com/file/d/1dnph6wSwc5MaA4x6fGb3WMYc6rqh8L6d/view?usp=drive [...] |
Format de la ressource électronique : |
Pdf |
Permalink : |
https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=31657 |
in SURFACE COATINGS INTERNATIONAL > Vol. 101.5 (10-11/2018) . - p. 258-262
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