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Coalescents performance / Keith Middleton in POLYMERS PAINT COLOUR JOURNAL - PPCJ, Vol. 195, N° 4488 (05/2005)
[article]
Titre : Coalescents performance Type de document : texte imprimé Auteurs : Keith Middleton, Auteur Année de publication : 2005 Article en page(s) : p. 24-28 Langues : Anglais (eng) Catégories : Coalescence (Sciences physiques)
Copolymère styrène acrylique
Copolymère vinyle acrylique
Polyacryliques
Résistance à l'abrasion
Revêtements -- Propriétés mécaniques:Peinture -- Propriétés mécaniques
Revêtements en bâtiment:Peinture en bâtiment
Revêtements en phase aqueuse -- Additifs:Peinture en phase aqueuse -- AdditifsIndex. décimale : 667.9 Revêtements et enduits Résumé : This paper explains the importance of choosing the right coalescent to improve the performance of water-based architectural coatings.
Architectural coatings make up approximately 50% of a 23 billion-litre global paint market. In Europe, the end-users of architectural coatings are split evenly between professional painters and do-it-yourself (DIY) clientele with applications focused primarily on interior walls and ceilings, and exterior façades. Various European market drivers, such as environmentalism, regulatory limits and globalisation have accelerated a move in architectural coatings from solvent-based systems to water-based systems :
- Environmentalism : an environmentally friendly push to lower VOC levels in architectural coatings, reflected by consumer preference for 'greener' architectural coatings. In most instances water-based coatings have lower VOC levels than those that are solvent-based.
- Regulatory limits : European Union Directive 2004/42/EC for Decorative and Vehicle Refinishing Paints calls for a reduction in VOC levels in both solvent-based and water-based systems by 2007.
The same regulatory calls for a more drastic reduction in VOC levels by 2010, making water-based systems the intuitive choice for architectural coatings.
- Globalisation : various coatings manufacturers and even retail chains now institute global environmental policies, which have led to a rationalisation of product lines, the introduction of consumer labeling schemes, a move toward water-based systems, and an overall reduction in the VOC levels of these water-based paints.Note de contenu : - Water-based coatings systems
- Choosing the right coalescent
- Types of coalescents : esters, ester-alcohols - ether alcohols - glycols - Coalescent performance properties
- Minimum film forming temperature (MFFT)
- Scrub resistance
- Shelf-life
- Colour development
- Low odour
- DriversPermalink : https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=27638
in POLYMERS PAINT COLOUR JOURNAL - PPCJ > Vol. 195, N° 4488 (05/2005) . - p. 24-28[article]Réservation
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Code-barres Cote Support Localisation Section Disponibilité 001971 - Périodique Bibliothèque principale Documentaires Disponible Silicone-based pH-adjuster : high efficiency, odourless and zero-VOC / Pedro Lazzarin Marani in POLYMERS PAINT COLOUR JOURNAL - PPCJ, Vol. 206, N° 4624 (09/2016)
[article]
Titre : Silicone-based pH-adjuster : high efficiency, odourless and zero-VOC Type de document : texte imprimé Auteurs : Pedro Lazzarin Marani, Auteur Année de publication : 2016 Article en page(s) : p. 18-20 Note générale : Bibliogr. Langues : Anglais (eng) Catégories : Amino-alcools
Copolymère styrène acrylique
Copolymère vinyle acrylique
Ester vinylique de l'acide versatique
Méthylsiliconate de potassium
pH
Revêtements -- Additifs:Peinture -- Additifs
SiliconesLes silicones, ou polysiloxanes, sont des composés inorganiques formés d'une chaine silicium-oxygène (...-Si-O-Si-O-Si-O-...) sur laquelle des groupes se fixent, sur les atomes de silicium. Certains groupes organiques peuvent être utilisés pour relier entre elles plusieurs de ces chaines (...-Si-O-...). Le type le plus courant est le poly(diméthylsiloxane) linéaire ou PDMS. Le second groupe en importance de matériaux en silicone est celui des résines de silicone, formées par des oligosiloxanes ramifiés ou en forme de cage (wiki).Index. décimale : 667.9 Revêtements et enduits Résumé : One of the biggest challenges that the coatings industry is currently facing is to ally a good product performance with sustainability, without impacting formulation costs. Several raw materials are available in the market, providing these two key factors to decorative coatings, although some components in a formulation interact with each other, affecting negatively its individuel effects. Among these components, there is the pH adjuster, as many of the existing products in the market have other side features that affect the performance of the resin, the dispersant, the defoamer and/or the biocide, among many others.
In this context, the development of silicone-based pH-adjusters brought several advantages as a consequence of their high adjustment capacity, allying improved performance, formulation costs reduction and sustainability. Their main characteristic is to be odourless and zero-VOC products, making it possible to develop odourless coatings or tow-VOC coatings, one of the great challenges for the Brazilian coating manufacturers. Adding to that, due to its high pH value, around 14, these products have a high adjustment power, reducing up to 75% the pH adjuster dosage level, depending of the evaluated formulation.
Besides being able to be used in several coatings systems (Styrene-Acrylic, Acrylic, Vinyl-Acrylic, VeoVA or VAE) and PVC levels, due to their silicone nature, these products also help in the film forming process, acting as a minor scale crosslinking agent, leading to improvements in the water resistance, scrub resistance and colour maintenance properties. Additionally, they present excellent results in storage stability and compatibility with several other raw materials, including but not restricted to biocides, defoamers and dispersants.Note de contenu : - Table 1. Comparative results obtained in laboratory betweenpotassium methylsiliconate and amino-alcohol
- Table 2. Results obtained for styrene-acrylic systems (S-A)
- Table 3. Results obtained for acrylic systems (A-A)
- Table 4. Results obtained for vinyl-acrylic systems (V-A)
- Table 5. Results obtained for VeoVA systemsEn ligne : https://drive.google.com/file/d/1bQ-vRdEsqjCoVH2mVCnEorGRViLuSAtl/view?usp=drive [...] Format de la ressource électronique : Permalink : https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=27105
in POLYMERS PAINT COLOUR JOURNAL - PPCJ > Vol. 206, N° 4624 (09/2016) . - p. 18-20[article]Réservation
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Code-barres Cote Support Localisation Section Disponibilité 18317 - Périodique Bibliothèque principale Documentaires Disponible