DESINK.Development of functional inks based on micro and nanocharges for application as coatings in different industrial sectors (Q3251753): Difference between revisions
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DESINK.Development of functional inks based on micro and nanocharges for application as coatings in different industrial sectors |
Revision as of 11:41, 12 October 2021
Project Q3251753 in Spain
Language | Label | Description | Also known as |
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English | DESINK.Development of functional inks based on micro and nanocharges for application as coatings in different industrial sectors |
Project Q3251753 in Spain |
Statements
73,002.0 Euro
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146,004.0 Euro
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50.0 percent
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1 January 2016
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31 December 2016
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INSTITUTO TECNOLOGICO DEL EMBALAJE, TRANSPORTE Y LOGISTICA
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46190
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Con el objetivo de solucionar los problemas existentes en las áreas claves del tejido productivo de la Comunidad Valenciana de baldosas cerámicas, suelos de madera y materiales de envase, se pretende desarrollar recubrimientos funcionales que permitirán reducir el desgaste en baldosas cerámicas y suelos derivados de madera con diseños por impresión inkjet y mejorar la barrera a gases de los materiales plásticos de envase. Concretamente se pretenden desarrollar, recubrimientos que contengan cargas de tamaño apropiado para cada aplicación, que mejoren las propiedades consideradas en este proyecto para cada material. Para conseguir las propiedades requeridas se utilizarán cargas inorgánicas de distinto tamaño de partícula, así como grafeno (desarrollado durante el proyecto), con un tamaño de partícula y funcionalización adecuadas para su aplicación mediante los sistemas de impresión existentes en el mercado para aplicaciones inkjet y flexo. En el caso de superficies cerámicas y suelos (Spanish)
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In order to solve the problems existing in the key areas of productive of Valencia ceramic tiles, wood flooring and packaging materials, it is to develop functional coatings that will reduce wear on ceramic tiles and soils derived from wood designs by inkjet printing and improved gas barrier plastic packaging materials. Specifically they intended to develop coatings containing loads of appropriate size for each application, which improve the properties considered in this project for each material. To achieve the required properties inorganic fillers of different particle size is used, and graphene (developed during the project), with a particle size and suitable for application functionalization by systems existing print on the market for inkjet applications and flexo . In the case of ceramic surfaces and soils derived from wood, coatings for application developed using inkjet technology, reducing product loss and VOC emissions associated with spray application (only products based sol (English)
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Paterna
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Identifiers
20F01020201A_IVCI00000DECA6059
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