Q3166288 (Q3166288): Difference between revisions

From EU Knowledge Graph
Jump to navigation Jump to search
(‎Changed an Item: Edited by the materialized bot - inferring region from the coordinates)
(‎Created claim: summary (P836): The main objective of the project is to develop application solutions in automotive lighting components with high_x000D_ electromagnetic compatibility, low weight and low cost, using recycled plastics electric conductors integrated into the_x000D_ headlamp or pilot structure. New conductive plastic formulations must be developed to avoid interference of electromagnetic character_x000D_. To this end, different alternatives for additives or treatm...)
Property / summary
 
The main objective of the project is to develop application solutions in automotive lighting components with high_x000D_ electromagnetic compatibility, low weight and low cost, using recycled plastics electric conductors integrated into the_x000D_ headlamp or pilot structure. New conductive plastic formulations must be developed to avoid interference of electromagnetic character_x000D_. To this end, different alternatives for additives or treatment will be investigated. The main features that_x000D_ must meet the materials obtained are: they are lightweight (plastic materials base), with a wide response to magnetic field and_x000D_ electric field, competitively priced and processable by extrusion and injection._x000D_ The characterisation of the conductive and shielding properties EMC of the new polymers to be developed in this project, is_x000D_ a specific aspect of the research to be taken into account. To perform this characterisation will be addressed a research work regarding_x000D_ to test and validate electromagnetic simulations, and of the materials and assemblies themselves to be developed through the_x000D_ acquisition of an anecoic chamber._x000D_ The project aims to equip VALEO with the technological capability to determine, in different ranges, the electrical resistivities of the plastic materials to be used in the manufacture of vehicle lighting systems._x000D_ The project’s main objectives are:_x000D_releaseables for electro-injection and electroplating functions (e.g., etc.) (English)
Property / summary: The main objective of the project is to develop application solutions in automotive lighting components with high_x000D_ electromagnetic compatibility, low weight and low cost, using recycled plastics electric conductors integrated into the_x000D_ headlamp or pilot structure. New conductive plastic formulations must be developed to avoid interference of electromagnetic character_x000D_. To this end, different alternatives for additives or treatment will be investigated. The main features that_x000D_ must meet the materials obtained are: they are lightweight (plastic materials base), with a wide response to magnetic field and_x000D_ electric field, competitively priced and processable by extrusion and injection._x000D_ The characterisation of the conductive and shielding properties EMC of the new polymers to be developed in this project, is_x000D_ a specific aspect of the research to be taken into account. To perform this characterisation will be addressed a research work regarding_x000D_ to test and validate electromagnetic simulations, and of the materials and assemblies themselves to be developed through the_x000D_ acquisition of an anecoic chamber._x000D_ The project aims to equip VALEO with the technological capability to determine, in different ranges, the electrical resistivities of the plastic materials to be used in the manufacture of vehicle lighting systems._x000D_ The project’s main objectives are:_x000D_releaseables for electro-injection and electroplating functions (e.g., etc.) (English) / rank
 
Normal rank
Property / summary: The main objective of the project is to develop application solutions in automotive lighting components with high_x000D_ electromagnetic compatibility, low weight and low cost, using recycled plastics electric conductors integrated into the_x000D_ headlamp or pilot structure. New conductive plastic formulations must be developed to avoid interference of electromagnetic character_x000D_. To this end, different alternatives for additives or treatment will be investigated. The main features that_x000D_ must meet the materials obtained are: they are lightweight (plastic materials base), with a wide response to magnetic field and_x000D_ electric field, competitively priced and processable by extrusion and injection._x000D_ The characterisation of the conductive and shielding properties EMC of the new polymers to be developed in this project, is_x000D_ a specific aspect of the research to be taken into account. To perform this characterisation will be addressed a research work regarding_x000D_ to test and validate electromagnetic simulations, and of the materials and assemblies themselves to be developed through the_x000D_ acquisition of an anecoic chamber._x000D_ The project aims to equip VALEO with the technological capability to determine, in different ranges, the electrical resistivities of the plastic materials to be used in the manufacture of vehicle lighting systems._x000D_ The project’s main objectives are:_x000D_releaseables for electro-injection and electroplating functions (e.g., etc.) (English) / qualifier
 
point in time: 12 October 2021
Timestamp+2021-10-12T00:00:00Z
Timezone+00:00
CalendarGregorian
Precision1 day
Before0
After0

Revision as of 17:22, 12 October 2021

Project Q3166288 in Spain
Language Label Description Also known as
English
No label defined
Project Q3166288 in Spain

    Statements

    0 references
    922,749.6 Euro
    0 references
    1,153,437.0 Euro
    0 references
    80.0 percent
    0 references
    1 July 2016
    0 references
    30 June 2018
    0 references
    VALEO ILUMINACION, S.A.
    0 references
    0 references

    37°43'20.14"N, 3°58'13.15"W
    0 references
    23060
    0 references
    El objetivo principal del proyecto es desarrollar soluciones de aplicación en componentes de iluminación para automoción con elevada_x000D_ compatibilidad electromagnética, bajo peso y bajo coste, mediante plásticos reciclados conductores de electricidad integrados en la_x000D_ estructura del faro o piloto. Se deberán desarrollar nuevas formulaciones plásticas conductoras que eviten las interferencias de carácter_x000D_ electromagnético. Para ello, se investigarán diferentes alternativas de aditivación y/o tratamiento. Las características principales que deben_x000D_ cumplir los materiales que se obtengan son: que sean ligeros (base materiales plásticos), de amplia respuesta frente a campo magnético y_x000D_ campo eléctrico, de precio competitivo y procesables mediante extrusión e inyección._x000D_ La caracterización de las propiedades conductoras y de apantallamiento EMC de los nuevos polímeros a desarrollar en este proyecto, es_x000D_ un aspecto propio de la investigación a tener en cuenta. Para realizar esta caracterización se abordará un trabajo de investigación respecto_x000D_ al ensayo y validación de las simulaciones electromagnéticas, y de los propios materiales y conjuntos a desarrollar a través de la_x000D_ adquisición de una cámara anecoica._x000D_ El proyecto pretende dotar a VALEO de la capacidad tecnológica para determinar, en diferentes rangos, las resistividades eléctricas de los materiales plásticos a emplear en la fabricación de sistemas de iluminación de vehículos._x000D_ Los objetivos específicos principales del proyecto son:_x000D_ - Desarrollo de un material plástico (polímero y aditivos) basado en polímeros reciclados, conductor de la electricidad en grado suficiente como para realizar apantallamiento electromagnético y asegurar EMC (en emisión y recepción)._x000D_ - Desarrollo y prototipado de conceptos de producto fabricables por inyección que realicen la función de apantallamiento._x000D_ - Validación de las cualidades de apantallamiento electromagnético y descarga electrostática. (Spanish)
    0 references
    The main objective of the project is to develop application solutions in automotive lighting components with high_x000D_ electromagnetic compatibility, low weight and low cost, using recycled plastics electric conductors integrated into the_x000D_ headlamp or pilot structure. New conductive plastic formulations must be developed to avoid interference of electromagnetic character_x000D_. To this end, different alternatives for additives or treatment will be investigated. The main features that_x000D_ must meet the materials obtained are: they are lightweight (plastic materials base), with a wide response to magnetic field and_x000D_ electric field, competitively priced and processable by extrusion and injection._x000D_ The characterisation of the conductive and shielding properties EMC of the new polymers to be developed in this project, is_x000D_ a specific aspect of the research to be taken into account. To perform this characterisation will be addressed a research work regarding_x000D_ to test and validate electromagnetic simulations, and of the materials and assemblies themselves to be developed through the_x000D_ acquisition of an anecoic chamber._x000D_ The project aims to equip VALEO with the technological capability to determine, in different ranges, the electrical resistivities of the plastic materials to be used in the manufacture of vehicle lighting systems._x000D_ The project’s main objectives are:_x000D_releaseables for electro-injection and electroplating functions (e.g., etc.) (English)
    12 October 2021
    0 references
    Martos
    0 references

    Identifiers

    IDI-20160612
    0 references