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H2020 PILOTS-04-2017: Funcionalización de plasma de microfluídica con impresión 3D o moldeo por inyección

Resumen

Tipo:
Búsqueda de socios
Referencia:
RDGR20160729001
Publicado:
23/08/2016
Caducidad:
23/08/2017
Resumen:
Un equipo de un centro de investigación griego está preparando una propuesta para la convocatoria en dos fases H2020-PILOTS-04-2017, con fecha límite el 27 de octubre de 2016. El objetivo es suministrar un sistema de microfluídica mediante impresión 3D y moldeo por inyección basado en nanotexturizado y funcionalización química con procesamiento de plasma. El equipo de investigación busca pequeñas y medianas empresas y organismos de investigación con experiencia en moldeo por inyección o impresión 3D en microfluídica para formar un consorcio competitivo.

Details

Tittle:
H2020 PILOTS-04-2017: Plasma functionalization of 3 dimensional printed or injection molded microfluidics
Summary:
A research team from a Greek research centre is preparing a proposal for H2020-PILOTS-04-2017-two-stages with a 27 October 2016 deadline. The aim of this project is to provide a 3D printed or injection molded microfluidics system by utilizing nanotexturing and chemical functionalization with plasma processing. The team is seeking small -Y- medium enterprises and research organizations with expertise in injection molding or 3D printing of microfluidics to complement a competitive consortium.
Description:
The main aim of this project is to advance the technology readiness level of plasma nanotexturing as an additional step of functionalization to 3 dimensional printed or injection molded polymeric and even ceramic microfluidics. This step will be performed in vacuum and will be carried out after the microfluidics fabrication and ideally before its sealing.

This project will deliver a 3 dimensional printed or injection molded microfluidics system by utilizing nanotexturing and chemical functionalization with plasma processing. This technique will provide improved surfaces with enhanced properties in relation to scratch and abrasion resistance, super hardness and mechanical resistance that rivals diamond in performance, improved wear resistance and corrosion inhibition, bio-compatibility, control of reflectivity, sensing ability, self-cleaning surfaces improving many products such as technical textiles and papers, structural elements for machinery, construction elements, transportation, etc.

The main research and developement activities that will take place during the project are:

1. Nanotexturing -Y- chemical functionalization of new materials with plasma
2. Optimization of production process in pilot level
3. Upscaling of 3 dimensional printed system
4. Development of microfluidic system and application in different domains
5. Demonstration of functionalities
6. Life cycle analysis of the process

The proposed pilot lines by the project will address the development, upscaling and demonstration in relevant industrial environments of reliable manufacturing processes to obtain nanostructured surfaces with mechanically enhanced properties.

The team is seeking companies with expertise in a. microfluidics for contributing in the design and development of microfluidics system, b. 3 dimensional printing systems for contributing in the optimization of 3D printing system, c. injection molding for Micro-Electro-Mechanical Systems for contributing in the development of micro elecro mechanical systems by injection molding.

Proposal deadline: 27/10/2016 (1st stage)
EoIs deadline: 30/09/2016
Stage of Development:
Proposal under development

Partner sought

Partner Sought:
The team is seeking the following type of partners: 1. Companies active in microfluidics for contributing in the design and development of microfluidics system 2. Companies active in 3 dimensional printing systems for contributing in the optimization of 3D printing system 3. Companies active in injection molding for Micro-Electro-Mechanical Systems for contributing in the development of micro elecro mechanical systems by injection molding 4. University/research centre with expertise in life cycle analysis in order to do the life cycle analysis of the developed products and technologies of the project.
Type of Partnership Considered:
RDR

Client

Type and Size of Client:
R-Y-D Institution
Already Engaged in Trans-National Cooperation:
Si
Languages Spoken:
English
Greek

Dissemination

Programme-call

Evaluation Scheme:
IA Innovation action DeadlineModel: two-stage
Coordinator Required:
No
Deadline for Call:
27/10/2016
Project Duration:
0