mean well

Optics

EU-Call: New Product Functionalities Through Advanced Surface Manufacturing Processes for Mass Production

This call addresses research projects on surface modifying technologies (e.g. generation of micro- and nanostructured surfaces) that are suitable for mass production. Proposals for research on surfaces with special optical properties could be applicable but also structuring techniques on chip base.

LED professional

LED professional

Call opening date:

20 September 2016

Deadline:

19 January 2017

Specific Challenge: As a response to increasing competition in global markets, many industrial sectors (e.g. automotive, aerospace, tooling or packaging) aim at improving their product performances through surface functionalisation. As the products are increasingly complex in terms of scale (from nano to macro) and shape, processes need to deliver efficiently, ensuring an uncompromised quality together with high versatility and controlled costs. One way to reach this goal is to differentiate between a product body and its surface, where specific properties can be tailored. Furthermore, the required functionalities may be achieved with little or no addition of new raw material. For example, modifications in the surface geometry or even microstructure induced by texturing processes enable to improve the performance of those products by providing them with dedicated functionalities such as tailored friction, antibacterial properties, aesthetic issues or self-cleaning capabilities, among others.

In this context, substantial research is needed for exploring innovative approaches aimed at producing high added-value functional surfaces by a superficial modification of the substrate. Special attention should be paid to the cost efficiency of the novel surface manufacturing processes and to the development of technologies that are adaptable and up-scalable to real scale conditions and to their implementation into mass production conditions. Finally, environmental aspects of the processes should also be addressed.

Scope: The proposal should address surface-modifying methods which do not alter the chemical composition of the surface or add an extra layer of a different material, for example: micro-machining, texturing, photon-based technologies, laser, mechanical treatments, etc. These methods should be used to create new manufacturing processes that can be applied on mass production lines. Due to the need for cost-effective technologies, these processes should be easy to integrate within the existing manufacturing plants and cost-effectiveness should be demonstrated. The research activities should be multi-disciplinary and address all of the following issues:

  • Development of cost-efficient, up-scalable and adaptable surface processing techniques that introduce micro- or nano-scale modifications at the surface level of the part providing it with specific properties or capabilities.
  • Design and implementation of specific methods and systems that enable highly efficient up-scaling of the developed processing techniques from laboratory scale to real scale, with a specific objective to apply the processes for mass production.
  • Implementation of modelling tools to support selection of the processing parameters that lead to the targeted surface modifications.
  • Solutions which are economically viable, environmentally friendly and easy to transfer to other fields than the demonstrated fields of application.
  • In-process inspection and monitoring possibilities to ensure that the final results remain within the quality requirements.

The projects are expected to cover applied research but also demonstration activities, such as testing a prototype in a simulated operational environment. The ability of the demonstration activities to validate a technology’s high level of readiness will be reflected in the evaluation.

Activities are expected to focus on Technology Readiness Levels 4 to 6.

This topic is particularly suitable for SMEs.

The Commission considers that proposals requesting a contribution from the EU between EUR 3 and 5 million would allow this specific challenge to be addressed appropriately. Nonetheless, this does not preclude submission and selection of proposals requesting other amounts.

Additional information can be found here

Hat dir der Artikel gefallen?

Share this article

You could also like this

Optics

Materials as a Key Enabler for Next-Generation LED Lighting

Executive Summary: As LED technology approaches its theoretical efficiency limits, materials are becoming a primary driver of future lighting innovation. Advanced silicone materials improve optical stability, thermal management and long-term reliability compared with conventional thermoplastics.…

Optics

Gaggione Introduces HADAR: A Modular Optics Platform for Architectural Lighting

French optics specialist Gaggione has launched HADAR, a new modular family of architectural optics designed to simplify beam control while increasing flexibility for luminaire manufacturers and lighting designers. Available in three sizes—HADAR35, HADAR50, and HADAR70—the platform combines…

Optics

Dow’s New Study Bridges the Knowledge Gap on Blue Light Photothermal Aging of Thermoplastic Lens Clusters in LED lighting

Dow announced the results of a new study that evaluated the aging performance of commercially available lens clusters in LED lighting. The study examined blue light photothermal aging of both silicone and thermoplastic optics made of polycarbonate (PC), polymethyl methacrylate (PMMA) and…

Optics

AAC Technologies and Eulitha Announce Use of Eulitha’s Optical Lithography for Volume AR Waveguide Production

AAC Technologies, a global leader in advanced consumer electronics components and modules, and Eulitha AG, a pioneer in high-throughput optical lithography, today announced at the SPIE AR/VR Conference that AAC will begin utilizing Eulitha’s lithography technology for the volume production of…

Edison optoLTF TechnologyLoreos

The latest Press Releases

Explore All

Stay current with our monthly Update from the lighting industry

LEDprofessional Newsletter

You will receive a confirmation email. Unsubscribe anytime.