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Presented at the 11th International Conference on ICT in Education, Research and Industrial Applications: Integration, Harmonization and Knowledge Transfer Lviv, Ukraine, May 14-16, 2015. Author supplied: Abstract. User requirements and low-cost small quantity production are new challenges for the modern manufacturing industry. This means that small batch sizes or even the manufacturing of one single product should be affordable. To make such a system cost-effective it should be capable to use the available production resources for many different products in parallel. This paper gives a description of the requirements and architecture of an end-user driven production system. The end-user communicates with the production system by a web interface, so this manufacturing system can be characterized in terms of cloud comput- ing as the implementation of manufacturing as a service, abbreviated to MaaS.
Rapport inzake sociale en multiculturele integratie in de Euregio Maas-Rijn (SMI-EMR) ten behoeve van de netwerkvorming van multiculturele organisaties in het kader van de immigratie en integratiepolitiek van de Europese Unie in het Nederlandse deel van de Euregio Maas-Rijn.
Recycling of plastics plays an important role to reach a climate neutral industry. To come to a sustainable circular use of materials, it is important that recycled plastics can be used for comparable (or ugraded) applications as their original use. QuinLyte innovated a material that can reach this goal. SmartAgain® is a material that is obtained by recycling of high-barrier multilayer films and which maintains its properties after mechanical recycling. It opens the door for many applications, of which the production of a scoliosis brace is a typical example from the medical field. Scoliosis is a sideways curvature of the spine and wearing an orthopedic brace is the common non-invasive treatment to reduce the likelihood of spinal fusion surgery later. The traditional way to make such brace is inaccurate, messy, time- and money-consuming. Because of its nearly unlimited design freedom, 3D FDM-printing is regarded as the ultimate sustainable technique for producing such brace. From a materials point of view, SmartAgain® has the good fit with the mechanical property requirements of scoliosis braces. However, its fast crystallization rate often plays against the FDM-printing process, for example can cause poor layer-layer adhesion. Only when this problem is solved, a reliable brace which is strong, tough, and light weight could be printed via FDM-printing. Zuyd University of Applied Science has, in close collaboration with Maastricht University, built thorough knowledge on tuning crystallization kinetics with the temperature development during printing, resulting in printed products with improved layer-layer adhesion. Because of this knowledge and experience on developing materials for 3D printing, QuinLyte contacted Zuyd to develop a strategy for printing a wearable scoliosis brace of SmartAgain®. In the future a range of other tailor-made products can be envisioned. Thus, the project is in line with the GoChem-themes: raw materials from recycling, 3D printing and upcycling.
Chronische pijn is een groot, complex en duur probleem en heeft een grote impact op de kwaliteit van leven van patiënten, dagelijks functioneren, stemming en ziekteverzuim. Er zijn verschillende interventies ontwikkeld die met name gericht zijn op het beïnvloeden en veranderen van het gedrag waarbij zelfmanagement een belangrijke rol speelt. Echter het bestendigen van resultaten op lange termijn blijkt een groot probleem en leidt zelfs tot terugval naar “oud” gedrag waardoor patiënten opnieuw vaak kostbare hulp gaan zoeken. Er zijn twee additionele interventies ontwikkeld in een eerder RAAK-project (SOLACE) ter voorkoming van deze terugval: “Do It Your Self” en “Waarde gerichte Doelen” , echter de werkzaamheid van deze interventies op de lange termijn is niet onderzocht. Een eerste feasibility studie lijkt veelbelovend met positieve effecten naar de bruikbaarheid van deze interventies in de betrokken revalidatiecentra. Vanuit dit werkveld maar ook vanuit de patiënten kwam nadrukkelijk de vraag om deze interventies op effectiviteit te toetsen. Dit heeft geleid tot de onderzoeksvraag; “Is een additionele interventie (do it yourself en/of waarde gerichte doelen) gericht op het blijven toepassen van aangeleerde vaardigheden na een succesvol doorlopen pijn programma effectief in het bestendigen van de resultaten op de lange termijn en leidt dit tot een afname van het zorggebruik.” Het onderzoek wordt uitgevoerd in twee werkpakketten; (1) het ontwikkelen van een bruikbare app voor de ontwikkelde interventies in samenwerking met DIO Design en (2) een effectiviteit studie in de revalidatiecentra Adelante in Hoensbroek en Maastricht, Libra R&A locatie Weert en Heliomare Revalidatie in Wijk aan Zee. De doelstelling van het consortium is om de samen met zorgprofessionals, patiënten, beroepsvereniging en ontwerpers een product ter voorkoming van terugval verder te ontwikkelen en te toetsen. Na afronding van dit project zijn de op effectiviteit getoetste additionele interventies, DIY en WD, klaar om landelijk te worden uitgerold.
The textile and clothing sector belongs to the world’s biggest economic activities. Producing textiles is highly energy-, water- and chemical-intensive and consequently the textile industry has a strong impact on environment and is regarded as the second greatest polluter of clean water. The European textile industry has taken significant steps taken in developing sustainable manufacturing processes and materials for example in water treatment and the development of biobased and recycled fibres. However, the large amount of harmful and toxic chemicals necessary, especially the synthetic colourants, i.e. the pigments and dyes used to colour the textile fibres and fabrics remains a serious concern. The limited range of alternative natural colourants that is available often fail the desired intensity and light stability and also are not provided at the affordable cost . The industrial partners and the branch organisations Modint and Contactgroep Textiel are actively searching for sustainable alternatives and have approached Avans to assist in the development of the colourants which led to the project Beauti-Fully Biobased Fibres project proposal. The objective of the Beauti-Fully Biobased Fibres project is to develop sustainable, renewable colourants with improved light fastness and colour intensity for colouration of (biobased) man-made textile fibres Avans University of Applied Science, Zuyd University of Applied Sciences, Wageningen University & Research, Maastricht University and representatives from the textile industry will actively collaborate in the project. Specific approaches have been identified which build on knowledge developed by the knowledge partners in earlier projects. These will now be used for designing sustainable, renewable colourants with the improved quality aspects of light fastness and intensity as required in the textile industry. The selected approaches include refining natural extracts, encapsulation and novel chemical modification of nano-particle surfaces with chromophores.