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 TERMINÉ 
BIO4SELF aims at fully biobased self-reinforced polymer composites (SRPC). To produce the SRPCs two polylactic acid (PLA) grades are required: a low melting temperature (Tm) one to form the matrix and an ultra high stiffness and high Tm one to form the reinforcing fibres. To reach unprecedented stiffness in the reinforcing PLA fibres, we will combine PLA with bio-LCP (liquid crystalline polymer) f ...
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 16

 TERMINÉ 

Wind Blade Using Cost-Effective Advanced Composite Lightweight Design (WALID)

Date du début: 1 févr. 2013, Date de fin: 31 janv. 2017,

WALiD will combine design, material and process developments using thermoplastic materials to create cost-efficient, lightweight and recyclable blades which will be demonstrated by industrial end-users. The power generated by off-shore wind turbines is proportional to the rotor plane area of the blade. However, the weight of large blades puts the materials used under considerable strain, leading t ...
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 15

 TERMINÉ 
The HyperMembrane consists on a system of a Physical and Digital elements that will allow a shape adaptable constructionsystem –and its procedure to put in shape- able to generate multiple and non-predetermined shapes, modifiable regardingto different spatial, solar or energetic requirements.- Physical HyperMembrane is an amazingly shape-adaptable selfsupportingstructure (roof, façade,…) able to s ...
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 9

 TERMINÉ 

Resource-Efficient Self-Reinforced Plastic Materials and Processing (ESPRIT)

Date du début: 1 oct. 2008, Date de fin: 31 mars 2012,

The aims of the Esprit project are to reduce the amount of plastic used to make a component by 30% and reduce component weight by 30%, by developing the next generation of lightweight, self-reinforced plastics and the energy-efficient manufacturing processes needed to produce components from this family of materials. Current forms of self-reinforced plastics typically offer typically 3-5 times th ...
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