Composite wind turbine blade recycling: value creation through Industry 4.0 to enable circularity in repurposing of composites

Raphael Geiger, Yasser Ahmad Hannan (Medlem af forfattergruppering), Christian Schlette (Medlem af forfattergruppering), Roberto Naboni (Medlem af forfattergruppering), William Travia (Medlem af forfattergruppering)

Publikation: Konferencebidrag uden forlag/tidsskriftPaperForskningpeer review

Abstrakt

Composite waste, especially from wind turbine blades will increase foreseeably. The
motivation of this paper is to develop new solutions to repurpose the global material stream coming from wind turbine blades at their end of use. Its suggested to use the composite structure for repurposing, differing from the available recycling methods that aim for a separation of the composite into fibre and matrix fractions. One key factor towards circularity in composite materials is converting significant amounts of composite material into multiple meaningful applications and products. Industry 4.0 can offer a systemic solution utilising robots and digital tools, such as a digital twin of a composite wind turbine blade. The digital handling of relevant material information can offer a new affordable material source to multiple industries, such as building industry or manufacturing businesses. Based on a digital platform the composite material can be made available for architects, designers and developers to repurpose composites
into multiple new products.
OriginalsprogEngelsk
Publikationsdato7. sep. 2020
Antal sider11
StatusUdgivet - 7. sep. 2020
Begivenhed41ˢᵗ Risø International Symposium on Materials Science - online, Kopenhagen, Danmark
Varighed: 7. sep. 202010. sep. 2020
Konferencens nummer: 41
https://www.vindenergi.dtu.dk/english/Research/Symposium-on-Materials-Science/41st-Risoe-International-Symposium-on-Materials-Science

Konference

Konference41ˢᵗ Risø International Symposium on Materials Science
Nummer41
Lokationonline
LandDanmark
ByKopenhagen
Periode07/09/202010/09/2020
Internetadresse

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