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  4. Thermal and flame-retardant properties of epoxy vitrimers based on disulfide bonds
 
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2024
Presentation
Title

Thermal and flame-retardant properties of epoxy vitrimers based on disulfide bonds

Title Supplement
Presentation held at the Conference of the Modification, Degradation, Stabilization of Polymers Society 2024, 1-4 September 2024, Palermo
Abstract
Linear plastic economy leads to an unmanageable accumulation of plastic waste in the ecosystem. A change towards a sustainable circular plastics economy must be achieved. Especially the recyclability of thermosets and thermoset composites is limited and challenging. The development of reprocessable, reusable and recyclable thermosets is therefore of great importance. Vitrimers offer great potential in terms of recyclability as the incorporation of dynamic covalent bonds into a thermoset network provides a powerful method to recycle and reshape these plastics by topology rearrangements. For many applications especially in the transportation sector the thermal and mechanical properties of plastics are essential. Currently, thermoset based composites are mainly and extensively used for several interior applications. Vitrimers show very similar mechanical properties to thermosets. However, vitrimers consist of a dynamic covalent network, which changes its topology by thermal activation – offering a great potential to be more safe-, sustainable- and recyclable-by design. For application in the transportation sector, the thermal behavior and flame-retardant properties are of great importance.
Author(s)
Berner, Valeria  
Fraunhofer-Institut für Chemische Technologie ICT  
Huegun, Arrate  
Karlsruhe Institute of Technology -KIT-  
Hammer, Larissa  
BASF (Germany)
Cristadoro, Anna Maria
BASF (Germany)
Höhne, Carl-Christoph  orcid-logo
Fraunhofer-Institut für Chemische Technologie ICT  
Project(s)
Safe-, sUstainable- and Recyclable-by design Polymeric systems - A guidance towardS next generation of plasticS  
Funder
European Commission  
Conference
Modification, Degradation, Stabilization of Polymers Society (Conference) 2024  
Open Access
File(s)
Download (1.74 MB)
Rights
CC BY-NC-ND 4.0: Creative Commons Attribution-NonCommercial-NoDerivatives
DOI
10.24406/publica-4004
Language
English
Fraunhofer-Institut für Chemische Technologie ICT  
Keyword(s)
  • Flame retardant

  • Flame

  • fire & explosion testing

  • Flammschutz

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