The use of reclaimed rubber from waste tires for production of dynamically cured natural rubber/reclaimed rubber/polypropylene blends: effect of reclaimed rubber loading
รหัสดีโอไอ
Creator Anoma THITITHAMMAWONG
Title The use of reclaimed rubber from waste tires for production of dynamically cured natural rubber/reclaimed rubber/polypropylene blends: effect of reclaimed rubber loading
Contributor Chesidi HAYICHELAEH, Witchuda NAKASON, Nuruasvare JEHVOH
Publisher Metallurgy and Materials Science Research Institute Chulalongkorn University
Publication Year 2562
Journal Title Journal of Metals Materials and Minerals
Journal Vol. 29
Journal No. 2
Page no. 98-104
Keyword Reclaimed rubber, Waste tires, Thermoplastic vulcanizates, Natural rubber, Polypropylene
URL Website http://ojs.materialsconnex.com/index.php/jmmm/article/view/472
Website title The use of reclaimed rubber from waste tires for production of dynamically cured natural rubber/reclaimed rubber/polypropylene blends: Effect of reclaimed rubber loading | Thitithammawong | Journal of Metals Materials and Minerals
ISSN 8576149
Abstract Reclaimed rubber (RR) from waste tires was introduced into thermoplastic vulcanizates (TPVs) based on blends of natural rubber (NR)/RR/polypropylene (PP). The curing characteristics of NR/RR compounds together with properties of TPVs, i.e., mixing and dynamic vulcanization behaviors and mechanical, dynamic and morphological properties, were investigated with respect to RR content. The results show that the RR affects static and dynamic vulcanization of rubber molecules by increasing cure rate but lowers curing efficiency. Increasing the RR content in NR/RR/PP TPVs slightly reduces tensile strength but with a sharp impact on elongation at break. Dynamic properties reveal that elastomeric response of NR/RR/PP TPVs is inferior relative to that of NR/PP TPV. However, the complex viscosity indicates improved processability of the TPVs. SEM micrographs confirm dispersed phase morphology with vulcanized NR and RR particles embedded in the PP matrix, and the particle size increases with RR content.
Metallurgy and Materials Science Research Institute, Chulalongkorn University ​

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