TiCN coating tribology for the circular economy of textile industries
Autor: | Dmitri Goljandin, Abrar Hussain, Mart Viljus, Vitali Podgursky, Maksim Antonov |
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Rok vydání: | 2021 |
Předmět: |
Materials science
Textile Polymers and Plastics business.industry Materials Science (miscellaneous) Circular economy media_common.quotation_subject Shredding (tree-pruning technique) 02 engineering and technology Tribology engineering.material 021001 nanoscience & nanotechnology Industrial and Manufacturing Engineering Manufacturing engineering Product (business) 020303 mechanical engineering & transports 0203 mechanical engineering Coating engineering Chemical Engineering (miscellaneous) Quality (business) 0210 nano-technology Coefficient of friction business media_common |
Zdroj: | Journal of Industrial Textiles. 51:8947S-8959S |
ISSN: | 1530-8057 1528-0837 |
DOI: | 10.1177/15280837211025726 |
Popis: | The circular economy is still a hypothetical field in Europe. Different shredding and manufacturing machinery parts in textile industries are presumed to enhance product quality and performance. The quality and performance of recycled textile products play a vital role in the development of textile recycling technologies. The quality is principally associated with the mechanical and tribological properties of machinery parts. In this article, TiCN Coating is used to determine the coefficient of friction of post-consumer cotton fabric. The scanning electron microscope, optical and mechanical profilometer, and tribometer were used for surface and tribological evaluations. The TiCN coating was found smooth and homogeneous. The average coating surface roughness parameters Rmax, Rz, Rp were 0.24 µm, 0.21 µm, and 0.20 µm, respectively. The dynamic coefficient of friction values was found 0.38 to 0.30 in the warp and 0.33 to 0.28 in weft directions. The increase in sliding distance is used for industrial applications and evaluations. The increase in distance deformed and fractured cotton fabric surface. The coefficient of friction and deformation becomes constant after 40 m of sliding distance. Based on coefficient of friction values, permanent deformation, fracture, and morphologies evaluations TiCN coatings could be used operationally for surface modification of textile machinery parts. The surface modification of textile machinery parts with TiCN coating can enhance the quality and performance of textile products. |
Databáze: | OpenAIRE |
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