References
- F. Sommer, V. Dietze, A. Baum, J. Sauer, S. Gilge, C. Maschowski, and R. Giere, "Tire abrasion as a major source of microplastics in the environment", Aerosol Air Qual. Res., 18, 2014 (2018). https://doi.org/10.4209/aaqr.2018.03.0099
- S. Wagner, T. Huffer, P. Klockner, M. Wehrhahn, T. Hofmann, and T. Reemtsma, "Tire wear particles in the aquatic environment - A review on generation, analysis, occurrence, fate and effects", Wear Res., 139, 83 (2018). https://doi.org/10.1016/j.watres.2018.03.051
- M. Dall'Osto, D. C. S. Beddows, J. K. Gietl, O. A. Olatunbosun, X. Yang, and R. M. Harrison, "Characteristics of tyre dust in polluted air: Studies by single particle mass spectrometry (ATOFMS)", Atmos. Environ., 94, 224 (2014). https://doi.org/10.1016/j.atmosenv.2014.05.026
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- ASTM D5963, "Standard Test Method for Rubber Property - Abrasion Resistance (Rotary Drum Abrader)".
- ASTM D2228, "Standard Test Method for Rubber Property - Relative Abrasion Resistance by Pico Abrader Method".
- ISO 4649, "Rubber, vulcanized, or thermoplastic - Determination of abrasion resistance using a rotating cylindrical drum device".
- J.-H. Lee, J. Lee, T. J. Han, and H. M. Jeong, "Improvement of abrasion resistance and friction of rubber blend composition", Elast. Compos., 55, 161 (2020). https://doi.org/10.7473/ec.2020.55.3.161
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- K. A. Grosch, "Rubber abrasion and tire wear", Rubber Chem. Technol., 81, 470 (2008). https://doi.org/10.5254/1.3548216
- ISO 23233:2009, "Rubber, vulcanized or thermoplastic - Determination of resistance to abrasion using a driven, vertical abrasive disc".
- S.-S. Choi, S. R. Yang, E. Chae, and C. E. Son, "Influence of carbon black contents and rubber compositions on formation of wear debris of rubber vulcanizates", Elast. Compos., 55, 108 (2020). https://doi.org/10.7473/EC.2020.55.2.108