4.6 Article

Evaluation of Rheological and Anti-Aging Properties of TPU/Nano-TiO2 Composite-Modified Asphalt Binder

Journal

MATERIALS
Volume 15, Issue 9, Pages -

Publisher

MDPI
DOI: 10.3390/ma15093000

Keywords

polyurethane; nano-titanium dioxide; rheological properties; micro-performance; ultraviolet aging

Funding

  1. National Natural Science Foundation of China [51408287, 51668038, 51868042]
  2. Distinguished Young Scholars Fund of Gansu Province [1606RJDA318]
  3. Natural Science Foundation of Gansu Province [1506RJZA064]
  4. Guidance Project by University and College in Gansu Province [2020C-13]
  5. Foundation of a Hundred Youth Talents Training Program of Lanzhou Jiao tong University

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The addition of TPU and nano-TiO2 to asphalt improves its rheological behavior, aging resistance, and prolongs its lifespan, with the best performance observed at 4% TPU and 1% nano-TiO2.
Research on polyurethane-modified asphalt has become very popular. To this end, researchers have explored different ways, such as the use of polyurethane, to improve the road performance of asphalt. However, according to existing experimental research findings, it seems that the use of polyurethane alone cannot completely improve the road performance of asphalt. Therefore, the influence of nano-titanium dioxide and polyurethane on the rheological behavior and anti-ultraviolet aging properties of asphalt was studied. In this research, the rheological and microscopic tests of asphalt were conducted using Dynamic Shear Rheometer, Curved Beam Rheometer, and Fourier Infrared Spectrometer. The results show that the addition of TPU and nano-TiO2 to the asphalt not only improves the high- and low-temperature rheological behavior of the asphalt, but also improves the thermal oxygen resistance and UV aging resistance of the asphalt, and prolongs the use performance. Considering economic factors and environmental influences, among all the selected dosages, 4% TPU and 1% nano-TiO2 had the best performance.

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