4.6 Article

Experimental Study on Activated Diatomite Modified Asphalt Pavement in Deep Loess Area

Journal

PROCESSES
Volume 10, Issue 6, Pages -

Publisher

MDPI
DOI: 10.3390/pr10061227

Keywords

asphalt modifier; activated diatomite; experimental research; road performance; mix ratio design

Funding

  1. Natural Science Foundation of Gansu Province [20JR5RA490]
  2. Gansu University Innovation Fund Project [2020B-219, 2021A-126]
  3. Scientific research project of Gansu Provincial Department of housing and urban rural development [JK2021-56]

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This study compared the performance of diatomite additive and SBS modifier in asphalt pavements through laboratory tests and on-site road paving, and concluded that diatomite modified asphalt mixture has better stability and fatigue resistance in loess areas.
In order to effectively prevent and control the rutting problem of asphalt pavement in the deep loess area of Eastern Gansu and reduce road diseases, diatomite was added into the asphalt mixture for laboratory tests. Through Marshall test and rutting test, the optimum mix proportion of the diatomite asphalt mixture, and the optimal mix amount of the diatomite in this area were determined. The pavement performance of activated diatomite asphalt pavement and SBS asphalt pavement in this area is compared and analyzed through laboratory tests and on-site road paving. The test results show that under the same ambient temperature, the activated diatomite asphalt pavement has the advantages of lower surface temperature, high stability, and low-water permeability coefficient than SBS modified asphalt pavement. In addition, by fitting the fatigue test data of these two asphalt pavements, it is found that the fatigue life of diatomite asphalt mixture is more sensitive to the change in stress level and has better fatigue resistance. Therefore, it is concluded that the use of diatomite modified asphalt pavement in the loess area can improve the temperature stability of the pavement, prolong the service life, and reduce the cost of construction, which can be popularized.

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