China Plastics ›› 2024, Vol. 38 ›› Issue (8): 94-99.DOI: 10.19491/j.issn.1001-9278.2024.08.015

• Plastic and Environment • Previous Articles     Next Articles

Effect of BMH type warm mixture on fatigue properties of waste plastic/SBS composite modified asphalt

XU Chuanhao1(), SHI Zhenwu1(), CHI Bo2()   

  1. 1.Faculty of Civil Engineering and Transportation,Northeast Forestry University,Harbin 150040,China
    2.Longjian Road and Bridge Company Limited,Harbin 150009,China
  • Received:2023-12-08 Online:2024-08-26 Published:2024-08-19

Abstract:

In this paper, the fatigue resistance of waste plastic/butadiene styrene block polymer(SBS) composite modified asphalt was analyzed by temperature scanning test, time scan test, linear amplitude scanning test and infrared test using a dynamic shear rheometer. The results indicated that BMH warm mixture could reduce the fatigue factor, reduce the dissipation energy, and improve the fatigue resistance of waste plastic/SBS modified asphalt, and the best performance was at a content of 1.2 wt%. Both normalized dynamic modulus decays to an index value of 50 % of the initial modulus and stiffness ratio (S)×times of cyclic loading (N) can be used to characterize the fatigue life of warm⁃mix waste plastic/SBS composite modified asphalt, and the fatigue life characterized by S×N index was generally lower than that of Nf50, the fatigue resistance improved by 1.2 wt% content was the best, and the improvement effect of 1.4 wt% content did not increase but decreased. BMH warm mix had a more obvious effect on the fatigue performance of aging asphalt samples. Regardless of whether it is an aged asphalt sample or an unaged asphalt sample, the improvement effect of warm mix was more prominent in the environment with high strain level. The fatigue resistance of 1.2 wt% BMH mixture sample was the best. BMH warm mix could improve the fatigue resistance of asphalt by reducing the content of carbonyl and sulfoxide groups, and the effect on the aging asphalt was more obvious, which was consistent with the test results of linear amplitude scanning.

Key words: waste plastic/butadiene styrene block polymer composite modified asphalt, warm mix technology, time scanning, linear amplitude scanning, fatigue performance

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