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Research on fatigue self-healing of asphalts modified by thermoplastic polyurethane (TPU) with different soft segments.

Authors :
Jin, Xin
Li, Deli
Fu, Haoxuan
Sun, Baoyun
Yang, Yanhai
Guo, Naisheng
Zhang, Jiupeng
Source :
Construction & Building Materials. Mar2024, Vol. 420, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

Research on asphalt fatigue and self-healing performance can more accurately model the damage and self-healing evolution principles in practical applications. In order to analyze the rationality of evaluation indexes based on rheology to evaluate the self-healing properties of TPU modified asphalt, a dynamic shear rheometer (DSR) was used in this study to perform time, temperature, and frequency sweep tests of TPU modified asphalt for analyzing the fatigue self-healing properties of TPU modified asphalt over a broader range of temperatures and loading frequencies. This method can improve the accuracy of the fatigue failure determination criteria of TPU modified asphalt and clarify the material performance parameters of TPU asphalt modifiers. The results showed that the increase in hard segment content (C h) and isocyanate radical index (r) can effectively alleviate the decrease in shear deformation resistance of modified asphalt caused by the increase in N (load repetition). N f50 (the number of loads when the normalized modulus drops to 0.5) is more suitable to evaluate the fatigue life of TPU modified asphalt compared with N p20 (the number of loads when the DER - N curve is offset by 20% deviation from the linear undamaged line) and N 2 (the number of load times corresponding to the intersection point of the tangent line of the DER – N fitted curve and the undamaged line). The degree of self-healing will also increase with the increase in C h and r. Besides, the higher the healing temperature and the healing time, the longer the fatigue life. The effects of the self-healing evaluation index (HI) on the self-healing index of TPU modified asphalt were as follows: healing temperature > healing time > soft segment > C h > r > degree of damage > degree of aging > deg r ee of self-healing. • The effects of different segments of polyurethanes on the fatigue self-healing ability of modified asphalt were analyzed. • A viscoelastic master curve for comprehensive analysis of wide temperature and wide frequency bands was established. • The versatility and accuracy of N f50 as an evaluation index for the fatigue life of TPU modified asphalt were determined. • Through comparative experiments, the appropriate synthesis parameters and dosage of TPU asphalt modifier were determined. • The effects of factors on the self-healing index HI were analyzed and sorted by gray correlation coefficient. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09500618
Volume :
420
Database :
Academic Search Index
Journal :
Construction & Building Materials
Publication Type :
Academic Journal
Accession number :
175962566
Full Text :
https://doi.org/10.1016/j.conbuildmat.2024.135574