Effect of mastic specifications on the fatigue and low-temperature performance of hot mix asphalt

被引:2
|
作者
Rasouli, Ramin [1 ]
Khavandi Khiavi, Alireza [1 ]
机构
[1] Univ Zanjan, Dept Civil Engn, Zanjan, Iran
关键词
Fatigue; low-temperature performance; four-point bending (4PB) beam test; semi-circle bending test (SCB); mastic density; MINERAL FILLERS; MIXTURE; RESISTANCE; CRACKING; POWDER; TESTS;
D O I
10.1080/10298436.2023.2215899
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
This study aimed to evaluate the effect of mastic specifications on the intermediate and low temperatures performance of hot mix asphalt. In this research study, four different asphalt mixtures were fabricated with two types of aggregate and bitumen at three different mastic densities (defined as F/B ratios). At intermediate temperature, Four-Point Bending (4PB) beam fatigue tests were carried out at 8 Hz frequency and the strain levels of 460, 750, and 1100 microstrain. Also, the low-temperature performance of mixtures was evaluated by using Semi-Circular Bending (SCB) tests at -6 degrees C, -18 degrees C and -12 degrees C, -24 degrees C for PG 64-16 and PG 58-22 fabricated mixtures, respectively. Fatigue test results showed that the fatigue life of asphalt mixtures was more influenced by the mastic density at the lower strain level. Moreover, a minimum mastic density was necessary for improving fatigue performance. The SCB test results revealed that increasing the mastic density makes higher values in the mixture's fracture energy, fracture toughness, cracking resistance index (CRI), and tensile strength. Also, the low-temperature performance of asphalt mixtures containing aggregate with a high abrasion value (AAV) was more dependent on the mastic density.
引用
收藏
页数:13
相关论文
共 50 条
  • [41] Analysis of the low temperature performance of warm mix asphalt
    Wang, Haijun
    FRONTIERS OF GREEN BUILDING, MATERIALS AND CIVIL ENGINEERING, PTS 1-8, 2011, 71-78 : 1259 - 1263
  • [42] Effect of the bitumen type on the temperature resistance of hot mix asphalt
    Sarroukh, M.
    Lahlou, K.
    Farah, M.
    MATERIALS TODAY-PROCEEDINGS, 2021, 45 : 7428 - 7431
  • [43] Effect of bitumen characteristics obtained according to EN and Superpave specifications on asphalt mixture performance in low-temperature laboratory tests
    Rys, Dawid
    Jaczewski, Mariusz
    Pszczola, Marek
    Jaskula, Piotr
    Bankowski, Wojciech
    CONSTRUCTION AND BUILDING MATERIALS, 2020, 231 (231)
  • [44] THE EFFECT OF INCORPORATING RECLAIMED ASPHALT PAVEMENT ON THE PERFORMANCE OF HOT MIX ASPHALT MIXTURES
    Idham, Mohd Khairul
    Hainin, Mohd Rosli
    JURNAL TEKNOLOGI, 2015, 77 (32):
  • [45] Evaluating field performance: Case study including hot mix asphalt performance-related specifications
    Hand, AJ
    Martin, AE
    Sebaaly, PE
    Weitzel, D
    JOURNAL OF TRANSPORTATION ENGINEERING, 2004, 130 (02) : 251 - 260
  • [46] Combined effect of new type of cellulose fibers and reclaimed asphalt on performance characteristics of stone mastic asphalt mix
    Vackova, Pavla
    Valentin, Jan
    Mondschein, Petr
    INSIGHTS AND INNOVATIONS IN STRUCTURAL ENGINEERING, MECHANICS AND COMPUTATION, 2016, : 1602 - 1609
  • [47] Mechanistic Fatigue Performance Evaluation of Stone Mastic Asphalt Mixtures: Effect of Asphalt Performance Grade and Elastic Recovery
    Lee, Jongsub
    Lee, Sungjin
    Hwang, Yujoong
    Kwon, Ohsun
    Yeon, Gyumin
    POLYMERS, 2024, 16 (17)
  • [48] Influence of low-temperature physical hardening on stiffness and tensile strength of asphalt concrete and stone mastic asphalt
    Judycki, Jozef
    CONSTRUCTION AND BUILDING MATERIALS, 2014, 61 : 191 - 199
  • [49] Predicting fatigue performance of hot mix asphalt using artificial neural networks
    Ahmed, Taher M.
    Green, Peter L.
    Khalid, Hussain A.
    ROAD MATERIALS AND PAVEMENT DESIGN, 2017, 18 : 141 - 154
  • [50] Evaluating fatigue performance of hot-mix asphalt using degradation parameters
    Ahmed, Taher M.
    Ahmed, Thamer Yousif
    Al-Hdabi, Abbas
    PROCEEDINGS OF THE INSTITUTION OF CIVIL ENGINEERS-CONSTRUCTION MATERIALS, 2020, 173 (03) : 111 - 122