Micromechanical analyses for measurement and prediction of hot-mix asphalt fracture energy

被引:0
|
作者
Department of Civil and Coastal Engineering, University of Florida, P.O. Box 116580, Gainesville, FL 32611-6580, United States [1 ]
不详 [2 ]
不详 [3 ]
机构
来源
Transp Res Rec | 2006年 / 1970卷 / 186-195期
关键词
Asphalt - Composite micromechanics - Crack initiation - Mathematical models - Mixtures - Strain measurement;
D O I
10.3141/1970-22
中图分类号
学科分类号
摘要
A verification of fracture energy density is presented as a fundamental fracture threshold in hot-mix asphalt. Fracture energy density was evaluated with the semicircular bending (SCB) test Experimental analyses were enhanced by a digital image correlation system capable of providing a dense and accurate displacement-strain field of composite materials at the microstructural level and suitable for describing the cracking behavior of materials at crack initiation. The resulting fracture behavior in the SCB was predicted with a displacement discontinuity method to explicitly model the microstructure of asphalt mixtures and to predict their fracture energy density. The input parameters for the displacement discontinuity micromechanical model of the SCB were obtained from the Superpave® indirect tensile test. The predicted crack initiation and crack propagation patterns are consistent with observed cracking behavior. The results also imply that fracture in mixtures can be modeled effectively with a micromechanical approach that allows for crack growth both along aggregate surfaces and through aggregates. Finally, the results presented lead to the promising statement that fracture energy density for mixtures is a fundamental fracture threshold and can be both consistently measured and predicted for different laboratory test configurations.
引用
收藏
相关论文
共 50 条
  • [21] Effects of Reclaimed Asphalt Pavement on Hot-mix Asphalt
    Islam, Md Rashadul
    Mannan, Umme A.
    Rahman, Asm A.
    Tarefder, Rafiqul A.
    ADVANCES IN CIVIL ENGINEERING MATERIALS, 2014, 3 (01): : 291 - 307
  • [22] Micromechanical simulation of hot mix asphalt
    Chang, KNG
    Meegoda, JN
    JOURNAL OF ENGINEERING MECHANICS-ASCE, 1997, 123 (05): : 495 - 503
  • [23] Investigation on Fracture Performance of Hot-Mix Asphalt with Reclaimed Asphalt Pavement under Fatigue Loading
    Zhou, Xingren
    Song, Weimin
    Wu, Hao
    COATINGS, 2023, 13 (08)
  • [24] Effect of binder type, aggregate, and mixture composition on fracture energy of hot-mix asphalt in cold climates
    Braham, Andrew F.
    Buttlar, William G.
    Marasteanu, Mihai O.
    TRANSPORTATION RESEARCH RECORD, 2007, (2001) : 102 - 109
  • [25] Dissipated energy approach to study hot-mix asphalt healing in fatigue
    Carpenter, Samuel H.
    Shen, Shihui
    BITUMINOUS PAVING MIXTURES 2006, 2006, (1970): : 178 - +
  • [26] Online tools for hot-mix asphalt monitoring
    White, GC
    Mahoney, JP
    Turkiyyah, GM
    Willoughby, KA
    Brown, ER
    CONSTRUCTION 2002: MATERIALS AND CONSTRUCTION, 2002, (1813): : 124 - 132
  • [27] Effectiveness of lime in hot-mix asphalt pavements
    Sebaaly, PE
    Hitti, E
    Weitzel, D
    BITUMINOUS PAVING MIXTURES 2003: MATERIALS AND CONSTRUCTION, 2003, (1832): : 34 - 41
  • [28] The state of practice in hot-mix asphalt sampling
    Elseifi, M. A.
    Trepanier, J.
    Wakefield, H.
    Pine, W. J.
    Dahhan, A.
    INTERNATIONAL JOURNAL OF PAVEMENT ENGINEERING, 2011, 12 (02) : 111 - 119
  • [29] Gradation effects on hot-mix asphalt performance
    Hand, Adam J.
    Stiady, James L.
    White, Thomas D.
    Noureldin, A. Samy
    Galal, Khaled
    2001, National Research Council
  • [30] Gradation effects on hot-mix asphalt performance
    Hand, AJ
    Stiady, JL
    White, TD
    Noureldin, AS
    Galal, K
    ASPHALT MIXTURES 2001: MATERIALS AND CONSTRUCTION, 2001, (1767): : 152 - 157