Determination of low-temperature crack control parameter of binding asphalt materials based on gray correlation analysis

被引:37
作者
Zheng, Chuanfeng [1 ]
Li, Ruiming [1 ]
Hu, Mingjun [2 ]
Zou, Linlin [1 ]
机构
[1] Jilin Univ, Coll Construct Engn, Changchun 130026, Jilin, Peoples R China
[2] Tongji Univ, Minist Educ, Key Lab Rd & Traff Engn, Shanghai 200092, Peoples R China
基金
中国国家自然科学基金;
关键词
Asphalt mastic; Asphalt-aggregate; Index of flexural strain energy density; Gray correlation analysis; Low-temperature crack; Control parameter; PERFORMANCE; CONCRETE; BINDER; FRACTURE; RESISTANCE; MIXTURES; PROPERTY; STRENGTH; MODEL;
D O I
10.1016/j.conbuildmat.2019.05.065
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Convenient evaluation indexes for the low-temperature cracking of matrix asphalt, asphalt mastic, and asphalt-fine aggregate combination under different low-temperature conditions are determined. On the basis of bending failure test, the stress-strain curves of the three asphalt materials under different low-temperature conditions are ascertained to obtain the critical value of the bending strain energy density, which can effectively characterize the low-temperature crack resistance. On the basis of gray relational analysis, the correlation between the critical value of the bending strain energy density of the above-mentioned materials and their ultimate bending failure strength and strain under low-temperature conditions is determined, and the reasonable strength or strain index of different materials at dissimilar temperatures is acquired. Experimental results show that the three asphalt materials exhibit different low-temperature performance changes due to dissimilar material ratios. The changes of asphalt mastic and matrix asphalt are similar, whereas the change of the asphalt-fine aggregate combination differs from those of the two. Gray correlation analysis results show that, for the matrix asphalt and asphalt mastic, the critical fitting effect of ultimate bending failure strength with the bending strain energy density is better at 0 degrees C to -10 degrees C. Thus, the ultimate bending failure strength can be reasonably used as the low-temperature cracking control index. Under the condition of -10 degrees C to -30 degrees C, the ultimate bending failure strain can be considered the evaluation index of low-temperature cracking. For the asphalt-fine aggregate combination, the deformation capacity can be suitably used as the evaluation method of low-temperature cracking in the entire low-temperature range of 0 degrees C to -30 degrees C. These results simplify the evaluation method of low-temperature cracking performance of asphalt materials, which is important for improving the low-temperature performance of these materials. (C) 2019 Elsevier Ltd. All rights reserved.
引用
收藏
页码:226 / 233
页数:8
相关论文
共 23 条
[1]   Study of the porous asphalt performance with cellulosic fibres [J].
Afonso, Marcia Lopes ;
Dinis-Almeida, Marisa ;
Fael, Cristina Sena .
CONSTRUCTION AND BUILDING MATERIALS, 2017, 135 :104-111
[2]   Fatigue performance evaluation of modified asphalt binder using of dissipated energy approach [J].
Ameri, Mahmoud ;
Seif, Mohammadreza ;
Abbasi, Massoumeh ;
Molayem, Mohammad ;
KhavandiKhiavi, Alireza .
CONSTRUCTION AND BUILDING MATERIALS, 2017, 136 :184-191
[3]   Viscosity criteria and methodology for estimating the optimum compaction temperatures of polymer modified asphalt binders in hot mix asphalt design [J].
Geng, Han ;
Li, Lihan ;
Han, Hao .
CONSTRUCTION AND BUILDING MATERIALS, 2016, 128 :308-314
[4]   Implementing fractional viscoelastic model to evaluate low temperature characteristics of crumb rubber and gilsonite modified asphalt binders [J].
Hajikarimi, Pouria ;
Aflaki, Sassan ;
Hoseini, Alireza Sadat .
CONSTRUCTION AND BUILDING MATERIALS, 2013, 49 :682-687
[5]   Fracture failure in crack interaction of asphalt binder by using a phase field approach [J].
Hou, Yue ;
Wang, Linbing ;
Yue, Pengtao ;
Sun, Wenjuan .
MATERIALS AND STRUCTURES, 2015, 48 (09) :2997-3008
[6]  
Huang W, 2016, FUNCTIONAL PAVEMENT DESIGN, P47
[7]   Viscoelastic-based approach to evaluate low temperature performance of asphalt binders [J].
Jahanbakhsh, H. ;
Karimi, Mohammad M. ;
Moghadas Nejad, Fereidoon ;
Jahangiri, Behnam .
CONSTRUCTION AND BUILDING MATERIALS, 2016, 128 :384-398
[8]   Influence of volumetric property on mechanical properties of vertical vibration compacted asphalt mixture [J].
Jiang, Yingjun ;
Xue, Jinshun ;
Chen, Zhejiang .
CONSTRUCTION AND BUILDING MATERIALS, 2017, 135 :612-621
[9]   Influence of low-temperature physical hardening on stiffness and tensile strength of asphalt concrete and stone mastic asphalt [J].
Judycki, Jozef .
CONSTRUCTION AND BUILDING MATERIALS, 2014, 61 :191-199
[10]   Rheological and low temperature properties of asphalt composites containing rock asphalts [J].
Li, Ruixia ;
Karki, Pravat ;
Hao, Peiwen ;
Bhasin, Amit .
CONSTRUCTION AND BUILDING MATERIALS, 2015, 96 :47-54