[1] 司 伟,王 锐,张博文,等.沥青路面施工工艺数字化信息特征[J].长安大学学报(自然科学版),2023,43(1):18-29.
SI Wei,WANG Rui,ZHANG Bo-wen,et al.Digital information characteristics of asphalt pavement construction technology[J].Journal of Chang'an University(Natural Science Edition),2023,43(1):18-29.
[2]CAO H B,CHEN T J,ZHU H Z,et al.Influence of frequent freeze-thaw cycles on performance of asphalt pavement in high-cold and high-altitude areas[J].Coatings,2022,12(6):752.
[3]权 磊,田 波,牛开民,等.青藏高原高等级道路路基路面温度变化特征[J].交通运输工程学报,2017,17(2):21-30.
QUAN Lei,TIAN Bo,NIU Kai-min,et al.Temperature variation properties of pavements and subgrades for high-grade roads on Qinghai-Tibet Plateau[J].Journal of Traffic and Transportation Engineering,2017,17(2):21-30.
[4]司 伟,马 骉,汪海年,等.沥青混合料在冻融循环作用下的弯拉特性[J].吉林大学学报(工学版),2013,43(4):885-890.
SI Wei,MA Biao,WANG Hai-nian,et al.Flexural tensile characteristics of asphalt mixture under freeze-thaw cycles[J].Journal of Jilin University(Engineering and Technology Edition),2013,43(4):885-890.
[5]FAN Z,XU H,XIAO J,et al.Effects of freeze-thaw cycles on fatigue performance of asphalt mixture and development of fatigue-freeze-thaw(FFT)uniform equation[J].Construction and Building Materials,2020,242:118043.
[6]颜可珍,游凌云,王晓亮.SMA混合料冻融循环性能试验及超声波法评价[J].中国公路学报,2015,28(11):8-14.
YAN Ke-zhen,YOU Ling-yun,WANG Xiao-liang.Test on characteristics of SMA mixtures under freeze-thaw cycle and ultrasonic evaluation method[J].China Journal of Highway and Transport,2015,28(11):8-14.
[7]SANFILIPPO D,GARCIA-HERNANDEZ A,ALEXIADIS A,et al.Effect of freeze-thaw cycles on the void topologies and mechanical properties of asphalt[J].Construction and Building Materials,2022,344:128085.
[8]XU H N,GUO W,TAN Y Q.Internal structure evolution of asphalt mixtures during freeze-thaw cycles[J].Materials & Design,2015,86:436-46.
[9]沈 可,孙本芹,孙昊宇.冻融循环对沥青-集料界面相力学性能的影响[J].材料导报,2022,36(增2):129-133.
SHEN Ke,SUN Ben-qin,SUN Hao-yu.Effect of freeze-thaw cycle on mechanical properties of asphalt-aggregate interface phase[J].Materials Reports,2022,36(S2):129-133.
[10]WU H N,LI P,NIAN T F,et al.Evaluation of asphalt and asphalt mixtures' water stability method under multiple freeze-thaw cycles[J].Construction and Building Materials,2019,228:117089.
[11]罗 蓉,柳子尧,黄婷婷,等.冻融循环对沥青混合料内水气扩散的影响[J].中国公路学报,2018,31(9):20-26,64.
LUO Rong,LIU Zi-yao,HUANG Ting-ting,et al.Effect of freezing-thawing cycles on water vapor diffusion in asphalt mixtures[J].China Journal of Highway and Transport,2018,31(9):20-26,64.
[12]YU D,JING H S,LIU J N.Effects of freeze-thaw cycles on the internal voids structure of asphalt mixtures[J].Materials,2022,15(10):3560.
[13]吕松涛,刘超超,屈芳婷,等.沥青混合料疲劳性能试验与表征方法综述[J].中国公路学报,2020,33(10):67-75.
LU Song-tao,LIU Chao-chao,QU Fang-ting,et al.Test methods and characterization of fatigue performance of asphalt mixtures:A review[J].China Journal of Highway and Transport,2020,33(10):67-75.
[14]梁 波,兰 芳,郑健龙.沥青的老化机理与疲劳性能关系的研究进展[J].材料导报,2021,35(9):9083-9096.
LIANG Bo,LAN Fang,ZHENG Jian-long.Research and development of relationship between aging mechanism and fatigue properties of asphalt[J].Materials Reports,2021,35(9):9083-9096.
[15]HASAN M A,HASAN M M,BAIRGI B K,et al.Utilizing simplified viscoelastic continuum damage model to characterize the fatigue behavior of styrene-butadiene-styrene(SBS)modified binders[J].Construction and Building Materials,2019,200:159-169.
[16]CHENG H,SUN L,LIU L,et al.Fatigue characteristics of in-service cold recycling mixture with asphalt emulsion and HMA mixture[J].Construction and Building Materials,2018,192:704-714.
[17]房辰泽,郭乃胜,孙雅珍,等.基于劲度模量分析的橡胶沥青混合料疲劳寿命研究[J].工程力学,2020,37(4):196-204.
FANG Chen-ze,GUO Nai-sheng,SUN Ya-zhen,et al.Research on fatigue life of rubber asphalt mixture based on stiffness modulus[J].Engineering Mechanics,2020,37(4):196-204.
[18]SAHA G,BILIGIRI K P.Stato-dynamic response analyses through semi-circular bending test:Fatigue life prediction of asphalt mixtures[J].Construction and Building Materials,2017,150:664-672.
[19]张 航,凌天清,王学武.盐冻融循环条件下复合纤维改性沥青混合料耐久性能研究[J].重庆交通大学学报(自然科学版),2020,39(9):88-96,139.
ZHANG Hang,LING Tian-qing,WANG Xue-wu.Durability of hybrid fiber modified asphalt mixture under salt freeze-thaw cycles[J].Journal of Chongqing Jiaotong University(Natural Science),2020,39(9):88-96,139.
[20]王建文,申爱琴,郭寅川,等.盐冻融环境下掺抗剥落剂的沥青混合料路用性能研究[J].硅酸盐通报,2019,38(9):2770-2776.
WANG Jian-wen,SHEN Ai-qin,GUO Yin-chuan,et al.Road performance of asphalt mixture with anti-stripping agent in salt freeze-thaw environment[J].Bulletin of the Chinese Ceramic Society,2019,38(9):2770-2776.
[21]GUO Z X,WANG L,FENG L,et al.Research on fatigue performance of composite crumb rubber modified asphalt mixture under freeze thaw cycles[J].Construction and Building Materials,2022,323:126603.
[22]周晓东,常春清,王 岚.盐冻融循环对温拌胶粉改性沥青混合料疲劳性能的影响[J].建筑材料学报,2020,23(3):650-656.
ZHOU Xiao-dong,CHANG Chun-qing,WANG Lan.Effect of salt freeze-thaw cycle on fatigue performance of warm mix rubber modified asphalt mixture[J].Journal of Building Materials,2020,23(3):650-656.
[23]王 岚,罗 鑫,常春清.疲劳荷载下冻融循环对CR-WMA开裂特性的影响[J].建筑材料学报,2019,22(2):233-237,253.
WANG Lan,LUO Xin,CHANG Chun-qing.Effect of freeze-thaw cycle on cracking characteristics of CR-WMA under the fatigue load[J].Journal of Building Materials,2019,22(2):233-237,253.
[24]BADELI S,CARTER A,DORE G.Complex modulus and fatigue analysis of asphalt mix after daily rapid freeze-thaw cycles[J].Journal of Materials in Civil Engineering,2018,30(4):04018056.
[25]司 伟,马 骉,仁乾龙珠,等.青藏高寒地区真实环境冻融作用的量化与统计[J].江苏大学学报(自然科学版),2019,40(2):237-243.
SI Wei,MA Biao,RENQIAN Long-zhu,et al.Quantification and statistics of site freeze-thaw cycles in Qinghai-Tibet Plateau cold region[J].Journal of Jiangsu University(Natural Science Edition),2019,40(2):237-243.