颜川奇

教授

博士生导师 硕士生导师

学历:博士研究生毕业

学位:工学博士学位

在职信息:在岗

毕业院校:东南大学 同济大学 UW-Madison

所在单位:土木工程学院

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代表论文

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  • Yan, C., Long, K., Huang, C., Gan, G., Dang, M., Ai, C., & Zhou, S. (2025) Evaluation of high temperature performance of asphalt mastic sealing layer for hydraulic engineering. Construction and Building Materials, 489, 142183.

  • Yan, C., Long, K., Yu, D., Li, F., Mao, C., Ai, C., & Zhou, S. (2025) Assessment of Asphalt Aging Degree Using the Double Sigmoidal Rheological Master Curve Model. Journal of Materials in Civil Engineering, 37(7), 04025173.

  • Zhou, S., Long, K., Zhang, Z., Li, S., Ai, C., & Yan, C. (2025). Development of sustainable Lignin-Based coatings for layered double Hydroxides: Enhancing synergistic Anti-Aging properties in bitumen. Fuel, 380, 133166.

  • Long, K., Huang, C., Yang, Y., Qu, C., Huang, H., Ai, C., & Yan, C. (2025). Investigation of the rheological properties and aging performance of rock asphalt/thermoplastic polyurethane composite modified asphalt. Construction and Building Materials, 458, 139699.

  • Long, K., Yang, Y., Yu, D., & Yan, C. (2025). Investigation of the modification mechanism of thermoplastic polyurethane composite modified asphalt. Materials Letters, 382, 137903.

  • Shi, B., Long, K., Zhang, Z., Yu, D., Ai, C., & Yan, C. (2024). Investigation of anti-aging performance in nano-sol modified high-SBS content emulsified asphalt and its micro-surfacing mixtures. Construction and Building Materials, 453, 139050.

  • Yan, C., Xi, J., Ai, C., & Leng, Z. (2024). Investigating the unique entropy-elasticity of polymer modified asphalt. Cleaner Materials, 11, 100216.

  • Zhou, S., Wang, J., Li, S., & Yan, C. (2024). Investigating the rheological behaviour of styrene–butadiene–styrene modified asphalt. Road Materials and Pavement Design, 25(9), 1964-1979.

  • Ning, W., Zhou, S., Long, K., Xie, B., Ai, C., & Yan, C. (2024). Investigation of key morphological parameters of pores in different grades of asphalt mixture based on CT scanning technology. Construction and Building Materials, 434, 136770.

  • Yan, C., Yan, J., Zhang, Z., Yu, D., Wang, S., Jiang, X., ... & Leng, Z. (2024). Screw extrusion process used in the polymer modified asphalt field: A review. Journal of Cleaner Production, 141592.

  • Zhou, S., Yan, J., Ning, W., Li, S., Ai, C., & Yan, C. (2023). Performance and mechanism of using low-cost fumed silica nanoparticles in enhancing high viscosity modified asphalt. Construction and Building Materials, 409, 134090.

  • Zhou, S., Wang, J., Li, S., & Yan, C. (2023). Evaluating the Cracking Resistance of the Semiflexible Pavement Mixture Using the Semicircular Bending Test. Journal of Materials in Civil Engineering, 35(12), 04023438.

  • Zhou, S., Yan, J., Shi, B., Li, S., Ai, C., & Yan, C. (2023). Green synthesis of a broad-spectrum UV-blocking bitumen modifier: Investigation of anti-aging performance and mechanism in bitumen. Journal of Cleaner Production, 425, 139064.

  • Zhou, S., Li, S., & Yan, C. (2023). Influence of fumed silica nanoparticles on the rheological and anti-aging properties of bitumen. Construction and Building Materials, 397, 132388.

  • Zeng, G., Zhang, J., Huang, H., Xiao, X., & Yan, C. (2023). A Comparative Study for Creep and Recovery Behavior Characterization of Modified Bitumens Using the MSCR Test. Coatings, 13(8), 1445.

  • Li, S., Zhang, X., Shi, Y., Yan, C., & Zhou, S. (2023). Synergistic effect and mechanism of nanomaterial compounded with sustainable lignin for aging resistance of asphalt. ACS Sustainable Chemistry & Engineering, 11(33), 12304-12316.

  • Yan, C., Yu, X., Tao, Y., Zhou, S., & Zhan, Y. (2023). Influence of the Instrumental Inertia Effect on the Asphalt Binder Oscillation Measurement. Journal of Materials in Civil Engineering, 35(7), 04023207.

  • Zhou, S., Wang, J., Li, S., & Yan, C. (2023). Investigating the effects of antioxidants on the aging characteristics of crumb rubber modified asphalt. Materials Today Communications, 35, 106040.

  • Zhang, J., Luo, T., Cui, Y., Xie, B., Wang, J., & Yan, C. (2023). Characterizing ZSV of SBS modified asphalt using shear rate sweep test and frequency sweep oscillation test. Construction and Building Materials, 371, 130757.

  • Yan, C., Yan, J., Shi, B., Zhan, Y., & Zhang, A. (2023). Proposing a novel double sigmoidal model to fit the master curve for various polymer-modified asphalt. International Journal of Pavement Engineering, 24(2), 2099852.

  • Zhang, J., He, A., Xie, B., Wang, J., & Yan, C. (2022). Characterization of various modified asphalts using force ductility test with “8 “shaped mold and straight mold. Construction and Building Materials, 356, 129251.

  • Zhou, Z., Yu, X., Yuan, L., & Yan, C. (2022). Comparative study on the chemical and rheological properties of elastomer-based and resin-based HVMAs. Measurement, 199, 111441.

  • Lv, Q., Lu, J., Tang, X., Hu, Y., & Yan, C. (2022). Evaluation of the moisture resistance of rubberized asphalt using BBS/UTM bonding test, TSR and HWT test. Construction and Building Materials, 340, 127831.

  • Yan, C., Lv, Q., Zhang, A. A., Ai, C., Huang, W., & Ren, D. (2022). Modeling the modulus of bitumen/SBS composite at different temperatures based on kinetic models. Composites Science and Technology, 218, 109146.

  • Yan, C., Yuan, L., Yu, X., Ji, S., & Zhou, Z. (2022). Characterizing the fatigue resistance of multiple modified asphalts using time sweep test, LAS test and elastic recovery test. Construction and Building Materials, 322, 125806.

  • Yan, C., Huang, W., Xu, J., Yang, H., Zhang, Y., & Bahia, H. U. (2022). Quantification of re-refined engine oil bottoms (REOB) in asphalt binder using ATR-FTIR spectroscopy associated with partial least squares (PLS) regression. Road Materials and Pavement Design, 23(4), 958-972.

  • Yan, C., Zhang, Y., & Bahia, H. U. (2022). Predicting rutting performance of asphalt mixture from binder properties and mixture design variables. Road Materials and Pavement Design, 23(1), 62-79.

  • Yan, C., Huang, W., Zheng, M., Zhang, Y., & Lin, P. (2021). Influence of ageing on high content polymer modified asphalt mixture stripping, cracking and rutting performances. Road Materials and Pavement Design, 22(8), 1824-1841.

  • Yan, C., Huang, W., Lv, Q., & Lin, P. (2021). Investigating the field short-term aging of high content polymer-modified asphalt. International Journal of Pavement Engineering, 22(10), 1263-1272.

  • Zhang, J., Huang, W., Zhang, Y., Yan, C., Lv, Q., & Guan, W. (2021). Evaluation of the terminal blend crumb rubber/SBS composite modified asphalt. Construction and Building Materials, 278, 122377.

  • Lv, Q., Huang, W., Zheng, M., Hao, G., Yan, C., & Sun, L. (2020). Investigating the asphalt binder/mastic bonding healing behavior using bitumen bonding strength test and X-ray Computed Tomography scan. Construction and Building Materials, 257, 119504.

  • Yan, C., Zhang, Y., & Bahia, H. U. (2020). Comparison between SCB-IFIT, un-notched SCB-IFIT and IDEAL-CT for measuring cracking resistance of asphalt mixtures. Construction and Building Materials, 252, 119060.

  • Wang, S., Huang, W., Lv, Q., Yan, C., Lin, P., & Zheng, M. (2020). Influence of different high viscosity modifiers on the aging behaviors of SBSMA. Construction and Building Materials, 253, 119214.

  • Zhang, J., Huang, W., Zhang, Y., Lv, Q., & Yan, C. (2020). Evaluating four typical fibers used for OGFC mixture modification regarding drainage, raveling, rutting and fatigue resistance. Construction and Building Materials, 253, 119131.

  • Zhou, L., Huang, W., Zhang, Y., Lv, Q., Yan, C., & Jiao, Y. (2020). Evaluation of the adhesion and healing properties of modified asphalt binders. Construction and Building Materials, 251, 119026. 

  • Lv, Q., Huang, W., Zheng, M., Sadek, H., Zhang, Y., & Yan, C. (2020). Influence of gradation on asphalt mix rutting resistance measured by Hamburg Wheel Tracking test. Construction and Building Materials, 238, 117674.

  • Yan, C., Huang, W., Ma, J., Xu, J., Lv, Q., & Lin, P. (2020). Characterizing the SBS polymer degradation within high content polymer modified asphalt using ATR-FTIR. Construction and Building Materials, 233, 117708.

  • Lin, P., Huang, W., Liu, X., Apostolids, P., Wang, H., & Yan, C. (2020). Laboratory evaluation of the effects of long-term aging on high-content polymer-modified asphalt binder. Journal of Materials in Civil Engineering, 32(7), 04020157.

  • Yan, C., Huang, W., Lin, P., Zhang, Y., & Lv, Q. (2019). Chemical and rheological evaluation of aging properties of high content SBS polymer modified asphalt. Fuel, 252, 417-426. 

  • Lv, Q., Huang, W., Sadek, H., Xiao, F., & Yan, C. (2019). Investigation of the rutting performance of various modified asphalt mixtures using the Hamburg Wheel-Tracking Device test and Multiple Stress Creep Recovery test. Construction and Building Materials, 206, 62-70.

  • Yan, C., Huang, W., Xiao, F., & Lv, Q. (2019). Influence of polymer and sulphur dosages on attenuated total reflection Fourier transform infrared upon Styrene–Butadiene–Styrene-modified asphalt. Road Materials and Pavement Design, 20(7), 1586-1600. 

  • Yan, C., Xiao, F., Huang, W., & Lv, Q. (2018). Critical matters in using Attenuated Total Reflectance Fourier Transform Infrared to characterize the polymer degradation in Styrene–Butadiene–Styrene-modified asphalt binders. Polymer Testing, 70, 289-296.

  • Yan, C., Xiao, F., & Huang, W. (2018). Short-term aging of high-content SBSMA. Journal of Materials in Civil Engineering, 30(8), 04018186. 

  • Yan, C., Huang, W., Xiao, F., Wang, L., & Li, Y. (2018). Proposing a new infrared index quantifying the aging extent of SBS-modified asphalt. Road Materials and Pavement Design, 19(6), 1406-1421.

  • Yan, C., Huang, W., & Tang, N. (2017). Evaluation of the temperature effect on Rolling Thin Film Oven aging for polymer modified asphalt. Construction and Building Materials, 137, 485-493.

  • Yan, C., Huang, W., & Lv, Q. (2016). Study on bond properties between RAP aggregates and virgin asphalt using Binder Bond Strength test and Fourier Transform Infrared spectroscopy. Construction and Building Materials, 124, 1-10

  • 罗婷,王嘉昕,谢斌,艾长发,颜川奇.不同温拌剂对高黏沥青老化性能的影响[J].材料导报,2024,38(13):106-114.

  • 周正峰,于晓涛,陶雅乐,郑茂,颜川奇.基于灰色关联分析的树脂与弹性体高黏沥青高温性能评价[J].吉林大学学报(工学版),2023,53(07):2078-2088.

  • 王言磊,陆军,梁鹏飞,罗婷,颜川奇.不同温拌剂对高黏沥青流变及微观特性影响研究[J].材料导报,2023,37(16):104-109.

  • 宋珲,陈小江,罗婷,张新玉,颜川奇.惯性矩对DSR动态测试的影响及其替代方法[J].建筑材料学报,2022,25(07):760-766.

  • 金大勇,颜川奇,易宏宇,郑茂,艾长发.老化对改性沥青宽温度域黏弹特性的影响[J].建筑材料学报,2022,25(12):1321-1328.

  • 姚震,张凌波,梁鹏飞,王仕峰,颜川奇.多种湿法橡胶改性沥青的综合性能评价与改性机理研究[J].材料导报,2022,36(16):101-107.

  • 宋珲,陈小江,张新玉,颜川奇,任东亚,艾长发.采用衰减全反射红外光谱检测改性沥青的SBS掺量及其老化降解程度[J].中南大学学报(自然科学版),2021,52(07):2211-2220.

  • 黄卫东,颜川奇,刘少鹏,鄯增平,肖飞鹏.溶解性胶粉/SBS复合改性沥青低温性能评价[J].建筑材料学报,2016,19(06):1088-1091.

  • 颜川奇,张正义,龙坤,喻道岸,艾长发.高温无氧存储对高原橡胶复合改性沥青性能的影响及其机理[J]. 中南大学学报(自然科学版), 2025, 56(6): 2396-2411.

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