448
Views
26
CrossRef citations to date
0
Altmetric
Original Articles

Study on durability of high-modulus asphalt mixture based on TLA and fibre composite modification technology

, , , &
Pages 930-936 | Received 11 Apr 2016, Accepted 08 Aug 2016, Published online: 22 Sep 2016

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Mingyang Gong, Haitao Zhang, Bin Yang & Quansheng Sun. (2021) Analysis of the influencing factors on the anti-aging performance of a hybrid-modified asphalt mixture using the grey relational theory. International Journal of Pavement Engineering 22:5, pages 597-612.
Read now
Muhammed Ertuğrul Çeloğlu, Erkut Yalçın, Baha Vural Kök, Taner Alataş, Jose Norambuena-Contreras, Alvaro Garcia & Mehmet Yılmaz. (2020) Effects of different bitumen modifiers on the rutting and cracking resistance of hot mix asphalts. International Journal of Pavement Engineering 21:6, pages 703-712.
Read now
Ricardo Zardin Fengler, Patrícia Hennig Osmari, Leni Figueiredo Mathias Leite, Luis Alberto Herrmann do Nascimento, Marcos Antonio Fritzen & Francisco Thiago Sacramento Aragão. (2019) Impact of the addition of Trinidad Lake Asphalt (TLA) on the rheological and mechanical behavior of two asphalt binders. Road Materials and Pavement Design 20:sup2, pages S827-S840.
Read now
Song Xu, Changbin Hu, Jianying Yu, Renbing Liu & Xinxing Zhou. (2017) Influence of Trinidad Lake Asphalt on the physical and anti-aging properties of petroleum asphalt. Petroleum Science and Technology 35:23, pages 2194-2200.
Read now

Articles from other publishers (22)

Biao LiuChengdong XiaYunhua LiuSongtao LvShungen ZhaoShuang XiYajie LiuDongdong GeHui Yao. (2024) Investigations on Strength Characteristics of High-Modulus Asphalt Mixtures under Different Conditions. Journal of Materials in Civil Engineering 36:2.
Crossref
Bo Li, Jiadong Wang, Gui Cao, Xueli Nan, Xiaomin Li, Wenju Li & Yunpeng Zhang. (2023) Laboratory investigation and BP neural network modeling on heat-activated oil shale semi-coke attributable to the mechanical properties of concrete. Case Studies in Construction Materials 18, pages e02090.
Crossref
Guojing Huang, Jiupeng Zhang, Bing Hui, Hongfei Zhang, Yongsheng Guan, Fucheng Guo, Yan Li, Yinzhang He & Di Wang. (2023) Analysis of Modulus Properties of High-Modulus Asphalt Mixture and Its New Evaluation Index of Rutting Resistance. Sustainability 15:9, pages 7574.
Crossref
Chiara Riccardi, Irune Indacoechea, Di Wang, Pedro Lastra-González, Augusto Cannone Falchetto & Daniel Castro-Fresno. (2023) Low temperature performances of fiber-reinforced asphalt mixtures for surface, binder, and base layers. Cold Regions Science and Technology 206, pages 103738.
Crossref
Hugo Alexander Rondón-Quintana, Juan Carlos Ruge-Cárdenas & Carlos Alfonso Zafra-Mejía. (2023) Natural Asphalts in Pavements: Review. Sustainability 15:3, pages 2098.
Crossref
Biao Liu, Chengdong Xia, Yunhua Liu, Songtao Lv, Hui Yao, Naitian Zhang, Shungen Zhao & TieJun Liu. (2022) Uniform fatigue characterization of high modulus asphalt mixtures under three-dimensional stress state. Construction and Building Materials 354, pages 129186.
Crossref
Haiwei Zhang, Xingwang Yang, Yan Li, Qilong Fu & Huayu Rui. (2022) Laboratory Evaluation of Dynamic Characteristics of a New High-Modulus Asphalt Mixture. Sustainability 14:19, pages 11838.
Crossref
Kunzhi ZhongJianwei FanGuangji Xu & Xiaoming Huang. (2022) Evaluation of Cracking Resistance of High Modulus Asphalt Mixture Containing Reclaimed Asphalt Pavement. Journal of Transportation Engineering, Part B: Pavements 148:3.
Crossref
Long Cheng, Lei Zhang, Yuechao Lei, Yang Ma & Chuanqi Yan. (2022) Effect of the laboratory short-term aging temperature on the chemical and rheological characteristics of high modulus asphalts. Construction and Building Materials 314, pages 125569.
Crossref
Xiaorui Zhang, Chao Han, Jun Yang, Xinquan Xu & Fan Zhang. (2021) Evaluating the Rheological Properties of High-Modulus Asphalt Binders Modified with Rubber Polymer Composite Modifier. Materials 14:24, pages 7727.
Crossref
Yu Chen, Runjie Gao, Hainian Wang, Wenhua Zheng & Zhanping You. (2021) Rheological behavior of high modulus asphalt binder and its indication for fracture performances. Construction and Building Materials 306, pages 124835.
Crossref
Chaohui Wang, Xiaolei Zhou, Huazhi Yuan, Haoyu Chen, Liwei Zhou & Yi Fu. (2021) Preparation and performance of UHMWP modified asphalt and its high modulus mixture. Construction and Building Materials 294, pages 123629.
Crossref
Ahmed Khater, Dong Luo, Moustafa Abdelsalam, Yanchao Yue, Yueqin Hou & Mohamed Ghazy. (2021) Laboratory Evaluation of Asphalt Mixture Performance Using Composite Admixtures of Lignin and Glass Fibers. Applied Sciences 11:1, pages 364.
Crossref
Xiaoyuan Zhang, Li Xu & Junxiu Lv. (2020) Investigation on the Flexural–Tensile Rheological Behavior and Its Influence Factors of Fiber-Reinforced Asphalt Mortar. Polymers 12:9, pages 1970.
Crossref
Moustafa Abdelsalam, Yanchao Yue, Ahmed Khater, Dong Luo, Josephine Musanyufu & Xiaoli Qin. (2020) Laboratory Study on the Performance of Asphalt Mixes Modified with a Novel Composite of Diatomite Powder and Lignin Fiber. Applied Sciences 10:16, pages 5517.
Crossref
Rong Hu & Yan Zhou. (2020) RETRACTED: Study on the Application of Gangue Mixture in Road Engineering Based on Computer Technology. Journal of Physics: Conference Series 1578:1, pages 012147.
Crossref
Xinquan Xu, Guilin Lu, Jun Yang & Xinhai Liu. (2020) Mechanism and Rheological Properties of High-Modulus Asphalt. Advances in Materials Science and Engineering 2020, pages 1-13.
Crossref
Yu Chen, Hainian Wang, Shibing Xu & Zhanping You. (2020) High modulus asphalt concrete: A state-of-the-art review. Construction and Building Materials 237, pages 117653.
Crossref
Jin-rong Wu, Fei Li & Qin-yong Ma. (2020) Effect of Polyester Fiber on Air Voids and Low-Temperature Crack Resistance of Permeable Asphalt Mixture. Advances in Civil Engineering 2020, pages 1-12.
Crossref
Chundi Si, Xiaodong Zhou, Zhanping You, Ying He, Enli Chen & Ran Zhang. (2019) Micro-mechanical analysis of high modulus asphalt concrete pavement. Construction and Building Materials 220, pages 128-141.
Crossref
Dong Luo, Ahmed Khater, Yanchao Yue, Moustafa Abdelsalam, Zengping Zhang, Yuanyuan Li, Junnan Li & David Thomas Iseley. (2019) The performance of asphalt mixtures modified with lignin fiber and glass fiber: A review. Construction and Building Materials 209, pages 377-387.
Crossref
Haitao Zhang & Mingyang Gong. 2019. Sustainable Construction and Building Materials. Sustainable Construction and Building Materials.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.