2,616
Views
134
CrossRef citations to date
0
Altmetric
Original Articles

Rheological analysis of multi-stress creep recovery (MSCR) test

, &
Pages 561-568 | Received 12 Aug 2010, Accepted 16 Mar 2011, Published online: 13 Jun 2011

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

Read on this site (24)

Baha Vural Kök, Zülfü Yetkin & Erkut Yalçın. (2023) Effects of using waste solid sheet photopolymer plates in combination with SBS on the rheological properties of bitumen. International Journal of Pavement Engineering 24:1.
Read now
Gabriel Skronka, Marek Blascik, Otakar Vacin & Martin Jasso. (2023) Impact of shear stress levels on validity of MSCR tests. Road Materials and Pavement Design 24:7, pages 1820-1836.
Read now
Di Wang, Jiqing Zhu, Laurent Porot, Augusto Cannone Falchetto & Sjaak Damen. (2023) Multiple stress creep and recovery test for bituminous binders – influence of several key experimental parameters. Road Materials and Pavement Design 24:sup1, pages 290-308.
Read now
Marjan Tušar, Muhammad Rafiq Kakar, Lily D. Poulikakos, Emiliano Pasquini, Andrea Baliello, Marco Pasetto, Laurent Porot, Di Wang, Augusto Cannone Falchetto, Davide Dalmazzo, Davide Lo Presti, Gaspare Giancontieri, Aikaterini Varveri, Rosa Veropalumbo, Nunzio Viscione, Kamilla Vasconcelos & Alan Carter. (2023) RILEM TC 279 WMR round robin study on waste polyethylene modified bituminous binders: advantages and challenges. Road Materials and Pavement Design 24:2, pages 311-339.
Read now
Mohammad Jafari, Abbas Babazadeh & Mahyar Shahri. (2023) The role of stress sensitivity of modified binders with the same linear viscoelastic properties in evaluating rutting resistance of asphalt mixtures. International Journal of Pavement Engineering 24:2.
Read now
Ayad Subhy, Davide Lo Presti, Gordon Airey & Iswandaru Widyatmoko. (2022) Rutting analysis of different rubberised stone mastic asphalt mixtures: from binders to mixtures. Road Materials and Pavement Design 23:9, pages 2098-2114.
Read now
Johannes Büchner & Michael P. Wistuba. (2022) Assessing creep properties of asphalt binder, asphalt mastic and asphalt mixture. Road Materials and Pavement Design 23:sup1, pages 116-130.
Read now
Taqia Rahman, Andrew Dawson, Nick Thom, Imtiaz Ahmed & Juan S. Carvajal-Munoz. (2022) Determining the allowable opening-to-traffic asphalt temperature for airport pavements. International Journal of Pavement Engineering 23:7, pages 2351-2369.
Read now
Athira Perilakalathil & S. P. Atul Narayan. (2022) Relationship between nonlinear viscoelastic behaviour of asphalt binders and deformation of mixtures. International Journal of Pavement Engineering 23:3, pages 588-598.
Read now
Matheus David Inocente Domingos, Adalberto Leandro Faxina & Liedi Légi Bariani Bernucci. (2021) Modelling and permanent deformation analysis of low-density polyethylene (PE)-modified bitumens and asphalts. Road Materials and Pavement Design 22:8, pages 1860-1880.
Read now
Abbas Babazadeh & Mohammad Jafari. (2021) Logistic regression analysis for confidence level estimates of additive percentage at high service temperatures. International Journal of Pavement Engineering 22:7, pages 912-926.
Read now
Aditya Kumar Das & Dharamveer Singh. (2021) Influence of Nano size hydrated lime filler on rutting performance of asphalt mastic. Road Materials and Pavement Design 22:5, pages 1023-1043.
Read now
Siyu Chen, Dongdong Ge, Fangyuan Gong, Zhanping You, Aboelkasim Diab & Mingxiao Ye. (2020) Rheological properties and chemical characterisation of reacted and activated rubber modified asphalt binder. Road Materials and Pavement Design 21:sup1, pages S140-S154.
Read now
Khaleel Al-Adham, M. A. Dalhat & H. I. Al-Abdul Wahhab. (2020) Strain recovery rate and absolute per cent recovery of polymer-modified asphalt binders. International Journal of Pavement Engineering 21:7, pages 919-929.
Read now
Aniket Vasantrao Kataware & Dharamveer Singh. (2020) Effect of short-term ageing on high-temperature performance of SBS modified binder containing warm mix asphalt additives. Road Materials and Pavement Design 21:3, pages 623-642.
Read now
Dharamveer Singh, Prabin Kumar Ashish, Aniket Kataware & Ayyanna Habal. (2019) Effects of WMA additives and hydrated lime on high-stress and high-temperature performance of Elvaloy®- and PPA-modified asphalt binder. Road Materials and Pavement Design 20:6, pages 1354-1375.
Read now
Matheus David Inocente Domingos & Adalberto Leandro Faxina. (2019) Alternative interpretation of the adequate traffic levels of modified bitumens on Superpave®: a case study with crumb rubber and polyphosphoric acid (PPA). Road Materials and Pavement Design 20:sup2, pages S632-S646.
Read now
Fernando Moreno-Navarro, Raúl Tauste, Miguel Sol-Sánchez & M. Carmen Rubio-Gámez. (2019) New approach for characterising the performance of asphalt binders through the multiple stress creep and recovery test. Road Materials and Pavement Design 20:sup1, pages S500-S520.
Read now
Abhinay Kumar, Rajan Choudhary, Rumi Narzari, Rupam Kataki & Sanjay K. Shukla. (2018) Evaluation of bio-asphalt binders modified with biochar: a pyrolysis by-product of Mesua ferrea seed cover waste. Cogent Engineering 5:1.
Read now
Greg White. (2017) Grading highly modified binders by multiple stress creep recovery. Road Materials and Pavement Design 18:6, pages 1322-1337.
Read now
F. Moreno-Navarro, M. Sol-Sánchez, A. Jiménez del Barco & M.C. Rubio-Gámez. (2017) Analysis of the influence of binder properties on the mechanical response of bituminous mixtures. International Journal of Pavement Engineering 18:1, pages 73-82.
Read now
Mohammad Jafari & Abbas Babazadeh. (2016) Evaluation of polyphosphoric acid-modified binders using multiple stress creep and recovery and linear amplitude sweep tests. Road Materials and Pavement Design 17:4, pages 859-876.
Read now
Greg White. (2016) Inter-batch and inter-feedstock variability of an acid modified bitumen. Road Materials and Pavement Design 17:3, pages 658-677.
Read now
Ayad Subhy, Davide Lo Presti & Gordon Airey. (2015) An investigation on using pre-treated tyre rubber as a replacement of synthetic polymers for bitumen modification. Road Materials and Pavement Design 16:sup1, pages 245-264.
Read now

Articles from other publishers (110)

Ling Yang, Wenjie Luo, Yassen Muhammad, Fanyu Meng, Jiashun Li, Zhenxia Zhao & Jing Li. (2024) Surface modification of bagasse fibers based on polyphenol-induced self-supplied lignin for the creation of composite SBS-modified asphalt. Industrial Crops and Products 208, pages 117835.
Crossref
Dong Tang, Yongli Zhao, Dongdong Han & Yichang Xie. (2023) Microstructure of virgin and aged asphalts by small-angle X-ray scattering. Case Studies in Construction Materials 19, pages e02578.
Crossref
Meng Ling, Jie Ji, Hossain Tanvir, Luis Fuentes & Lubinda F. Walubita. (2023) Simultaneous evaluation of rutting-stripping performance and cracking resistance for asphalt mixtures. Construction and Building Materials 408, pages 133581.
Crossref
Chao Hu, Zhigang ZhouYaoyao Luo. (2023) Relationship between Microstructure and Macroscopic Properties of Asphalt under Different Concentrations of Snow Melting Agent. Journal of Materials in Civil Engineering 35:11.
Crossref
Yiren Sun, Bin Lv, Hongren Gong, Hui Xu, Weiying Wang, Bin Xu & Jingyun Chen. (2023) Approach for accurately characterizing nonlinear viscoelastic and nonrecoverable properties of asphalt binders based on MSCR test. Construction and Building Materials 403, pages 133098.
Crossref
Jinbo Lu, Tao Ma, Conglin Chen, Shuang Shi & Yang Zhang. (2023) The feasibility of using several soybean oil-based derivatives for asphalt binder modification: A preliminary study. Construction and Building Materials 391, pages 131735.
Crossref
Song Zhao, Haitao Zhang, Yuping Feng, Jingdi Li, Meiyi Gao & Guangyuan Wu. (2023) Study on rheological and micro-structural properties of different modified asphalt by using organic and inorganic modifier. Case Studies in Construction Materials 18, pages e02072.
Crossref
Song Li, Xingxing Shi, Chundi Si, Binshuo Bao & Mengmeng Hu. (2023) Correlation between the Rheological Properties of Asphalt Mortar and the High-Temperature Performance of Asphalt Mixture. Coatings 13:6, pages 1058.
Crossref
I. V. Gordeeva, T. V. Dudareva, I. A. Krasotkina, V. N. Gorbatova, V. G. Nikol’skii, U. G. Zvereva & A. G. Obukhov. (2023) Bitumen Resistance to Plastic Deformation at High Temperatures. Petroleum Chemistry 63:5, pages 518-530.
Crossref
Xue Luo, Jian Ling, Hui Li, Yuqing Zhang & Yanwei Li. (2023) Nonlinear viscoelastoplastic kinetics for high-temperature performance of modified asphalt binders. Mechanics of Materials 180, pages 104612.
Crossref
Hongru Yao, Tao Wang, Qiang Wang, Yadong Cao & Xiaolong Zhou. (2023) Applicability of Standard Rheological Evaluation Methods for High Content SBS Polymer Modified Asphalts. Buildings 13:5, pages 1156.
Crossref
Shuangquan Jiang, Xiuming Jiang, Huifeng Li, Zhan Ding, Peilong Li & Mingkai Zhou. (2023) Experimental Study on Creep–Recovery Behavior of Polyphosphoric Acid (PPA) Modified Asphalt Binders under Multiple Factors. Materials 16:7, pages 2740.
Crossref
Mustafa AKPOLAT. (2023) Nanosilika Modifiyeli Bağlayıcıların Tekerlek İzi Direnci ve Sıcaklık Hassasiyetlerinin Belirlenmesi. Fırat Üniversitesi Mühendislik Bilimleri Dergisi 35:1, pages 301-312.
Crossref
Rouba Joumblat, Zaher Al Basiouni Al Masri, Ghazi Al Khateeb, Adel Elkordi, Abdel Rahman El Tallis & Joseph Absi. (2023) State-of-the-Art Review on Permanent Deformation Characterization of Asphalt Concrete Pavements. Sustainability 15:2, pages 1166.
Crossref
Akanksha Pandey, Sumit K. Singh, Sk. Sohel Islam, G. D. Ransingchung R. N.Sridhar Raju & Sham S. Ravindranath. (2021) Rheological Analysis of Performance Grade Rutting and Fatigue Cracking Criteria in Asphalt Binders. International Journal of Pavement Research and Technology 16:1, pages 66-81.
Crossref
Lingxiang Kong, Ling Xu, Yinfei Du, Jiao Jin, Giuseppe Loprencipe & Laura Moretti. (2022) Use of Hybrid Mineral Filler with High Emissivity in Asphalt Mixture for Cooling Road Pavements. Materials 16:1, pages 175.
Crossref
Erkut Yalcin & Mehmet Yilmaz. (2022) Characteristics of Bituminous Binders Modified with Waste Oils: Physical, Chemical, and Rheological Properties. International Journal of Civil Engineering 20:12, pages 1377-1395.
Crossref
Muhammad Aakif Ishaq, Loretta Venturini & Filippo Giustozzi. (2021) Correlation Between Rheological Rutting Tests on Bitumen and Asphalt Mix Flow Number. International Journal of Pavement Research and Technology 15:6, pages 1297-1316.
Crossref
Akanksha Pandey, Sk Sohel Islam, G.D. Ransinchung R.N & Sham S. Ravindranath. (2022) Quantifying the effect of SBS molecular structure on the upper service temperature rheological properties of modified binders. Construction and Building Materials 352, pages 128826.
Crossref
Lubinda F. WalubitaMeng LingLorena M. Rico Pianeta, Luis Fuentes, Julius J. Komba & Gamal M. Mabrouk. (2022) Correlating the Asphalt-Binder MSCR Test Results to the HMA HWTT and Field Rutting Performance. Journal of Transportation Engineering, Part B: Pavements 148:3.
Crossref
Baha Vural Kök, Bekir İrhan, Mehmet Yılmaz & Erkut Yalçın. (2022) Research on the rheological properties of bitumen modified with waste photopolymer. Construction and Building Materials 346, pages 128446.
Crossref
Baha Vural Kok, Beyza Furtana Yalcin, Mehmet Yilmaz & Erkut Yalcin. (2022) Performance evaluation of bitumen modified with styrene–isoprene-styrene and crumb rubber compound. Construction and Building Materials 344, pages 128304.
Crossref
Fangyuan Gong, Weijie Lin, Zhenkan Chen, Tao Shen & Chichun Hu. (2022) High-Temperature Rheological Properties of Crumb Rubber Composite Modified Asphalt. Sustainability 14:15, pages 8999.
Crossref
Abdulrahman Hamid, Hassan Baaj & Mohab El-Hakim. (2022) Rutting Behaviour of Geopolymer and Styrene Butadiene Styrene-Modified Asphalt Binder. Polymers 14:14, pages 2780.
Crossref
Bhupendra Singh & Praveen Kumar. (2021) Rutting and Fatigue Performance of Aged Modified Asphalt Binders. International Journal of Pavement Research and Technology 15:4, pages 789-802.
Crossref
Pengfei Li, Jie Ji, Zhe Wang, Yingbiao Wu, Zhi Suo, Yang Dong & Miao Xu. (2022) Performance evaluation and equivalent conversion of waterborne epoxy resin emulsified asphalt based on different evaporation methods. Journal of Cleaner Production 353, pages 131461.
Crossref
Matheus David Inocente Domingos, Adalberto Leandro Faxina & Liedi Légi Bariani Bernucci. (2022) Rutting on asphalt binders and mixtures modified with PPA and Elvaloy®: laboratory aspects and rheological modeling. TRANSPORTES 30:1, pages 2652.
Crossref
Ankit Sharma, Gondaimei Ransinchung Rongmei Naga, Praveen Kumar & Sumanta Raha. (2022) Development of an empirical relationship between non-recoverable creep compliance & zero shear viscosity for wide-ranging stiffness of asphalt binders. Construction and Building Materials 326, pages 126764.
Crossref
Haisheng Ren, Zhendong Qian, Weirong Huang, Huailong Li & Gang Liu. (2022) High-temperature rheological properties of waterborne epoxy asphalt emulsion mastic. Construction and Building Materials 325, pages 126796.
Crossref
Changjiang Kou, Zikai Chen, Aihong Kang, Mengyun Zhang & Ruiqi Wang. (2022) Rheological behaviors of asphalt binders reinforced by various fibers. Construction and Building Materials 323, pages 126626.
Crossref
Jianhua Yang, Zhengqi Zhang, Jierong Shi, Xinhong Yang & Ying Fang. (2022) Comparative analysis of thermal aging behavior and comprehensive performance of high viscosity asphalt (HVA) from cohesion, adhesion and rheology perspectives. Construction and Building Materials 317, pages 125982.
Crossref
Akanksha Pandey, Sham S. Ravindranath & Sridhar Raju. 2022. Proceedings of the Fifth International Conference of Transportation Research Group of India. Proceedings of the Fifth International Conference of Transportation Research Group of India 351 364 .
Joseph Dib, Nariman J. Khalil & Edwina Saroufim. 2022. Advances in Road Infrastructure and Mobility. Advances in Road Infrastructure and Mobility 97 113 .
Abdulrahman Hamid, Hassan Baaj & Mohab El-Hakim. 2022. Proceedings of the RILEM International Symposium on Bituminous Materials. Proceedings of the RILEM International Symposium on Bituminous Materials 1481 1487 .
I. K. Mizwar, Madzlan NapiahMuslich Hartadi SutantoN. Z. HabibPraveena ThanapalYinghong Qin. (2021) Rutting Prevention of Bituminous Mastic Using Microencapsulation Phase Change Material. Journal of Materials in Civil Engineering 33:12.
Crossref
Erkut YALÇIN. (2021) Farklı gençleştiricilerle modifiye edilmiş bitümlü bağlayıcıların fiziksel, kimyasal ve reolojik özelliklerinin araştırılması. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 37:1, pages 497-510.
Crossref
Filipe Almeida Corrêa Nascimento, Antonio Carlos Rodrigues Guimarães & Carmen Dias Castro. (2021) Comparative study on permanent deformation in asphalt mixtures from indirect tensile strength testing and laboratory wheel tracking. Construction and Building Materials 305, pages 124736.
Crossref
Alireza Ameli, Navid Norouzi, Farhang Jalali, Mohammad Khabooshani, Rezvan Babagoli & Farzin Poorheydari Mamaghani. (2021) Performance Evaluation of SMA Mixtures Modified by Nanoclay. Journal of Testing and Evaluation 49:5, pages 20190629.
Crossref
Maribel Trujillo-Valladolid, Brenda Alcántar-Vázquez, Rosa-María Ramírez-Zamora & Alexandra Ossa-López. (2021) Influence of aging on the physicochemical behavior of photocatalytic asphalt cements subjected to the natural environment. Construction and Building Materials 295, pages 123597.
Crossref
Song Yang, Jiaqi Ji, Hua Tao, Yaseen Muhammad, Junxian Huang, Shanshan Wang, Yunhao Wei & Jing Li. (2021) Fabrication of urea formaldehyde–epoxy resin microcapsules for the preparation of high self‐healing ability containing SBS modified asphalt . Polymer Composites 42:8, pages 4128-4137.
Crossref
Nikhil Saboo. (2021) Use of Limited Experimental Data for the Prediction of Creep and Recovery of Asphalt Binders. Journal of Materials in Civil Engineering 33:7.
Crossref
Gurunath Guduru, Chethan KumaraBharath GottumukkalaKranthi K Kuna. (2021) Effectiveness of Different Categories of Rejuvenators in Recycled Asphalt Mixtures. Journal of Transportation Engineering, Part B: Pavements 147:2, pages 04021006.
Crossref
Yan Li, Peiwen Hao, Chaozhi Zhao, Junqiang Ling, Tao Wu, Dewen Li, Jingwen Liu & Bowei Sun. (2021) Anti-rutting performance evaluation of modified asphalt binders: A review. Journal of Traffic and Transportation Engineering (English Edition) 8:3, pages 339-355.
Crossref
Baha Vural Kök, Ercan Aydoğmuş, Mehmet Yilmaz & Mustafa Akpolat. (2021) Investigation on the properties of new palm-oil-based polyurethane modified bitumen. Construction and Building Materials 289, pages 123152.
Crossref
Baodong Xing, Chengduo Qian, Huadong Sun, Jinliang Che & Yuchao Lyu. (2021) Reliability study on rheological and cracking behavior of mastics using different sized particles. Advanced Powder Technology 32:6, pages 2029-2042.
Crossref
Faheem Sadiq Bhat & Mohammad Shafi Mir. (2020) Rheological investigation of asphalt binder modified with nanosilica. International Journal of Pavement Research and Technology 14:3, pages 276-287.
Crossref
M. D. I. Domingos & A. L. Faxina. (2021) Literature Review of the Multiple Stress Creep and Recovery, Performance-Related Test. Journal of Transportation Engineering, Part B: Pavements 147:1, pages 03121001.
Crossref
Zihao Chen, Henglong Zhang, Haihui Duan, Chaofan Wu & Shuai Zhang. (2021) Long-term photo oxidation aging investigation of temperature-regulating bitumen based on thermochromic principle. Fuel 286, pages 119403.
Crossref
Hanqi Liu, Waleed Zeiada, Ghazi G. Al-Khateeb, Abdallah Shanableh & Mufid Samarai. (2021) Use of the multiple stress creep recovery (MSCR) test to characterize the rutting potential of asphalt binders: A literature review. Construction and Building Materials 269, pages 121320.
Crossref
Ali Behnood, Mohammad M. Karimi & Goshtasp Cheraghian. (2020) Coupled effects of warm mix asphalt (WMA) additives and rheological modifiers on the properties of asphalt binders. Cleaner Engineering and Technology 1, pages 100028.
Crossref
Yasameen Hadi Abed & Abdulhaq H.Abedali AL-Haddad. (2020) Evaluating and Modeling of Modified Asphalt Binder at Elevated Temperatures. IOP Conference Series: Materials Science and Engineering 978:1, pages 012049.
Crossref
Mahmoud Ameri, Abolfazl Afshin, Mehdi Ebrahimzadeh Shiraz & Farzad Yazdipanah. (2020) Effect of wax-based warm mix additives on fatigue and rutting performance of crumb rubber modified asphalt. Construction and Building Materials 262, pages 120882.
Crossref
Sumit K. Singh, Akanksha Pandey, Sk. Sohel Islam, G.D. Ransingchung R.N.Sham S. Ravindranath. (2020) Significance of frequency in quantifying the deterioration in the properties of SBS modified binders and rutting performance. Construction and Building Materials 262, pages 120872.
Crossref
Zhongnan Tian, Zhengqi Zhang, Kaiwen Zhang, Shuolei Huang & Yaofei Luo. (2020) Preparation and properties of high viscosity and elasticity asphalt by styrene–butadiene–styrene/polyurethane prepolymer composite modification. Journal of Applied Polymer Science 137:38.
Crossref
Bhaskar Vajipeyajula, K. Lakshmi Roja, Eyad Masad & Kumbakonam R. Rajagopal. (2020) Analysis of reclaimed asphalt blended binders using linear and nonlinear viscoelasticity frameworks. Materials and Structures 53:5.
Crossref
Jun LiuJenny LiuAnyou ZhuSteve Saboundjian. (2020) Evaluation of Multiple Stress-Creep Recovery Test on Alaskan Asphalt Binders. Journal of Materials in Civil Engineering 32:10.
Crossref
Yogesh Kumar, Sumit K. Singh, Deepa Oberoi, Praveen Kumar, Paritosh Mohanty & Sham S. Ravindranath. (2020) Effect of molecular structure and concentration of styrene-butadiene polymer on upper service temperature rheological properties of modified binders. Construction and Building Materials 249, pages 118790.
Crossref
Zihao Chen, Henglong Zhang & Haihui Duan. (2020) Investigation of ultraviolet radiation aging gradient in asphalt binder. Construction and Building Materials 246, pages 118501.
Crossref
Taylan Günay & Perviz Ahmedzade. (2020) Physical and rheological properties of nano- and nanocomposite modified bitumens . Construction and Building Materials 243, pages 118208.
Crossref
Alireza Ameli, Rezvan Babagoli, Mohammad Khabooshani, Ramin AliAsgari & Farhang Jalali. (2020) Permanent deformation performance of binders and stone mastic asphalt mixtures modified by SBS/montmorillonite nanocomposite. Construction and Building Materials 239, pages 117700.
Crossref
Amir Golalipour. 2020. Creep Characteristics of Engineering Materials. Creep Characteristics of Engineering Materials.
Rezvan Babagoli. (2020) Investigation of the High-Temperature Behavior of Asphalt Binders Modified by Warm Additives through Performance Grade and Multiple Stress Creep and Recovery System. Journal of Materials in Civil Engineering 32:2.
Crossref
Rita Kleizienė, Miglė Paliukaitė & Audrius Vaitkus. 2020. Proceedings of the 5th International Symposium on Asphalt Pavements & Environment (APE). Proceedings of the 5th International Symposium on Asphalt Pavements & Environment (APE) 325 336 .
Chengduo Qian, Weiyu Fan, Fangyong Ren, Xiaobo Lv & Baodong Xing. (2019) Influence of polyphosphoric acid (PPA) on properties of crumb rubber (CR) modified asphalt. Construction and Building Materials 227, pages 117094.
Crossref
Rui Li, Zhen Leng, Yuan Zhang & Xiang Ma. (2019) Preparation and characterization of waterborne epoxy modified bitumen emulsion as a potential high-performance cold binder. Journal of Cleaner Production 235, pages 1265-1275.
Crossref
Seyed Alireza Ghanoon & Javad Tanzadeh. (2019) Laboratory evaluation of nano-silica modification on rutting resistance of asphalt Binder. Construction and Building Materials 223, pages 1074-1082.
Crossref
Dharamveer Singh, Shashibhushan Girimath & Prabin Kumar Ashish. (2019) Effect of recycled asphalt binder on high and intermediate temperature performance of polymer modified asphalt binder. International Journal of Pavement Research and Technology 12:5, pages 486-496.
Crossref
Kezhen Yan, Lingyun You & Daocheng Wang. (2019) High-Temperature Performance of Polymer-Modified Asphalt Mixes: Preliminary Evaluation of the Usefulness of Standard Technical Index in Polymer-Modified Asphalt. Polymers 11:9, pages 1404.
Crossref
Prabin Kumar Ashish & Dharamveer Singh. (2019) Effect of Carbon Nano Tube on performance of asphalt binder under creep-recovery and sustained loading conditions. Construction and Building Materials 215, pages 523-543.
Crossref
Benešová Lucie & Valentin Jan. (2019) Comparison of bitumen multiple-stress creep recovery test values from the viewpoint of different test parameters. IOP Conference Series: Materials Science and Engineering 512, pages 012029.
Crossref
Matheus David Inocente Domingos, Adalberto Leandro Faxina & Liedi Légi Bariani Bernucci. (2019) Rutting behavior and rheological modeling of EVA-modified binders in the mixture and binder scales. Materials and Structures 52:2.
Crossref
Baodong Xing, Weiyu Fan, Chuanyi Zhuang, Chengduo Qian & Xiaobo Lv. (2019) Effects of the morphological characteristics of mineral powder fillers on the rheological properties of asphalt mastics at high and medium temperatures. Powder Technology 348, pages 33-42.
Crossref
Jun Cai, Chen Song, Bochao Zhou, Yefei Tian, Rui Li, Jiupeng Zhang & Jianzhong Pei. (2019) Investigation on high-viscosity asphalt binder for permeable asphalt concrete with waste materials. Journal of Cleaner Production.
Crossref
Baodong Xing, Weiyu Fan, Xiaobo Lv & Chengduo Qian. (2019) Study the effects of filler particle size and filler/asphalt ratio on the high and low temperature performance of asphalt mastics. IOP Conference Series: Materials Science and Engineering 493, pages 012163.
Crossref
Zihao Chen, Henglong Zhang, Caijun Shi & Chuanwen Wei. (2019) Rheological performance investigation and sustainability evaluation of asphalt binder with thermochromic powders under solar radiation. Solar Energy Materials and Solar Cells 191, pages 175-182.
Crossref
Iuri S. Bessa, Márcia M. Takahashi, Kamilla L. Vasconcelos & Liedi L. B. Bernucci. (2019) Characterization of neat and modified asphalt binders and mixtures in relation to permanent deformation. Science and Engineering of Composite Materials 26:1, pages 379-387.
Crossref
Zhou Zhou, Xingyu Gu, Jiwang Jiang, Fujian Ni & Yanxu Jiang. (2018) Nonrecoverable Behavior of Polymer Modified and Reclaimed Asphalt Pavement Modified Binder under Different Multiple Stress Creep Recovery Tests. Transportation Research Record: Journal of the Transportation Research Board 2672:28, pages 324-336.
Crossref
Khaleel Al-Adham & Hamad Al-Abdul Wahhab. (2018) Influence of temperature on Jnr values of polymer modified asphalt binders. International Journal of Pavement Research and Technology 11:6, pages 603-610.
Crossref
Dongmei Zhang, Zihao Chen, Henglong Zhang & Chuanwen Wei. (2018) Rheological and anti-aging performance of SBS modified asphalt binders with different multi-dimensional nanomaterials. Construction and Building Materials 188, pages 409-416.
Crossref
Tengfei Nian, Ping Li, Xiying Wei, Penghui Wang, Huishan Li & Rui Guo. (2018) The effect of freeze-thaw cycles on durability properties of SBS-modified bitumen. Construction and Building Materials 187, pages 77-88.
Crossref
Henglong Zhang, Zihao Chen, Guoqing Xu & Caijun Shi. (2018) Evaluation of aging behaviors of asphalt binders through different rheological indices. Fuel 221, pages 78-88.
Crossref
Peilong Li, Xiuming Jiang, Kai Guo, Yu Xue & Hao Dong. (2018) Analysis of viscoelastic response and creep deformation mechanism of asphalt mixture. Construction and Building Materials 171, pages 22-32.
Crossref
Mahmoud Elnasri, Gordon Airey & Nick Thom. (2018) Developing the multiple stress–strain creep recovery (MS-SCR) test. Mechanics of Time-Dependent Materials.
Crossref
Dennyele A. Gama, Yu Yan, John Kennedy G. Rodrigues & Reynaldo Roque. (2018) Optimizing the use of reactive terpolymer, polyphosphoric acid and high-density polyethylene to achieve asphalt binders with superior performance. Construction and Building Materials 169, pages 522-529.
Crossref
Yinfei Du, Jiaqi Chen, Zheng Han & Weizheng Liu. (2018) A review on solutions for improving rutting resistance of asphalt pavement and test methods. Construction and Building Materials 168, pages 893-905.
Crossref
Martin Jasso & Jiri Stastna. (2018) Dali’s melted pocket watch and the behavior of polymer modified asphalt binders. Rheologica Acta 57:4, pages 349-359.
Crossref
Dharamveer SinghShashibhushan GirimathPrabin Kumar Ashish. (2018) Performance Evaluation of Polymer-Modified Binder Containing Reclaimed Asphalt Pavement Using Multiple Stress Creep Recovery and Linear Amplitude Sweep Tests. Journal of Materials in Civil Engineering 30:3.
Crossref
Ayad Subhy. (2017) Advanced analytical techniques in fatigue and rutting related characterisations of modified bitumen: Literature review. Construction and Building Materials 156, pages 28-45.
Crossref
Aniket V. Kataware & Dharamveer Singh. (2017) A study on rutting susceptibility of asphalt binders at high stresses using MSCR test. Innovative Infrastructure Solutions 2:1.
Crossref
Ali Behnood & Jan Olek. (2017) Rheological properties of asphalt binders modified with styrene-butadiene-styrene (SBS), ground tire rubber (GTR), or polyphosphoric acid (PPA). Construction and Building Materials 151, pages 464-478.
Crossref
Mohammad JafariAbbas BabazadehMohammad Rahi. (2017) Evaluating Rutting and Fatigue Characteristics of Binder Containing SBS and PPA and Their Relationship with the Mixture Stiffness Parameter. Journal of Materials in Civil Engineering 29:9.
Crossref
Zhang Lei, Hussain Bahia, Tan Yi-qiu & Cheng Ling. (2017) Effects of refined waste and bio-based oil modifiers on rheological properties of asphalt binders. Construction and Building Materials 148, pages 504-511.
Crossref
Aniket V. Kataware & Dharamveer Singh. (2017) Evaluating effectiveness of WMA additives for SBS modified binder based on viscosity, Superpave PG, rutting and fatigue performance. Construction and Building Materials 146, pages 436-444.
Crossref
Babagoli Rezvan & Ziari Hassan. (2017) Evaluation of rutting performance of stone matrix asphalt mixtures containing warm mix additives. Journal of Central South University 24:2, pages 360-373.
Crossref
Dharamveer Singh & Aniket V. Kataware. (2016) Comparison of different rheological parameters for rutting susceptibility of SBS + WMA modified binders. Innovative Infrastructure Solutions 1:1.
Crossref
Lei Zhang, Chao Xing, Fei Gao, Tian-shuai Li & Yi-qiu Tan. (2016) Using DSR and MSCR tests to characterize high temperature performance of different rubber modified asphalt. Construction and Building Materials 127, pages 466-474.
Crossref
Aniket V. Kataware & Dharamveer Singh. (2016) Evaluating the Rutting Performance of a Polymer-Modified Binder Containing WMA Additives Using Different Rheological Parameters. Evaluating the Rutting Performance of a Polymer-Modified Binder Containing WMA Additives Using Different Rheological Parameters.
Huayang Yu, Zhen Leng, Feipeng Xiao & Zheming Gao. (2016) Rheological and chemical characteristics of rubberized binders with non-foaming warm mix additives. Construction and Building Materials 111, pages 671-678.
Crossref
M. D. I. DomingosA. L. Faxina. (2016) Susceptibility of Asphalt Binders to Rutting: Literature Review. Journal of Materials in Civil Engineering 28:2.
Crossref
Zahid Hossain, Debaroti Ghosh, Musharraf Zaman & Kenneth Hobson. (2016) Use of the Multiple Stress Creep Recovery (MSCR) Test Method to Characterize Polymer-Modified Asphalt Binders. Journal of Testing and Evaluation 44:1, pages 20140061.
Crossref
Olli-Ville Laukkanen, Hilde Soenen, Terhi Pellinen, Serge Heyrman & Geert Lemoine. (2014) Creep-recovery behavior of bituminous binders and its relation to asphalt mixture rutting. Materials and Structures 48:12, pages 4039-4053.
Crossref
Mohammad Jafari, Abbas Babazadeh & Sassan Aflaki. (2015) Effects of Stress Levels on Creep and Recovery Behavior of Modified Asphalt Binders with the Same Continuous Performance Grades. Transportation Research Record: Journal of the Transportation Research Board 2505, pages 15-23.
Crossref
Jun Zhang, Lubinda F. Walubita, Abu N.M. Faruk, Pravat Karki & Geoffrey S. Simate. (2015) Use of the MSCR test to characterize the asphalt binder properties relative to HMA rutting performance – A laboratory study. Construction and Building Materials 94, pages 218-227.
Crossref
Tan Yi-QiuZhang LeiChu Hao-Ran. (2015) New Index Used to Evaluate the High-Temperature and Low-Temperature Performance of Asphalt. Journal of Materials in Civil Engineering 27:8.
Crossref
Xu Yang & Zhanping You. (2015) High temperature performance evaluation of bio-oil modified asphalt binders using the DSR and MSCR tests. Construction and Building Materials 76, pages 380-387.
Crossref
I. Hafeez & M. A. Kamal. (2014) An Experimental-Based Approach to Predict Asphalt Mixtures Permanent Deformation Behavior. Arabian Journal for Science and Engineering 39:12, pages 8681-8690.
Crossref
Imran Hafeez & Mumtaz Ahmed Kamal. (2014) Creep Compliance: A Parameter to Predict Rut Performance of Asphalt Binders and Mixtures. Arabian Journal for Science and Engineering 39:8, pages 5971-5978.
Crossref
Aboelkasim Diab, Zhan Ping You & Hai Nian Wang. (2013) Using Modified Creep and Recovery Tests to Evaluate the Foam-Based Warm Mix Asphalt Contained Nano Hydrated Lime. Advanced Materials Research 646, pages 90-96.
Crossref
Hongru Yao, Qiang Wang, Yadong Cao & Xiaolong Zhou. (2022) Rheological Evaluation of High Elastic Modified Asphalt and the Properties of its Sma Mixtures. SSRN Electronic Journal.
Crossref
Nikita T. Bhagat, Hemantkumar P. Hadole & Mahadeo S. Ranadive. (2021) Rutting Characterisation of Pyro-Oil Modified Binders Based on Variation in Stress Levels, Creep Cycles, Recovery Time in Creep and Recovery Test. SSRN Electronic Journal.
Crossref

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.