Journal ArticleDOI
Review of experimental characterisation and modelling of asphalt binders at low temperature
TLDR
Asphalt binder represents the main constituent of asphalt paving mixtures and the functional performance and durability of asphalt pavements strongly depend on the rheological and mechanical proper tie... as mentioned in this paper.Abstract:
Asphalt binder represents the main constituent of asphalt paving mixtures. The functional performance and durability of asphalt pavements strongly depend on the rheological and mechanical propertie...read more
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Journal ArticleDOI
Asphalt-rubber interaction and performance evaluation of rubberised asphalt binders containing non-foaming warm-mix additives
TL;DR: Warm mix asphalt (WMA) technology has been increasingly utilised in rubberised asphalt pavements to reduce the production and compaction temperatures and the incidental fumes and odours.
Journal ArticleDOI
New innovations in pavement materials and engineering: A review on pavement engineering research 2021
Jiaqi Chen,Hancheng Dan,Yongjie Ding,Yangming Gao,Meng Guo,Shuaicheng Guo,Bingye Han,Bin Hong,Yue Hou,Chichun Hu,Jing Hu,Ju Huyan,Ju Huyan,Jiwang Jiang,Wei Jiang,Cheng Li,Pengfei Liu,Yu Liu,Zhuangzhuang Liu,Guoyang Lu,Jian Ouyang,Xin Qu,Dongya Ren,Chao Wang,Chaohui Wang,Dawei Wang,Di Wang,Hainian Wang,Haopeng Wang,Yue Xiao,Chao Xing,Huining Xu,Yu Yan,Xu Yang,Lingyun You,Zhanping You,Bin Yu,Huayang Yu,Huanan Yu,Henglong Zhang,Jizhe Zhang,Changhong Zhou,Changjun Zhou,Xingyi Zhu +43 more
TL;DR: In this paper, a review paper on the topic of "New innovations in pavement materials and engineering: A review on pavement engineering research 2021" has been published, which analyzes the research status and future development direction of 5 major fields of pavement engineering.
Journal ArticleDOI
Low-Temperature Reversible Aging Properties of Selected Asphalt Binders Based on Thermal Analysis
Haibo Ding,Yanjun Qiu,Ali Rahman +2 more
TL;DR: In this paper, the authors investigated the low-temperature reversible aging discrepancy mechanism of the asphalt binders with similar regular lowtemperature performance and found that the aging discrepancy was reversible.
Journal ArticleDOI
Using combined Avrami-Ozawa method to evaluate low-temperature reversible aging in asphalt binders
TL;DR: In this paper, the authors evaluate the reversible aging resistance of asphalt binders and comprehend the effects of low-temperature gradually hardening on fundamental properties of asphalt bounding boards.
Journal ArticleDOI
Investigation of the oxidation ageing of RAP asphalt blend binders and mixtures
TL;DR: In this paper, the authors evaluate the oxidation ageing properties of asphalt blends and mixtures combined with various percentages of RAP and SBS-modified binder, rejuvenator and neat binder.
References
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BookDOI
Fracture Mechanics : Fundamentals and Applications
TL;DR: Fracture Mechanics: Fundamentals and Applications, Fourth Edition as discussed by the authors is the most useful and comprehensive guide to fracture mechanics available It has been adopted by more than 150 universities worldwide and used by thousands of engineers and researchers.
Book
Mechanical properties of solid polymers
TL;DR: A concise, self-contained introduction to solid polymers, the mechanics of their behavior and molecular and structural interpretations can be found in this article, which provides extended coverage of recent developments in rubber elasticity, relaxation transitions, non-linear viscoelastic behavior, anisotropic mechanical behavior, yield behavior of polymers and other fields.
Book
Fracture and Size Effect in Concrete and Other Quasibrittle Materials
Zdeněk P. Bažant,Jaime Planas +1 more
TL;DR: In this paper, the authors used the Weibull-type approach to measure the effect of size effect on structural strength of a crack and its size effect in terms of the number of cracks and the size of the cracks.
Related Papers (5)
High-Temperature Rheological Properties of Asphalt Binders with Polymeric, Warm-Mix, and Rubber Particulate Additives
Yong Wen,Yuhong Wang +1 more