Performance-Related Material Properties of Asphalt Mixture Components

Download Url(s)
https://mdpi.com/books/pdfview/book/7182Contributor(s)
Ling, Meng (editor)
Zhang, Yao (editor)
Ding, Haibo (editor)
Chen, Yu (editor)
Language
EnglishAbstract
This reprint contains the most recent research in pavement engineering, which mainly addresses the performance-related properties of asphalt mixtures. We hope that this reprint is helpful for researchers and pavement industries to generate a better and deeper understanding of pavement materials, pavement construction, and pavement maintenance.
Keywords
asphalt performance grading; thermal cracking; fatigue; phase angle; creep rate; failure strain; asphalt mixture; fatigue performance; rolling load; laboratory test; device; geometry; mechanical load; thermal load; numerical simulation; cracking; flow-rutting; axial and lateral deformation; optical fiber Bragg grating; asphalt binder; fractions composition; mechanical property; rheological properties; asphalt colloidal structure; asphaltene; asphalt mortar; dynamic mechanical analysis; phase transition; high- and low-temperature performance; back calculation of modulus; Falling Weight Deflectometer (FWD); firefly optimization algorithm; RIOHTrack; tire–pavement contact; texture information identification; numerical modeling; fluid hydrodynamic lubrication theory; orthogonal experimental design; peak adhesion coefficient; molecular weight distribution; branching of wax; moisture sensitivity; surface free-energy; binder bond strength; warm mix additive; waste polypropylene plastic; pyrolysis; PP wax; modified asphalt; epoxy asphalt; TG-MS; cone calorimeter test; pyrolysis combustion characteristics; phase transformation; characteristic temperature; load; environment; hot rejuvenated asphalt mixtures; Hamburg wheel tracking test; moisture damage; economic benefit; fiber; aging; oxidation; wax; nuclear magnetic resonance; gas chromatography; plastic and basalt fiber composite modifier; urban bus lane; pavement performance; statics analysis; load transfer mechanism; testing method; contact force; force chainWebshop link
https://mdpi.com/books/pdfview ...ISBN
9783036574271, 9783036574264Publisher website
www.mdpi.com/booksPublication date and place
Basel, 2023Classification
Technology: general issues
History of engineering & technology
Transport technology & trades