Area of research
Civil and Structural Engineering · Control and Systems Engineering
Research interest
Research interests include Materials science, Asphalt, Composite material, Asphalt pavement, Environmental science, and Clogging.
The state-of-the-art review on the utilization of reclaimed asphalt pavement via hot in-place recycling technology
Study on the formation mechanism of reflective cracks in semi-rigid base asphalt pavement based on energy evolution mechanism
Optimization of asphalt pavement strain measurement across a wide temperature range
Influence of aggregate gradation on clogging and permeability in porous asphalt mixtures
Comparative Analysis of Aged-SBSMA Regeneration in Hot In-Place Recycling: Individual and Coupled Effects of Aromatic Oil and SBS/SBR Polymer Modifiers
Simulation of colloidal aggregate structure in asphalt using dissipative particle dynamics
Multiscale Analysis of Epoxy Asphalt Performance Based on Formulation and Curing Parameters
Synchronous strain and modulus sensing in asphalt layers via inclusion-matrix deformation mapping
Multi-Scale evaluation of low-temperature performance in asphalt mixtures using not-notched semi-circular bending creep testing
Quantifying the Benefits of Pervious Asphalt Pavement and Bioretention Facility in Road LID Strategies for Urban Drainage Network Optimization
Research Review on Traffic Safety for Expressway Maintenance Road Sections
Macroscopic and Microscopic Performance Study of Filling-Type Large-Size Cement-Stabilized Macadam
Interfacial weakening mechanism and energy evolution of filling-type large-size cement-stabilized macadam for reflection crack mitigation
Analysis of clogging mechanism and particle migration evolution of porous asphalt mixtures based on discrete element simulation
Synergistic effect of polymer‐modified rejuvenator and fresh asphalt on road performance of hot in‐place recycling styrene–butadiene–styrene‐modified asphalt mixtures
Research on the Stress Characteristics of Reuse of Semi-Rigid Base
Physical-Layer Counterattack Strategies for the Internet of Bio-Nano Things with Molecular Communication