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Application of Polymer Materials in Pavement Design

Application of Polymer Materials in Pavement Design

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This Special Issue comprises 17 research articles and 2 review articles, covering studies on both individual and composite polymer modifications. Topics include high-content polymer-modified bitumen, epoxy resin adhesives, SBS-modified bitumen, PE-modified bitumen, crumb-rubber-modified bitumen, and biopolymeric capsules and bitumen rejuvenators.

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Keywords

  • adhesion characteristics
  • aging durability
  • alginate
  • asphalt
  • asphalt binder
  • asphalt concrete
  • asphalt mix design
  • asphalt pavement
  • asphalt pavements
  • atomic force microscope (AFM)
  • binder bond strength (BBS)
  • biodegradability
  • bitumen
  • calcium alginate capsules
  • cis-1, 4-polyisoprene
  • compatibility
  • creep analysis
  • creep compliance
  • crumb rubber
  • damage mechanism
  • degree of blending (DOB)
  • dense asphalt mix
  • dynamic pore water pressure
  • Encapsulation
  • epoxy resin
  • factorial design
  • fatigue lifetime
  • film thickness
  • functional polymer
  • glass transition temperature
  • gray relational analysis
  • HCPMA
  • high elastic polymer
  • high-content polymer modified asphalt
  • History of engineering & technology
  • hot recycled asphalt mixture
  • Inhibition
  • low service temperature
  • Low temperatures
  • low-temperature performance
  • Mechanical properties
  • microscopic mechanism
  • microwave heating
  • modified asphalt
  • moisture damage
  • Molecular Dynamics
  • morphological analysis
  • nano-OvPOSS
  • natural fibers
  • neat and polymer-modified bitumens
  • optimal film thickness
  • organic montmorillonite
  • pavement de-icing
  • pavement materials
  • performance-based
  • performance-related specification
  • phase structure
  • polyethylene
  • porous asphalt mix
  • post hoc analyses
  • prediction model
  • rap
  • reclaimed asphalt binder
  • recycled engine oil bottom
  • rejuvenators
  • relaxation modulus
  • relaxation time spectrum
  • response surface method
  • rheological behaviors
  • rheological properties
  • road engineering
  • rubberized asphalt
  • salt storage asphalt mastic
  • salt storage pavement
  • SBS
  • SBS modifier
  • Self-healing
  • selfhealing level
  • SEM
  • SHRP test
  • spectroscopic analysis
  • stone mastic asphalt
  • Structure
  • surface free energy (SFE)
  • synthetic fibers
  • Technology, engineering, agriculture
  • Technology: general issues
  • the modification-rejuvenation mechanism
  • toughening agent
  • Transport technology & trades
  • variance analysis
  • viscoelastic behavior
  • viscoelastic continuum damage model
  • viscoplastic shift model
  • VOCs
  • waste fibers
  • waste polyethylene
  • XRD

Links

DOI: 10.3390/books978-3-0365-9234-3

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