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Advanced Asphalt Materials and Paving Technologies
eywords
molecular dynamics (MD); exfoliated graphite nanoplatelets; asphalt; glass transition temperature; viscosity; thermal conductivity; asphalt concrete; creep curve; steady-state creep; strain rate; viscosity; stress intensity; strain intensity; surface free energy; adhesion; asphalt-aggregate interface; organic additive; asphalt concrete; constitutive model; impact loading; blast loading; numerical simulation; bioadditive; reclaim asphalt pavement (RAP); warm mix asphalt (WMA); sustainable roads; air void structure; ultrasonic scattering measurement; inverse analysis; transport ability; compressive strength; dynamic modulus; stone matrix asphalt; volume parameters; Marshall Stability; flocculent lignin fiber; polyester fiber; mineral fiber; fiber content; pavement engineering; high modulus asphalt concrete; local stress-strain; modified Neuber equation; fatigue life; reclaimed asphalt pavement; mortar; stiffness; m-value; low temperature determination; high-modulus asphalt concrete; permanent deformation; creep; sloped and horizontally curved road; prediction; bitumen binder; molecular simulation; diffusion of rejuvenator; aged bitumen; rheological properties; plastic waste; cross-linked polyethylene; binder modification; aggregate substitution; mix design; asphalt mixture performance; finite layer method; asphalt pavement structural analysis; EasyFEM; element energy projection; super-converg
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