Nothing Special   »   [go: up one dir, main page]

Fatemi et al., 2022 - Google Patents

Investigating the effect of calcium lignosulfonate on the durability and performance of asphalt mixtures

Fatemi et al., 2022

View PDF @Full View
Document ID
13146447310697169988
Author
Fatemi S
Bazaz J
Ziaee S
Publication year
Publication venue
Advances in Materials Science and Engineering

External Links

Snippet

Using bitumen modifiers to prolong the asphalt mixture's life has been considered a practical approach in constructing asphalt mixtures. Among various bitumen modifiers, biomass ones have been more noteworthy because of their abundance, cost‐effectiveness, renewability …
Continue reading at onlinelibrary.wiley.com (PDF) (other versions)

Classifications

    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08LCOMPOSITIONS OF MACROMOLECULAR COMPOUNDS
    • C08L95/00Compositions of bituminous materials, e.g. asphalt, tar, pitch

Similar Documents

Publication Publication Date Title
Esfandabad et al. Fracture and mechanical properties of asphalt mixtures containing granular polyethylene terephthalate (PET)
Ayub et al. Effect of chopped basalt fibers on the mechanical properties and microstructure of high performance fiber reinforced concrete
Shafabakhsh et al. Evaluation the effect of nano-TiO2 on the rutting and fatigue behavior of asphalt mixtures
Mamun et al. Evaluation of Waste Engine Oil‐Rejuvenated Asphalt Concrete Mixtures with High RAP Content
Tapkın Mechanical evaluation of asphalt–aggregate mixtures prepared with fly ash as a filler replacement
Hamid et al. Evaluating Fly Ash‐Based Geopolymers as a Modifier for Asphalt Binders
Mashaan et al. Dynamic properties and fatigue life of stone mastic asphalt mixtures reinforced with waste tyre rubber
Zhang et al. Effect of basalt fiber distribution on the flexural–tensile rheological performance of asphalt mortar
Fatemi et al. Investigating the effect of calcium lignosulfonate on the durability and performance of asphalt mixtures
Taherkhani et al. Comparative study of the effects of nanosilica and zyco-soil nanomaterials on the properties of asphalt concrete
Wu et al. Influence of fiber-asphalt interface property on crack resistance of asphalt mixture
Pasetto et al. Fatigue performance of recycled hot mix asphalt: A laboratory study
Khanghahi et al. Determination of the optimum conditions for gilsonite and glass fiber in HMA under mixed mode I/III loading in fracture tests
Nikookar et al. Improving the moisture sensitivity of asphalt mixtures by simultaneous modification of asphalt binder and aggregates with carbon nanofiber and carbon nanotube
Pourtahmasb et al. Utilization of recycled concrete aggregates in stone mastic asphalt mixtures
Lu et al. Studying the Properties of SBS/Rice Husk Ash‐Modified Asphalt Binder and Mixture
Saed et al. Performance evaluation of stone matrix asphalt mixtures and low-temperature properties of asphalt binders containing reclaimed asphalt pavement materials modified with nanosilica
Zhang et al. Laboratory Evaluation of Rheological Properties of Asphalt Binder Modified by Nano‐TiO2/CaCO3
Ziari et al. Substitution of the natural aggregate filler by coal waste powder (CWP) in microsurfacing surface treatment: Mix design and performance evaluation
Huang et al. Hybrid modification of stone mastic asphalt with cellulose and basalt fiber
Pei et al. Analysis of the trend in evolution of multilevel mechanical properties of solvent-based cold mixed liquid asphalt and mixture
Bocci et al. Analysis of different reclaimed asphalt pavements to assess the potentiality of RILEM cohesion test
Wu et al. Effect of aging on low-temperature crack resistance and water stability of polyester fiber asphalt mixture
Yin et al. Preparation and performance characterization of phosphogypsum whisker composite modified asphalt binder
Babagoli et al. Influence of soybean oil on binder and warm mixture asphalt properties