Pereira et al., 2018 - Google Patents
Skid resistance and texture of compacted asphalt mixes evaluated from the IFI in laboratory preparationPereira et al., 2018
View PDF- Document ID
- 8803500458483771688
- Author
- Pereira P
- Pais J
- Trichês G
- Fontes L
- Publication year
- Publication venue
- Proc., 4th Eurasphalt and Eurobitume Congress
External Links
Snippet
The greatest emphasis in pavement performance has been done in structural design components. However, the pavement friction is also important and is one of the factors that determining pavement safety. The wet skidding crashes are largely reduced when friction …
- 239000010426 asphalt 0 title abstract description 24
Classifications
-
- E—FIXED CONSTRUCTIONS
- E01—CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
- E01C—CONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE; MACHINES OR AUXILIARY TOOLS FOR CONSTRUCTION OR REPAIR
- E01C7/00—Coherent pavings made in situ
- E01C7/08—Coherent pavings made in situ made of road-metal and binders
- E01C7/18—Coherent pavings made in situ made of road-metal and binders of road-metal and bituminous binders
- E01C7/26—Coherent pavings made in situ made of road-metal and binders of road-metal and bituminous binders mixed with other materials, e.g. cement, rubber, leather, fibre
- E01C7/262—Coherent pavings made in situ made of road-metal and binders of road-metal and bituminous binders mixed with other materials, e.g. cement, rubber, leather, fibre with fibrous material, e.g. asbestos; with animal or vegetal admixtures, e.g. leather, cork
-
- E—FIXED CONSTRUCTIONS
- E01—CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
- E01C—CONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE; MACHINES OR AUXILIARY TOOLS FOR CONSTRUCTION OR REPAIR
- E01C23/00—Auxiliary devices or arrangements for constructing, repairing, reconditioning, or taking-up road or like surfaces
- E01C23/06—Devices or arrangements for working the finished surface; Devices for repairing or reconditioning the surface of damaged paving; Recycling in place or on the road
-
- E—FIXED CONSTRUCTIONS
- E01—CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
- E01C—CONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE; MACHINES OR AUXILIARY TOOLS FOR CONSTRUCTION OR REPAIR
- E01C7/00—Coherent pavings made in situ
- E01C7/08—Coherent pavings made in situ made of road-metal and binders
- E01C7/18—Coherent pavings made in situ made of road-metal and binders of road-metal and bituminous binders
- E01C7/26—Coherent pavings made in situ made of road-metal and binders of road-metal and bituminous binders mixed with other materials, e.g. cement, rubber, leather, fibre
- E01C7/265—Coherent pavings made in situ made of road-metal and binders of road-metal and bituminous binders mixed with other materials, e.g. cement, rubber, leather, fibre with rubber or synthetic resin, e.g. with rubber aggregate, with synthetic resin binder
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Araujo et al. | Measuring skid resistance of hot mix asphalt using the aggregate image measurement system (AIMS) | |
Andriejauskas et al. | Evaluation of skid resistance characteristics and measurement methods | |
Kassem et al. | Development of predictive model for skid loss of asphalt pavements | |
Sengoz et al. | Effect of aggregate shape on the surface properties of flexible pavement | |
Rezaei et al. | Predicting asphalt mixture skid resistance by aggregate characteristics and gradation | |
McDaniel et al. | Evaluation of reclaimed asphalt pavement for surface mixtures | |
Chen et al. | Laboratory and field evaluation of porous asphalt concrete | |
Chowdhury et al. | Validation of asphalt mixture pavement skid prediction model and development of skid prediction model for surface treatments. | |
Aavik et al. | Use of pavement surface texture characteristics measurement results in Estonia | |
Chen et al. | Polishing of asphalt pavements: from macro-to micro-scale | |
Pereira et al. | Skid resistance and texture of compacted asphalt mixes evaluated from the IFI in laboratory preparation | |
Wasilewska et al. | Evaluation of skid resistance using CTM, DFT and SRT-3 devices | |
Davis | Comparison of surface characteristics of hot-mix asphalt pavement surfaces at the Virginia Smart Road | |
Wasilewska | Evaluation of skid resistance of wearing course made of stone mastic asphalt mixture in laboratory conditions | |
Sullivan | Development of a fundamental skid resistance asphalt mix design procedure | |
Yang et al. | Laboratory and field performance evaluation of warm mix asphalt incorporating RAP and RAS | |
Li et al. | Evaluation of friction performance of coarse aggregates and hot-mix asphalt pavements | |
Kowalski et al. | Development of a laboratory procedure to evaluate the influence of aggregate type and mixture proportions on the frictional characteristics of flexible pavements | |
Kowalski et al. | Identification of laboratory technique to optimize Superpave HMA surface friction characteristics | |
Wasilewska et al. | Assessment of skid resistance using DFTester and CTMeter | |
Ji et al. | Precise characterization of macro-texture and its correlation with anti-skidding performance of pavement | |
Khasawneh | The development and verification of a new accelerated polishing machine | |
Liu et al. | Synthesis of current research on permeable friction courses: Performance, design, construction, and maintenance | |
Pranjić et al. | Pavement surface macrotexture analysis | |
Rezaei | Development of a prediction model for skid resistance of asphalt pavements |