Search results for "Wet proce"

showing 5 items of 5 documents

An investigation of the mechanical properties of rubber modified asphalt mixtures using a modified dry process

2017

Incorporating recycling tyres into asphalt mixtures contributes to solving a serious environmental problem as well as the potential of improving the mechanical performance of asphalt mixtures. The recycled tyre rubber is added by two technologies known as the dry process (when rubber particles are treated as an aggregate modifier) and the wet process (when rubber particles are treated as a binder modifier). Although, the dry process is easier and requires minimal or no modification in the asphalt plant, the inconsistency in field performance makes the dry process not widely used. The main reason for this is believed to be the lack of interaction between the rubber particles and binder. In o…

Aggregate (composite)Materials scienceCompactionStiffnessNatural rubberAsphalt mixture Dry process Fatigue Rutting Wet processAsphaltvisual_artUltimate tensile strengthvisual_art.visual_art_mediummedicineCrumb rubberComposite materialmedicine.symptomDeformation (engineering)
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Asphalt mixtures improved with plastic additives: mix design and case study in an airport

La crescente domanda di prestazioni e le esigenze di salvaguardia dell’ecosistema spingono a sviluppare nuove tecnologie di lavorazione, a sperimentare l’impiego di nuovi materiali, a migliorare i metodi di progetto delle miscele. Il criterio seguito è quello di un impiego più razionale delle risorse e dell’utilizzo di tecniche a basso impatto ambientale. Per ragioni tecniche ed economiche stiamo assistendo al fenomeno di espansione nel mercato degli additivi, impiegati nella produzione di miscele bituminose per migliorarne le prestazioni e ridurre i costi. In generale, però riuscire a soddisfare tutti gli obiettivi con un unico prodotto è difficile, perché l’alta qualità richiede costi più…

EMEDry proceWet proceMixture performanceSettore ICAR/04 - Strade Ferrovie Ed AeroportiAsphalt modification; Polymers; Plastics; Wet process; Dry process; EME; Mixture performance; Airport pavement; Bakfaa.Airport pavementPlasticAsphalt modificationPolymerBakfaa.
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Engineering in-plane mechanics of electrospun polyurethane scaffolds for cardiovascular tissue applications

2021

Effective cardiovascular tissue surrogates require high control of scaffold structural and mechanical features to match native tissue properties, which are dependent on tissue-specific mechanics, function heterogenicity, and morphology. Bridging scaffold processing variables with native tissue properties is recognized as a priority for advancing biomechanical performance of biomedical materials and, when translated to the clinical practice, their efficacy. Accordingly, this study selected electrospinning on a rotating cylindrical target as an apparatus of broad application and mapped the relationship between key processing variables and scaffold mechanics and structure. This information was…

Electrospinningcardiovascular tissue mechanical propertieTissue EngineeringTissue ScaffoldsPolyestersPolyurethanesBiomedical Engineeringcardiovascular tissue surrogateBiocompatible Materialscardiovascular tissue morphology.wet processingCardiovascular SystemBiomaterialsMechanics of MaterialselectrodepositionJournal of the Mechanical Behavior of Biomedical Materials
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Asphalt surface mixtures with improved performance using waste polymers via dry and wet processes

2017

"Published online: June 29, 2017"

Materials scienceDry process0211 other engineering and technologies02 engineering and technologyMixture performance.Wet proce021105 building & constructionSettore ICAR/04 - Strade Ferrovie Ed AeroportiGeneral Materials ScienceCivil and Structural EngineeringWaste polymerschemistry.chemical_classificationDry proceScience & TechnologyWaste managementBuilding and ConstructionPolymer021001 nanoscience & nanotechnologyImproved performanceWet processWaste polymerchemistryMechanics of MaterialsAsphaltMixture performance0210 nano-technologyAsphalt modification
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Towards storage-stable high-content recycled tyre rubber modified bitumen

2018

The addition of crumb rubber particles as bitumen modifier can be currently considered as a well-established alternative to conventional polymers for bitumen modification. However, Recycle Tyre Rubber (RTR) modified binders still present drawbacks such as poor mix workability and hot storage stability. Within this study the authors try unlocking the full potential of devulcanised tyre rubber-heavy oils blend, named Liquid Rubber (LR), by exploring the possibility of tailoring recycled polymer modified bitumen with unconventional high-content of RTR and designed to overcome the above mentioned technological problems of RTR modified bitumen while keeping its advantages. Results show that LR-b…

chemistry.chemical_classificationPolymer modifiedMaterials science0211 other engineering and technologies02 engineering and technologyBuilding and ConstructionPolymer021001 nanoscience & nanotechnologyrecycled tyre rubber Liquid rubber bitumen modification storage stability asphalt rubber no-agitation wet processNatural rubberRheologychemistryAsphaltvisual_artLiquid rubber021105 building & constructionvisual_art.visual_art_mediumGeneral Materials ScienceCrumb rubberComposite materialSolubility0210 nano-technologyCivil and Structural EngineeringConstruction and Building Materials
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