Transportation research procedia · 2016 · 19 citations · 5 references
Energy ConsumptionMaterials ScienceAsphalt MixesHighway PavementEngineeringBinder DesignMechanical EngineeringPolymer ScienceMicroemulsionRheologyHigh Energy ConsumptionHot Asphalt MixesHeat TransferEva Modified BitumenBitumenAsphaltAsphalt BinderEmulsion
High energy consumption and environmental risks are both associated to the use of hot asphalt mixes. In response to the need of more sustainable pavements, the modification of bitumen with low melting point EVA copolymers is investigated. Firstly, different modified binders containing EVA with varying VA contents (and so different crystalline fractions and melting temperatures) and Melt Flow Index (MFI) values were investigated. In the second stage, emulsification was implemented, in which the above EVA modified bitumen was suspended in the form of micro-size droplets in aqueous phase, in the presence of a surfactant. The results suggest that an optimum balance between VA content and MFI value will improve the binder rheological performance at medium-high in-service temperatures as well as its workability, and will facilitate its emulsification. Additionally, the binder viscosity is tremendously reduced after its emulsification, which allows mixing to be performed at much lower temperature, so reducing both energy consumption and environmental risks.
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Linear Viscoelasticity of Recycled EVA-Modified Bitumens
Moisés García‐Morales, P. Partal, F.J. Navarro et al. · Energy & Fuels · 2003 · 92 citations
Flow characteristics of concentrated emulsions of very viscous oil in water
Gustavo A. Núñez, María Isabel Briceño, Clara Mata et al. · Journal of Rheology · 1996 · 61 citations
Nathaporn Somrang, Manit Nithitanakul, Brian P. Grady et al. · European Polymer Journal · 2004 · 38 citations
A.A. Cuadri, V. Carrera, M.A.G. Izquierdo et al. · Construction and Building Materials · 2013 · 28 citations · Full text
Materials Science, Highway Pavement, Non-polymeric Additives +8