Engineering

Engineering

ISSN Print: 1947-3931
ISSN Online: 1947-394X
www.scirp.net/journal/eng
E-mail: [email protected]
"Studies on Chemical Resistance of PET-Mortar Composites: Microstructure and Phase Composition Changes"
written by Ahmed Soufiane Benosman, Mohamed Mouli, Hamed Taibi, Mohamed Belbachir, Yassine Senhadji, Ilies Bahlouli, David Houivet,
published by Engineering, Vol.5 No.4, 2013
has been cited by the following article(s):
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[11] Effect of the incorporation of PET fiber and ternary blended binder on the flexural and tensile behaviour of ultra-high performance green concrete
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[12] Sustainable Zero-Slump Concrete Containing Recycled Aggregates from Construction and Demolition Waste of a 63-Year-Old Demolished Building
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[13] The resistance of repair epoxy composites modified with silicon-containing additives and mineral fillers
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[14] Organización espacial y gestión de los recursos hídricos en el altiplano de Edom durante el I milenio aC: el yacimiento de Sela (Tafila, Jordania)
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[15] Síntese e caracterização de líquidos iônicos baseados em monoetanolamina e colina e aplicação na cristalização do fármaco isoniazida
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[16] Effect of chemical exposure on mechanical properties and microstructure of lightweight polymer composites containing solid waste fillers
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[17] Protection against reinforcement corrosion using various hydroxy acid-based rust converters: tests in mortar medium
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[18] Development and characterization of polymer-based composites filled with micro-sized waste marble dust
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[19] Impact of water flooding on hard cement-recycled polystyrene composite immobilizing radioactive sulfate waste simulate
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[20] Correlação entre o desempenho físico, mecânico e térmico de argamassas de revestimento produzidas com resíduos sólidos industriais em substituição parcial à …
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[21] Physical, mechanical and thermal properties of lightweight composite mortars containing recycled polyvinyl chloride
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[22] Structural Characteristics of Composite Mortars and their Evolution with PET Substitution Level for Several Specimens' Ages
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[23] Investigating use of dimensional limestone slurry waste as fine aggregate in mortar
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[24] Green Concrete with Fly Ash and Plastic Waste
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[25] Environmental Impact of Modified RW-PET Composite Mortars: Material Sustainability & Mechanical Characterization
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[26] Using recycle plastic as a lightweight aggregate for lightweight concrete
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[27] Caracterización físico-mecánica y térmica de materiales tradicionales y alternativos para la envolvente en una edificación
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[28] ANáLISIS SISTEMáTICO DE REFERENTES LITERARIOS DEL CICLO DE VIDA PET Y SU GENERACIóN EN LA SEDE PRINCIPAL DE LA UCC, VILLAVICENCIO
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[30] Análisis sistemático de referentes literarios del ciclo de vida PET y su generación en la sede principal de la UCC, Villavicencio.
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[31] Investigations for properties improvement of recycled PE polymer particles-reinforced mortars for repair practice
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[32] Plastic Waste Particles in Mortar Composites: Sulfate Resistance and Thermal Coefficients
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[33] Biogenic deterioration of concrete and its mitigation technologies
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[34] CHEMICAL, MECHANICAL AND THERMAL PROPERTIES OF MORTAR COMPOSITES CONTAINING WASTE PET.
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[35] Electrically actuated microfluidics in fabric
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[36] Use of thermoplastic polymer in mortar composites to improve its chloride penetration resistance
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[37] Use of Thermoplastic Polymer in Mortar Composites to Improve Its Chloride Penetration Resistance.
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[38] Use of different forms of waste plastic in concrete-a review
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[39] L’effet de l’ajout du PET sur les performances mécaniques des matériaux Composites Mortier-PET (Effect of addition of PET on the mechanical performance of PET-Mortar Composite materials)
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[40] Use of different forms of waste plastic in concrete–a review
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[42] Imobilização covalente de tripsina em membranas de nanofibras poliméricas obtidas por electrofiação
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