COMPOZITE POLIMERICE PE BAZA DE POLIOLEFINE, ARMATE CU ARGILA STRATIFICATA MODIFICATA CHIMIC/ POLYOLEFIN POLYMER COMPOSITES REINFORCED WITH CHEMICALLY MODIFIED LAYERED CLAY
The aim of this work was to obtain polyolefin polymer composites reinforced with chemically modified layered clay: polyolefin/rubber/compatibilizer/nanoparticles. The technology of making these polymer composites is extrusion-granulation, in strict compliance with the order of introduction of ingred...
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Published in | Revista Romana de Materiale Vol. 45; no. 3; p. 377 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English Romanian |
Published |
Bucharest
Foundation for Materials Science and Engineering - "Serban Solacolu"
01.01.2015
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Subjects | |
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Abstract | The aim of this work was to obtain polyolefin polymer composites reinforced with chemically modified layered clay: polyolefin/rubber/compatibilizer/nanoparticles. The technology of making these polymer composites is extrusion-granulation, in strict compliance with the order of introduction of ingredients. Embedding montmorillonite nanopowders in the polymer composite mixture helps to increase the thermal resistance of the nanocomposite. The obtained polymer composites were tested in terms of physical-mechanical (hardness, elasticity, tensile strength normal state and accelerated aging for 168h at 70 degree C), resistance to solvents (immersion in iso-octane) and structural properties (FT-IR), according to standards in force. |
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AbstractList | The aim of this work was to obtain polyolefin polymer composites reinforced with chemically modified layered clay: polyolefin/rubber/compatibilizer/nanoparticles. The technology of making these polymer composites is extrusion-granulation, in strict compliance with the order of introduction of ingredients. Embedding montmorillonite nanopowders in the polymer composite mixture helps to increase the thermal resistance of the nanocomposite. The obtained polymer composites were tested in terms of physical-mechanical (hardness, elasticity, tensile strength normal state and accelerated aging for 168h at 70°C), resistance to solvents (immersion in iso-octane) and structural properties (FT-IR), according to standards in force. The aim of this work was to obtain polyolefin polymer composites reinforced with chemically modified layered clay: polyolefin/rubber/compatibilizer/nanoparticles. The technology of making these polymer composites is extrusion-granulation, in strict compliance with the order of introduction of ingredients. Embedding montmorillonite nanopowders in the polymer composite mixture helps to increase the thermal resistance of the nanocomposite. The obtained polymer composites were tested in terms of physical-mechanical (hardness, elasticity, tensile strength normal state and accelerated aging for 168h at 70 degree C), resistance to solvents (immersion in iso-octane) and structural properties (FT-IR), according to standards in force. |
Author | Sonmez, Maria Vilsan, Mihaela (Nituica Georgescu, Mihai Gurau, Dana Meghea, Aurelia |
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SubjectTerms | Aging Clay Clay (material) Compliance Consumer goods Fiber reinforced composites Infrared radiation Ingredients Mechanical properties Nanocomposites Nanostructure Nanostructured materials Polymer matrix composites Polymers Polyolefins Rubber Solvents Spectrum analysis Studies Tensile strength Thermal resistance |
Title | COMPOZITE POLIMERICE PE BAZA DE POLIOLEFINE, ARMATE CU ARGILA STRATIFICATA MODIFICATA CHIMIC/ POLYOLEFIN POLYMER COMPOSITES REINFORCED WITH CHEMICALLY MODIFIED LAYERED CLAY |
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