Mechanical properties and fire-resistance of composites with marble particles

The main aim of this work is to manufacture a composite material based on a natural material (marble) with acceptable mechanical properties and fire resistance, for being used in habitat industry as floor or wall in buildings. Marble used as raw material is the waste powder of quarry or plate manufa...

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Main Authors: Juana Abenojar, Miguel-Angel Martínez, Sara López de Armentia, Eva Paz, Juan-Carlos del Real, Francisco Velasco
Format: Article
Language:English
Published: Elsevier 2021-05-01
Series:Journal of Materials Research and Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2238785421002982
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spelling doaj-93ff6d53b2c144d49cb9409f16f3ded52021-05-24T04:30:51ZengElsevierJournal of Materials Research and Technology2238-78542021-05-011214031417Mechanical properties and fire-resistance of composites with marble particlesJuana Abenojar0Miguel-Angel Martínez1Sara López de Armentia2Eva Paz3Juan-Carlos del Real4Francisco Velasco5Materials Science and Engineering and Chemical Engineering Department, In-service Material Performance Group, “Álvaro Alonso Barba” Institute of Chemistry and Materials Technology, Universidad Carlos III de Madrid, Av. Universidad, 30-28911, Leganés, Spain; Mechanical Engineering Department, Universidad Pontificia Comillas, Alberto Aguilera 25, 28015 Madrid, Spain; Corresponding author.Materials Science and Engineering and Chemical Engineering Department, In-service Material Performance Group, “Álvaro Alonso Barba” Institute of Chemistry and Materials Technology, Universidad Carlos III de Madrid, Av. Universidad, 30-28911, Leganés, SpainInstitute for Research in Technology/Mechanical Engineering Department, Universidad Pontificia Comillas, Alberto Aguilera 25, 28015 Madrid, SpainInstitute for Research in Technology/Mechanical Engineering Department, Universidad Pontificia Comillas, Alberto Aguilera 25, 28015 Madrid, SpainInstitute for Research in Technology/Mechanical Engineering Department, Universidad Pontificia Comillas, Alberto Aguilera 25, 28015 Madrid, SpainMaterials Science and Engineering and Chemical Engineering Department, In-service Material Performance Group, “Álvaro Alonso Barba” Institute of Chemistry and Materials Technology, Universidad Carlos III de Madrid, Av. Universidad, 30-28911, Leganés, SpainThe main aim of this work is to manufacture a composite material based on a natural material (marble) with acceptable mechanical properties and fire resistance, for being used in habitat industry as floor or wall in buildings. Marble used as raw material is the waste powder of quarry or plate manufacturing. To achieve this objective, polyester matrix composites with 50 wt.% of marble and 3 wt.% of glass fiber (short fiber or mesh) were prepared. The novelty of this study is the high percentage of ceramic material added to a polymer matrix composite and the fire resistance study. Samples were characterized mechanically through flexural test, Charpy impact test, compression test and wear resistance by pin-on-disk test. Fracture surfaces were analyzed by scanning electron microscope (SEM), and wear tracks were studied by SEM and 3D optical profilometer. Besides, samples were subjected to fire test using a Bunsen burner at 900 °C for 20 min. Sample temperature at the opposite-to-fire test side was measured with an infrared thermometer. Results show that marble improves mechanical properties of polyester and the effect of the glass fiber depends on its morphology (fiber or mesh). Fire resistance is high, and the fire goes out when the flame is turned off. Furthermore, the mesh maintains the integrity of the sample.http://www.sciencedirect.com/science/article/pii/S2238785421002982CompositePolyesterMarbleMechanical propertiesFire resistance
collection DOAJ
language English
format Article
sources DOAJ
author Juana Abenojar
Miguel-Angel Martínez
Sara López de Armentia
Eva Paz
Juan-Carlos del Real
Francisco Velasco
spellingShingle Juana Abenojar
Miguel-Angel Martínez
Sara López de Armentia
Eva Paz
Juan-Carlos del Real
Francisco Velasco
Mechanical properties and fire-resistance of composites with marble particles
Journal of Materials Research and Technology
Composite
Polyester
Marble
Mechanical properties
Fire resistance
author_facet Juana Abenojar
Miguel-Angel Martínez
Sara López de Armentia
Eva Paz
Juan-Carlos del Real
Francisco Velasco
author_sort Juana Abenojar
title Mechanical properties and fire-resistance of composites with marble particles
title_short Mechanical properties and fire-resistance of composites with marble particles
title_full Mechanical properties and fire-resistance of composites with marble particles
title_fullStr Mechanical properties and fire-resistance of composites with marble particles
title_full_unstemmed Mechanical properties and fire-resistance of composites with marble particles
title_sort mechanical properties and fire-resistance of composites with marble particles
publisher Elsevier
series Journal of Materials Research and Technology
issn 2238-7854
publishDate 2021-05-01
description The main aim of this work is to manufacture a composite material based on a natural material (marble) with acceptable mechanical properties and fire resistance, for being used in habitat industry as floor or wall in buildings. Marble used as raw material is the waste powder of quarry or plate manufacturing. To achieve this objective, polyester matrix composites with 50 wt.% of marble and 3 wt.% of glass fiber (short fiber or mesh) were prepared. The novelty of this study is the high percentage of ceramic material added to a polymer matrix composite and the fire resistance study. Samples were characterized mechanically through flexural test, Charpy impact test, compression test and wear resistance by pin-on-disk test. Fracture surfaces were analyzed by scanning electron microscope (SEM), and wear tracks were studied by SEM and 3D optical profilometer. Besides, samples were subjected to fire test using a Bunsen burner at 900 °C for 20 min. Sample temperature at the opposite-to-fire test side was measured with an infrared thermometer. Results show that marble improves mechanical properties of polyester and the effect of the glass fiber depends on its morphology (fiber or mesh). Fire resistance is high, and the fire goes out when the flame is turned off. Furthermore, the mesh maintains the integrity of the sample.
topic Composite
Polyester
Marble
Mechanical properties
Fire resistance
url http://www.sciencedirect.com/science/article/pii/S2238785421002982
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