The effect of sintering on the properties of magnesia-granite sludge ceramics shaped by temperature-induced forming

Recycling waste materials have attracted considerable attention owing to the increased interest in depressing the negative impact on the environment. The present work investigates the effect of increasing the granite sludge-waste materials from granite manufacture-on the physical, mechanical and ele...

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Main Authors: H.E.H. Sadek, M.A. Hessien, Z.A. Abd El-Shakour, M.A. Taha, R.M. Khattab
Format: Article
Language:English
Published: Elsevier 2021-03-01
Series:Journal of Materials Research and Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2238785421000168
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spelling doaj-689125e97c3b41cab26d4db229f412402021-03-19T07:25:23ZengElsevierJournal of Materials Research and Technology2238-78542021-03-0111264273The effect of sintering on the properties of magnesia-granite sludge ceramics shaped by temperature-induced formingH.E.H. Sadek0M.A. Hessien1Z.A. Abd El-Shakour2M.A. Taha3R.M. Khattab4Refractories, Ceramics and Building Materials Department, National Research Centre, 12622, Dokki, Cairo, EgyptRefractories, Ceramics and Building Materials Department, National Research Centre, 12622, Dokki, Cairo, Egypt; Corresponding author.Geological Sciences Department, National Research Centre, 12622, Dokki, Cairo, EgyptSolid-State Physics Department, National Research Centre, 12622, Dokki, Cairo, EgyptRefractories, Ceramics and Building Materials Department, National Research Centre, 12622, Dokki, Cairo, EgyptRecycling waste materials have attracted considerable attention owing to the increased interest in depressing the negative impact on the environment. The present work investigates the effect of increasing the granite sludge-waste materials from granite manufacture-on the physical, mechanical and electrical properties of magnesia ceramics. The temperature-induced forming (TIF) method is used to shape magnesia-granite sludge ceramics. The sintered ceramics are characterized by XRD and SEM, in addition to measuring the bulk density, apparent porosity, linear shrinkage, microhardness, and electrical resistivity. Sintering of magnesia-granite bodies resulted in the formation of periclase-forsterite ceramics. The XRD results show that the forsterite phase increases reaching 78% at 40 wt% granite. The increase in granite sludge from 10 to 40 wt% increases the bulk density from 1.86 to 2.69 g/cm3 and the apparent porosity decreases from 40 to 15%, respectively. Microhardness is improved by increasing the granite sludge wt% reaching 7.9 GPa. The microstructure of the formed periclase-forsterite is versatile with a rhombohedral structure for periclase and a flower structure for forsterite. The forsterite phase is formed by the diffusion of granite sludge into the formed periclase.http://www.sciencedirect.com/science/article/pii/S2238785421000168ForsteriteTemperature-induced forming techniqueX-ray diffractionMechanical propertiesElectrical properties
collection DOAJ
language English
format Article
sources DOAJ
author H.E.H. Sadek
M.A. Hessien
Z.A. Abd El-Shakour
M.A. Taha
R.M. Khattab
spellingShingle H.E.H. Sadek
M.A. Hessien
Z.A. Abd El-Shakour
M.A. Taha
R.M. Khattab
The effect of sintering on the properties of magnesia-granite sludge ceramics shaped by temperature-induced forming
Journal of Materials Research and Technology
Forsterite
Temperature-induced forming technique
X-ray diffraction
Mechanical properties
Electrical properties
author_facet H.E.H. Sadek
M.A. Hessien
Z.A. Abd El-Shakour
M.A. Taha
R.M. Khattab
author_sort H.E.H. Sadek
title The effect of sintering on the properties of magnesia-granite sludge ceramics shaped by temperature-induced forming
title_short The effect of sintering on the properties of magnesia-granite sludge ceramics shaped by temperature-induced forming
title_full The effect of sintering on the properties of magnesia-granite sludge ceramics shaped by temperature-induced forming
title_fullStr The effect of sintering on the properties of magnesia-granite sludge ceramics shaped by temperature-induced forming
title_full_unstemmed The effect of sintering on the properties of magnesia-granite sludge ceramics shaped by temperature-induced forming
title_sort effect of sintering on the properties of magnesia-granite sludge ceramics shaped by temperature-induced forming
publisher Elsevier
series Journal of Materials Research and Technology
issn 2238-7854
publishDate 2021-03-01
description Recycling waste materials have attracted considerable attention owing to the increased interest in depressing the negative impact on the environment. The present work investigates the effect of increasing the granite sludge-waste materials from granite manufacture-on the physical, mechanical and electrical properties of magnesia ceramics. The temperature-induced forming (TIF) method is used to shape magnesia-granite sludge ceramics. The sintered ceramics are characterized by XRD and SEM, in addition to measuring the bulk density, apparent porosity, linear shrinkage, microhardness, and electrical resistivity. Sintering of magnesia-granite bodies resulted in the formation of periclase-forsterite ceramics. The XRD results show that the forsterite phase increases reaching 78% at 40 wt% granite. The increase in granite sludge from 10 to 40 wt% increases the bulk density from 1.86 to 2.69 g/cm3 and the apparent porosity decreases from 40 to 15%, respectively. Microhardness is improved by increasing the granite sludge wt% reaching 7.9 GPa. The microstructure of the formed periclase-forsterite is versatile with a rhombohedral structure for periclase and a flower structure for forsterite. The forsterite phase is formed by the diffusion of granite sludge into the formed periclase.
topic Forsterite
Temperature-induced forming technique
X-ray diffraction
Mechanical properties
Electrical properties
url http://www.sciencedirect.com/science/article/pii/S2238785421000168
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