Synthesis of iron nanocomposite reinforced by TiC particles via mechanical activation from ilmenite concentrate and carbon black

In this research, synthesis of Fe-TiC nanocomposites from activated ilmenite concentrate and carbon black was investigated. Ilmenite and carbon black as raw materials were milled in a planetary ball mill and sampled after different milling times. The activated powder was heat treated at different te...

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Main Authors: Firouzbakht Alireza, Razavi Mansour, Rahimipour Mohammad Reza
Format: Article
Language:English
Published: De Gruyter 2016-07-01
Series:Science and Engineering of Composite Materials
Subjects:
Online Access:https://doi.org/10.1515/secm-2014-0239
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author Firouzbakht Alireza
Razavi Mansour
Rahimipour Mohammad Reza
author_facet Firouzbakht Alireza
Razavi Mansour
Rahimipour Mohammad Reza
author_sort Firouzbakht Alireza
collection DOAJ
description In this research, synthesis of Fe-TiC nanocomposites from activated ilmenite concentrate and carbon black was investigated. Ilmenite and carbon black as raw materials were milled in a planetary ball mill and sampled after different milling times. The activated powder was heat treated at different temperatures in an atmosphere control tube furnace and analyzed by X-ray diffraction technique. The X-ray diffraction results showed that increasing the milling time would lower the synthesis temperature of final products. Furthermore, the lattice parameter showed deviation from standard size, and mean grain size was decreased. In contrast, the strain of the system was increased based on the calculations.
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spelling doaj.art-b4ef9e7c32fd4cb783deac158cfaaf422022-12-21T21:59:47ZengDe GruyterScience and Engineering of Composite Materials0792-12332191-03592016-07-0123438138810.1515/secm-2014-0239Synthesis of iron nanocomposite reinforced by TiC particles via mechanical activation from ilmenite concentrate and carbon blackFirouzbakht Alireza0Razavi Mansour1Rahimipour Mohammad Reza2Materials and Energy Research Center (MERC), Department of Ceramic, P.O. Box 14155-4777, Tehran, IranMaterials and Energy Research Center (MERC), Department of Ceramic, P.O. Box 14155-4777, Tehran, IranMaterials and Energy Research Center (MERC), Department of Ceramic, P.O. Box 14155-4777, Tehran, IranIn this research, synthesis of Fe-TiC nanocomposites from activated ilmenite concentrate and carbon black was investigated. Ilmenite and carbon black as raw materials were milled in a planetary ball mill and sampled after different milling times. The activated powder was heat treated at different temperatures in an atmosphere control tube furnace and analyzed by X-ray diffraction technique. The X-ray diffraction results showed that increasing the milling time would lower the synthesis temperature of final products. Furthermore, the lattice parameter showed deviation from standard size, and mean grain size was decreased. In contrast, the strain of the system was increased based on the calculations.https://doi.org/10.1515/secm-2014-0239fe-ticilmenitemechanical millingnanocomposite
spellingShingle Firouzbakht Alireza
Razavi Mansour
Rahimipour Mohammad Reza
Synthesis of iron nanocomposite reinforced by TiC particles via mechanical activation from ilmenite concentrate and carbon black
Science and Engineering of Composite Materials
fe-tic
ilmenite
mechanical milling
nanocomposite
title Synthesis of iron nanocomposite reinforced by TiC particles via mechanical activation from ilmenite concentrate and carbon black
title_full Synthesis of iron nanocomposite reinforced by TiC particles via mechanical activation from ilmenite concentrate and carbon black
title_fullStr Synthesis of iron nanocomposite reinforced by TiC particles via mechanical activation from ilmenite concentrate and carbon black
title_full_unstemmed Synthesis of iron nanocomposite reinforced by TiC particles via mechanical activation from ilmenite concentrate and carbon black
title_short Synthesis of iron nanocomposite reinforced by TiC particles via mechanical activation from ilmenite concentrate and carbon black
title_sort synthesis of iron nanocomposite reinforced by tic particles via mechanical activation from ilmenite concentrate and carbon black
topic fe-tic
ilmenite
mechanical milling
nanocomposite
url https://doi.org/10.1515/secm-2014-0239
work_keys_str_mv AT firouzbakhtalireza synthesisofironnanocompositereinforcedbyticparticlesviamechanicalactivationfromilmeniteconcentrateandcarbonblack
AT razavimansour synthesisofironnanocompositereinforcedbyticparticlesviamechanicalactivationfromilmeniteconcentrateandcarbonblack
AT rahimipourmohammadreza synthesisofironnanocompositereinforcedbyticparticlesviamechanicalactivationfromilmeniteconcentrateandcarbonblack