2024 : 11 : 16

Hamed Samadi

Academic rank: Assistant Professor
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Education: PhD.
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Faculty: Technical Engineering
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Research

Title
Comprehensive study on the effect of SiC and carbon additives on the pressureless sintering and microstructural and mechanical characteristics of new ultra-high temperature ZrB2 ceramics
Type
JournalPaper
Keywords
ZrB2–SiC composites;Pressurelesssintering;Densification; Mechanicalcharacteristics;Scanningelectronmicroscopy
Year
2015
Journal CERAMICS INTERNATIONAL
DOI
Researchers Hamed Samadi

Abstract

The combinedeffectsofSiCandcarbonadditivesonthedensification, structureandcharacteristicsofpressurelesssinteredZrB2–SiC ceramic composites werestudied.TheZrB2–SiC (1–10 wt%)compositepowdersweremixedby1–2 wt%carbon.Thepreparedpowdermixtureswere then cold-consolidatedandsinteredinargonenvironmentinthetemperaturerangeof1800–2100 1C for2h.Theconstitutedphasesand microstructural evolutionswerestudiedusingx-raydiffractionandscanningelectronmicroscopeequippedwithanenergydispersivex-ray detector. Theobtainedresultsconcludedthatthedensification wasincreasedbyextendingthesinteringtimeandalsobypriorholdingof specimens at1650 1C. ThiscausedbyreductionofsuchoxideimpuritiesofZrO2, B2O3 and SiO2 on particlesurfacesviatheformationofnew phases inthesystem.However,thiswastotallyinducedtheenhancementofsinteringphenomenon.ThepresenceofSiCwithaveragegrainsize smaller thanthatforZrB2 revealed toaidthedensification byenhancinggreenspecimendensity.Furthermore,incrementofthecarboncontent through erosionofmillingmediainhibitedthematrixgraingrowth.BothofSiCandcarbonadditivesseemedtoenhancethereductionofoxides formation. TheadditionofSiCandcarbonwasfoundtobeadvantageousfordensification upto99.5%ofthetheoreticaldensity.Accordingto the examinations,itwasdemonstratedthatthespecimenstrengthwasvariedwithadditionsofSiCandcarbon.Indentationtoughnessofthe samples wasexaminedandresultsexemplified toughnessincrementwithSiC.However,carbonhadadetrimentaleffectonfracturetoughness. The microhardnessvalueswereincreasedwithincreasingSiCandcarboncontentduetothereductionofporosityvolumepercentagein specimens.