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Crack-healing in spinel (MgAl
2
O
4
) ceramic
Fariborz Tavangarian
, Guoqiang Li
School of Science, Engineering & Technology (Harrisburg)
Research output
:
Contribution to journal
›
Article
›
peer-review
15
Scopus citations
Overview
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Dive into the research topics of 'Crack-healing in spinel (MgAl
2
O
4
) ceramic'. Together they form a unique fingerprint.
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Keyphrases
Abnormal Grain Growth
33%
Aluminum Hydroxide
33%
Annealing
33%
Crack Healing
100%
Diametral Tensile Strength
33%
Healing
66%
Healing Activity
66%
Healing Efficiency
66%
Indirect Tensile Test
33%
Initial Crack
33%
Low Temperature
33%
Magnesite
33%
Mechanical Activation
33%
Nanopowder
66%
Pre-crack
33%
Sintered Body
33%
Sintering Process
33%
Spinel
100%
Spinel Ceramic
33%
Spinel MgAl2O4
100%
Strength Recovery
66%
Subsequent Annealing
33%
Tensile Test
33%
Material Science
Abnormal Grain Growth
50%
Aluminum
50%
Annealing
50%
Heat Treatment
50%
Magnesium
50%
Mechanical Activation
50%
Nanopowder
100%
Ultimate Tensile Strength
50%
Engineering
Crack Healing
100%
Heat Treatment
33%
Indirect Tensile Test
33%
Initial Crack
33%
Low-Temperature
33%
Nanopowder
66%
Sintering Process
33%
Ultimate Tensile Strength
33%
Vickers
33%