INTERFACE MICROSTRUCTURES IN TI-BASED COMPOSITES USING TIB2/C-COATED AND UNCOATED SICF AFTER SHORT-TERM THERMAL EXPOSURE

The extent of interfacial reaction after short-term thermal exposure during vacuum plasma spraying (vps) and vacuum hot-pressing (vhp) of Ti-based metal-matrix composites (mmcs) using TiB2/C-coated and uncoated SiC fibres has been investigated by a combination of scanning and transmission electron m...

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Main Authors: Li, J, Guo, Z, Grant, P, Jenkins, M, Derby, B, Cantor, B
Format: Journal article
Language:English
Published: 1994
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author Li, J
Guo, Z
Grant, P
Jenkins, M
Derby, B
Cantor, B
author_facet Li, J
Guo, Z
Grant, P
Jenkins, M
Derby, B
Cantor, B
author_sort Li, J
collection OXFORD
description The extent of interfacial reaction after short-term thermal exposure during vacuum plasma spraying (vps) and vacuum hot-pressing (vhp) of Ti-based metal-matrix composites (mmcs) using TiB2/C-coated and uncoated SiC fibres has been investigated by a combination of scanning and transmission electron microscopies. There is no interfacial reaction after short-term thermal exposure during vps manufacture of SiCf/Ti mmcs using either TiB2/C-coated or uncoated SiCf. There is only limited interfacial reaction after short-term thermal exposure during vhp manufacture of SiCf/Ti-6Al-4V mmcs using TiB2/C-coated SiCf. In the initial stage of the interfacial reaction, TiB needles are formed by preferential nucleation and growth at β particles and grain boundaries in the Ti-6Al-4V matrix. © 1994.
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spelling oxford-uuid:1eb8f8dd-f0f8-410f-acd9-3459fd15a9692022-03-26T11:18:01ZINTERFACE MICROSTRUCTURES IN TI-BASED COMPOSITES USING TIB2/C-COATED AND UNCOATED SICF AFTER SHORT-TERM THERMAL EXPOSUREJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:1eb8f8dd-f0f8-410f-acd9-3459fd15a969EnglishSymplectic Elements at Oxford1994Li, JGuo, ZGrant, PJenkins, MDerby, BCantor, BThe extent of interfacial reaction after short-term thermal exposure during vacuum plasma spraying (vps) and vacuum hot-pressing (vhp) of Ti-based metal-matrix composites (mmcs) using TiB2/C-coated and uncoated SiC fibres has been investigated by a combination of scanning and transmission electron microscopies. There is no interfacial reaction after short-term thermal exposure during vps manufacture of SiCf/Ti mmcs using either TiB2/C-coated or uncoated SiCf. There is only limited interfacial reaction after short-term thermal exposure during vhp manufacture of SiCf/Ti-6Al-4V mmcs using TiB2/C-coated SiCf. In the initial stage of the interfacial reaction, TiB needles are formed by preferential nucleation and growth at β particles and grain boundaries in the Ti-6Al-4V matrix. © 1994.
spellingShingle Li, J
Guo, Z
Grant, P
Jenkins, M
Derby, B
Cantor, B
INTERFACE MICROSTRUCTURES IN TI-BASED COMPOSITES USING TIB2/C-COATED AND UNCOATED SICF AFTER SHORT-TERM THERMAL EXPOSURE
title INTERFACE MICROSTRUCTURES IN TI-BASED COMPOSITES USING TIB2/C-COATED AND UNCOATED SICF AFTER SHORT-TERM THERMAL EXPOSURE
title_full INTERFACE MICROSTRUCTURES IN TI-BASED COMPOSITES USING TIB2/C-COATED AND UNCOATED SICF AFTER SHORT-TERM THERMAL EXPOSURE
title_fullStr INTERFACE MICROSTRUCTURES IN TI-BASED COMPOSITES USING TIB2/C-COATED AND UNCOATED SICF AFTER SHORT-TERM THERMAL EXPOSURE
title_full_unstemmed INTERFACE MICROSTRUCTURES IN TI-BASED COMPOSITES USING TIB2/C-COATED AND UNCOATED SICF AFTER SHORT-TERM THERMAL EXPOSURE
title_short INTERFACE MICROSTRUCTURES IN TI-BASED COMPOSITES USING TIB2/C-COATED AND UNCOATED SICF AFTER SHORT-TERM THERMAL EXPOSURE
title_sort interface microstructures in ti based composites using tib2 c coated and uncoated sicf after short term thermal exposure
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AT guoz interfacemicrostructuresintibasedcompositesusingtib2ccoatedanduncoatedsicfaftershorttermthermalexposure
AT grantp interfacemicrostructuresintibasedcompositesusingtib2ccoatedanduncoatedsicfaftershorttermthermalexposure
AT jenkinsm interfacemicrostructuresintibasedcompositesusingtib2ccoatedanduncoatedsicfaftershorttermthermalexposure
AT derbyb interfacemicrostructuresintibasedcompositesusingtib2ccoatedanduncoatedsicfaftershorttermthermalexposure
AT cantorb interfacemicrostructuresintibasedcompositesusingtib2ccoatedanduncoatedsicfaftershorttermthermalexposure