Thermal barrier coating by polymer-derived ceramic technique for application in exhaust systems

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1. Verfasser: Barroso, Gilvan 1988- (VerfasserIn)
Format: Buch
Sprache:English
Veröffentlicht: Göttingen Cuvillier 2018
Ausgabe:1. Auflage
Schriftenreihe:Schriftenreihe Keramische Werkstoffe Band 12
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Datensatz im Suchindex

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adam_text 1 I NTRODUCTION , M OTIVATION AND O BJECTIVES ..................................................................4 2 B ACKGROUND AND L ITERATURE O VERVIEW .........................................................................7 2.1 GENERAL ASPECTS OF POLYMER-DERIVED CERAMICS (PDCS).............................................. 7 2.1.1 PRECERAMIC POLYMERS ..................................................................................... 8 2.1.2 POLYMER-TO-CERAMIC CONVERSION................................................................... 10 2.1.3 PDC PROCESSING WITH FILLERS ................................... 13 2.2 POLYMER-DERIVED CERAMIC COATINGS.............................................................................16 2.2.1 PROCESSING OF PDC COATINGS..........................................................................17 2.2.2 STATE OF THE ART OF PARTICLE-FILLED PDC COATINGS...........................................25 2.3 THERMAL BARRIER COATINGS.............................. 33 2.3.1 MATERIALS OF INTEREST FOR THE TOP-COAT ........................................................... 35 2.3.2 THERMAL PROPERTIES AND FAILURE MECHANISMS .............................................. 37 2.4 AUTOMOTIVE EXHAUST SYSTEM S.......................................................................................40 2.4.1 AUTOMOTIVE EMISSIONS AND EUROPEAN LEGISLATIONS .............................. 41 2.4.2 METHODS FOR EMISSIONS CONTROL.....................................................................44 3 E XPERIMENTAL P ROCEDURES .................................................................................................48 3.1 SELECTION OF MATERIALS....................................................................................................48 3.1.1 SUBSTRATE....................................................................................................... 48 3.1.2 PRECERAMIC POLYMERS ................................................................................... 50 3.1.3 FILLERS............................................................................................................52 3.1.4 SOLVENT AND DISPERSANT................................................................................53 3.2 COMPOSITIONS AND PREPARATION OF COATING SUSPENSIONS ....... ................................. 54 3.3 DEPOSITION OF THE COATINGS...........................................................................................56 3.4 THERMAL TREATMENT.........................................................................................................58 3.5 CHARACTERIZATIONS...........................................................................................................60 3.5.1 BEHAVIOR DURING THERMAL TREATMENTS ........................................................... 60 3.5.2 THERMAL EXPANSION...................................................................................... 61 3.5.3 THERMAL CONDUCTIVITY...................................................................................62 3.5.4 THERMAL INSULATION....................................................................................... 65 3.5.5 SURFACE ROUGHNESS.........................................................................................66 3.5.6 COATING THICKNESS..........................................................................................67 3.5.7 IMAGING TECHNIQUES......................................................................................67 3.5.8 DENSITY.......................................................................................................... 68 3.5.9 COMPOSITION.................................................................................................68 3.5.10 ADHESION.....................................................................................................69 3.5.11 STRESS EVOLUTION .......................................................................................... 71 3.5.12 TEMPERATURE AND OXIDATION RESISTANCE...................................................... 72 3.5.13 THERMAL SHOCK RESISTANCE...........................................................................73 4 R ESULTS AND D ISCUSSIO NS ............................................................................................... 74 4.1 CHARACTERIZATION OF THE SELECTED MATERIALS................................................................ 74 4.1.1 PROPERTIES OF THE SUBSTRATE ........................................................................... 74 4.1.2 CONVERSION BEHAVIOR OF THE COATING COMPONENTS ....................................... 76 4.2 DEVELOPMENT OF THE COATING SYSTEM........................................................................... 80 4.2.1 BOND-COAT......................................................................................................80 4.2.2 TOP-COAT........................................................................................................ 83 4.3 CONVERSION BEHAVIOR OF THE TBC SYSTEM ................................................................. 87 4.3.1 MASS CHANGE..................................................................................................87 4.3.2 DIMENSIONAL CHANGES................................................................................... 88 4.4 MICROSTRUCTURE................................................................................................................96 4.4.1 MORPHOLOGY OF THE CROSS-SECTION................................................................. 96 4.4.2 MORPHOLOGY OF THE SURFACE.........................................................................102 4.5 COATING ADHESION.........................................................................................................102 4.6 THERMAL PROPERTIES......................................................................................................106 4.6.1 COEFFICIENT OF THERMAL EXPANSION ............................................................... 106 4.6.2 THERMAL CONDUCTIVITY................................................................................. 108 4.7 DURABILITY......................................................................................................................109 4.7.1 THERMAL SHOCK RESISTANCE............................................................................109 4.7.2 LONG-TERM TEMPERATURE AND OXIDATION RESISTANCE ..................................... 110 4.8 COATING ON THE INSIDE OF PIPES..................................................................................116 4.8.1 DEPOSITION OF COATINGS................................................................................ 116 4.8.2 INVESTIGATION OF THE INSULATING EFFECT..........................................................117 5 S UMMARY ..............................................................................................................................119 6 O UTLOOK ...............................................................................................................................123 7 Z USAMMENFASSUNG ............................................................................................................125 8 R EFERENCES ...........................................................................................................................130 9 A CKNOWLEDGEMENTS ................................................................................. 149 10 A NNEXES ............................................................................................................................. 150 10.1 LIST OF SYMBOLS, VARIABLES, CHEMICAL COMPOUNDS AND ABBREVIATIONS ..... 150 10.2 PUBLICATIONS.............................................................................................................154 10.3 CURRICULUM V ITAE....................................................................................................155
any_adam_object 1
author Barroso, Gilvan 1988-
author_GND (DE-588)117668566X
author_facet Barroso, Gilvan 1988-
author_role aut
author_sort Barroso, Gilvan 1988-
author_variant g b gb
building Verbundindex
bvnumber BV045259212
classification_rvk UQ 8500
ZM 6350
ctrlnum (OCoLC)1059559766
(DE-599)DNB1166342492
discipline Physik
Werkstoffwissenschaften / Fertigungstechnik
edition 1. Auflage
format Book
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spelling Barroso, Gilvan 1988- Verfasser (DE-588)117668566X aut
Thermal barrier coating by polymer-derived ceramic technique for application in exhaust systems vorgelegt von Eng. Gilvan Barroso aus Blumenau, Brasilien
1. Auflage
Göttingen Cuvillier 2018
155 Seiten Illustrationen, Diagramme
txt rdacontent
n rdamedia
nc rdacarrier
Schriftenreihe Keramische Werkstoffe Band 12
Abgasanlage (DE-588)4141040-3 gnd rswk-swf
Metallrohr (DE-588)4604967-8 gnd rswk-swf
Schutzschicht (DE-588)4180280-9 gnd rswk-swf
Wärmeschutz (DE-588)4064200-8 gnd rswk-swf
Polysilazane (DE-588)4562195-0 gnd rswk-swf
Pyrolyse (DE-588)4047925-0 gnd rswk-swf
Hochleistungskeramik (DE-588)4392837-7 gnd rswk-swf
Ausgangsmaterial (DE-588)4143518-7 gnd rswk-swf
automotive exhaust systems
ceramic coatings
polymer-derived ceramics
polysilazanes
thermal barrier coatings
thermal conductivity
(DE-588)4113937-9 Hochschulschrift gnd-content
Abgasanlage (DE-588)4141040-3 s
Metallrohr (DE-588)4604967-8 s
Wärmeschutz (DE-588)4064200-8 s
Schutzschicht (DE-588)4180280-9 s
Hochleistungskeramik (DE-588)4392837-7 s
Ausgangsmaterial (DE-588)4143518-7 s
Polysilazane (DE-588)4562195-0 s
Pyrolyse (DE-588)4047925-0 s
DE-604
Eric Cuvillier (Firma) (DE-588)1067137041 pbl
Erscheint auch als Online-Ausgabe, eBook 978-3-7369-8832-3
Schriftenreihe Keramische Werkstoffe Band 12 (DE-604)BV036058101 12
DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030647184&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis
spellingShingle Barroso, Gilvan 1988-
Thermal barrier coating by polymer-derived ceramic technique for application in exhaust systems
Schriftenreihe Keramische Werkstoffe
Abgasanlage (DE-588)4141040-3 gnd
Metallrohr (DE-588)4604967-8 gnd
Schutzschicht (DE-588)4180280-9 gnd
Wärmeschutz (DE-588)4064200-8 gnd
Polysilazane (DE-588)4562195-0 gnd
Pyrolyse (DE-588)4047925-0 gnd
Hochleistungskeramik (DE-588)4392837-7 gnd
Ausgangsmaterial (DE-588)4143518-7 gnd
subject_GND (DE-588)4141040-3
(DE-588)4604967-8
(DE-588)4180280-9
(DE-588)4064200-8
(DE-588)4562195-0
(DE-588)4047925-0
(DE-588)4392837-7
(DE-588)4143518-7
(DE-588)4113937-9
title Thermal barrier coating by polymer-derived ceramic technique for application in exhaust systems
title_auth Thermal barrier coating by polymer-derived ceramic technique for application in exhaust systems
title_exact_search Thermal barrier coating by polymer-derived ceramic technique for application in exhaust systems
title_full Thermal barrier coating by polymer-derived ceramic technique for application in exhaust systems vorgelegt von Eng. Gilvan Barroso aus Blumenau, Brasilien
title_fullStr Thermal barrier coating by polymer-derived ceramic technique for application in exhaust systems vorgelegt von Eng. Gilvan Barroso aus Blumenau, Brasilien
title_full_unstemmed Thermal barrier coating by polymer-derived ceramic technique for application in exhaust systems vorgelegt von Eng. Gilvan Barroso aus Blumenau, Brasilien
title_short Thermal barrier coating by polymer-derived ceramic technique for application in exhaust systems
title_sort thermal barrier coating by polymer derived ceramic technique for application in exhaust systems
topic Abgasanlage (DE-588)4141040-3 gnd
Metallrohr (DE-588)4604967-8 gnd
Schutzschicht (DE-588)4180280-9 gnd
Wärmeschutz (DE-588)4064200-8 gnd
Polysilazane (DE-588)4562195-0 gnd
Pyrolyse (DE-588)4047925-0 gnd
Hochleistungskeramik (DE-588)4392837-7 gnd
Ausgangsmaterial (DE-588)4143518-7 gnd
topic_facet Abgasanlage
Metallrohr
Schutzschicht
Wärmeschutz
Polysilazane
Pyrolyse
Hochleistungskeramik
Ausgangsmaterial
Hochschulschrift
url http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030647184&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA
volume_link (DE-604)BV036058101
work_keys_str_mv AT barrosogilvan thermalbarriercoatingbypolymerderivedceramictechniqueforapplicationinexhaustsystems
AT ericcuvillierfirma thermalbarriercoatingbypolymerderivedceramictechniqueforapplicationinexhaustsystems