Novel colloidal forming of ceramics:
Gespeichert in:
Hauptverfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Beijing
Tsinghua Univ. Press
2010
Berlin ; Heidelberg Springer |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Literaturangaben |
Beschreibung: | XIV, 385 S. Ill., graph. Darst. 24 cm |
ISBN: | 9787302213246 9783642122804 |
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CONTENTS
CHAPTER 1 AQUEOUS COLLOIDAL INJECTION MOLDING OF CERAMICS BASED ON
GELATION 1
1.1 COLLOIDAL INJECTION MOLDING 2
1.1.1 THE CONCEPT OF CIMC 2
1.1.2 THE FLOWCHART OF C MC 3
1.1.3 THE MACHINE OF C MC 4
1.2 PRESSURE INDUCED FORMING 6
1.2.1 EFFECT OF HYDROSTATIC PRESSURE ON SOLIDIFICATION 6
1.2.2 HOMOGENEITY OF THE GREEN BODIES 6
1.2.3 CONTROLLING THE INNER STRESS IN THE GREEN BODY 7
1.3 STORAGE STABILITY OF CERAMIC SLURRIES 9
1.3.1 THE IMPORTANCE OF STORAGE STABILITY OF SLURRY 9
1.3.2 CHEMICAL STABILITY 9
1.3.3 INHIBITOR FOR SLURRY STORAGE 11
1.4 TO PREPARE HIGH RELIABILITY CERAMIC PARTS WITH COMPLEX SHAPES:
AQUEOUS COLLOIDAL INJECTION MOLDING 12
REFERENCES 14
CHAPTER 2 GEL-TAPE-CASTING OF CERAMIC SUBSTRATES 16
2. 1 FUNDAMENTAL PRINCIPLE AND PROCESSING OF AQUEOUS GEL-TAPE-CASTING 18
2.1.1 TAPE CASTING TYPES AND THE RAW MATERIALS 18
2.1.2 POLYMERIZATION OF THE MONOMER 22
2.1.3 INFLUENCE FACTORS ON POLYMERIZATION OF THE MONOMER 30 2.1.4
PROCESSING OF THE GEL-TAPE-CASTING 36
2.2 THE CHARACTERISTICS OF SLURRIES USED FOR AQUEOUS GEL-TAPE-CASTING 39
2.2.1 THE PROPERTIES OF THE AQUEOUS CERAMIC SLURRIES WITH BINDER 39
2.2.2 THE INFLUENCE OF DISPERSANTS ON STABILITY AND RHEOLOGY OF AQUEOUS
CERAMIC SLURRIES WITH ORGANIC MONOMER 44 2.2.3 THE INFLUENCE OF
PLASTICIZER ON PROPERTIES OF AQUEOUS CERAMIC SLURRY WITH ORGANIC MONOMER
47
IX
BIBLIOGRAFISCHE INFORMATIONEN HTTP://D-NB.INFO/1000568970
DIGITALISIERT DURCH
IMAGE 2
2.2.4 THE INFLUENCE OF PH ON THE PROPERTIES OF SLURRIES WITH
ORGANIC MONOMER 49
2.2.5 THE EFFECT OF SURFACTANT ON WETTING AND GREEN TAPE RELEASING
(SEPARATING) 49
2.2.6 FOAM AND PORE ELIMINATION 50
2.2.7 SINTERING OF GREEN TAPE PREPARED BY SLURRY 52
2.3 AQUEOUS GEL-TAPE-CASTING WITH STYRENE-ACRYLIC LATEX BINDER 53 2.3.1
THE IMPORTANCE OF BINDERS IN GEL-TAPE-CASTING PROCESS 53 2.3.2 THE
FORMING FILM MECHANISM OF LATEX BINDER 55 2.3.3 RHEOLOGICAL PROPERTIES
OF THE ALUMINA SLURRIES WITH BINDER 57 2.3.4 THE PHYSICAL PROPERTIES AND
MICROSTRUCTURE OF
GREEN TAPES WITH LATEX BINDER 57
2.4 A GEL-TAPE-CASTING PROCESS BASED ON GELATION OF SODIUM ALGINATE.....
59 2.4.1 WHY STUDY ON TAPE CASTING OF SODIUM ALGINATE 59 2.4.2 THE
PREPARATION OF AQUEOUS ALUMINA SUSPENSIONS WITH SODIUM ALGINATE AND
CALCIUM PHOSPHERE TRIBASIC 61 2.4.3 CONTROL OF THE GELATION OF SODIUM
ALGINATE 63
2.4.4 CHARACTERIZATION OF GREEN TAPES 64
2.5 THE SPRAY TRIGGER FAST-CURING FOR THE GEL-TAPE-CASTING PROCESS 66
2.5.1 THE IDEA OF THE SPRAY TRIGGER FAST-CURING 66
2.5.2 OUTLINE OF THE NEW PROCESS 66
2.6 THE FEATURES AND PROSPECTS OF THE AQUEOUS TAPE-CASTING 68 REFERENCES
70
CHAPTER 3 GELATION FORMING PROCESS FOR LOW TOXICITY SYSTEM 74 3.1
GELATION FORMING OF CERAMIC SUSPENSION WITH AGAROSE 75 3.1.1
CHARACTERISTICS OF AGAROSE 75
3.1.2 THE EFFECT OF AGAROSE CONTENTS ON THE RHEOLOGY OF AQUEOUS CERAMIC
SUSPENSIONS 77
3.1.3 THE FORMING COURSES OF THE AQUEOUS CERAMIC SUSPENSIONS WITH
AGAROSE 79
3.2 ALUMINA CASTING BASED ON GELATION OF GELATINE 83
3.2.1 CHARACTERISTICS OF GELATINE 83
3.2.2 THE GELATION PROCESS OF THE CERAMIC SLURRY WITH GELATINE SOLUTION
86
3.2.3 THE PREPARATION OF GREEN BODY USING SLURRY WITH GELATINE SOLUTION
88
3.3 A CASTING FORMING FOR CERAMICS BY GELATINE AND ENZYME CATALYSIS 90
3.3.1 RESEARCH BACKGROUND 90
3.3.2 THE GELATION MECHANISM OF GELATINE SOLUTION WITH UREA UNDER ENZYME
CATALYSIS 91
IMAGE 3
3.3.3 THE RHEOLOGY AND ZETA POTENTIAL OF ALUMINA SUSPENSION
CONTAINING GELATINE AND UREA 93
3.3.4 THE COAGULATION FORMING AND MICROSTRUCTURE OF GREEN BODY 95
3.4 THE ALUMINA FORMING BASED ON GELATION OF SODIUM ALGINATE 96 3.4.1
RESEARCH BACKGROUND 96
3.4.2 THE GELATION PRINCIPLE OF SODIUM ALGINATE 97
3.4.3 THE PREPARATION PROCESS OF ALUMINA GREEN BODIES AND SAMPLES BY
SODIUM ALGINATE 100
3.5 THE GEL-CASTING OF SIC BASED ON GELATION OF SODIUM ALGINATE 103
3.5.1 INTRODUCTION OF THE RESEARCH 103
3.5.2 THE EFFECT OF DISPERSANT ON THE COLLOIDAL BEHAVIORS OF THE SIC
SUSPENSION 104
3.5.3 THE RHEOLOGICAL PROPERTY OF SIC SUSPENSION 105
3.5.4 THE SEDIMENTATION BEHAVIOR OF THE SIC SUSPENSION 107 3.5.5 THE
GELATION PRINCIPLE AND PROCESS OF THE ALGINATE SOLUTION 108
3.5.6 THE GELATION OF THE SIC SUSPENSION WITH ALGINATE 108 3.6 THE
ALUMINA GEL-CASTING WITH A LOW-TOXICITY SYSTEM OF HEMA 111 3.6.1 THE
ACADEMIC IDEA AND RESEARCH PROGRAM I LL
3.6.2 THE COLLOIDAL CHEMISTRY AND RHEOLOGICAL PROPERTY I LL 3.6.3 THE
BINDER BURNOUT AND APPLICATION OF THE NEW SYSTEM 113 3.7 THE SYNERGISTIC
LOW-TOXICITY GEL-CASTING SYSTEM BY USING HEMA AND PVP 115
3.7.1 THE ACADEMIC IDEA AND RESEARCH PROGRAM 115
3.7.2 ZETA POTENTIALS AND RHEOLOGICAL PROPERTIES 116
3.7.3 THE ACTIVATION ENERGY AND SOLIDIFICATION 120
3.7.4 THE GREEN STRENGTHS AND MICROSTRUCTURES 121
3.7.5 THE EXFOLIATION ELIMINATION EFFECT AND ANALYSIS OF THE INTERACTION
BETWEEN PVP AND HEMA MOLECULES 123 REFERENCES 125
CHAPTER 4 GENERATION, DEVELOPMENT, INHERITANCE, AND CONTROL OF THE
DEFECTS DURING THE TRANSFORMATION FROM SUSPENSION TO GREEN BODY 129 4.1
THE RHEOLOGICAL BEHAVIORS OF AQUEOUS CERAMIC SUSPENSIONS 131 4.1.1 THE
RHEOLOGICAL BEHAVIORS OF AQUEOUS ALUMINA
SUSPENSIONS 132
4.1.2 THE EFFECT OF RHEOLOGICAL PROPERTIES OF SUSPENSION ON MECHANICAL
STRENGTH OF CERAMICS 135
4.1.3 THE EFFECT OF SOLID LOADING ON COLLOIDAL FORMING 142 4.2 THE
GENERATION AND DEVELOPMENT OF DEFECTS 147
4.2.1 THE GENERATION MECHANISMS OF AGGLOMERATIONS IN CERAMIC SUSPENSIONS
147
XI
IMAGE 4
4.2.2 THE INFLUENCES OF IDLE TIME ON MICROSTRUCTURES AND
MECHANICAL PROPERTIES OF GREEN BODIES BY DIRECT COAGULATION CASTING 154
4.3 THE EFFECT OF IONIC CONDUCTANCE ON PREPARATION OF HIGHLY
CONCENTRATED SUSPENSION 163
4.3.1 THE ACADEMIC IDEA AND RESEARCH PROGRAM 163
4.3.2 THE RELATIONSHIP BETWEEN ION CONDUCTIVITY CONSTANTS AND SOLID
LOADING 165
4.4 CONTROL OF INNER STRESS IN GREEN BODY 170
4.4.1 ORIGIN, TRANSFORMATION AND CONTROL OF INNER STRESS IN GREEN BODY
170
4.4.2 THE RELEASE AND CONTROL OF INNER STRESSES IN CERAMIC GREEN BODY
175
4.5 THE SUPPRESSION OF SURFACE-EXFOLIATION WITH THE ADDITION OF ORGANIC
AGENTS 183
4.5.1 THE SUPPRESSION OF SURFACE-EXFOLIATION BY INTRODUCING PAM INTO
MONOMER SYSTEM IN SUSPENSION 183
4.5.2 THE SUPPRESSION OF SURFACE-EXFOLIATION BY INTRODUCING POLYETHYLENE
GLYCOL INTO MONOMER SYSTEM IN SUSPENSION 190
4.5.3 THE SUPPRESSION OF SURFACE-EXFOLIATION BY INTRODUCING
POLY-VINYLPYRROLIDONE (PVP) INTO MONOMER SYSTEM IN SUSPENSION 198
REFERENCES 207
CHAPTER 5 THE GEL-CASTING OF NON-OXIDE CERAMICS 211
5.1 THE EFFECTS OF POWDER SURFACE MODIFICATION ON CONCENTRATED
SUSPENSIONS PROPERTIES OF S13N4 212
5.1.1 THE CONTRIBUTING FACTOR AND ELIMINATION OF MACROPORES IN S13N4
GREEN BODIES 212
5.1.2 THE EFFECT OF FOREIGN IONS ON CONCENTRATED SUSPENSION OFSI 3 N 4
217
5.1.3 THE EFFECT OF ACID CLEANING AND CALCINATIONS ON THE SUSPENSION
PROPERTIES OF S13N4 223
5.1.4 THE EFFECT OF LIQUID MEDIUM AND SURFACE GROUP ON DISPERSIBILITY OF
SI3N 4 POWDER 232
5.2 THE GEL-CASTING OF SI 3 N 4 CERAMICS 238
5.2.1 THE PREPARATION OF SI3N 4 CERAMICS WITH SURFACE-COATED SI 3 N 4
POWDER 238
5.2.2 THE PREPARATION OF SI3N 4 CERAMICS WITH SURFACE-OXIDIZED SI 3 N 4
POWDER 248
XII
IMAGE 5
5.2.3 THE PREPARATION OF SI3N 4 CERAMICS WITH COMBINATION
PROCESSING 253
5.3 THE GEL-CASTING OF SIC CERAMIC AND SI 3 N 4 BONDED SIC CERAMIC 262
5.3.1 THE GEL-CASTING OF CONCENTRATED AQUEOUS SIC CERAMIC 262 5.3.2 THE
GEL-CASTING OF AQUEOUS SLURRY WITH SI 3 N 4 BONDED SIC... 268 REFERENCES
279
CHAPTER 6 APPLICATION OF NEW COLLOIDAL FORMING 283
6.1 CERAMIC MICROBEADS 283
6.1.1 THE FORMING PRINCIPLE OF CERAMIC MICROBEADS BASED ON GEL-CASTING
283
6.1.2 THE PROCESSING OF MICROBEADS 286
6.1.3 THE PROPERTIES OF CERAMIC MICROBEADS 287
6.2 IMPROVING THE BREAKDOWN STRENGTH OF RUTILE CAPACITOR 298 6.2.1 THE
INFLUENCE OF SINTERING ADDITIVES ON THE FLOW BEHAVIOR.. 299 6.2.2 THE
CALCINING OF THE RUTILE MIXTURE 301
6.2.3 THE RHEOLOGICAL BEHAVIOR OF THE CALCINED RUTILE MIXTURE .... 303
6.2.4 THE GEL-CASTING OF THE CALCINED RUTILE MIXTURE 304 6.3 THE
THIN-WALL RUTILE TUBE FOR OZONE GENERATOR WITH HIGH DIELECTRIC CONSTANT
306
6.3.1 THE EXPERIMENT RESULTS 306
6.4 THE REFRACTORY NOZZLE OF ZIRCONIA 309
6.4.1 THE REHOLOGICAL BEHAVIORS OF ZRO 2 SUSPENSIONS WITH DIFFERENT
DISPERSANTS 310
6.4.2 THE SEDIMENT STABILITY OF Z1O2 SUSPENSION WITH DIFFERENT
DISPERSANTS 312
6.4.3 THE PREPARATION OF ZRO 2 REFRACTORY NOZZLES 313
6.5 WATER BASED GEL-CASTING OF PZT 314
6.5.1 THE COLLOIDAL CHEMISTRY AND RHEOLOGICAL BEHAVIOR 316 6.5.2 THE
MICROSTRUCTURE AND PROPERTIES 319
REFERENCES 323
CHAPTER 7 THE NEW METHODS AND TECHNIQUES BASED ON GEL-CASTING 325 7.1
DEVELOPMENT OVERVIEW AND APPLICATION OF SFF 327
7.1.1 DEVELOPMENT OVERVIEW OF SFF 327
7.1.2 APPLICATION OF SFF 328
7.2 DEVELOPMENT OVERVIEW AND APPLICATION OF FREEZE-GEL-CASTING 336 7.2.1
THE COMBINATION OF GEL-CASTING AND FREEZE-CASTING TECHNIQUE 336
7.2.2 FABRICATION OF CERAMICS WITH SPECIAL POROUS STRUCTURES 338 7.2.3
THE MICROSTRUCTURE AND PROPERTIES OF POROUS ALUMINA CERAMICS 343
XIII
IMAGE 6
7.2.4 THE MECHANICAL PROPERTIES AND APPLICATIONS OF ALUMINA
CERAMICS WITH ULTRA LOW DENSITY 350
7.3 THE SOLIDIFICATION OF CONCENTRATED SI3N 4 SUSPENSIONS FOR GELCASTING
BY ULTRASONIC EFFECTS 352
7.3.1 GELCASTING BY ULTRASONIC EFFECTS 352
7.3.2 THE PREPARATION OF CONCENTRATED S13N4 SUSPENSIONS 354 7.3.3 THE
ULTRASONIC ACCELERATED SOLIDIFICATION 355
7.3.4 THE COMPARISON BETWEEN THERMAL AND ULTRASONIC ACTIVATED
SOLIDIFICATIONS 358
7.4 NOVEL LASER MACHINING TECHNOLOGY FOR A1 2 O 3 GREEN CERAMIC 360
7.4.1 LASER MACHINING TECHNOLOGY 360
7.4.2 PRACTICAL APPLICATION OF LASER MACHINING TECHNOLOGY 361 REFERENCES
368
APPENDIX 1 THE TESTING AND ANALYZING METHODS USED IN
AUTHORS RESEARCH 371
APPENDIX 2 THE RAW MATERIALS USED IN AUTHORS RESEARCH 372
INDEX OF TERMS 373
INDEX OF SCHOLARS 377
POSTSCRIPT 384
XIV
|
any_adam_object | 1 |
author | Huang, Yong 1937- Yang, Jinlong 1966- |
author_GND | (DE-588)1011643715 (DE-588)1011643766 |
author_facet | Huang, Yong 1937- Yang, Jinlong 1966- |
author_role | aut aut |
author_sort | Huang, Yong 1937- |
author_variant | y h yh j y jy |
building | Verbundindex |
bvnumber | BV039105692 |
classification_rvk | ZM 6300 ZM 8160 |
ctrlnum | (OCoLC)734096613 (DE-599)DNB1000568970 |
dewey-full | 666.04 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 666 - Ceramic & allied technologies |
dewey-raw | 666.04 |
dewey-search | 666.04 |
dewey-sort | 3666.04 |
dewey-tens | 660 - Chemical engineering |
discipline | Chemie / Pharmazie Werkstoffwissenschaften / Fertigungstechnik |
format | Book |
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id | DE-604.BV039105692 |
illustrated | Illustrated |
indexdate | 2024-07-09T23:25:28Z |
institution | BVB |
isbn | 9787302213246 9783642122804 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-022649533 |
oclc_num | 734096613 |
open_access_boolean | |
owner | DE-703 DE-83 |
owner_facet | DE-703 DE-83 |
physical | XIV, 385 S. Ill., graph. Darst. 24 cm |
publishDate | 2010 |
publishDateSearch | 2010 |
publishDateSort | 2010 |
publisher | Tsinghua Univ. Press Springer |
record_format | marc |
spelling | Huang, Yong 1937- Verfasser (DE-588)1011643715 aut Novel colloidal forming of ceramics Yong Huang ; Jinlong Yang Beijing Tsinghua Univ. Press 2010 Berlin ; Heidelberg Springer XIV, 385 S. Ill., graph. Darst. 24 cm txt rdacontent n rdamedia nc rdacarrier Literaturangaben Endabmessungsnahe Fertigung (DE-588)4401115-5 gnd rswk-swf Gelcasting (DE-588)4473280-6 gnd rswk-swf Hochleistungskeramik (DE-588)4392837-7 gnd rswk-swf Gelcasting (DE-588)4473280-6 s Hochleistungskeramik (DE-588)4392837-7 s Endabmessungsnahe Fertigung (DE-588)4401115-5 s DE-604 Yang, Jinlong 1966- Verfasser (DE-588)1011643766 aut DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=022649533&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Huang, Yong 1937- Yang, Jinlong 1966- Novel colloidal forming of ceramics Endabmessungsnahe Fertigung (DE-588)4401115-5 gnd Gelcasting (DE-588)4473280-6 gnd Hochleistungskeramik (DE-588)4392837-7 gnd |
subject_GND | (DE-588)4401115-5 (DE-588)4473280-6 (DE-588)4392837-7 |
title | Novel colloidal forming of ceramics |
title_auth | Novel colloidal forming of ceramics |
title_exact_search | Novel colloidal forming of ceramics |
title_full | Novel colloidal forming of ceramics Yong Huang ; Jinlong Yang |
title_fullStr | Novel colloidal forming of ceramics Yong Huang ; Jinlong Yang |
title_full_unstemmed | Novel colloidal forming of ceramics Yong Huang ; Jinlong Yang |
title_short | Novel colloidal forming of ceramics |
title_sort | novel colloidal forming of ceramics |
topic | Endabmessungsnahe Fertigung (DE-588)4401115-5 gnd Gelcasting (DE-588)4473280-6 gnd Hochleistungskeramik (DE-588)4392837-7 gnd |
topic_facet | Endabmessungsnahe Fertigung Gelcasting Hochleistungskeramik |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=022649533&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT huangyong novelcolloidalformingofceramics AT yangjinlong novelcolloidalformingofceramics |