Extrusion blow molding:
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Format: | Buch |
Sprache: | German |
Veröffentlicht: |
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Hanser Publishers
[2021]
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Ausgabe: | [second edition] |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Information zur Vorauflage aus dem Vorwort entnommen |
Beschreibung: | XI, 192 Seiten Illustrationen, Diagramme, Pläne 25 cm |
ISBN: | 9781569908402 1569908400 |
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020 | |a 9781569908402 |c : circa EUR 89.99 (DE) (freier Preis), circa EUR 92.60 (AT) (freier Preis) |9 978-1-56990-840-2 | ||
020 | |a 1569908400 |9 1-56990-840-0 | ||
024 | 3 | |a 9781569908402 | |
028 | 5 | 2 | |a Bestellnummer: 559/00840 |
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035 | |a (DE-599)DNB1233374044 | ||
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084 | |a CIT 740 |2 stub | ||
084 | |a CIT 755 |2 stub | ||
084 | |8 1\p |a 660 |2 23sdnb | ||
100 | 1 | |a Thielen, Michael |d 1961- |e Verfasser |0 (DE-588)172908507 |4 aut | |
245 | 1 | 0 | |a Extrusion blow molding |c Michael Thielen |
250 | |a [second edition] | ||
264 | 1 | |a Munich |b Hanser Publishers |c [2021] | |
264 | 4 | |c ©2021 | |
300 | |a XI, 192 Seiten |b Illustrationen, Diagramme, Pläne |c 25 cm | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
500 | |a Information zur Vorauflage aus dem Vorwort entnommen | ||
650 | 0 | 7 | |a Extrusionsblasformen |0 (DE-588)4153434-7 |2 gnd |9 rswk-swf |
653 | |a Blow Molding | ||
653 | |a Equipment | ||
653 | |a Extrusion | ||
653 | |a Hollow Bodies | ||
653 | |a Packaging | ||
653 | |a Simulation | ||
653 | |a Storage | ||
653 | |a FBKTBLAS: Blasformen | ||
653 | |a PLAS2021 | ||
655 | 7 | |0 (DE-588)4148875-1 |a Datensammlung |2 gnd-content | |
689 | 0 | 0 | |a Extrusionsblasformen |0 (DE-588)4153434-7 |D s |
689 | 0 | |5 DE-604 | |
710 | 2 | |a Hanser Publications |0 (DE-588)1064064051 |4 pbl | |
776 | 0 | 8 | |i Erscheint auch als |n Online-Ausgabe |z 978-1-56990-841-9 |
776 | 0 | 8 | |i Erscheint auch als |n Online-Ausgabe, EPUB |z 978-1-56990-842-6 |
856 | 4 | 2 | |m DNB Datenaustausch |q application/pdf |u http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=032772853&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |3 Inhaltsverzeichnis |
999 | |a oai:aleph.bib-bvb.de:BVB01-032772853 | ||
883 | 1 | |8 1\p |a vlb |d 20210512 |q DE-101 |u https://d-nb.info/provenance/plan#vlb |
Datensatz im Suchindex
_version_ | 1804182609564008448 |
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adam_text | CONTENTS
PREFACE
.......................................................................................................
V
THE
AUTHOR
....................................................................................................
VI
1
INTRODUCTION
......................................................................................
1
1.1
HOLLOW
PLASTIC
PARTS
-
WHAT
ARE
THEY
FOR?
.................................................
1
1.2
PROCESSES
TO
PRODUCE
HOLLOW
PLASTIC
PARTS
............................................
1
1.2.1
THERMOPLASTICS
.................................................................................
1
1.2.2
THERMOSETS
.......................................................................................
2
1.3
APPLICATION
AREAS
FOR
BLOW
MOLDED
HOLLOW
PARTS
......................................
3
1.4
HISTORY
OF
BLOW
MOLDING
HOLLOW
PARTS
.......................................................
8
2
EXTRUSION
BLOW
MOLDING
..................................................................
15
2.1
PROCESS
SEQUENCE
FOR
EXTRUSION
BLOW
MOLDING
........................................
15
2.2
RAW
MATERIALS
...............................................................................................
17
2.2.1
PLASTICS
.............................................................................................
17
2.2.2
PLASTICS
FOR
EXTRUSION
BLOW
MOLDING
.............................................
22
2.3
MACHINE
TECHNOLOGY
...................................................................................
24
2.3.1
BASIC
STRUCTURE
OF
A
BLOW
MOLDING
MACHINE
..................................
24
2.3.2
EXTRUDERS
AND
SCREWS
.....................................................................
24
2.3.2.1
SMOOTH-BORE
EXTRUDER
.....................................................
25
2.3.2.2
EXTRUDER
WITH
GROOVED
FEED
ZONE
................................
27
2.3.2.3
GRAVIMETRIC
THROUGHPUT
CONTROL
..................................
30
2.3.3
PARISON
HEADS
.................................................................................
32
2.3.3.1
SPIDER
HEADS
.....................................................................
32
2.3.3.2
MANDREL
HEADS
.................................................................
34
2.3.3.3
SPIRAL
HEADS
.....................................................................
36
2.3.4
CONTINUOUS/DISCONTINUOUS
EXTRUSION
...........................................
38
2.3.5
WALL
THICKNESS
CONTROL
...................................................................
41
2.3.5.1
SWELLING
BEHAVIOR
OF
THE
PARISON
...................................
43
2.3.6
SYSTEMS
FOR
INFLUENCING
THE
RADIAL
WALL
THICKNESS
DISTRIBUTION
.....................................................................................
46
2.3.6.1
WHY
RADIAL
WALL
THICKNESS
CONTROL?
............................
46
2.3.6.2
STATICALLY
FLEXIBLE
DEFORMABLE
RING
(SFDR)
................
46
2.3.6.3
PARTIAL
WALL
THICKNESS
DISTRIBUTION
SYSTEM
(PWDS)
.
47
2.3.6.4
WALL
THICKNESS
LAYER
CONTROL
.........................................
52
2.3.7
CLAMPING
UNITS
...............................................................................
56
2.3.8
CONTROLS
.............................................................................................
61
2.3.8.1
IPC
CONTROL
(INDUSTRIAL
PC)
.............................................
63
2.3.9
COOLING
..............................................................................
64
2.3.9.1
SHRINKAGE
AND
WARPAGE
.................................................
64
2.3.10
AIR
.....................................................................................................
67
2.3.11
SINGLE-/MULTIPLE-HEAD
SYSTEMS
.....................................................
68
2.3.11.1
LONG
STROKE
MACHINES
.....................................................
69
2.3.12
SINGLE/DOUBLE
STATION
MACHINES
...................................................
70
2.3.12.1
COMBINATIONS
OF
THE
TWO
PRINCIPLES
............................
71
2.3.13
ROTARY-WHEEL
BLOW
MOLDING
SYSTEMS
...........................................
72
2.4
BLOW
MOLDING
TOOLS
.....................................................................................
74
2.4.1
MOLD
LAYOUT
.....................................................................................
74
2.4.1.1
PROTOTYPE
MOLDS
IN
CAST RESIN
CONSTRUCTION
................
75
2.4.1.2
PROTOTYPE
MOLDS
WITH
METAL
SURFACE
AND
CAST
RESIN
BACKING
.........................................................
75
2.4.1.3
CAST
METAL
PROTOTYPE
MOLDS
...........................................
75
2.4.1.4
ALUMINUM
PROTOTYPE
MOLDS
...........................................
76
2.4.1.5
MASS-PRODUCTION
MOLDS
...................................................
76
2.4.2
DESIGN
GUIDELINES
...........................................................................
79
2.4.2.1
BLOW
MOLD
GUIDE
.............................................................
79
2.4.2.2
CUTTING
EDGES
..................................................................
79
2.4.2.3
MOLD
SUPPORT
...................................................................
82
2.4.2.4
MOLD
VENTING
...................................................................
82
2.4.3
BLOW
MOLD
COOLING
...........................................................................
84
2.4.3.1
DRILLED
COOLING
.................................................................
84
2.4.3.2
MILLED
COOLING
.................................................................
85
2.4.3.3
CAST-IN
PIPE
COOLING
.........................................................
85
2.4.4
BLOW
MOLD
ACCESSORIES
...................................................................
87
2.4.4.1
MASKS
................................................................................
87
2.4.4.2
SPREADER
PINS
...................................................................
87
2.4.4.3
BLOW
PIN
...........................................................................
88
2.4.4.4
CALIBRATION
PIN
AND
CALIBRATION
BLOW
PIN
.....................
89
2.4.4.5
BLOW
NEEDLE
.....................................................................
90
2.4.4.6
PARISON
CLOSING
DEVICE
...................................................
92
2.4.4.7
STRIPPER
PLATE
...................................................................
92
2.4.4.8
HEAD
TOOL
(DIE
AND
CORE)
.................................................
92
2.4.4.9
SET-UP
SOCKET
...................................................................
93
2.4.5
PROCESS-INTEGRATED
FOLLOW-UP
PROCEDURES
....................................
93
2.4.5.1
POST-COOLING
WITH
A
POST-COOLING
MOLD
........................
93
2.4.5.2
COMPLETE
PROCESSING
IN
THE
BLOW
MOLDING
MACHINE
..
94
2.4.6
INJECTION
BLOW
MOLDING
AND
DIP
BLOW
MOLDING
..........................
96
2.4.7
USE
OF
COMPUTERS
IN
BLOW
MOLD
CONSTRUCTION
............................
97
2.5
DOWNSTREAM
AND
AUXILIARY
EQUIPMENT
.....................................................
98
2.5.1
COOLING
UNITS
...................................................................................
99
2.5.2
COMPRESSORS
.....................................................................................
100
2.5.3
DRYER
.................................................................................................
100
2.5.4
DEFLASHING
.........................................................................................
100
2.5.5
GRINDER
.............................................................................................
101
2.5.6
MATERIAL
HANDLING
...........................................................................
102
2.5.7
POST-COOLING
.....................................................................................
104
2.5.8
LEAK
TEST
...........................................................................................
105
2.5.9
FILLING
...............................................................................................
106
2.5.10
CAPPING/CLOSING
.............................................................................
106
2.5.11
LABELING
...........................................................................................
106
2.5.12
PRINTING
.............................................................................................
106
2.5.13
PACKAGING
.........................................................................................
106
2.5.14
FURTHER
PERIPHERAL
DEVICES
.............................................................
107
2.6
SPECIAL
PROCESS
VARIANTS
.............................................................................
107
2.6.1
MULTILAYER/COEXTRUSION
BLOW
MOLDING
.........................................
107
2.6.1.1
COEXTRUSION
WITH
BARRIER
LAYER
.....................................
108
2.6.1.2
MACHINE
TECHNOLOGY
FOR
MULTILAYER/COEXTRUSION
........
108
2.6.1.3
PLASTIC
FUEL
TANK
(PFT)
.....................................................
109
2.6.2
SHEET
FORMING
FOR
THE
PRODUCTION
OF
FUEL
TANKS
........................
114
2.6.3
3D
BLOW
MOLDING
.............................................................................
114
2.6.3.1
DIFFERENT
MACHINE
TECHNOLOGIES
.....................................
117
2.6.3.2
3D
BLOW
MOLDING
AND
COEXTRUSION
WITH
BARRIER
LAYER
.....................................................................
122
2.6.3.3
RADIAL
WALL
THICKNESS
CONTROL
.......................................
122
2.6.4
SEQUENTIAL
COEXTRUSION
...................................................................
123
2.6.4.1
PROCESS
TECHNOLOGY
OF
SEQUENTIAL
COEXTRUSION
..........
125
2.6.4.2
MACHINE
TECHNOLOGY
OF
SEQUENTIAL
COEXTRUSION
..........
126
2.6.4.3
PRODUCTION
TARGET:
STABLE
PROCESSING
CONDITIONS
........
127
2.6.5
EXTRUSION
BLOW
MOLDING
OF
POLYCARBONATE
WATER
BOTTLES
.............
128
2.6.5.1
ADVANTAGES
OF
PC
.............................................................
129
2.6.5.2
MACHINE
TECHNOLOGY
FOR
PC
WATER
BOTTLES
....................
130
2.6.6
IN-MOLD
LABELING
.............................................................................
131
2.6.7
VIEW
STRIPE
EQUIPMENT
...................................................................
132
2.6.8
IN-MOLD
DECORATION
.........................................................................
133
2.6.9
BLOW
MOLDING
FOAM
TECHNOLOGY
(BFT)
...........................................
134
2.6.10
MUCELL
...............................................................................................
136
2.6.11
BLOW
MOLDING
OF
FIBER-REINFORCED
THERMOPLASTICS
.....................
138
2.6.12
BLOW-FILL-SEAL
PROCESS
.....................................................................
138
3
PRODUCT
DEVELOPMENT
....................................................................
143
3.1
PRODUCT
TRIALS
AND
TESTING
.........................................................................
144
3.2
DESIGNING
FOR
BLOW
MOLDING
.......................................................................
145
3.3
CAE,
SIMULATION
PROCEDURES:
PROCESS
AND
PRODUCT
SIMULATION
..............
149
3.4
PRODUCT
DEVELOPMENT
IN
EXTRUSION
BLOW
MOLDING
...................................
151
3.5
FEASIBILITY
ANALYSIS
SANDBOX
.....................................................................
152
3.6
CALCULATION
OF
THE
INTERNAL
BURST
PRESSURE
OF
A
WINDSHIELD
WIPER
WATER
TANK
...................................................................
154
4
THE
BLOW
MOLDING
OPERATION
.........................................................
159
4.1
FROM
THE
IDEA
TO
THE
PRODUCT
.....................................................................
159
4.2
CHANGEOVER
...................................................................................................
165
4.3
LAYOUT
OF
A
BLOW
MOLDING
PROCESS
.............................................................
168
5
RECYCLING
IN
EXTRUSION
BLOW
MOLDING
TECHNOLOGY
....................
171
5.1
POSSIBLE
STRATEGIES
FOR
PROCESSING
REGRIND
...............................................
172
5.2
LAYER
STRUCTURES
FOR
BLOW
MOLDED
PARTS
WITH
RECYCLED
MATERIAL
..........
173
5.3
RECYCLING
IN
SIX-LAYER
COEXTRUSION
...........................................................
174
5.4
PREPARATION
OF
THE
MATERIAL
.........................................................................
176
5.5
MATERIAL
CONVEYING,
DOSING,
AND
PLASTIFICATION
......................................
176
5.6
MASS
FLOW
RATE
.............................................................................................
178
5.7
AVOIDING
DEFECTS
...........................................................................................
180
5.8
BLOW
HEAD,
BLOW
MOLD,
AND
BLOW
MOLDING
PROCESS
................................
180
APPENDIX:
FORMULA
SYMBOLS,
ABBREVIATIONS,
AND
SHORT
CODES
.......
183
INDEX
..............................................................................................................
187
|
adam_txt |
CONTENTS
PREFACE
.
V
THE
AUTHOR
.
VI
1
INTRODUCTION
.
1
1.1
HOLLOW
PLASTIC
PARTS
-
WHAT
ARE
THEY
FOR?
.
1
1.2
PROCESSES
TO
PRODUCE
HOLLOW
PLASTIC
PARTS
.
1
1.2.1
THERMOPLASTICS
.
1
1.2.2
THERMOSETS
.
2
1.3
APPLICATION
AREAS
FOR
BLOW
MOLDED
HOLLOW
PARTS
.
3
1.4
HISTORY
OF
BLOW
MOLDING
HOLLOW
PARTS
.
8
2
EXTRUSION
BLOW
MOLDING
.
15
2.1
PROCESS
SEQUENCE
FOR
EXTRUSION
BLOW
MOLDING
.
15
2.2
RAW
MATERIALS
.
17
2.2.1
PLASTICS
.
17
2.2.2
PLASTICS
FOR
EXTRUSION
BLOW
MOLDING
.
22
2.3
MACHINE
TECHNOLOGY
.
24
2.3.1
BASIC
STRUCTURE
OF
A
BLOW
MOLDING
MACHINE
.
24
2.3.2
EXTRUDERS
AND
SCREWS
.
24
2.3.2.1
SMOOTH-BORE
EXTRUDER
.
25
2.3.2.2
EXTRUDER
WITH
GROOVED
FEED
ZONE
.
27
2.3.2.3
GRAVIMETRIC
THROUGHPUT
CONTROL
.
30
2.3.3
PARISON
HEADS
.
32
2.3.3.1
SPIDER
HEADS
.
32
2.3.3.2
MANDREL
HEADS
.
34
2.3.3.3
SPIRAL
HEADS
.
36
2.3.4
CONTINUOUS/DISCONTINUOUS
EXTRUSION
.
38
2.3.5
WALL
THICKNESS
CONTROL
.
41
2.3.5.1
SWELLING
BEHAVIOR
OF
THE
PARISON
.
43
2.3.6
SYSTEMS
FOR
INFLUENCING
THE
RADIAL
WALL
THICKNESS
DISTRIBUTION
.
46
2.3.6.1
WHY
RADIAL
WALL
THICKNESS
CONTROL?
.
46
2.3.6.2
STATICALLY
FLEXIBLE
DEFORMABLE
RING
(SFDR)
.
46
2.3.6.3
PARTIAL
WALL
THICKNESS
DISTRIBUTION
SYSTEM
(PWDS)
.
47
2.3.6.4
WALL
THICKNESS
LAYER
CONTROL
.
52
2.3.7
CLAMPING
UNITS
.
56
2.3.8
CONTROLS
.
61
2.3.8.1
IPC
CONTROL
(INDUSTRIAL
PC)
.
63
2.3.9
COOLING
.
64
2.3.9.1
SHRINKAGE
AND
WARPAGE
.
64
2.3.10
AIR
.
67
2.3.11
SINGLE-/MULTIPLE-HEAD
SYSTEMS
.
68
2.3.11.1
LONG
STROKE
MACHINES
.
69
2.3.12
SINGLE/DOUBLE
STATION
MACHINES
.
70
2.3.12.1
COMBINATIONS
OF
THE
TWO
PRINCIPLES
.
71
2.3.13
ROTARY-WHEEL
BLOW
MOLDING
SYSTEMS
.
72
2.4
BLOW
MOLDING
TOOLS
.
74
2.4.1
MOLD
LAYOUT
.
74
2.4.1.1
PROTOTYPE
MOLDS
IN
CAST RESIN
CONSTRUCTION
.
75
2.4.1.2
PROTOTYPE
MOLDS
WITH
METAL
SURFACE
AND
CAST
RESIN
BACKING
.
75
2.4.1.3
CAST
METAL
PROTOTYPE
MOLDS
.
75
2.4.1.4
ALUMINUM
PROTOTYPE
MOLDS
.
76
2.4.1.5
MASS-PRODUCTION
MOLDS
.
76
2.4.2
DESIGN
GUIDELINES
.
79
2.4.2.1
BLOW
MOLD
GUIDE
.
79
2.4.2.2
CUTTING
EDGES
.
79
2.4.2.3
MOLD
SUPPORT
.
82
2.4.2.4
MOLD
VENTING
.
82
2.4.3
BLOW
MOLD
COOLING
.
84
2.4.3.1
DRILLED
COOLING
.
84
2.4.3.2
MILLED
COOLING
.
85
2.4.3.3
CAST-IN
PIPE
COOLING
.
85
2.4.4
BLOW
MOLD
ACCESSORIES
.
87
2.4.4.1
MASKS
.
87
2.4.4.2
SPREADER
PINS
.
87
2.4.4.3
BLOW
PIN
.
88
2.4.4.4
CALIBRATION
PIN
AND
CALIBRATION
BLOW
PIN
.
89
2.4.4.5
BLOW
NEEDLE
.
90
2.4.4.6
PARISON
CLOSING
DEVICE
.
92
2.4.4.7
STRIPPER
PLATE
.
92
2.4.4.8
HEAD
TOOL
(DIE
AND
CORE)
.
92
2.4.4.9
SET-UP
SOCKET
.
93
2.4.5
PROCESS-INTEGRATED
FOLLOW-UP
PROCEDURES
.
93
2.4.5.1
POST-COOLING
WITH
A
POST-COOLING
MOLD
.
93
2.4.5.2
COMPLETE
PROCESSING
IN
THE
BLOW
MOLDING
MACHINE
.
94
2.4.6
INJECTION
BLOW
MOLDING
AND
DIP
BLOW
MOLDING
.
96
2.4.7
USE
OF
COMPUTERS
IN
BLOW
MOLD
CONSTRUCTION
.
97
2.5
DOWNSTREAM
AND
AUXILIARY
EQUIPMENT
.
98
2.5.1
COOLING
UNITS
.
99
2.5.2
COMPRESSORS
.
100
2.5.3
DRYER
.
100
2.5.4
DEFLASHING
.
100
2.5.5
GRINDER
.
101
2.5.6
MATERIAL
HANDLING
.
102
2.5.7
POST-COOLING
.
104
2.5.8
LEAK
TEST
.
105
2.5.9
FILLING
.
106
2.5.10
CAPPING/CLOSING
.
106
2.5.11
LABELING
.
106
2.5.12
PRINTING
.
106
2.5.13
PACKAGING
.
106
2.5.14
FURTHER
PERIPHERAL
DEVICES
.
107
2.6
SPECIAL
PROCESS
VARIANTS
.
107
2.6.1
MULTILAYER/COEXTRUSION
BLOW
MOLDING
.
107
2.6.1.1
COEXTRUSION
WITH
BARRIER
LAYER
.
108
2.6.1.2
MACHINE
TECHNOLOGY
FOR
MULTILAYER/COEXTRUSION
.
108
2.6.1.3
PLASTIC
FUEL
TANK
(PFT)
.
109
2.6.2
SHEET
FORMING
FOR
THE
PRODUCTION
OF
FUEL
TANKS
.
114
2.6.3
3D
BLOW
MOLDING
.
114
2.6.3.1
DIFFERENT
MACHINE
TECHNOLOGIES
.
117
2.6.3.2
3D
BLOW
MOLDING
AND
COEXTRUSION
WITH
BARRIER
LAYER
.
122
2.6.3.3
RADIAL
WALL
THICKNESS
CONTROL
.
122
2.6.4
SEQUENTIAL
COEXTRUSION
.
123
2.6.4.1
PROCESS
TECHNOLOGY
OF
SEQUENTIAL
COEXTRUSION
.
125
2.6.4.2
MACHINE
TECHNOLOGY
OF
SEQUENTIAL
COEXTRUSION
.
126
2.6.4.3
PRODUCTION
TARGET:
STABLE
PROCESSING
CONDITIONS
.
127
2.6.5
EXTRUSION
BLOW
MOLDING
OF
POLYCARBONATE
WATER
BOTTLES
.
128
2.6.5.1
ADVANTAGES
OF
PC
.
129
2.6.5.2
MACHINE
TECHNOLOGY
FOR
PC
WATER
BOTTLES
.
130
2.6.6
IN-MOLD
LABELING
.
131
2.6.7
VIEW
STRIPE
EQUIPMENT
.
132
2.6.8
IN-MOLD
DECORATION
.
133
2.6.9
BLOW
MOLDING
FOAM
TECHNOLOGY
(BFT)
.
134
2.6.10
MUCELL
.
136
2.6.11
BLOW
MOLDING
OF
FIBER-REINFORCED
THERMOPLASTICS
.
138
2.6.12
BLOW-FILL-SEAL
PROCESS
.
138
3
PRODUCT
DEVELOPMENT
.
143
3.1
PRODUCT
TRIALS
AND
TESTING
.
144
3.2
DESIGNING
FOR
BLOW
MOLDING
.
145
3.3
CAE,
SIMULATION
PROCEDURES:
PROCESS
AND
PRODUCT
SIMULATION
.
149
3.4
PRODUCT
DEVELOPMENT
IN
EXTRUSION
BLOW
MOLDING
.
151
3.5
FEASIBILITY
ANALYSIS
SANDBOX
.
152
3.6
CALCULATION
OF
THE
INTERNAL
BURST
PRESSURE
OF
A
WINDSHIELD
WIPER
WATER
TANK
.
154
4
THE
BLOW
MOLDING
OPERATION
.
159
4.1
FROM
THE
IDEA
TO
THE
PRODUCT
.
159
4.2
CHANGEOVER
.
165
4.3
LAYOUT
OF
A
BLOW
MOLDING
PROCESS
.
168
5
RECYCLING
IN
EXTRUSION
BLOW
MOLDING
TECHNOLOGY
.
171
5.1
POSSIBLE
STRATEGIES
FOR
PROCESSING
REGRIND
.
172
5.2
LAYER
STRUCTURES
FOR
BLOW
MOLDED
PARTS
WITH
RECYCLED
MATERIAL
.
173
5.3
RECYCLING
IN
SIX-LAYER
COEXTRUSION
.
174
5.4
PREPARATION
OF
THE
MATERIAL
.
176
5.5
MATERIAL
CONVEYING,
DOSING,
AND
PLASTIFICATION
.
176
5.6
MASS
FLOW
RATE
.
178
5.7
AVOIDING
DEFECTS
.
180
5.8
BLOW
HEAD,
BLOW
MOLD,
AND
BLOW
MOLDING
PROCESS
.
180
APPENDIX:
FORMULA
SYMBOLS,
ABBREVIATIONS,
AND
SHORT
CODES
.
183
INDEX
.
187 |
any_adam_object | 1 |
any_adam_object_boolean | 1 |
author | Thielen, Michael 1961- |
author_GND | (DE-588)172908507 |
author_facet | Thielen, Michael 1961- |
author_role | aut |
author_sort | Thielen, Michael 1961- |
author_variant | m t mt |
building | Verbundindex |
bvnumber | BV047371063 |
classification_rvk | ZM 8165 |
classification_tum | CIT 740 CIT 755 |
ctrlnum | (OCoLC)1251782754 (DE-599)DNB1233374044 |
discipline | Werkstoffwissenschaften Chemie-Ingenieurwesen Werkstoffwissenschaften / Fertigungstechnik |
discipline_str_mv | Werkstoffwissenschaften Chemie-Ingenieurwesen Werkstoffwissenschaften / Fertigungstechnik |
edition | [second edition] |
format | Book |
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genre | (DE-588)4148875-1 Datensammlung gnd-content |
genre_facet | Datensammlung |
id | DE-604.BV047371063 |
illustrated | Illustrated |
index_date | 2024-07-03T17:44:45Z |
indexdate | 2024-07-10T09:10:16Z |
institution | BVB |
institution_GND | (DE-588)1064064051 |
isbn | 9781569908402 1569908400 |
language | German |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-032772853 |
oclc_num | 1251782754 |
open_access_boolean | |
owner | DE-210 DE-91G DE-BY-TUM DE-12 DE-703 |
owner_facet | DE-210 DE-91G DE-BY-TUM DE-12 DE-703 |
physical | XI, 192 Seiten Illustrationen, Diagramme, Pläne 25 cm |
publishDate | 2021 |
publishDateSearch | 2021 |
publishDateSort | 2021 |
publisher | Hanser Publishers |
record_format | marc |
spelling | Thielen, Michael 1961- Verfasser (DE-588)172908507 aut Extrusion blow molding Michael Thielen [second edition] Munich Hanser Publishers [2021] ©2021 XI, 192 Seiten Illustrationen, Diagramme, Pläne 25 cm txt rdacontent n rdamedia nc rdacarrier Information zur Vorauflage aus dem Vorwort entnommen Extrusionsblasformen (DE-588)4153434-7 gnd rswk-swf Blow Molding Equipment Extrusion Hollow Bodies Packaging Simulation Storage FBKTBLAS: Blasformen PLAS2021 (DE-588)4148875-1 Datensammlung gnd-content Extrusionsblasformen (DE-588)4153434-7 s DE-604 Hanser Publications (DE-588)1064064051 pbl Erscheint auch als Online-Ausgabe 978-1-56990-841-9 Erscheint auch als Online-Ausgabe, EPUB 978-1-56990-842-6 DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=032772853&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p vlb 20210512 DE-101 https://d-nb.info/provenance/plan#vlb |
spellingShingle | Thielen, Michael 1961- Extrusion blow molding Extrusionsblasformen (DE-588)4153434-7 gnd |
subject_GND | (DE-588)4153434-7 (DE-588)4148875-1 |
title | Extrusion blow molding |
title_auth | Extrusion blow molding |
title_exact_search | Extrusion blow molding |
title_exact_search_txtP | Extrusion blow molding |
title_full | Extrusion blow molding Michael Thielen |
title_fullStr | Extrusion blow molding Michael Thielen |
title_full_unstemmed | Extrusion blow molding Michael Thielen |
title_short | Extrusion blow molding |
title_sort | extrusion blow molding |
topic | Extrusionsblasformen (DE-588)4153434-7 gnd |
topic_facet | Extrusionsblasformen Datensammlung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=032772853&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT thielenmichael extrusionblowmolding AT hanserpublications extrusionblowmolding |