Wear in plastics processing: how to understand, protect, and avoid
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1. Verfasser: | |
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Format: | Buch |
Sprache: | German English |
Veröffentlicht: |
Munich u.a.
Hanser
1995
Cincinnati Hanser/Gardner |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XIV, 452 S. Ill., graph. Darst. |
ISBN: | 1569901376 3446170715 |
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100 | 1 | |a Mennig, Günter |e Verfasser |0 (DE-588)107281279 |4 aut | |
240 | 1 | 0 | |a Verschleiß in der Kunststoffverarbeitung |
245 | 1 | 0 | |a Wear in plastics processing |b how to understand, protect, and avoid |c Günter Mennig |
264 | 1 | |a Munich u.a. |b Hanser |c 1995 | |
264 | 1 | |a Cincinnati |b Hanser/Gardner | |
300 | |a XIV, 452 S. |b Ill., graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
650 | 4 | |a Mechanical wear | |
650 | 4 | |a Plastics industry and trade | |
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adam_text |
CONTENTS
I
INTRODUCTION
.
1
G.
MENMG
1
DEVELOPMENT
OF
WEAR
STUDIES
.
2
2
ECONOMIC
IMPORTANCE
.
5
II
TRIBOLOGICAL
PRINCIPLES
.
11
1
GENERAL
TECHNICAL
WEAR
PROCESSES
.
12
K.H.
KLOOS
1.1
TRIBOLOGICAL
STRESS
OF
COMPONENT
PAIRS
.
12
1.1.1
FRICTION
AND
MECHANICAL
STRESS
.
14
1.1.2
FRICTION
AND
THERMAL
STRESS
.
17
1.1.3
FRICTION
AND
CHEMICAL
STRESS
.
18
1.1.4
TRIBOMECHANICAL
STRESS
.
20
1.2
SYSTEMS
ANALYSIS
OF
WEAR
PROCESSES
.
22
1.2
1
STRUCTURE
OF
THE
TRIBOLOGICAL
SYSTEM
AND
ITS
TECHNICAL
FUNCTION
.
22
1.2.2
STRUCTURE
AND
PROPERTIES
OF
TECHNICAL
SURFACES
.
24
1.2.3
TYPES
OF
WEAR
.
30
1.3
WEAR
MECHANISMS
.
30
1.3.1
ADHESIVE
WEAR
.
32
1.3.2
ABRASIVE
WEAR
.
34
1.3.3
WEAR
AS
THE
RESULT
OF
SURFACE
FATIGUE
.
37
1.3.4
SURFACE
LAYER
WEAR
BY
TRIBOCHEMICAL
REACTIONS
.
39
1.4
PRINCIPLES
OF
WEAR
TESTING
AND
CALCULATION
.
41
1.4.1
TEST
SEQUENCE
AND
WEAR
SIMULATION
TECHNIQUES
.
41
1.4.2
APPROACHES
TO
CALCULATE
WEAR
.
42
2
TRIBOLOGICAL
SYSTEMS
IN
PLASTICS
PROCESSING
.
45
G.
MENMG
2
1
PROCESSING
REGIONS
RELEVANT
TO
WEAR
.
45
2.1.1
SOLIDS-CONVEYING
ZONE
.
46
2.1.2
TRANSITION
ZONE
.
47
2.1.3
MELT
ZONE
.
49
2.1.3.1
FLOW
PATTERN
WITH
A
MOVING
WALL
.
49
2.1.3
2
SIMPLE
PRESSURE
FLOW
.
51
2.2
DEFINITION
OF
THE
TRIBOLOGICAL
SYSTEM
.
52
2.3
WEAR
MECHANISMS
AND
TYPES
OF
WEAR
IN
PLASTICS
PROCESSING
.
55
2.3.1
ABRASION
.
55
2.3.2
ADHESION
.
63
2.3.3
MISCELLANEOUS
MECHANISMS
.
64
2
3.3.1
TRIBOLOGICAL
REACTIONS
.
64
2.3.3.2
FATIGUE
WEAR
(SURFACE
FATIGUE)
.
65
2.3.4
SUPERIMPOSED
MECHANISMS
.
66
2.4
MATERIAL-SPECIFIC
EFFECTS
ON
WEAR
.
68
VIII
CONTENTS
3
CORROSION
DURING
PLASTICS
PROCESSING
.
72
D.
BRAUN
3.1
CORROSION
PHENOMENA
CAUSED
BY
PLASTICATED
RESINS
.
73
3.1.1
THERMOPLASTICS
.
73
3.1.2
THERMOSETS
.
75
3.2
INVESTIGATIONS
OF
METAL
SURFACES
.
76
3.3
CORROSION
MECHANISMS
.
77
III
MATERIALS
INVOLVED
IN
WEAR
.
83
1
PLASTIC
RESINS
AND
ADDITIVES
.
84
G.
PALLER
1.1
PLASTIC
RESINS
.
84
1.1.1
THE
IMPORTANCE
OF
PLASTICS
.
84
1.1.2
MACROMOLECULAR
STRUCTURE
OF
PLASTICS
.
86
1.1.3
SELECTED
PLASTIC
RESINS
.
89
1.1.4
THE
BEHAVIOR
OF
POLYMER
MELTS
.
100
1.1.4.1
FLOW
PROPERTIES
.
100
1.1.4.2
EFFECTS
OF
VISCOELASTIC
BEHAVIOR
.
104
1.1.4.3
MELTS
UNDER
LONG-TERM
LOADS
.
106
1.2
PLASTIC
ADDITIVES
.
107
1.2.1
FILLERS
AND
REINFORCEMENTS
.
108
1.2.1.1
SELECTED
MATERIALS
.
109
1.2.1.2
SUMMARY
OF
PROPERTY
CHANGES
.
113
1.2.2
FUNCTIONAL
ADDITIVES
.
114
1.3
THE
EFFECT
OF
RESIN
ON
WEAR
.
116
1.3.1
POLYMER-SPECIFIC
VARIABLES
.
117
1.3.2
ADDITIVE-SPECIFIC
VARIABLES
.
118
1.3.2.1
SOLIDS-CONVEYING
ZONE
.
119
1.3.2.2
MELT
ZONE
.
123
2
METALS
AND
WEAR-RESISTANT
HARDFACINGS
.
126
2.1
STEELS
FOR
PLASTICS
PROCESSING
.
127
W
KORTMANN
2.1.1
SELECTION
OF
MATERIALS
FOR
PLASTICATING
UNITS
.
129
2.1.1.1
NITRIDED
STEELS
.
129
2
1.1.2
THROUGH-HARDENING
STEELS
.
130
2.1.1.3
CORROSION-RESISTANT
STEELS
.
134
2.1.1.4
MARAGING
STEEL
.
134
2.1.1.5
HIGH-SPEED
STEELS
.
135
2.1.2
MATERIAL
SELECTION
FOR
PLASTICS
MOLDS
.
136
2.1.2.1
MOLD
FRAME
STEEL
.
136
2.1.2.2
CASE-HARDENING
STEELS
.
136
2.1.2.3
PREHARDENED
STEELS
.
137
2.1.2.4
CORROSION-RESISTANT
STEELS
.
137
2.1.2.5
THROUGH-HARDENING
AND
MARAGING
STEELS
.
138
2.1.3
HEAT
TREATMENT
OF
TOOL
STEELS
.
138
2.1.3.1
SOFT
ANNEALING
AND
STRESS
RELIEF
ANNEALING
.
140
CONTENTS
IX
2.1.3.2
HARDENING
.
140
2.1.3.3
TEMPERING
.
142
2.1.3.4
EFFECT
OF
WORKPIECE
DIAMETER
WITH
ALLOYED
COLD-WORK
STEELS
.
.
142
2.2
CAST
MATERIALS
.
143
A.
OLDEWURTEL
2.3
MACHINABLE
STEEL-BONDED
CARBIDES
.
146
J.
BAURMANN
2.4
HARDMETALS
.
150
J.
BLUM
2.4.1
PRODUCTION
AND
PROCESSING
.
150
2.4.2
ALLOY
TYPES
.
152
2.4.3
APPLICATION
.
155
2.5
SURFACE
TREATMENT
METHODS
.
155
W.
KORTMANN
2.5.1
THERMOCHEMICAL
METHODS
(DIFFUSION
METHODS)
.
158
2.5.1.1
NITRIDING
AND
NITROCARBURIZING
.
158
2.5.1.2
BONDING
.
166
2.5.1.3
CARBURIZING
AND
CASE
HARDENING
.
167
2.5.1.4
CHROMIZING
AND
VANADIZING
.
168
2.5.2
ELECTROCHEMICAL
AND
CHEMICAL
METHODS
.
168
2.5.2.1
HARD
CHROME
PLATING
.
168
2.5.2.2
NICKEL
PLATING
.
171
2.5.3
SURFACE
TREATMENT
BY
MEANS
OF
GAS
PHASE
DEPOSITION
.
171
2.5.3.1
CVD
PROCESS
.
171
2.5.3.2
PVD
PROCESS
.
174
2.6
MATERIALS
FOR
BIMETALLIC
BARRELS
AND
SCREWS
WITH
HARDFACED
FLIGHTS
.
176
P.
LULSDORF
2.6.1
WEAR-RESISTANT
ALLOY
SYSTEMS
.
176
2.6.2
REQUIREMENTS
TO
BE
MET
BY
HARDFACING
ALLOYS
.
177
2.6.3
CONVENTIONAL
HARDFACING
.
179
2.6.3.1
LINING
OF
BARRELS
.
180
2.6.3.2
HARDFACING
OF
SCREWS
.
184
2.6.4
HOT
ISOSTATIC
PRESSING
(HIP)
.
187
2.6.4.1
HIP
LININGS
IN
BARRELS
.
188
2.6.4.2
POWDER
METALLURGICAL
MANUFACTURING
OF
SCREWS
.
190
IV
WEAR
TESTING
.
193
G.
MENMG
1
CATEGORIES
.
194
2
QUANTITIES
FOR
MEASURING
WEAR
.
198
3
TEST
METHODS
.
201
3.1
SEMI-INDUSTRIAL
TEST
METHODS
.
201
X
CONTENTS
3.1.1
WEAR
INVESTIGATIONS
DURING
ACTUAL
USE
.
201
3.1.2
LABORATORY
METHODS
SIMULATING
ACTUAL
CONDITIONS
.
202
3.2
TESTING
IN
A
MODEL
SYSTEM
.
204
3.2.1
TEST
METHODS
FOR
PLASTICATED
RESINS
.
205
3.2.2
TEST
METHODS
FOR
SOLID
RESINS
.
208
3.2.3
TEST
METHODS
FOR
CORROSIVE
WEAR
.
210
3.2.4
TEST
METHODS
FOR
ADHESIVE
WEAR
.
212
4
MEASURING
WITH
MODEL
TEST
METHODS
.
214
5
APPLICATION
TO
ACTUAL
PRACTICE
.
217
6
OUTLOOK
.
219
V
WEAR
UNDER
INDUSTRIAL
CONDITIONS
.
221
1
COMPOUNDING
.
223
R.
WUTTKE,
W.
WORZ
1.1
CHARACTERIZATION
OF
THE
PROCESS
.
223
1.1.1
PROCESS
STEPS
DURING
COMPOUNDING
.
223
1.1.2
COMPOUNDING
MACHINES
.
224
1.1.2.1
CONTINUOUS
COMPOUNDING
.
225
1.1.2.2
DISCONTINUOUS
COMPOUNDING
.
227
1.1.3
EXAMPLES
OF
APPLICATIONS
.
228
1.1.3.1
COMPOUNDING
OF
PVC
.
228
1.1.3.2
FILLING
AND
REINFORCING
OF
PLASTICS
.
229
1.1.3.3
PREPARATION
OF
PIGMENT
CONCENTRATES
.
232
1.1.3.4
DEVOLATILIZING
OF
POLYSULFONE
(PSU)
.
233
1.1.3.5
COMPOUNDING
OF
THERMOSETTING
RESINS
.
234
1.1.3.6
COMPOUNDING
OF
RUBBER
ON
INTERNAL
MIXERS
.
234
1.2
WEAR
PHENOMENA
IN
COMPOUNDING
MACHINERY
.
235
1.2.1
LOAD
ANALYSIS
.
235
1.2.2
ABRASIVE
WEAR
.
240
1.2.3
ADHESIVE
WEAR
.
245
1.2.4
CORROSIVE
WEAR
.
246
1.3
MEASURES
TO
PROTECT
AGAINST
WEAR
.
247
1.3.1
DESIGN
ASPECTS
.
247
1.3.1.1
SEGMENTED
BARREL
CONCEPT
.
247
1.3.1.2
SEGMENTED
SCREW
CONCEPT
.
248
1.3.2
SELECTION
OF
APPROPRIATE
MATERIALS
.
249
1.3.2.1
MATERIALS
FOR
BARREL
SEGMENTS
.
250
1.3.2.2
MATERIALS
FOR
SCREW
SEGMENTS
.
253
1.3.2.3
MATERIALS
FOR
DISCONTINUOUS
MACHINES
.
256
1.3.3
PROCESS-RELATED
MEASURES
.
258
1.4
OUTLOOK
.
260
2
PELLETIZING
AND
GRANULATING
.
261
M.
REINHARD
2.1
CHARACTERIZATION
OF
THE
PROCESS
.
261
2.2
PELLETIZING
FROM
THE
MELT
.
262
CONTENTS
XI
2.2.1
FIELDS
OF
APPLICATION
.
262
2.2.2
PROCESS-SPECIFIC
SYSTEMATIC
CLASSIFICATION
OF
PELLETIZING
EQUIPMENT
.
263
2.2.3
WEAR
PROBLEMS
.
265
2.2.3.1
TRIBOLOGICAL
SYSTEMS
IN
THE
REGION
OF
THE
CUT
.
265
2.2.3.2
MISCELLANEOUS
TRIBOLOGICAL
SYSTEMS
.
269
2.2.3.3
EFFECT
OF
WEAR
ON
PRODUCT
QUALITY
AND
ECONOMICS
.
271
2.2.4
MATERIAL
SELECTION
.
271
2.2.4.1
CUTTING
MATERIALS
.
271
2.2.4.2
MATERIALS
FOR
MISCELLANEOUS
APPLICATIONS
.
273
2.2.4.3
DEVELOPMENTAL
TRENDS
.
274
2.3
GRANULATING
OF
SOLID
MOLDED
PRODUCTS
.
275
2.3.1
FIELDS
OF
APPLICATION
.
275
2.3.2
DESIGN
AND
PRINCIPLE
OF
OPERATION
OF
GRANULATORS
.
275
2.3.3
WEAR
PROBLEMS
.
276
2.3.4
MATERIAL
SELECTION
.
277
2.4
NEW
METHODS
.
277
3
COMPRESSION
AND
TRANSFER
MOLDING
.
279
IV.
SCHBNTHALER,
W.
DANNE
3.1
PROCESS
DESCRIPTION
.
279
3.1.1
GENERAL
.
279
3.1.2
PROCESS
SEQUENCE
.
281
3.1.3
COMPRESSION
AND
TRANSFER
MOLDS
.
283
3.2
PECULARITIES
OF
COMPRESSION
AND
TRANSFER
MOLDING
THERMOSETTING
RESINS
.
285
3.2.1
COMPOSITION
OF
THERMOSETTING
MOLDING
COMPOUNDS
.
286
3.2.2
CONVENTIONAL
WEAR
TESTS
.
286
3.3
EFFECT
OF
FORMULATION
COMPONENTS
ON
THE
WEAR
CAUSED
BY
THERMOSETTING
MOLDING
COMPOUNDS
.
288
3.3.1
EFFECT
OF
THE
BINDER
.
288
3
3.2
EFFECT
OF
FILLERS
.
289
3.3.3
EFFECT
OF
MISCELLANEOUS
FORMULATION
COMPONENTS
.
292
3.3.4
EFFECT
OF
FLOW/CURE
CHARACTERISTICS
OF
THE
MOLDING
COMPOUND
.
292
3.4
MEANS
OF
REDUCING
WEAR
.
293
3.4.1
SELECTION
OF
THE
STEEL
GRADE
.
293
3.4.2
SURFACE
COATINGS
.
296
3.5
OUTLOOK
.
296
4
INJECTION
MOLDING
.
298
F
JOHANNABER,
A.
KAMINSKI,
W.
SCHONTHALER
4.1
THE
PROBLEM
OF
WEAR
.
298
4.2
INJECTION
MOLDING
MANUFACTURING
PROCESS
.
301
4.2.1
PROCESS
DESCRIPTION
.
301
4.2.2
PREPARING
FOR
PRODUCTION
.
303
4.2.3
INTERRUPTIONS
AND
COMPLETION
OF
PRODUCTION
.
305
4.3
PROCESS-RELATED
LOADS
.
305
4.3.1
INJECTION
UNITS
.
305
4.3.2
INJECTION
MOLDS
.
307
4.4
WEAR
IN
PLASTICATING
UNITS
.
308
4.5
PROTECTION
AGAINST
WEAR
IN
INJECTION
MOLDING
.
317
XII
CONTENTS
4.5.1
PLASTICATING
UNITS
.
317
4.5.1.1
DESIGN
MEASURES
.
318
4.5.1.2
MATERIALS
SELECTION
.
322
4.5.1.3
REMEDIAL
MEASURES
TO
IMPROVE
WEAR
PROTECTION
.
325
4.5.2
MOLDS
.
326
4.6
ECONOMICS
OF
WEAR
PROTECTION
.
332
5
EXTRUSION
.
333
P.
STOMMEL
5.1
PROCESS
DESCRIPTION
.
333
5.1.1
SINGLE-SCREW
EXTRUDERS
.
333
5.1.2
TWIN-SCREW
EXTRUDERS
.
334
5.2
LOADS
ON
THE
PLASTICATING
UNIT
.
336
5.2.1
WEAR
MECHANISMS
.
336
5.2.2
PRACTICAL
EXPERIENCES
AND
OBSERVATIONS
.
337
5.3
REDUCTION
OF
WEAR
AND
REMEDIAL
MEASURES
.
340
5.3.1
MATERIALS
SELECTION
.
340
5.3.1.1
NITRIDED
STEELS
.
343
5.3.1.2
BIMETALLIC
LININGS
AND
HARDFACINGS
.
344
5.3.2
DESIGN
AND
PRODUCTION
METHODS
.
345
5.3.3
PROCESS
ENGINEERING
DEVELOPMENTS
.
347
5.4
REPAIR
OF
PLASTICATING
UNITS
.
350
5.4.1
BARRELS
.
350
5.4.2
SCREWS
.
350
5
5
FACTORS
AFFECTING
THE
SERVICE
LIFE
OF
BARRELS
AND
SCREWS
.
350
5.6
CHECKLIST
FOR
WEAR
ANALYSIS
.
351
5.7
OUTLOOK
.
351
6
REACTION
INJECTION
MOLDING
(RIM)
.
352
W.
DAUSCH
6.1
FILLERS
IN
THE
RRIM
PROCESS
.
352
6.2
EQUIPMENT
FOR
FILLED
MULTI-COMPONENT
SYSTEMS
.
352
6.3
EXPERIMENTS
TO
EVALUATE
ABRASION
IN
THE
MIXING
HEAD
.
355
6.4
CONCLUSIONS
.
357
7
MACHINING
.
358
H.
SCHULZ,
W.
REIMANN
1A
USE
OF
MACHINING
OPERATIONS
.
358
7.2
CUTTING
CRITERIA
.
359
7.2.1
CUTTING
MECHANISMS
.
359
7.2.2
CAUSES
OF
WEAR
.
360
7.2.3
FORMS
AND
EFFECTS
OF
WEAR
.
361
7.2.4
MACHINABILITY
AND
TOOL
LIFE
CHARACTERISTICS
.
362
7.3
CHARACTERISTICS
AND
FORMS
OF
WEAR
FOR
CUTTING
MATERIALS
.
363
7.3.1
HIGH-SPEED
STEEL
.
363
7.3.2
METAL
CARBIDES
.
363
7.3.3
CUTTING
CERAMICS
.
365
7.3.4
POLYCRYSTALLINE
CUTTING
MATERIALS
.
366
7.3.5
NATURAL
DIAMOND
.
367
CONTENTS
XIII
7.4
WEAR
CHARACTERISTICS
OF
MACHINING
OPERATIONS
.
368
7.4.1
TURNING
.
368
7.4.2
MILLING
.
373
7.4.3
DRILLING
.
374
7.5
MEASURES
TO
REDUCE
WEAR
.
376
7.6
OUTLOOK
.
377
VI
DEVELOPMENTAL
TRENDS
.
379
1
PLASTIC
RESINS
.
380
/?.
THEYSOHN
1.1
ADVANCES
AND
NEW
DEVELOPMENTS
.
381
1.2
DEVELOPMENTS
RELATIVE
TO
ABRASIVE
WEAR
.
381
1.2.1
GLASS
FIBER
REINFORCEMENTS
.
381
1.2.1.1
EFFECT
OF
GLASS
FIBER
GEOMETRY
.
381
1.2.1.2
EFFECT
OF
GLASS
FIBER
CONTENT
.
383
1.2.2
OTHER
FIBROUS
REINFORCING
MATERIALS
.
383
1.2.3
GLOBULAR
AND
FLAKE-SHAPED
REINFORCED
FILLERS
.
384
1.2.4
SPECIAL
ADDITIVES
.
385
1.3
DEVELOPMENTS
RELATIVE
TO
CORROSIVE
WEAR
.
386
1.3.1
REACTIVE
FIBER
COATINGS
.
386
1.3.2
CHEMICAL
REACTIONS
DURING
COMPOUNDING
.
386
1.3.3
NEW
POLYMERS
.
388
1.4
CONCLUDING
REMARKS
.
389
2
MATERIALS
FOR
WEAR
PROTECTION
.
390
2.1
METALLIC
MATERIALS
.
390
E.
BAYER,
H.
SEILSTORFER
2.1.1
HIP
MATERIALS
AND
COMPOSITE
COMPONENTS
.
390
2.1.1.1
METHODS
AND
APPLICATIONS
.
390
2.1.1.2
PROCESS
ADVANTAGES
.
393
2.1.1.3
PERFORMANCE
EVALUATION
.
396
2.1.1.4
ECONOMIC
CONSIDERATIONS
.
401
2.1.2
COMPOSITE
FORGING
.
402
2.1.2.1
PROCESS
DESCRIPTION
.
402
2.1.2.2
MATERIALS
SELECTION
.
403
2.1.2.3
PROPERTIES
.
403
2.1.2.4
ECONOMIC
CONSIDERATIONS
.
405
2.2
NONMETALLIC
MATERIALS
-
CERAMICS
.
406
M.
REINHARD
2.2.1
PRODUCTION
OF
SHAPES
.
407
2.2.2
PREVIOUS
FIELDS
OF
APPLICATION
.
407
2.2.3
BEHAVIOR
WITH
RESPECT
TO
WEAR-INTENSIVE
MOLDING
MATERIALS
.
409
2.2.3.1
SOLIDS-CONVEYING-ZONE
.
409
2.2.3.2
MELT
ZONE
.
410
2.2.4
SUITABILITY
FOR
PLASTICS
PROCESSING
MACHINERY
.
410
2.2.4.1
COEFFICIENTS
OF
FRICTION
IN
THE
SOLIDS-CONVEYING
ZONE
.
411
2.2.4.2
WALL
ADHESION
IN
THE
MELT
ZONE
.
412
2.2.5
APPLICATIONS
IN
PLASTICS
PROCESSING
MACHINERY
.
414
XIV
CONTENTS
VII
BIBLIOGRAPHY
.
421
VIII
APPENDIX
.
433
1
ABBREVIATIONS
FOR
PLASTICS
.
434
2
KEY
TO
STEELS
AND
ABBREVIATIONS
FOR
METALS
.
436
SUBJECT
INDEX
.
443 |
any_adam_object | 1 |
author | Mennig, Günter |
author_GND | (DE-588)107281279 |
author_facet | Mennig, Günter |
author_role | aut |
author_sort | Mennig, Günter |
author_variant | g m gm |
building | Verbundindex |
bvnumber | BV009913862 |
callnumber-first | T - Technology |
callnumber-label | TA418 |
callnumber-raw | TA418.4 |
callnumber-search | TA418.4 |
callnumber-sort | TA 3418.4 |
callnumber-subject | TA - General and Civil Engineering |
classification_rvk | ZM 5100 ZM 5250 |
classification_tum | MAS 120f CIT 720f |
ctrlnum | (OCoLC)31412167 (DE-599)BVBBV009913862 |
dewey-full | 620.1/1292 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 620 - Engineering and allied operations |
dewey-raw | 620.1/1292 |
dewey-search | 620.1/1292 |
dewey-sort | 3620.1 41292 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Werkstoffwissenschaften Chemie-Ingenieurwesen Werkstoffwissenschaften / Fertigungstechnik Maschinenbau |
format | Book |
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id | DE-604.BV009913862 |
illustrated | Illustrated |
indexdate | 2024-08-16T01:32:28Z |
institution | BVB |
isbn | 1569901376 3446170715 |
language | German English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-006567597 |
oclc_num | 31412167 |
open_access_boolean | |
owner | DE-91G DE-BY-TUM DE-12 DE-M347 DE-210 DE-1102 |
owner_facet | DE-91G DE-BY-TUM DE-12 DE-M347 DE-210 DE-1102 |
physical | XIV, 452 S. Ill., graph. Darst. |
publishDate | 1995 |
publishDateSearch | 1995 |
publishDateSort | 1995 |
publisher | Hanser Hanser/Gardner |
record_format | marc |
spelling | Mennig, Günter Verfasser (DE-588)107281279 aut Verschleiß in der Kunststoffverarbeitung Wear in plastics processing how to understand, protect, and avoid Günter Mennig Munich u.a. Hanser 1995 Cincinnati Hanser/Gardner XIV, 452 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Mechanical wear Plastics industry and trade Verschleiß (DE-588)4063153-9 gnd rswk-swf Kunststoffverarbeitung (DE-588)4114335-8 gnd rswk-swf Kunststoffverarbeitungsmaschine (DE-588)4125706-6 gnd rswk-swf Kunststoffverarbeitungsmaschine (DE-588)4125706-6 s Verschleiß (DE-588)4063153-9 s DE-604 Kunststoffverarbeitung (DE-588)4114335-8 s DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=006567597&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Mennig, Günter Wear in plastics processing how to understand, protect, and avoid Mechanical wear Plastics industry and trade Verschleiß (DE-588)4063153-9 gnd Kunststoffverarbeitung (DE-588)4114335-8 gnd Kunststoffverarbeitungsmaschine (DE-588)4125706-6 gnd |
subject_GND | (DE-588)4063153-9 (DE-588)4114335-8 (DE-588)4125706-6 |
title | Wear in plastics processing how to understand, protect, and avoid |
title_alt | Verschleiß in der Kunststoffverarbeitung |
title_auth | Wear in plastics processing how to understand, protect, and avoid |
title_exact_search | Wear in plastics processing how to understand, protect, and avoid |
title_full | Wear in plastics processing how to understand, protect, and avoid Günter Mennig |
title_fullStr | Wear in plastics processing how to understand, protect, and avoid Günter Mennig |
title_full_unstemmed | Wear in plastics processing how to understand, protect, and avoid Günter Mennig |
title_short | Wear in plastics processing |
title_sort | wear in plastics processing how to understand protect and avoid |
title_sub | how to understand, protect, and avoid |
topic | Mechanical wear Plastics industry and trade Verschleiß (DE-588)4063153-9 gnd Kunststoffverarbeitung (DE-588)4114335-8 gnd Kunststoffverarbeitungsmaschine (DE-588)4125706-6 gnd |
topic_facet | Mechanical wear Plastics industry and trade Verschleiß Kunststoffverarbeitung Kunststoffverarbeitungsmaschine |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=006567597&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT menniggunter verschleißinderkunststoffverarbeitung AT menniggunter wearinplasticsprocessinghowtounderstandprotectandavoid |