Materials selection in mechanical design:
Gespeichert in:
1. Verfasser: | |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Amsterdam [u.a.]
Elsevier
2009
|
Ausgabe: | 3. ed., reprinted |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XIV, 603 S. Ill., graph. Darst. |
ISBN: | 9780750661683 0750661682 |
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Datensatz im Suchindex
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adam_text | Contents
Preface
xi
Acknowledgements
xii
Features of the Third Edition
xiii
1
Introduction
1
1.1
Introduction and synopsis
2
1.2
Materials in design
2
1.3
The evolution of engineering materials
4
1.4
Case study: the evolution of materials in vacuum cleaners
6
1.5
Summary and conclusions
8
1.6
Further reading
8
2
The design process
11
2.1
Introduction and synopsis
12
2.2
The design process
12
2.3
Types of design
16
2.4
Design tools and materials data
17
2.5
Function, material, shape, and process
19
2.6
Case study: devices to open corked bottles
20
2.7
Summary and conclusions
24
2.8
Further reading
25
3
Engineering materials and their properties
27
3.1
Introduction and synopsis
28
3.2
The families of engineering materials
28
3.3
The definitions of material properties
30
3.4
Summary and conclusions
43
3.5
Further reading
44
4
Material property charts
45
4.1
Introduction and synopsis
46
4.2
Exploring material properties
46
4.3
The material property charts
50
4.4
Summary and conclusions
77
4.5
Further reading
78
5
Materials selection
—
the basics
79
5.1
Introduction and synopsis
80
5.2
The selection strategy
81
5.3
Attribute limits and material indices
85
5.4
The selection procedure
93
vi
Contents
5.5
Computer-aided selection
5.6
The structural index
5.7
Summary and conclusions
5.8
Further reading
6
Materials
selection
—
case
studies
6.1
Introduction and synopsis
6.2
Materials for oars
6.3
Mirrors for large telescopes
6.4
Materials for table legs
6.5
Cost: structural material for buildings
6.6
Materials for flywheels
6.7
Materials for springs
6.8
Elastic hinges and couplings
6.9
Materials for seals
6.10
Deflection-limited design with brittle polymers
6.11
Safe pressure vessels
6.12
Stiff, high damping materials for shaker tables
6.13
Insulation for short-term isothermal containers
6.14
Energy-efficient kiln walls
6.15
Materials for passive solar heating
6.16
Materials to minimize thermal distortion in precision devices
6.17
Nylon bearings for ships rudders
6.18
Materials for heat exchangers
6.19
Materials for radomes
6.20
Summary and conclusions
6.21
Further reading
7
Processes and process selection
7.1
Introduction and synopsis
7.2
Classifying processes
7.3
The processes: shaping, joining, and finishing
7.4
Systematic process selection
7.5
Ranking: process cost
7.6
Computer-aided process selection
7.7
Supporting information
7.8
Summary and conclusions
7.9
Further reading
8
Process selection case studies
8.1
Introduction and synopsis
8.2
Forming a fan
8.3
Fabricating a pressure vessel
8.4
An optical table
8.5
Economical casting
8.6
Computer-based selection: a manifold jacket
99
102
103
104
105
106
106
110
114
117
121
126
130
133
136
140
144
147
151
154
157
160
163
168
172
172
175
176
177
180
195
202
209
215
215
216
219
220
220
223
227
230
232
Contents
vii
8.7 Computer-based
selection: a spark-plug insulator
235
8.8
Summary and conclusions
237
9
Multiple constraints and objectives
239
9.1
Introduction and synopsis
240
9.2
Selection with multiple constraints
241
9.3
Conflicting objectives, penalty-functions, and exchange constants
245
9.4
Summary and conclusions
254
9.5
Further reading
255
Appendix: Traditional methods of dealing with multiple constraints
256
and objectives
10
Case studies
—
multiple constraints and conflicting objectives
261
10.1
Introduction and synopsis
262
10.2
Multiple constraints: con-rods for high-performance engines
262
10.3
Multiple constraints: windings for high-field magnets
266
10.4
Conflicting objectives: casings for a mini-disk player
272
10.5
Conflicting objectives: materials for a disk-brake caliper
276
10.6
Summary and conclusions
281
11
Selection of material and shape
283
11.1
Introduction and synopsis
284
11.2
Shape factors
285
11.3
Microscopic or micro-structural shape factors
296
11.4
Limits to shape efficiency
301
11.5
Exploring and comparing structural sections
305
11.6
Material indices that include shape
307
11.7
Co-selecting material and shape
312
11.8
Summary and conclusions
314
11.9
Further reading
316
12
Selection of material and shape: case studies
317
12.1
Introduction and synopsis
318
12.2
Spars for man-powered planes
319
12.3
Ultra-efficient springs
322
12.4
Forks for a racing bicycle
326
12.5
Floor joists: wood, bamboo or steel?
328
12.6
Increasing the stiffness of steel sheet
331
12.7
Table legs again: thin or light?
333
12.8
Shapes that flex: leaf and strand structures
335
12.9
Summary and conclusions
337
13
Designing hybrid materials
339
13.1
Introduction and synopsis
340
13.2
Filling holes in material-property space
342
13.3
The method: A
+
В
+
configuration
+
scale
346
13.4
Composites: hybrids of type
1 348
viii Contents
13.5 Sandwich
structures:
hybrids of type
2 358
13.6
Lattices: hybrids of type
3 363
13.7
Segmented structures: hybrids of type
4 371
13.8
Summary and conclusions
376
13.9
Further reading
376
14
Hybrid case studies
379
14.1
Introduction and synopsis
380
14.2
Designing metal matrix composites
380
14.3
Refrigerator walls
382
14.4
Connectors that do not relax their grip
384
14.5
Extreme combinations of thermal and electrical conduction
386
14.6
Materials for microwave-transparent enclosures
389
14.7
Exploiting anisotropy: heat spreading surfaces
391
14.8
The mechanical efficiency of natural materials
393
14.9
Further reading: natural materials
399
15
Information and knowledge sources for design
401
15.1
Introduction and synopsis
402
15.2
Information for materials and processes
403
15.3
Screening information: structure and sources
407
15.4
Supporting information: structure and sources
409
15.5
Ways of checking and estimating data
411
15.6
Summary and conclusions
415
15.7
Further reading
416
16
Materials and the environment
417
16.1
Introduction and synopsis
418
16.2
The material life cycle
418
16.3
Material and energy-consuming systems
419
16.4
The eco-attributes of materials
422
16.5
Eco-selection
427
16.6
Case studies: drink containers and crash barriers
433
16.7
Summary and conclusions
435
16.8
Further reading
436
17
Materials and industrial design
439
17.1
Introduction and synopsis
440
17.2
The requirements pyramid
440
17.3
Product character
442
17.4
Using materials and processes to create product personality
445
17.5
Summary and conclusions
454
17.6
Further reading
455
18
Forces for change
457
18.1
Introduction and synopsis
458
18.2
Market-pull and science-push
458
18.3
Growing population and wealth, and market saturation
464
Contents
ЇХ
18.4
Product
liability and service provision
465
18.5
Miniaturization and multi-functionality
466
18.6
Concern for the environment and for the individual
467
18.7
Summary and conclusions
469
18.8
Further reading
469
Appendix A Useful solutions to standard problems
471
Introduction and synopsis
473
A.I Constitutive equations for mechanical response
474
A.2 Moments of sections
476
A.3 Elastic bending of beams
478
A.4 Failure of beams and panels
480
A.5 Buckling of columns, plates, and shells
482
A.
6
Torsion of shafts
484
A.7 Static and spinning disks
486
A.8 Contact stresses
488
A.9 Estimates for stress concentrations
490
A.
10
Sharp cracks
492
A.
11
Pressure vessels
494
A.
12
Vibrating beams, tubes, and disks
496
A.
13
Creep and creep fracture
498
A.
14
Flow of heat and matter
500
A.
15
Solutions for diffusion equations
502
A.
16
Further reading
504
Appendix
В
Material indices
507
B.I Introduction and synopsis
508
B.2 Use of material indices
508
Appendix
С
Data and information for engineering materials
513
C.I Names and applications: metals and alloys
514
C.2 Names and applications: polymers and foams
515
C.3 Names and applications: composites, ceramics, glasses, and
natural materials
516
C.4 Melting temperature, Tm, and glass temperature, Tg
518
C.5 Density,
ρ
520
C.6 Young s modulus,
E
522
C.7 Yield strength,
σγ,
and tensile strength, ats
524
C.8 Fracture toughness (plane-strain), K1C
526
C.9 Thermal conductivity,
λ
528
CIO Thermal expansion, a
530
C.ll Approximate production energies and CO2 burden
532
C.12 Environmental resistance
534
χ
Contents
Appendix D Information
and knowledge sources for materials and processes
537
D.I Introduction
538
D.2 Information sources for materials
538
D.3 Information for manufacturing processes
552
D.4 Databases and expert systems in software
553
D.5 Additional useful internet sites
554
D.6 Supplier registers, government organizations, standards and
professional societies
555
Appendix
E
Exercises
557
E.I Introduction to the exercises
558
E.2 Devising concepts
559
E.3 Use of material selection charts
559
E.4 Translation: constraints and objectives
562
E.5 Deriving and using material indices
565
E.6 Selecting processes
574
E.7 Multiple constraints and objectives
579
E.8 Selecting material and shape
587
E.9 Hybrid materials
594
Index
599
|
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author | Ashby, Michael F. 1935- |
author_GND | (DE-588)128979690 |
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discipline | Physik Werkstoffwissenschaften Werkstoffwissenschaften / Fertigungstechnik Maschinenbau |
edition | 3. ed., reprinted |
format | Book |
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spelling | Ashby, Michael F. 1935- Verfasser (DE-588)128979690 aut Materials selection in mechanical design Michael F. Ashby 3. ed., reprinted Amsterdam [u.a.] Elsevier 2009 XIV, 603 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Fachsprache (DE-588)4016216-3 gnd rswk-swf Englisch (DE-588)4014777-0 gnd rswk-swf Werkstoffwahl (DE-588)4136338-3 gnd rswk-swf Konstruieren (DE-588)4139312-0 gnd rswk-swf 1\p (DE-588)4144384-6 Beispielsammlung gnd-content 2\p (DE-588)4123623-3 Lehrbuch gnd-content Konstruieren (DE-588)4139312-0 s Werkstoffwahl (DE-588)4136338-3 s DE-604 Englisch (DE-588)4014777-0 s Fachsprache (DE-588)4016216-3 s 3\p DE-604 Digitalisierung UB Bayreuth application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=018706867&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 3\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Ashby, Michael F. 1935- Materials selection in mechanical design Fachsprache (DE-588)4016216-3 gnd Englisch (DE-588)4014777-0 gnd Werkstoffwahl (DE-588)4136338-3 gnd Konstruieren (DE-588)4139312-0 gnd |
subject_GND | (DE-588)4016216-3 (DE-588)4014777-0 (DE-588)4136338-3 (DE-588)4139312-0 (DE-588)4144384-6 (DE-588)4123623-3 |
title | Materials selection in mechanical design |
title_auth | Materials selection in mechanical design |
title_exact_search | Materials selection in mechanical design |
title_full | Materials selection in mechanical design Michael F. Ashby |
title_fullStr | Materials selection in mechanical design Michael F. Ashby |
title_full_unstemmed | Materials selection in mechanical design Michael F. Ashby |
title_short | Materials selection in mechanical design |
title_sort | materials selection in mechanical design |
topic | Fachsprache (DE-588)4016216-3 gnd Englisch (DE-588)4014777-0 gnd Werkstoffwahl (DE-588)4136338-3 gnd Konstruieren (DE-588)4139312-0 gnd |
topic_facet | Fachsprache Englisch Werkstoffwahl Konstruieren Beispielsammlung Lehrbuch |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=018706867&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT ashbymichaelf materialsselectioninmechanicaldesign |