Advanced strength and applied elasticity:
Gespeichert in:
Hauptverfasser: | , |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Upper Saddle River, NJ
Prentice Hall
2008
|
Ausgabe: | 4. ed., 11. printing |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis Klappentext |
Beschreibung: | Includes bibliographical references (p. 528-532) and index |
Beschreibung: | XIV, 544 S. graph. Darst. |
ISBN: | 0130473928 |
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245 | 1 | 0 | |a Advanced strength and applied elasticity |c Ansel C. Ugural ; Saul K. Fenster |
250 | |a 4. ed., 11. printing | ||
264 | 1 | |a Upper Saddle River, NJ |b Prentice Hall |c 2008 | |
300 | |a XIV, 544 S. |b graph. Darst. | ||
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Datensatz im Suchindex
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adam_text | Contents
Pieface
to the Fourth Edition
ix
List of Symbols
xiii
Chapter
1
Analysis of Stress
1
1.1
Introduction
1
1.2
Scope of Treatment
2
1.3
Definition of Stress
4
1.4
Components of Stress: Stress Tensor
5
1.5
Some Special Cases of Stress
8
1.6
Internal Force-Resultant and Stress Relations
9
1.7
Stresses on Inclined Planes in an Axially Loaded Member
11
1.8
Variation of Stress within a Body
14
1.9
Two-Dimensional Stress at a Point
17
1.10
Principal Stresses and Maximum Shear Stress in Two Dimensions
19
1.11
Mohr s Circle for Two-Dimensional Stress
20
1.12
Three-Dimensional Stress at a Point
26
1.13
Principal Stresses in Three Dimensions
29
1.14
Normal and Shear Stresses on an Oblique Plane
32
1.15
Mohr s Circle for Three-Dimensional Stress
34
L16 Boundary Conditions in Terms of Surface Forces
37
Problems
38
Chapter
2
Stram
and Stress-Strain Relations
51
2.1
Introduction
51
2.2
Deformation
51
23
Strain Defined
52
2.4
Equations of Compatibility
56
2.5
State of Strain at a Point
57
2.6
Engineering Materials
63
2.7
Stress-Strain Diagrams
64
2.8
Hooke s Law and Poisson s Ratio
66
2.9
Generalized Hooke s Law
69
2.10
Measurement of Strain: Bonded Strain Gages
72
2.11
Strain Energy
75
2.12
Strain Energy in Common Structural Members
78
2.13
Components of Strain Energy
81
2.14
Saint-Venant s Principle
83
Problems
84
Chapter
3
Two-Dimensional Problems in Elasticity
95
3.1
Introduction
95
3.2
Fundamental Principles of Analysis
96
Part A
—
Formulation and Methods of Solution
97
3.3
Plane Strain Problems
97
3.4
Plane Stress Problems
99
3.5
Airy s Stress Function
102
3.6
Solution of Elasticity Problems
103
3.7
Thermal Stresses
108
3.8
Basic Relations in Polar Coordinates
112
Part
В
—
Stress Concentrations
117
3.9
Stresses Due to Concentrated Loads
117
3.10
Stress Distribution near Concentrated Load Acting on a Beam
121
3.11
Stress Concentration Factors
123
3.12
Neuber s Diagram
127
3.13
Contact Stresses
129
Problems
136
Chapter
4
Failure Criteria
145
4.1
Introduction
145
4.2
Failure
145
4.3
Failure by Yielding
146
4.4
Failure by Fracture
148
4^
Yield and Fracture Criteria
151
4.6
Maximum Shearing Stress Theory
152
4.7
Maximum Distortion Energy Theory
153
4.8
Octahedral Shearing Stress Theory
154
4.9
Comparison of the Yielding Theories
157
4.10
Maximum Principal Stress Theory
158
4.11
Mohr s Theory
159
4.12
Coulomb-Mohr Theory
160
4.13
Introductory Fracture Mechanics
163
4.14
Failure Criteria for Metal Fatigue
167
4.15
Fatigue Life under Combined Loading
170
4.16
Impact or Dynamic Loads
172
4.17
Dynamic and Thermal Effects
175
Problems
177
Contents
Chapters Bending of Beams
184
5.1
Introduction
184
Part A—Exact Solutions
184
5.2
Pure Bending of Beams of Symmetrical Cross Section
184
5.3
Pure Bending of Beams of Asymmetrical Cross Section
188
5.4
Bending of a Cantilever of Narrow Section
192
5.5
Bending of a Simply Supported, Narrow Beam
195
Part
В
—
Approximate Solutions
197
5.6
Elementary Theory of Bending
197
5.7
Bending and Shearing Stresses
201
5.8
Effect of Transverse Normal Stress
204
5.9
Composite Beams
206
5.10
Shear Center
212
5.11
Statically Indeterminate Systems
216
5.12
Energy Method for Deflections
219
Part C—Curved Beams
221
5.13
Exact Solution
221
5.14
Tangential Stress. Winkler s Theory
224
5.15
Combined Tangential and Normal Stresses
228
Problems
231
Chapter
6
Torsion of Prismatic Bars
240
6.1
Introduction
240
6.2
Elementary Theory of Torsion of Circular Bars
241
6.3
General Solution of the Torsion Problem
244
6.4
Prandtl s Stress Function
246
6.5
Prandtl s Membrane Analogy
252
6.6
Torsion of Thin-Walled Members of Open Cross Section
256
6.7
Torsion of Multiply Connected Thin-Walled Sections
258
6.8
Fluid Flow Analogy and Stress Concentration
262
6.9
Torsion of Restrained Thin-Walled Members of Open Cross Section
264
6.10
Curved Circular Bars: Helical Springs
267
Problems
270
Chapter
7
Numerical Methods
275
7.1
Introduction
275
7.2
Finite Differences
276
7.3
Finite Difference Equations
279
7.4
Curved Boundaries
281
7.5
Boundary Conditions
284
7.6
Finite Element Method
288
7.7
Properties of a Finite Element
289
7.8
Formulation of the Finite Element Method
291
7.9
Triangular Finite Element
295
Contents
7.10
Use of Digital Computers
308
Problems 309
Chapter
8
Axisymmetrically Loaded Members
314
8.1
Introduction
314
8.2
Thick-Walled Cylinders
315
8.3
Maximum Tangential Stress
320
8.4
Application of Failure Theories
321
8.5
Compound Cylinders
322
8.6
Rotating Disks of Constant Thickness
325
8.7
Rotating Disks of Variable Thickness
330
8.8
Rotating Disks of Uniform Stress
333
8.9
Thermal Stresses in Thin Disks
334
8.10
Thermal Stress in Long Circular Cylinders
336
8.11
Finite Element Solution
340
8.12
Formulation of Axisymmetric Element
341
Problems
344
Chapter
9
Beams on Elastic Foundations
349
9.1
Introduction
349
92
General Theory
349
93
Infinite Beams
350
9.4
Semi-Infinite Beams
355
9.5
Finite Beams: Classification of Beams
358
9.6
Beams Supported by Equally Spaced Elastic Elements
359
9.7
Simplified Solutions for Relatively Stiff Beams
361
9.8
Solution by Finite Differences
362
9.9
Applications
364
Problems
366
Chapter
10
Energy Methods
369
10.1
Introduction
369
10.2
Work Done in Deformation
369
103
Reciprocity Theorem
370
10.4
Castigliano s Theorem
372
10.5
Unit or Dummy Load Method
378
10.6
Crotti-Engesser Theorem
380
10.7
Statically Indeterminate Systems
382
10.8
Principle of Virtual Work
384
10.9
Principle of Minimum Potential Energy
385
10.10
Application of Trigonometric Series
387
10.11
Rayleigh-Ritz Method
391
Problems
394
Contents
Chapter
11
Elastic Stability
401
11.1
Introduction
401
11.2
Critical Load
401
11.3
Buckling of a Column
403
11.4
End Conditions
405
11.5
Critical Stress in a Column
406
11.6
Allowable Stress
408
11.7
Initially Curved Members
410
11.8
Eccentrically Loaded Columns: Secant Formula
411
11.9
Energy Methods Applied to Buckling
413
11.10
Solution by Finite Differences
420
11.11
Finite Difference Solution for Unevenly Spaced Nodes
425
Problems
426
Chapter
12
Plastic Behavior of Materials
433
12.1
Introduction
433
12.2
Plastic Deformation
434
12.3
True Stress-True Strain Curve in Simple Tension
434
12.4
Instability in Simple Tension
436
12.5
Plastic Deflection of Beams
438
12.6
Analysis of Perfectly Plastic Beams
440
12.7
Collapse Load of Structures
447
12.8
Elastic-Plastic Torsion
451
12.9
Elastic-Plastic Stresses in Rotating Disks
453
12.10
Plastic Stress-Strain Relations
455
12.11
Plastic Stress-Strain Increment Relations
461
12.12
Stresses in Perfectly Plastic Thick-Walled Cylinders
464
Problems
468
Chapter
13
Plates and Shells
472
Part A—Bending of Thin Plates
472
13.1
Basic Assumptions
472
13.2
Strain-Curvature Relations
473
133
Stress, Curvature, and Moment Relations
475
13.4
Governing Equations of Plate Deflection
476
13.5
Boundary Conditions
478
13.6
Simply Supported Rectangular Plates
481
13.7
Axisymmetrically Loaded Circular Plates
483
13.8
Deflections of Rectangular Plates by the Strain Energy Method
486
13.9
Finite Element Solution
488
Part B—Membrane Stresses in Thin Shells
491
13.10
Basic Assumptions
491
13.11
Simple Membrane Action
491
13.12
Symmetrically Loaded Shells of Revolution
493
Contents
13.13
Some Common Cases of Shells of Revolution
495
13.14
Cylindrical Shells of General Shape
497
Problems
500
Appendix
A Indiciai
Notation
503
Appendix
В
Solution of the Stress Cubic Equation
505
B.1 Principal Stresses
505
B.2 Direction Cosines
506
AppendixC Moments of Composite Areas
510
C.1 Centroid
510
C.2 Moments of Inertia
513
C.3 Parallel-Axis Theorem
514
C.4 Principal Moments of Inertia
517
Appendix
D
Tables
523
D.I Average Properties of Common Engineering Materials
524
D.2 Conversion Factors: SI Units to U.S. Customary Units
526
Ό3
SI Unit Prefixes
526
D.4 Deflections and Slopes of Beams
527
References
528
Answers to Selected Problems
533
Index
541
Contents
«ШИН
STRENGTH
ц
f
ivi
ι Η ι
FOURTH EDITION
This systematic exploration of real-world stress analysis has been completely revised
and updated to reflect state-of-the-art methods and applications now in use throughout the
fields of aeronautical, civil, and mechanical engineering and engineering mechanics.
Distinguished by its exceptional visual interpretations of the solutions, the book offers an
in-depth coverage of the subjects for students and practicing engineers. The authors carefully
balance comprehensive treatments of solid mechanics, elasticity, and computer-oriented
numerical methods. In addition, a wide range of fully worked illustrative examples and
extensive problem sets
—
many taken directly from engineering practice
—
have been
incorporated.
Key additions to the Fourth Edition of this highly acclaimed textbook are materials dealing
with failure theories, fracture mechanics, compound cylinders, numerical approaches, energy
and variational methods, buckling of stepped columns, common shell types, and more.
Contents include: stress, strain and stress-strain relations, problems in elasticity, static and
dynamic failure criteria, bending of beams and torsion of bars, finite difference and finite
element methods, axisymmetricalk/ loaded members, beams on elastic foundations, energy
methods, elastic stability, plastic behavior of materials, stresses in plates and shells, and
selected references to expose readers to the latest information in the field.
ABOUT THE AUTHORS
ANSEL
С
UGURAL, Ph.D., is Research Professor at New Jersey Institute of Technology.
He has held various faculty and administrative positions at Fairleigh Dickinson University,
and he taught at the University of Wisconsin. Ugural has considerable industry experience in
both full-time and consulting capacities. A member of several professional societies, he
is the author of the books Mechanics of Materials, Stresses in Plates and Shells, and
Mechanical Design: An Integrated Approach.
SAUL K.
FENSTER,
Ph.D., is Professor at New Jersey Institute of Technology, where he
served as a president for over two decades. In addition to industry experience, he has held
varied positions at Fairleigh Dickinson University and taught at the City University of New
York.
Fenster,
a Fellow of the American Society of Mechanical Engineers and the American
Society for Engineering Education, is coouthor of a text on mechanics.
|
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building | Verbundindex |
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classification_rvk | UF 3000 |
ctrlnum | (OCoLC)241056271 (DE-599)BVBBV035227527 |
dewey-full | 620.1123 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 620 - Engineering and allied operations |
dewey-raw | 620.1123 |
dewey-search | 620.1123 |
dewey-sort | 3620.1123 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Physik |
edition | 4. ed., 11. printing |
format | Book |
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id | DE-604.BV035227527 |
illustrated | Illustrated |
indexdate | 2024-07-09T21:29:04Z |
institution | BVB |
isbn | 0130473928 |
language | English |
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physical | XIV, 544 S. graph. Darst. |
publishDate | 2008 |
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publisher | Prentice Hall |
record_format | marc |
spelling | Ugural, Ansel C. Verfasser aut Advanced strength and applied elasticity Ansel C. Ugural ; Saul K. Fenster 4. ed., 11. printing Upper Saddle River, NJ Prentice Hall 2008 XIV, 544 S. graph. Darst. txt rdacontent n rdamedia nc rdacarrier Includes bibliographical references (p. 528-532) and index Elasticity Strength of materials Elastomechanik (DE-588)4014161-5 gnd rswk-swf Festkörpermechanik (DE-588)4129367-8 gnd rswk-swf Elastizität (DE-588)4014159-7 gnd rswk-swf Festigkeitslehre (DE-588)4016917-0 gnd rswk-swf Festigkeitslehre (DE-588)4016917-0 s Elastomechanik (DE-588)4014161-5 s Elastizität (DE-588)4014159-7 s 1\p DE-604 Festkörpermechanik (DE-588)4129367-8 s 2\p DE-604 Fenster, Saul K. Verfasser aut Digitalisierung UB Bayreuth application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017033529&sequence=000003&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis Digitalisierung UB Bayreuth application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017033529&sequence=000004&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA Klappentext 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 |
spellingShingle | Ugural, Ansel C. Fenster, Saul K. Advanced strength and applied elasticity Elasticity Strength of materials Elastomechanik (DE-588)4014161-5 gnd Festkörpermechanik (DE-588)4129367-8 gnd Elastizität (DE-588)4014159-7 gnd Festigkeitslehre (DE-588)4016917-0 gnd |
subject_GND | (DE-588)4014161-5 (DE-588)4129367-8 (DE-588)4014159-7 (DE-588)4016917-0 |
title | Advanced strength and applied elasticity |
title_auth | Advanced strength and applied elasticity |
title_exact_search | Advanced strength and applied elasticity |
title_full | Advanced strength and applied elasticity Ansel C. Ugural ; Saul K. Fenster |
title_fullStr | Advanced strength and applied elasticity Ansel C. Ugural ; Saul K. Fenster |
title_full_unstemmed | Advanced strength and applied elasticity Ansel C. Ugural ; Saul K. Fenster |
title_short | Advanced strength and applied elasticity |
title_sort | advanced strength and applied elasticity |
topic | Elasticity Strength of materials Elastomechanik (DE-588)4014161-5 gnd Festkörpermechanik (DE-588)4129367-8 gnd Elastizität (DE-588)4014159-7 gnd Festigkeitslehre (DE-588)4016917-0 gnd |
topic_facet | Elasticity Strength of materials Elastomechanik Festkörpermechanik Elastizität Festigkeitslehre |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017033529&sequence=000003&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017033529&sequence=000004&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT uguralanselc advancedstrengthandappliedelasticity AT fenstersaulk advancedstrengthandappliedelasticity |