Statics and strength of materials:
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Main Author: | |
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Format: | Book |
Language: | English |
Published: |
Boston [u.a.]
Prentice Hall
2010
|
Edition: | 1. ed. |
Subjects: | |
Online Access: | Inhaltsverzeichnis |
Item Description: | Includes index. |
Physical Description: | X, 734 S. zahlr. Ill. und graph. Darst. 1 CD-Rom (12 cm) |
ISBN: | 9780135159828 0135159822 |
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245 | 1 | 0 | |a Statics and strength of materials |c Robert L. Mott |
250 | |a 1. ed. | ||
264 | 1 | |a Boston [u.a.] |b Prentice Hall |c 2010 | |
300 | |a X, 734 S. |b zahlr. Ill. und graph. Darst. |e 1 CD-Rom (12 cm) | ||
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500 | |a Includes index. | ||
650 | 4 | |a Statics | |
650 | 4 | |a Strains and stresses | |
650 | 4 | |a Strength of materials | |
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Record in the Search Index
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adam_text | CONTENTS
Preface vii
Acknowledgments x
1
Basic Concepts in Statics and Strength
of Materials
1
1-1
The Big Picture
—
Uses of Statics and Strength
of Materials
1
1-2
Basic Concepts of Forces, Moments,
and Torques
3
1-3
The Concept of Load Path and Its Relation to
Statics and Strength of Materials
8
1-4
Approaches to Problem Solving
15
1-5
Calculations
16
1-6
Unit Systems
16
1-7
Relationship Among Mass, Force,
and Weight
17
1-8
Sizes of Standard Shapes
19
2
Forces and Free Body Diagrams
30
2-1
The Big Picture
30
2-2
How Forces from Real Systems Are
Represented for Analysis
31
2-3
Components of Forces and Resultants
36
2—4
Forces at Supports
43
2-5
Creating Free Body Diagrams
44
2-6
Building Codes and Bridge Standards
48
3
Static Equilibrium
64
3-1
The Big Picture
64
3-2
Analysis of Static Equilibrium
65
3-3
The Concept of Mechanical Advantage
77
3-4
Pulley Systems
77
4
Forces in Frames, Structures,
and Trusses
93
4-1
The Big Picture
93
4-2
Analysis of Pin-Connected Frames and
Mechanisms
96
4-3
Analysis of Trusses
107
4-4
Equilibrium in Three-Dimensional Frames
and Structures
123
iv
5
Frictional Forces
146
5-1
The Big Picture
146
5-2
Coefficient of Friction
147
5-3
Analysis of Frictional Forces
150
6
Centroids and Moments of Inertia
of Areas
169
6-1
The Big Picture
—
Centroids and Moments
of Inertia of Areas
169
6-2
The Concept of Centroid
—
Simple Shapes
171
6-3
Centroid of Complex Shapes
171
6-4
The Concept of Moment of Inertia
of an Area
174
6-5
Moment of Inertia for Composite Shapes
Whose Parts Have the Same Centroidal
Axis
175
6-6
Moment of Inertia for Composite Shapes
—
General Case
—
Use of the Parallel Axis
Theorem
176
6-7
Mathematical Definition of Moment
of Inertia
178
6-8
Composite Sections Made from Commercially
Available Shapes
179
6-9
Moment of Inertia for Shapes with All
Rectangular Parts
182
6-Ю
Radius of Gyration
182
6-11
Section Modulus
186
7
Basic Concepts in Strength
of Materials
195
7-1
The Big Picture
—
Basic Concepts in Strength
of Materials
195
7-2
Objective of This Book—To Ensure
Safety
196
7-3
The Concept of Stress
200
7-А
Direct Normal Stress
201
7-5
Stress Elements for Direct Normal Stresses
203
7-6
The Concept of Strain
204
7-7
Direct Shear Stress
204
7-8
Stress Elements for Shear Stresses
209
7-9
Experimental and Computational Stress
Analysis
209
Contents
8 Design
Properties of
Materials 221
8-1 The Big
Picture
—Design
Properties
of
Materials 221
8-2
Design Properties of Materials
222
8-3
Steel
233
8-4
Cast Iron
237
8-5
Aluminum
239
8-6
Copper, Brass, and Bronze
240
8-7
Zinc, Magnesium, Titanium, and Nickel-
Based Alloys
240
8-8
Nonmetals in Engineering Design
241
8-9
Wood
241
8-Ю
Concrete
242
8-11
Plastics
244
8-12
Composites
245
8-13
Materials Selection
255
9
Direct Stress, Deformation, and
Design
262
9-1
The Big Picture
—
Direct Stresses
Deformation, and Design
262
9-2
Design of Members Under Direct Tension
or Compression
264
9-3
Design Normal Stresses
265
9-4
Design Factor
265
9-5
Design Approaches and Guidelines for Design
Factors
267
9-6
Methods of Computing Design Stress
270
9-7
Elastic Deformation in Tension and
Compression Members
273
9-8
Deformation Due to Temperature
Changes
278
9-9
Thermal Stress
281
9-10
Members Made of More Than One
Material
283
9-11
Stress Concentration Factors for Direct
Axial Stresses
285
9-12
Bearing Stress
287
9-13
Design Bearing Stress
290
9-14
Design Shear Stress
296
10
Torsionai
Shear Stress and
Torsionai
Deformation
318
10-1
The Big Picture—
Torsionai
Shear Stress
and
Torsionai
Deformation
318
10-2
Torque, Power, and Rotational Speed
321
10-3
Torsionai
Shear Stress in Members with
Circular Cross Sections
323
10-4
Development of the
Torsionai
Shear Stress
Formula
325
10-5
Polar Moment of Inertia for Solid Circular
Bars
326
10-6
Torsionai
Shear Stress and Polar Moment
of Inertia for Hollow Circular Bars
326
10-7
Design of Circular Members Under
Torsion
328
10-8
Comparison of Solid and Hollow Circular
Members
330
10-9
Stress Concentrations in Torsionally Loaded
Members
332
10-10
Twisting
—
Elastic
Torsionai
Deformation
337
10-11
Torsion in Noncircular Sections
344
11
Shearing Forces and Bending Moments
in Beams
355
11-1
The Big Picture
—
Shearing Forces and
Bending Moments in Beams
355
11-2
Beam Loading, Supports, and Types of
Beams
359
11-3
Reactions at Supports
364
11-4
Shearing Forces and Bending Moments
for Concentrated Loads
367
11-5
Guidelines for Drawing Beam Diagrams
for Concentrated Loads
371
11-6
Shearing Forces and Bending Moments
for Distributed Loads
376
11-7
General Shapes Found in Bending Moment
Diagrams
381
11-8
Shearing Forces and Bending Moments for
Cantilever Beams
381
11-9
Beams with Linearly Varying Distributed
Loads
382
11-10
Free Body Diagrams of Parts of Structures
383
11-11
Mathematical Analysis of Beam Diagrams
387
11-12
Continuous Beams
—
Theorem of Three
Moments
393
12
Stress Due to Bending
407
12-1
The Big Picture
—
Stress Due to Bending
407
12-2
The Flexure Formula
409
12-3
Conditions on the Use of the Flexure
Formula
411
12—4
Stress Distribution on a Cross Section of a
Beam
413
12-5
Derivation of the Flexure Formula
414
12-6
Applications
—
Beam Analysis
415
12-7
Applications
—
Beam Design and Design
Stresses
417
VI
Contents
12-8
Section
Modulus
and Design Procedures
419
12-9
Stress Concentrations
424
12-10
Flexural Center or Shear Center
428
12-11
Preferred Shapes for Beam Cross Sections
431
12-12
Design of Beams to Be Made from Composite
Materials
434
13
Shearing Stresses in Beams
454
13-1
The Big Picture
—
Shearing Stresses in
Beams
454
13-2
Importance of Shearing Stresses in Beams
456
13-3
The General Shear Formula
457
13—4
Distribution of Shearing Stress in Beams
462
13-5
Development of the General Shear
Formula
467
13-6
Special Shear Formulas
468
13-7
Design for Shear
471
13-8
Shear Flow
472
14
Deflection of Beams
482
14-1
The Big Picture
—
Deflection of Beams
482
14-2
The Need for Considering Beam
Deflections
485
14—3
General Principles and Definitions
of Terms
487
14-4
Beam Deflections Using the Formula
Method
489
14-5
Comparison of the Manner of Support for
Beams
493
14-6
Superposition Using Deflection Formulas
499
14—7
Successive Integration Method
505
14-8
Moment-Area Method
513
15
Combined Stresses
537
15-1
The Big Picture
—
Combined Stresses
537
15-2
The Stress Element
539
15-3
Stress Distribution Created by Basic
Stresses
540
15-4
Creating the Initial Stress Element
543
15—5
Combined Normal Stresses
545
15-6
Combined Normal and Shear Stresses
550
15—7
Equations for Stresses in Any Direction
554
15-8
Maximum Stresses
556
15-9
Mohr s Circle for Stress
558
15-10
Stress Condition on Selected Planes
569
15-11
Special Case in Which Both Principal Stresses
Have the Same Sign
572
15-12
Use of Strain-Gage Rosettes to Determine
Principal Stresses
575
16
Columns
591
16-1
The Big Picture
—
Columns
591
16-2
Slenderness Ratio
593
16-3
Transition Slenderness Ratio
596
16-4
The
Euler
Formula for Long Columns
597
16—5
The J. B. Johnson Formula for Short
Columns
598
16-6
Summary
—
Buckling Formulas
598
16-7
Design Factors for Columns and Allowable
Load
600
16-8
Summary
—
Method of Analyzing
Columns
600
16-9
Column Analysis Spreadsheet
603
16-10
Efficient Shapes for Column Cross
Sections
603
16-11
Specifications of the AISC
605
16-12
Specifications of the Aluminum
Association
607
16-13
Noncentrally
Loaded Columns
607
17
Pressure Vessels
618
17-1
The Big Picture
—
Pressure Vessels
618
17-2
Distinction Between Thin-Walled and
Thick-Walled Pressure Vessels
620
17-3
Thin-Walled Spheres
620
17-4
Thin-Walled Cylinders
622
17-5
Thick-Walled Cylinders and Spheres
624
17-6
Analysis and Design Procedures for Pressure
Vessels
625
17-7
Spreadsheet Aid for Analyzing Thick-Walled
Spheres and Cylinders
630
17-8
Shearing Stress in Cylinders
and Spheres
631
17-9
Other Design Considerations for Pressure
Vessels
633
17-10
Composite Pressure Vessels
635
18
Connections
639
18-1
The Big Picture—Connections
639
18-2
Modes of Failure for Bolted Joints
641
18-3
Design of Bolted Connections
642
18-4
Riveted Joints
644
18-5
Eccentrically Loaded Riveted and Bolted
Joints
646
18-6
Welded Joints with Concentric Loads
648
Appendix
655
Answers to Selected Problems
712
Index
729
|
any_adam_object | 1 |
author | Mott, Robert L. |
author_facet | Mott, Robert L. |
author_role | aut |
author_sort | Mott, Robert L. |
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building | Verbundindex |
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callnumber-subject | TA - General and Civil Engineering |
classification_rvk | UF 1200 |
ctrlnum | (OCoLC)268789477 (DE-599)BVBBV035591056 |
dewey-full | 620.1/12 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 620 - Engineering and allied operations |
dewey-raw | 620.1/12 |
dewey-search | 620.1/12 |
dewey-sort | 3620.1 212 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Physik |
edition | 1. ed. |
format | Book |
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id | DE-604.BV035591056 |
illustrated | Illustrated |
indexdate | 2024-07-09T21:41:09Z |
institution | BVB |
isbn | 9780135159828 0135159822 |
language | English |
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owner | DE-703 |
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physical | X, 734 S. zahlr. Ill. und graph. Darst. 1 CD-Rom (12 cm) |
publishDate | 2010 |
publishDateSearch | 2010 |
publishDateSort | 2010 |
publisher | Prentice Hall |
record_format | marc |
spelling | Mott, Robert L. Verfasser aut Statics and strength of materials Robert L. Mott 1. ed. Boston [u.a.] Prentice Hall 2010 X, 734 S. zahlr. Ill. und graph. Darst. 1 CD-Rom (12 cm) txt rdacontent n rdamedia nc rdacarrier Includes index. Statics Strains and stresses Strength of materials Statik (DE-588)4056987-1 gnd rswk-swf Statik (DE-588)4056987-1 s DE-604 Digitalisierung UB Bayreuth application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017646277&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Mott, Robert L. Statics and strength of materials Statics Strains and stresses Strength of materials Statik (DE-588)4056987-1 gnd |
subject_GND | (DE-588)4056987-1 |
title | Statics and strength of materials |
title_auth | Statics and strength of materials |
title_exact_search | Statics and strength of materials |
title_full | Statics and strength of materials Robert L. Mott |
title_fullStr | Statics and strength of materials Robert L. Mott |
title_full_unstemmed | Statics and strength of materials Robert L. Mott |
title_short | Statics and strength of materials |
title_sort | statics and strength of materials |
topic | Statics Strains and stresses Strength of materials Statik (DE-588)4056987-1 gnd |
topic_facet | Statics Strains and stresses Strength of materials Statik |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017646277&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT mottrobertl staticsandstrengthofmaterials |