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The Resource The fatigue strength of transverse fillet welded joints : a study of the influence of joint geometry, T.R. Gurney

The fatigue strength of transverse fillet welded joints : a study of the influence of joint geometry, T.R. Gurney

Label
The fatigue strength of transverse fillet welded joints : a study of the influence of joint geometry
Title
The fatigue strength of transverse fillet welded joints
Title remainder
a study of the influence of joint geometry
Statement of responsibility
T.R. Gurney
Creator
Subject
Language
eng
Summary
This report is the result of a major study on the influence of both main plate thickness and of attachment size on the fatigue strength of joints with transverse non-load-carrying fillet welds. In particular, it defines the extent to which the size of the attachment might influence the thickness effect in such joints. Through a whole range of different tests, the study confirms that the present thickness effect correction for certain types of joint is too severe
Member of
Cataloging source
E7B
Illustrations
illustrations
Index
no index present
Literary form
non fiction
Nature of contents
  • dictionaries
  • bibliography
Series statement
Woodhead Publishing Series in Welding and Other Joining Technologies
The fatigue strength of transverse fillet welded joints : a study of the influence of joint geometry, T.R. Gurney
Label
The fatigue strength of transverse fillet welded joints : a study of the influence of joint geometry, T.R. Gurney
Link
http://libproxy.rpi.edu/login?url=http://www.sciencedirect.com/science/book/9781855730663
Publication
Copyright
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Bibliography note
Includes bibliographical references
Carrier category
online resource
Carrier category code
cr
Carrier MARC source
rdacarrier
Color
multicolored
Content category
text
Content type code
txt
Content type MARC source
rdacontent
Contents
  • Front Cover; The Fatigue Strength of Transverse Fillet Welded Joints: A Study of the Influence of Joint Geometry; Copyright Page; Table of Contents; PREFACE; NOMENCLATURE; SUMMARY; CHAPTER 1. INTRODUCTION; CHAPTER 2. FRACTURE MECHANICS CALCULATIONS; 2.1Introduction; 2.2. Theoretical Background and Assumptions; 2.3. Results of Analyses; 2.4. General Discussion; CHAPTER 3. FATIGUE TESTS; 3.1. Test Programme; 3.2. Test Specimens; 3.3. Materials; 3.4. Specimen Fabrication; 3.5. Method of Testing; CHAPTER 4. FATIGUE TEST RESULTS AND DISCUSSION; 4.1Stress Relieved Specimens Under Axial Loading
  • 4.2As-welded Specimens Under Axial Loading4.3As-welded Specimens Tested Under Four-point Bending; 4.4. Analysis in Terms of Attachment Length and Apparent Thickness, Axially Loaded Specimens; 4.5 Analysis in Terms of Attachment Length and Apparent Thickness. Specimens Tested in Bending; CHAPTER5. OUTCOME OF THE WORK; 5.1. Design Implications; 5.2. Recommendations; CHAPTER 6. CONCLUSIONS; CHAPTER 7. ACKNOWLEDGEMENTS; CHAPTER 8. REFERENCES; TABLE; FIGURE; APPENDIX
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Dimensions
unknown
http://library.link/vocab/discovery_link
{'f': 'http://opac.lib.rpi.edu/record=b4171033'}
Extent
1 online resource (105 pages)
Form of item
online
Isbn
9780857093257
Media category
computer
Media MARC source
rdamedia
Media type code
c
Other physical details
illustrations, tables.
Specific material designation
remote

Library Locations

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      42.729766 -73.682577
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