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This textbook consists primarily of notes by Iain Finnie who taught
a popular course on fracture mechanics at the University of
California at Berkeley. It presents a comprehensive and detailed
exposition of fracture, the fundamentals of fracture mechanics and
procedures for the safe design of engineering components made from
metal alloys, brittle materials like glasses and ceramics, and
composites. Interesting and practical problems are listed at the
end of most chapters to give the student practice in applying the
theory. A solutions manual is provided to the instructor. The text
presents a unified perspective of fracture with a strong
fundamental foundation and practical applications. In addition to
its role as a text, this reference would be invaluable for the
practicing engineer who is involved in the design and evaluation of
components that are fracture critical. This book also: Presents
details of derivations of the basic equations of fracture mechanics
and the historical context of the development of fracture theory
and methodology Treats linear and nonlinear fracture mechanics
methodologies beginning with a review of the basic equations of
solid mechanics followed by solutions useful in fracture prediction
Illustrates the basis of linear elastic fracture mechanics (LEFM),
practical applications of LEFM in the design of fracture-tolerant
structural components Offers interesting, practical, classroom
proven problems at the end of most chapters Includes instructor's
solutions manual
The title provides a comprehensive study of the slitting method for
residual stress measurement, including analysis, computation,
measurement, and estimation. It discusses different roles of
residual stresses from the fracture mechanics perspective. Since
its initial development in mid-1980, the slitting method has found
increasing applications in many configurations that would be very
difficult for traditional techniques. This work introduces students
to the concepts of residual stresses and their measurement with
examples and provides engineers with detailed procedures in
computation and experiment for implementing methods. Researchers
will also benefit from the detailed coverage of the elements of the
analysis and computation.
This book provides complete coverage of the slitting method. It
details new results in analysis, computation, and estimation and
discusses different roles of residual stresses from the fracture
mechanics perspective. It provides detailed formulations and
examples of compliance functions, weighted least squares fit and
convergence test in stress estimation, and computer programs to
facilitate the implementation of the slitting method.
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