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Structural Stability in Engineering Practice elucidates the various
problems associated with attaining stability, and provides the
results for practical use by the design engineer. By presenting a
simple and visual description of the physical phenomena, the
authors show how to determine the critical loads of various
structures, such as frames, arches, building structures, trusses
and sandwiches. Special emphasis is given to the post-critical
behaviour - essential for assessing the safety of structures - and
furthermore to the summation theories that make the solution of
complicated stability problems relatively simple.
This publication elucidates the various problems associated with
attaining stability, and provides the results for practical use by
the design engineer. By presenting a simple and visual description
of the physical phenomena, the authors show how to determine the
critical loads of various structures, such as frames, arches,
building structures, trusses and sandwiches. Special emphasis is
given to the post-critical behaviour - essential for assessing the
safety of structures - and furthermore to the summation theories
that make the solution of complicated stability problems relatively
simple. It is a guide for structural design engineers and
researchers who need a good understanding of buckling phenomena. It
should also be a useful text for undergraduate and MSc students on
structural stability courses.
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