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This book addresses the problems of fracture mechanics of materials
with cracks under the loading directed along the cracks. It
considers two non-classical fracture mechanisms, namely the
fracture of bodies compressed along cracks and the fracture of
materials with initial (residual) stresses acting in parallel to
the surfaces of cracks location, and presents new approaches (also
including combined one) developed in the framework of
three-dimensional linearized mechanics of deformable bodies. It
then discusses the results of studies on two- and three-dimensional
problems for various configurations of crack locations in isotropic
and anisotropic materials, and based on these results, critically
evaluates the accuracy and applicability limits of the "beam
approximation" approach, which is widely used to study various
problems of the fracture of bodies under compression along parallel
cracks.
This book addresses the problems of fracture mechanics of materials
with cracks under the loading directed along the cracks. It
considers two non-classical fracture mechanisms, namely the
fracture of bodies compressed along cracks and the fracture of
materials with initial (residual) stresses acting in parallel to
the surfaces of cracks location, and presents new approaches (also
including combined one) developed in the framework of
three-dimensional linearized mechanics of deformable bodies. It
then discusses the results of studies on two- and three-dimensional
problems for various configurations of crack locations in isotropic
and anisotropic materials, and based on these results, critically
evaluates the accuracy and applicability limits of the "beam
approximation" approach, which is widely used to study various
problems of the fracture of bodies under compression along parallel
cracks.
This book presents an analysis of eight non-classical problems of
fracture and failure mechanics mainly obtained by research in the
department of dynamics and stability of continuum of the S. P.
Timoshenko Institute of Mechanics of the National Academy of
Sciences of Ukraine (NAS of Ukraine). It focusses on the
application of the 3D (three-dimensional) theories of stability,
dynamics, and statics of solid mechanics to the investigation of
non-classical problems of fracture and failure mechanics.
This book presents an analysis of eight non-classical problems of
fracture and failure mechanics mainly obtained by research in the
department of dynamics and stability of continuum of the S. P.
Timoshenko Institute of Mechanics of the National Academy of
Sciences of Ukraine (NAS of Ukraine). It focusses on the
application of the 3D (three-dimensional) theories of stability,
dynamics, and statics of solid mechanics to the investigation of
non-classical problems of fracture and failure mechanics.
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