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This book presents selected papers presented at the 8th
International Conference "Design, Modeling and Experiments of
Advanced Structures and Systems" (DeMEASS VIII, held in Moscow,
Russia in May 2017) and reflects the modern state of sciences in
this field. The contributions contain topics like Piezoelectric,
Ferroelectric, Ferroelastic and Magnetostrictive Materials, Shape
Memory Alloys and Active Polymers, Functionally Graded Materials,
Multi-Functional Smart Materials and Structures, Coupled
Multi-Field Problems, Design and Modeling of Sensors and Actuators,
Adaptive Structures.
This book presents selected papers presented at the 8th
International Conference "Design, Modeling and Experiments of
Advanced Structures and Systems" (DeMEASS VIII, held in Moscow,
Russia in May 2017) and reflects the modern state of sciences in
this field. The contributions contain topics like Piezoelectric,
Ferroelectric, Ferroelastic and Magnetostrictive Materials, Shape
Memory Alloys and Active Polymers, Functionally Graded Materials,
Multi-Functional Smart Materials and Structures, Coupled
Multi-Field Problems, Design and Modeling of Sensors and Actuators,
Adaptive Structures.
Thermal Stress Analysis of Composite Beams, Plates and Shells:
Computational Modelling and Applications presents classic and
advanced thermal stress topics in a cutting-edge review of this
critical area, tackling subjects that have little coverage in
existing resources. It includes discussions of complex problems,
such as multi-layered cases using modern advanced computational and
vibrational methods. Authors Carrera and Fazzolari begin with a
review of the fundamentals of thermoelasticity and thermal stress
analysis relating to advanced structures and the basic mechanics of
beams, plates, and shells, making the book a self-contained
reference. More challenging topics are then addressed, including
anisotropic thermal stress structures, static and dynamic responses
of coupled and uncoupled thermoelastic problems, thermal buckling,
and post-buckling behavior of thermally loaded structures, and
thermal effects on panel flutter phenomena, amongst others.
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