Showing posts with label experiment. Show all posts
Showing posts with label experiment. Show all posts

Sunday, July 31, 2011

Dynamics With Friction: Modelling, Analysis and Experiment (Series on Stability, Vibration and Control of Systems, Series B, Vol 7) (Pt. 2)

Dynamics With Friction: Modelling, Analysis and Experiment (Series on Stability, Vibration and Control of Systems, Series B, Vol 7) (Pt. 2) Review


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Dynamics With Friction: Modelling, Analysis and Experiment (Series on Stability, Vibration and Control of Systems, Series B, Vol 7) (Pt. 2) Feature

The dynamics of dissipative mechanical and structural systems is being investigated at various institutions and laboratories worldwide with ever-increasing sophistication of modelling, analysis and experiments. This book offers a collection of contributions from these research centres that represent the state-of-the-art in the study of friction oscillators. It provides the reader with the fruits of a team effort by leaders in this fascinating field. The present part 2 of this volume on dynamics with friction is a continuation of the previous part 1, and is designed to help synthesize our current knowledge regarding the role of friction in mechanical and structural systems as well as everyday life. The topics covered include interaction of vibration and friction at dry sliding contacts, friction-induced instability in disks, dynamics of lubricated flexible links in kinematic chains, modal interactions in periodic structures, dynamics of an experimentally excited beam, transient waves in viscoelastic materials, dynamic stability of plates with damping, friction modelling and dynamic computation, damping through use of passive and semi-active dry friction forces. This book gives a comprehensive picture of dynamics of dissipative mechanical and structural systems. It also gives an up-to-date account of the present state of the field. It should be of interest to engineers, rheologists, material scientists, applied mathematicians, physicists and historians of science and technology.


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Wednesday, December 15, 2010

Fracture and Damage in Quasibrittle Structures: Experiment, modeling and computation

Fracture and Damage in Quasibrittle Structures: Experiment, modeling and computation Review


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Fracture and Damage in Quasibrittle Structures: Experiment, modeling and computation Feature

Understanding of failure of quasibrittle materials is of paramount importance in many engineering fields. This subject has become a broad and important field of considerable mathematical complexity, with many competing models and unsolved problems. Attention in this volume focuses on concrete, rock, masonry, toughened ceramics, ice and other quasibrittle materials characterized by the development of large zones of cracking or other microstructural damage, and its localization into major fractures.


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