Stress Wave Analysis for Resonant Ultrasound Spectroscopy with Consideration of Anisotropy and Viscoelasticity

Stress Wave Analysis for Resonant Ultrasound Spectroscopy with Consideration of Anisotropy and Viscoelasticity
Title Stress Wave Analysis for Resonant Ultrasound Spectroscopy with Consideration of Anisotropy and Viscoelasticity PDF eBook
Author 沈大衛
Publisher
Pages 194
Release 2013
Genre
ISBN

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Analysis of Resonant Ultrasound Spectroscopy as a Technique to Evaluate Material Property Changes

Analysis of Resonant Ultrasound Spectroscopy as a Technique to Evaluate Material Property Changes
Title Analysis of Resonant Ultrasound Spectroscopy as a Technique to Evaluate Material Property Changes PDF eBook
Author Gautham Manoharan
Publisher
Pages 67
Release 2017
Genre
ISBN

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The objective of this thesis is to validate Resonant Ultrasound Spectroscopy (RUS) as a non-destructive evaluation tool that can be used to study effects of radiation on the mechanical properties of a material, mainly its elastic constants. RUS involves experimentally measuring the resonant frequencies of a sample and calculating the elastic constants based on these measurements. Finite Element Method (FEM) is used to get the frequencies of the modes of free vibration for the sample model. This result depends on the elastic constant values used in the FEM simulation. Studies were conducted to confirm the accuracy of the FEM model, and determine the right configuration and parameters to use for the simulation. Assuming uniform and isotropic elastic property changes, the effects of radiation damage can be quantified by obtaining a set of matching resonant frequencies between the experimental and FEM simulation results, before and after irradiating the sample. This is done by adjusting the elastic constant values used in the simulation so that the results match with the experimentally obtained resonant frequencies. With powerful enough equipment, even real time monitoring is possible in harsh environments, thus pointing out imminent failure.

Refinements on Resonant Ultrasound Spectroscopy for Measuring Viscoelastic Properties of Solids

Refinements on Resonant Ultrasound Spectroscopy for Measuring Viscoelastic Properties of Solids
Title Refinements on Resonant Ultrasound Spectroscopy for Measuring Viscoelastic Properties of Solids PDF eBook
Author 周鴻儒
Publisher
Pages 134
Release 2009
Genre
ISBN

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Magnetic Resonance Elastography

Magnetic Resonance Elastography
Title Magnetic Resonance Elastography PDF eBook
Author Sudhakar K. Venkatesh
Publisher Springer
Pages 143
Release 2014-10-01
Genre Medical
ISBN 1493915754

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The first book to cover the groundbreaking development and clinical applications of Magnetic Resonance Elastography, this book is essential for all practitioners interested in this revolutionary diagnostic modality. The book is divided into three sections. The first covers the history of MRE. The second covers technique and clinical applications of MRE in the liver with respect to fibrosis, liver masses, and other diseases. Case descriptions are presented to give the reader a hands-on approach. The final section presents the techniques, sequence and preliminary results of applications in other areas of the body including muscle, brain, lung, heart, and breast.

International Aerospace Abstracts

International Aerospace Abstracts
Title International Aerospace Abstracts PDF eBook
Author
Publisher
Pages 980
Release 1998
Genre Aeronautics
ISBN

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Applied Mechanics Reviews

Applied Mechanics Reviews
Title Applied Mechanics Reviews PDF eBook
Author
Publisher
Pages 1036
Release 1994
Genre Mechanics, Applied
ISBN

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Bones

Bones
Title Bones PDF eBook
Author John D. Currey
Publisher Princeton University Press
Pages 456
Release 2006-07-23
Genre Science
ISBN 0691128049

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This is a comprehensive and accessible overview of what is known about the structure and mechanics of bone, bones, and teeth. In it, John Currey incorporates critical new concepts and findings from the two decades of research since the publication of his highly regarded The Mechanical Adaptations of Bones. Crucially, Currey shows how bone structure and bone's mechanical properties are intimately bound up with each other and how the mechanical properties of the material interact with the structure of whole bones to produce an adapted structure. For bone tissue, the book discusses stiffness, strength, viscoelasticity, fatigue, and fracture mechanics properties. For whole bones, subjects dealt with include buckling, the optimum hollowness of long bones, impact fracture, and properties of cancellous bone. The effects of mineralization on stiffness and toughness and the role of microcracking in the fracture process receive particular attention. As a zoologist, Currey views bone and bones as solutions to the design problems that vertebrates have faced during their evolution and throughout the book considers what bones have been adapted to do. He covers the full range of bones and bony tissues, as well as dentin and enamel, and uses both human and non-human examples. Copiously illustrated, engagingly written, and assuming little in the way of prior knowledge or mathematical background, Bones is both an ideal introduction to the field and also a reference sure to be frequently consulted by practicing researchers.