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Applications of Resonant Ultrasound Spectroscopy to Microelectromechanical Systems (MEMS)

Applications of Resonant Ultrasound Spectroscopy to Microelectromechanical Systems (MEMS) PDF Author: Hang Guo
Publisher:
ISBN:
Category :
Languages : en
Pages : 182

Book Description


Applications of Resonant Ultrasound Spectroscopy to Microelectromechanical Systems (MEMS)

Applications of Resonant Ultrasound Spectroscopy to Microelectromechanical Systems (MEMS) PDF Author: Hang Guo
Publisher:
ISBN:
Category :
Languages : en
Pages : 182

Book Description


Applications and Analysis of Parametric Resonance in Microelectromechanical Systems

Applications and Analysis of Parametric Resonance in Microelectromechanical Systems PDF Author: Kimberly Lynn Turner
Publisher:
ISBN:
Category :
Languages : en
Pages : 364

Book Description


MEMS Technology for Biomedical Imaging Applications

MEMS Technology for Biomedical Imaging Applications PDF Author: Qifa Zhou
Publisher: MDPI
ISBN: 303921604X
Category : Technology & Engineering
Languages : en
Pages : 218

Book Description
Biomedical imaging is the key technique and process to create informative images of the human body or other organic structures for clinical purposes or medical science. Micro-electro-mechanical systems (MEMS) technology has demonstrated enormous potential in biomedical imaging applications due to its outstanding advantages of, for instance, miniaturization, high speed, higher resolution, and convenience of batch fabrication. There are many advancements and breakthroughs developing in the academic community, and there are a few challenges raised accordingly upon the designs, structures, fabrication, integration, and applications of MEMS for all kinds of biomedical imaging. This Special Issue aims to collate and showcase research papers, short commutations, perspectives, and insightful review articles from esteemed colleagues that demonstrate: (1) original works on the topic of MEMS components or devices based on various kinds of mechanisms for biomedical imaging; and (2) new developments and potentials of applying MEMS technology of any kind in biomedical imaging. The objective of this special session is to provide insightful information regarding the technological advancements for the researchers in the community.

Mems for Biomedical Applications

Mems for Biomedical Applications PDF Author: Shekhar Bhansali
Publisher: Elsevier
ISBN: 0857096273
Category : Technology & Engineering
Languages : en
Pages : 511

Book Description
The application of Micro Electro Mechanical Systems (MEMS) in the biomedical field is leading to a new generation of medical devices. MEMS for biomedical applications reviews the wealth of recent research on fabrication technologies and applications of this exciting technology.The book is divided into four parts: Part one introduces the fundamentals of MEMS for biomedical applications, exploring the microfabrication of polymers and reviewing sensor and actuator mechanisms. Part two describes applications of MEMS for biomedical sensing and diagnostic applications. MEMS for in vivo sensing and electrical impedance spectroscopy are investigated, along with ultrasonic transducers, and lab-on-chip devices. MEMS for tissue engineering and clinical applications are the focus of part three, which considers cell culture and tissue scaffolding devices, BioMEMS for drug delivery and minimally invasive medical procedures. Finally, part four reviews emerging biomedical applications of MEMS, from implantable neuroprobes and ocular implants to cellular microinjection and hybrid MEMS.With its distinguished editors and international team of expert contributors, MEMS for biomedical applications provides an authoritative review for scientists and manufacturers involved in the design and development of medical devices as well as clinicians using this important technology. Reviews the wealth of recent research on fabrication technologies and applications of Micro Electro Mechanical Systems (MEMS) in the biomedical field Introduces the fundamentals of MEMS for biomedical applications, exploring the microfabrication of polymers and reviewing sensor and actuator mechanisms Considers MEMS for biomedical sensing and diagnostic applications, along with MEMS for in vivo sensing and electrical impedance spectroscopy

Application of Resonant Ultrasound Spectroscopy to Inhomogeneous Materials

Application of Resonant Ultrasound Spectroscopy to Inhomogeneous Materials PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 78

Book Description
Resonant Ultrasound Spectroscopy (RUS) has been used successfully to determine the elastic properties of single crystal and homogeneous materials. We have attempted to answer the following question. Under what conditions is RUS a useful tool for determining the moduli of macroscopic, inhomogeneous samples. We concentrated on identifying a sample geometry that will maximize success with RUS. The work consisted of numerical modeling of sample resonances under varying conditions, and empirical testing of rock samples. Numerical modeling and empirical testing indicate that RUS is a viable technique for characterizing the average isotropic elastic moduli of inhomogeneous materials, although larger RMS errors can be expected than for single crystal materials. Success with RUS can optimized by ensuring that the sample size is large compared to the scale of inhomogeneity and by using a high aspect ratio parallelepiped sample.

Resonant Ultrasound Spectroscopy and Differential Scanning Calorimetry Studies of Materials for Property Specific Applications

Resonant Ultrasound Spectroscopy and Differential Scanning Calorimetry Studies of Materials for Property Specific Applications PDF Author: Jyrki Vuorinen
Publisher:
ISBN: 9789521506710
Category :
Languages : en
Pages : 36

Book Description


Resonant Ultrasound Spectroscopy and Solid Helium Research

Resonant Ultrasound Spectroscopy and Solid Helium Research PDF Author: Guoxing Liu
Publisher:
ISBN:
Category :
Languages : en
Pages : 174

Book Description


Adaptive and Automatic Detection of Resonant Frequencies in Resonant Ultrasound Spectroscopy Spectra

Adaptive and Automatic Detection of Resonant Frequencies in Resonant Ultrasound Spectroscopy Spectra PDF Author: Md. Rafiqul I. Sarker
Publisher:
ISBN:
Category : Additive manufacturing
Languages : en
Pages : 0

Book Description


Ultrasound Spectroscopy

Ultrasound Spectroscopy PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
Resonant Ultrasound Spectroscopy (RUS) is a simple technique for measuring the second-order elastic constants and ultrasonic attenuation of solids. The technique is based on measuring the spectrum of mechanical resonances for a sample of known shape (usually a sphere, cylinder, or parallelepiped). This spectrum cannot be deconvoluted to deduce the elastic constants. Instead, an approximate spectrum is calculated from the known sample dimensions, its mass, and a set of 'guessed' elastic constants. A multidimensional minimization of the rms difference between the measured and calculated spectra enables us to deduce all the elastic constants of the solid from a single frequency scan. Currently, the technique can be applied to crystals of orthorhombic symmetry (9 elastic constants) or higher using desktop computers and software developed for this purpose. Composite materials, especially fiber composites, can take full advantage of the RUS technique as they typically have low symmetry. In this paper we summarize the RUS technique and provide examples of its application to the elastic characterization of both fiber reinforced MMC's, and fiber reinforced PMC's.

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 PDF Author: Gautham Manoharan
Publisher:
ISBN:
Category :
Languages : en
Pages : 67

Book Description
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.