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Journal ArticleDOI

Ultrasonic scattering from imperfect interfaces: A quasi-static model

Jai-Man Baik, +1 more
- 01 Dec 1984 - 
- Vol. 4, Iss: 3, pp 177-196
TLDR
In this article, a quasi-static model for ultrasonic transmission and reflection at imperfect interfaces is developed, where the interface is represented by a distributed spring determined by the change in static compliance of the medium with respect to one with a perfect interface, and a distributed mass, representing excess mass at the interface.
Abstract
A quasi-static model for the ultrasonic transmission and reflection at imperfect interfaces is developed. The interface is represented by a distributed spring, determined by the change in static compliance of the medium with respect to one with a perfect interface, and a distributed mass, representing excess mass at the interface. Comparison of the model predictions to exact solutions for two simple cases illustrates its accuracy at low frequencies. The spring stiffnesses can be derived from existing solutions for the elastic displacement of materials containing cracks and inclusions under static load. Results for a variety of cases are reviewed. Applications of the model to study the characteristics of partially contacting surfaces in several problem areas of current interest are discussed.

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Citations
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Journal ArticleDOI

A micromechanical model for nonlinear acoustic properties of interfaces between solids

TL;DR: In this article, a micromechanical model for an interface between two solids in elastoplastic contact is presented to predict the acoustic linear and nonlinear interfacial stiffnesses during loading-unloading cycle.
Journal ArticleDOI

Rock friction under variable normal stress

TL;DR: In this paper, the detailed response of shear strength and other fault properties to changes in normal stress at room temperature using dry initial bare rock surfaces of granite at normal stresses between 5 and 7 MPa.
Journal ArticleDOI

Analytical and numerical modeling of non-collinear shear wave mixing at an imperfect interface

TL;DR: Two analytical models for nonlinear imperfect interfaces can accurately predict the additional nonlinearity caused by interface imperfections based on the strength of the reflected and transmitted mixed longitudinal waves produced by them under non-collinear shear wave interrogation.
Journal ArticleDOI

A Comparison of Contact Stiffness Measurements Obtained by the Digital Image Correlation and Ultrasound Techniques

TL;DR: In this article, a comparison of the digital image correlation (DIC) and ultrasound techniques has been carried out to measure the contact stiffness of real engineering interfaces, and the results show that ultrasound measures somewhat higher contact stiffness magnitudes than DIC: at an average normal contact pressure of 70 MPa, ultrasound was around three times stiffer.
Journal ArticleDOI

The measurement of contact pressure in machine elements using ultrasound

TL;DR: In this article, a study of the use of ultrasound to measure the pressure between two machine elements in contact is described, and the relationship between ultrasonic reflection coefficient and pressure is found both empirically and via a numerical contact model.
References
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Book

Theory of elasticity

TL;DR: The theory of the slipline field is used in this article to solve the problem of stable and non-stressed problems in plane strains in a plane-strain scenario.
Book

The stress analysis of cracks handbook

TL;DR: The Stress Analysis of Cracks Handbook as mentioned in this paper provides a comprehensive, easy-to-access collection of elastic stress solutions for crack configurations, along with other relevant information, such as displacements, crack opening areas, basic stress functions source references, accuracy of solutions, and more.
Book

Micromechanics of defects in solids

TL;DR: In this paper, the authors present numerical simulation of intergranular and transgranular crack propagation in ferroelectric polycrystals using double kink mechanisms for discrete dislocations in BCCs.
Journal Article

Bearing pressures and cracks

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