Title: A study of the interaction between ultrasound and a partially contacting solid—solid interface
Abstract: Restricted accessMoreSectionsView PDF ToolsAdd to favoritesDownload CitationsTrack Citations ShareShare onFacebookTwitterLinked InRedditEmail Cite this article Drinkwater B. W. , Dwyer-Joyce R. S. and Cawley P. 1996A study of the interaction between ultrasound and a partially contacting solid—solid interfaceProc. R. Soc. Lond. A.4522613–2628http://doi.org/10.1098/rspa.1996.0139SectionRestricted accessArticleA study of the interaction between ultrasound and a partially contacting solid—solid interface B. W. Drinkwater Google Scholar Find this author on PubMed Search for more papers by this author , R. S. Dwyer-Joyce Google Scholar Find this author on PubMed Search for more papers by this author and P. Cawley Google Scholar Find this author on PubMed Search for more papers by this author B. W. Drinkwater Google Scholar Find this author on PubMed , R. S. Dwyer-Joyce Google Scholar Find this author on PubMed and P. Cawley Google Scholar Find this author on PubMed Published:01 January 1996https://doi.org/10.1098/rspa.1996.0139AbstractThe measurement of the reflection of ultrasonic waves from a partially contacting solid-solid interface can be used to study the contact conditions at that interface. This paper describes measurements and predictions of the reflection of ultrasonic waves from partially contacting aluminium-aluminium interfaces, performed in the low frequency regime where the wavelength of the ultrasound is large compared to the size of the gaps. The proportion of the incident wave which is reflected at the interface (the reflection coefficient) was measured as a function of frequency with a single wideband ultrasonic transducer. When load was applied across the interface three regions of contact can be seen; no contact, partial contact and perfect contact. In the no contact region the measured reflection coefficient was unity at all frequencies. In the partial contact region the measured reflection coefficient increased with frequency. No measurements were taken in the perfect contact region in which the reflection coefficient is known to be zero at all frequencies as this state is the same as a continuous piece of aluminium. The reflection coefficient variation with frequency was modelled using a spring model, good agreement between experiments and predictions being achieved. Reflection coefficient measurements were then used to study the contact between two aluminium surfaces under repeated loading and unloading cycles. Plastic flow on first loading was evident while subsequent loading cycles revealed largely elastic behaviour. Both elastic and plastic statistical contact models, as well as a numerical contact model, were used to predict the variation of interfacial stiffness with pressure. These models agreed qualitatively with the experimentally determined stiffness variations and the predicted stiffness was within an order of magnitude of the measured value in all cases.FootnotesThis text was harvested from a scanned image of the original document using optical character recognition (OCR) software. As such, it may contain errors. Please contact the Royal Society if you find an error you would like to see corrected. Mathematical notations produced through Infty OCR. Previous ArticleNext Article VIEW FULL TEXT DOWNLOAD PDF FiguresRelatedReferencesDetailsCited by Yuan B, Wang Y, Sun W, Mu X, Zhang C and Sun Q (2023) Theoretical and experimental study on interface stiffness measurement of rough surface using improved acoustic model, Mechanical Systems and Signal Processing, 10.1016/j.ymssp.2022.109839, 186, (109839), Online publication date: 1-Mar-2023. 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Publication Year: 1996
Publication Date: 1996-12-31
Language: en
Type: article
Indexed In: ['crossref']
Access and Citation
Cited By Count: 249
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