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Frequency dependence of the speed of sound in metallic rods

dc.contributor.authorMarques, A. C.
dc.contributor.authorRodrigues, M. S.
dc.contributor.institutionDCM - Departamento de Ciência dos Materiais
dc.contributor.institutionCENIMAT-i3N - Centro de Investigação de Materiais (Lab. Associado I3N)
dc.contributor.pblIOP Publishing
dc.date.accessioned2024-01-24T17:08:38Z
dc.date.available2024-01-24T17:08:38Z
dc.date.issued2023-12-01
dc.descriptionPublisher Copyright: © 2023 The Author(s). Published by IOP Publishing Ltd.
dc.description.abstractThe speed of sound waves in rods depends on the relationship between wavelength and rod dimensions. It differs from the speeds readily available in tables, and from what is often learned during most introductory courses on solid-state physics. Metallic rods with diameters in the centimetre range excited with sound waves of tens of kHz will behave as dispersive media. Here, the speed of sound in metallic titanium rods of different lengths is measured using two different methodologies: (1) from the time of flight and (2) from the wavelength and frequency of standing waves that form in the rod. The latter allows analyzing the results in light of Pochhammer-Cree dispersion. The reflection coefficient is also determined both from time and from frequency response. Two off-the-shelf piezoelectric transducers, a function generator, an oscilloscope, and a lock-in amplifier were used. We have used a low-frequency square wave (of tens of Hz) in the first case and a sine wave with frequencies that range from audible to ultrasound in the second case. Experimental results show that the speed of sound decreases as the wavelength decreases. The Pochhammer-Chree dispersion equation was numerically solved to fit the experimental data that can be used to estimate both the Young modulus and the Poisson ratio. A practical empirical formula that allows data analysis without explicitly solving the Pochhammer-Chree equation is suggested.en
dc.description.versionpublishersversion
dc.description.versionpublished
dc.format.extent12
dc.format.extent857879
dc.identifier.doi10.1088/1402-4896/ad0693
dc.identifier.issn0031-8949
dc.identifier.otherPURE: 82010532
dc.identifier.otherPURE UUID: c17fccff-36be-48db-9202-826acfbc87b1
dc.identifier.otherScopus: 85176795776
dc.identifier.otherWOS: 001094492800001
dc.identifier.urihttp://hdl.handle.net/10362/162718
dc.identifier.urlhttps://www.scopus.com/pages/publications/85176795776
dc.language.isoeng
dc.peerreviewedyes
dc.subjectPochhammer-Chree dispersion
dc.subjectsound speed
dc.subjectstanding wave
dc.subjectthin rod
dc.subjectAtomic and Molecular Physics, and Optics
dc.subjectMathematical Physics
dc.subjectCondensed Matter Physics
dc.titleFrequency dependence of the speed of sound in metallic rodsen
dc.typejournal article
degois.publication.issue12
degois.publication.titlePhysica Scripta
degois.publication.volume98
dspace.entity.typePublication
rcaap.rightsopenAccess

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