Setting of forced oscillations of viscoelastic coating
This paper formulates the problem of determining the response of a flat monolithic viscoelastic coating to traveling pressure and shear waves in two-dimensional formulation. Examples of corresponding numerical computations for coating parameters typical for laboratory experiments on the reduction in...
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Veröffentlicht in: | Continuum mechanics and thermodynamics 2023-07, Vol.35 (4), p.1343-1352 |
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description | This paper formulates the problem of determining the response of a flat monolithic viscoelastic coating to traveling pressure and shear waves in two-dimensional formulation. Examples of corresponding numerical computations for coating parameters typical for laboratory experiments on the reduction in turbulent viscous drag are presented. The coating parameters are demonstrated, which provide the setting time less than one period of the forced oscillations. It is shown that the time to reach the regime is practically the same for both the shear and the pressure forcing, the time being increased with a decrease in relative thickness of the coating, as well as with an increase in the forcing frequency, particularly at frequencies above the first resonance frequency. |
doi_str_mv | 10.1007/s00161-022-01133-4 |
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Examples of corresponding numerical computations for coating parameters typical for laboratory experiments on the reduction in turbulent viscous drag are presented. The coating parameters are demonstrated, which provide the setting time less than one period of the forced oscillations. It is shown that the time to reach the regime is practically the same for both the shear and the pressure forcing, the time being increased with a decrease in relative thickness of the coating, as well as with an increase in the forcing frequency, particularly at frequencies above the first resonance frequency.</description><identifier>ISSN: 0935-1175</identifier><identifier>EISSN: 1432-0959</identifier><identifier>DOI: 10.1007/s00161-022-01133-4</identifier><language>eng</language><publisher>Berlin/Heidelberg: Springer Berlin Heidelberg</publisher><subject>Classical and Continuum Physics ; Coating ; Coatings ; Deformation ; Engineering Thermodynamics ; Experiments ; Forced vibration ; Friction ; Heat and Mass Transfer ; Laboratories ; Measurement techniques ; Original Article ; Oscillations ; Parameters ; Physics ; Physics and Astronomy ; Porous materials ; Protective coatings ; Reynolds number ; Simulation ; Skin ; Structural Materials ; Theoretical and Applied Mechanics ; Viscoelasticity ; Viscous drag</subject><ispartof>Continuum mechanics and thermodynamics, 2023-07, Vol.35 (4), p.1343-1352</ispartof><rights>The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature 2022. 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Thermodyn</addtitle><description>This paper formulates the problem of determining the response of a flat monolithic viscoelastic coating to traveling pressure and shear waves in two-dimensional formulation. Examples of corresponding numerical computations for coating parameters typical for laboratory experiments on the reduction in turbulent viscous drag are presented. The coating parameters are demonstrated, which provide the setting time less than one period of the forced oscillations. It is shown that the time to reach the regime is practically the same for both the shear and the pressure forcing, the time being increased with a decrease in relative thickness of the coating, as well as with an increase in the forcing frequency, particularly at frequencies above the first resonance frequency.</description><subject>Classical and Continuum Physics</subject><subject>Coating</subject><subject>Coatings</subject><subject>Deformation</subject><subject>Engineering Thermodynamics</subject><subject>Experiments</subject><subject>Forced vibration</subject><subject>Friction</subject><subject>Heat and Mass Transfer</subject><subject>Laboratories</subject><subject>Measurement techniques</subject><subject>Original Article</subject><subject>Oscillations</subject><subject>Parameters</subject><subject>Physics</subject><subject>Physics and Astronomy</subject><subject>Porous materials</subject><subject>Protective coatings</subject><subject>Reynolds number</subject><subject>Simulation</subject><subject>Skin</subject><subject>Structural Materials</subject><subject>Theoretical and Applied Mechanics</subject><subject>Viscoelasticity</subject><subject>Viscous drag</subject><issn>0935-1175</issn><issn>1432-0959</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2023</creationdate><recordtype>article</recordtype><sourceid>ABUWG</sourceid><sourceid>AFKRA</sourceid><sourceid>AZQEC</sourceid><sourceid>BENPR</sourceid><sourceid>CCPQU</sourceid><sourceid>DWQXO</sourceid><sourceid>GNUQQ</sourceid><recordid>eNp9kE1LAzEQhoMoWKt_wNOC560zSfYjx1LUCgUP6jmk-Sgp201NtoL_3qwreJMcQibPMzO8hNwiLBCguU8AWGMJlJaAyFjJz8gMOctPUYlzMgPBqhKxqS7JVUp7yJKo2IzUr3YYfL8rgitciNqaIiTtu04NPvRpLH_6pIPtVBq8LnRQI35NLpzqkr35vefk_fHhbbUuNy9Pz6vlptQMxFAqw6kBqpQwwiDQLaiGOXTAkG8dFbVpNGINNa22NRX516BCBZxzmnHH5uRu6nuM4eNk0yD34RT7PFLSlrYVz52aTC0maqc6K33vwhCVzsfYg9eht87n-rKpOIO2bUaBToKOIaVonTxGf1DxSyLIMVA5BSpzoPInUMmzxCYpZbjf2fi3yz_WN2xddmQ</recordid><startdate>20230701</startdate><enddate>20230701</enddate><creator>Boiko, Andrey V.</creator><creator>Demyanko, Kirill V.</creator><creator>Kulik, Victor M.</creator><general>Springer Berlin Heidelberg</general><general>Springer</general><general>Springer Nature B.V</general><scope>AAYXX</scope><scope>CITATION</scope><scope>3V.</scope><scope>7SR</scope><scope>7TB</scope><scope>7XB</scope><scope>88I</scope><scope>8AO</scope><scope>8BQ</scope><scope>8FD</scope><scope>8FE</scope><scope>8FG</scope><scope>8FK</scope><scope>ABJCF</scope><scope>ABUWG</scope><scope>AFKRA</scope><scope>AZQEC</scope><scope>BENPR</scope><scope>BGLVJ</scope><scope>BHPHI</scope><scope>BKSAR</scope><scope>CCPQU</scope><scope>D1I</scope><scope>DWQXO</scope><scope>FR3</scope><scope>GNUQQ</scope><scope>H8D</scope><scope>HCIFZ</scope><scope>JG9</scope><scope>KB.</scope><scope>KR7</scope><scope>L6V</scope><scope>L7M</scope><scope>M2P</scope><scope>M7S</scope><scope>PCBAR</scope><scope>PDBOC</scope><scope>PQEST</scope><scope>PQQKQ</scope><scope>PQUKI</scope><scope>PTHSS</scope><scope>Q9U</scope><orcidid>https://orcid.org/0000-0002-0306-1816</orcidid></search><sort><creationdate>20230701</creationdate><title>Setting of forced oscillations of viscoelastic coating</title><author>Boiko, Andrey V. ; Demyanko, Kirill V. ; Kulik, Victor M.</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c309t-ad42d02aa9d9d102b0a73f1f0314bf296d7c1160625b6290a7d1a1a04442102f3</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2023</creationdate><topic>Classical and Continuum Physics</topic><topic>Coating</topic><topic>Coatings</topic><topic>Deformation</topic><topic>Engineering Thermodynamics</topic><topic>Experiments</topic><topic>Forced vibration</topic><topic>Friction</topic><topic>Heat and Mass Transfer</topic><topic>Laboratories</topic><topic>Measurement techniques</topic><topic>Original Article</topic><topic>Oscillations</topic><topic>Parameters</topic><topic>Physics</topic><topic>Physics and Astronomy</topic><topic>Porous materials</topic><topic>Protective coatings</topic><topic>Reynolds number</topic><topic>Simulation</topic><topic>Skin</topic><topic>Structural Materials</topic><topic>Theoretical and Applied Mechanics</topic><topic>Viscoelasticity</topic><topic>Viscous drag</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Boiko, Andrey V.</creatorcontrib><creatorcontrib>Demyanko, Kirill V.</creatorcontrib><creatorcontrib>Kulik, Victor M.</creatorcontrib><collection>CrossRef</collection><collection>ProQuest Central (Corporate)</collection><collection>Engineered Materials Abstracts</collection><collection>Mechanical & Transportation Engineering Abstracts</collection><collection>ProQuest Central (purchase pre-March 2016)</collection><collection>Science Database (Alumni Edition)</collection><collection>ProQuest Pharma Collection</collection><collection>METADEX</collection><collection>Technology Research Database</collection><collection>ProQuest SciTech Collection</collection><collection>ProQuest Technology Collection</collection><collection>ProQuest Central (Alumni) (purchase pre-March 2016)</collection><collection>Materials Science & Engineering Collection</collection><collection>ProQuest Central (Alumni Edition)</collection><collection>ProQuest Central UK/Ireland</collection><collection>ProQuest Central Essentials</collection><collection>ProQuest Central</collection><collection>Technology Collection</collection><collection>Natural Science Collection</collection><collection>Earth, Atmospheric & Aquatic Science Collection</collection><collection>ProQuest One Community College</collection><collection>ProQuest Materials Science Collection</collection><collection>ProQuest Central Korea</collection><collection>Engineering Research Database</collection><collection>ProQuest Central Student</collection><collection>Aerospace Database</collection><collection>SciTech Premium Collection</collection><collection>Materials Research Database</collection><collection>Materials Science Database</collection><collection>Civil Engineering Abstracts</collection><collection>ProQuest Engineering Collection</collection><collection>Advanced Technologies Database with Aerospace</collection><collection>Science Database</collection><collection>Engineering Database</collection><collection>Earth, Atmospheric & Aquatic Science Database</collection><collection>Materials Science Collection</collection><collection>ProQuest One Academic Eastern Edition (DO NOT USE)</collection><collection>ProQuest One Academic</collection><collection>ProQuest One Academic UKI Edition</collection><collection>Engineering Collection</collection><collection>ProQuest Central Basic</collection><jtitle>Continuum mechanics and thermodynamics</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Boiko, Andrey V.</au><au>Demyanko, Kirill V.</au><au>Kulik, Victor M.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Setting of forced oscillations of viscoelastic coating</atitle><jtitle>Continuum mechanics and thermodynamics</jtitle><stitle>Continuum Mech. Thermodyn</stitle><date>2023-07-01</date><risdate>2023</risdate><volume>35</volume><issue>4</issue><spage>1343</spage><epage>1352</epage><pages>1343-1352</pages><issn>0935-1175</issn><eissn>1432-0959</eissn><abstract>This paper formulates the problem of determining the response of a flat monolithic viscoelastic coating to traveling pressure and shear waves in two-dimensional formulation. Examples of corresponding numerical computations for coating parameters typical for laboratory experiments on the reduction in turbulent viscous drag are presented. The coating parameters are demonstrated, which provide the setting time less than one period of the forced oscillations. 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subjects | Classical and Continuum Physics Coating Coatings Deformation Engineering Thermodynamics Experiments Forced vibration Friction Heat and Mass Transfer Laboratories Measurement techniques Original Article Oscillations Parameters Physics Physics and Astronomy Porous materials Protective coatings Reynolds number Simulation Skin Structural Materials Theoretical and Applied Mechanics Viscoelasticity Viscous drag |
title | Setting of forced oscillations of viscoelastic coating |
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