نمایش مختصر رکورد

dc.contributor.authorShabani, Raminen_US
dc.contributor.authorHonarvar, Farhangen_US
dc.date.accessioned1399-07-08T21:27:05Zfa_IR
dc.date.accessioned2020-09-29T21:27:05Z
dc.date.available1399-07-08T21:27:05Zfa_IR
dc.date.available2020-09-29T21:27:05Z
dc.date.issued2016-01-01en_US
dc.date.issued1394-10-11fa_IR
dc.date.submitted2016-01-27en_US
dc.date.submitted1394-11-07fa_IR
dc.identifier.citationShabani, Ramin, Honarvar, Farhang. (2016). A one-dimensional model for variations of longitudinal wave velocity under different thermal conditions. Journal of Theoretical and Applied Vibration and Acoustics, 2(1), 79-90. doi: 10.22064/tava.2016.19717en_US
dc.identifier.issn2423-4761
dc.identifier.urihttps://dx.doi.org/10.22064/tava.2016.19717
dc.identifier.urihttp://tava.isav.ir/article_19717.html
dc.identifier.urihttps://iranjournals.nlai.ir/handle/123456789/110628
dc.description.abstract<span style="font-family: 'Times New Roman','serif'; font-size: 12pt; mso-fareast-font-family: 'Times New Roman'; mso-ansi-language: EN-US; mso-fareast-language: EN-US; mso-bidi-language: AR-SA;">Ultrasonic testing is a versatile and important nondestructive testing method. In many industrial applications, ultrasonic testing is carried out at relatively high temperatures. Since the ultrasonic wave velocity is a function of the </span><span style="font-family: 'Times New Roman','serif'; font-size: 12pt; mso-fareast-font-family: 'Times New Roman'; mso-ansi-language: EN-GB; mso-fareast-language: EN-US; mso-bidi-language: AR-SA;" lang="EN-GB">workpiece</span><span style="font-family: 'Times New Roman','serif'; font-size: 12pt; mso-fareast-font-family: 'Times New Roman'; mso-ansi-language: EN-US; mso-fareast-language: EN-US; mso-bidi-language: AR-SA;"> temperature, it is necessary to have a good understanding of how the wave velocity and test piece temperature are related. In this paper, variations</span><span style="font-family: 'Times New Roman','serif'; font-size: 12pt; mso-fareast-font-family: 'Times New Roman'; mso-ansi-language: EN-GB; mso-fareast-language: EN-US; mso-bidi-language: AR-SA;" lang="EN-GB"> of longitudinal wave velocity in the presence of a uniform temperature distribution or a thermal gradient is studied using one-dimensional theoretical and numerical models. The numerical model is based on finite element analysis. A linear temperature gradient is assumed and the length of the workpiece and the temperature of the hot side are considered as varying parameters. The workpiece is made of st37 steel, its length is varied in the range of 0.04-0.08 m and the temperature of the hot side is changed from 400 K to 1000 K. The results of the theoretical model are compared with those obtained from the finite element model (FEM) and very good agreement is observed.</span>en_US
dc.format.extent147
dc.format.mimetypeapplication/pdf
dc.languageEnglish
dc.language.isoen_US
dc.publisherIranian Society of Acoustics and Vibration and Avecinaen_US
dc.relation.ispartofJournal of Theoretical and Applied Vibration and Acousticsen_US
dc.relation.isversionofhttps://dx.doi.org/10.22064/tava.2016.19717
dc.subjectLongitudinal ultrasonic waveen_US
dc.subjectThermal gradienten_US
dc.subjectTheoretical methoden_US
dc.subjectfinite element methoden_US
dc.subjectUltrasound and infrasounden_US
dc.titleA one-dimensional model for variations of longitudinal wave velocity under different thermal conditionsen_US
dc.typeTexten_US
dc.contributor.departmentFaculty of Mechanical Engineering, K. N. Toosi University of Technology, 19991-43344, Tehran, Iranen_US
dc.contributor.departmentFaculty of Mechanical Engineering, K. N. Toosi University of Technology, 19991-43344, Tehran, Iranen_US
dc.citation.volume2
dc.citation.issue1
dc.citation.spage79
dc.citation.epage90


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