Critical Erosion/Corrosion Piping Wall Thicknesses Under Static and Fatigue Stress Conditions According to ASME Guidelines

dc.contributor.authorComeau, Christian R.en
dc.contributor.committeechairMitchell, Larry D.en
dc.contributor.committeememberWest, Robert L. Jr.en
dc.contributor.committeememberKornhauser, Alan A.en
dc.contributor.departmentMechanical Engineeringen
dc.date.accessioned2014-03-14T20:41:38Zen
dc.date.adate2001-10-08en
dc.date.available2014-03-14T20:41:38Zen
dc.date.issued2001-07-17en
dc.date.rdate2002-10-08en
dc.date.sdate2001-07-19en
dc.description.abstractThe purpose of this project was to show the updated procedures and to make additions to the computer program called Tmin designed by E. I. DuPont De Nemours and Company. This program is used as a screening tool for determining the largest of the minimum pipe-wall thicknesses in a piping system. This project involved several additions that will be released in the next version of the Tmin computer program. The first major additions to be implemented are four alternating Stress-to-Number of cycles curves: Aluminum 1100, Aluminum 3003-0, Aluminum 6061-T6, and Nickel 200. In addition, procedures of the ASME for fatigue curve analysis and implementation of fatigue data were investigated. These four stress-to-number of cycles (S-N) fatigue curves were added to Tmin's internal Microsoft Access® database. Next, a 2-D vertical piping span configuration was incorporated. Finally, DuPont required a Microsoft Word® document output of the pipe-wall thickness data including the piping span model information. Other user-friendly additions were included. Since this computer program was to be American Society of Mechanical Engineers (ASME) compliant, a study of the ASME Pressure Vessel and Piping standards and codes was made to determine how pipe-wall thickness calculations were to be processed. The 2-D vertical piping span calculation procedures were investigated. Once the 2-D vertical piping span analysis was complete, the largest pipe-wall thickness value calculated were passed to a Microsoft Word® document. The last implementation is the inclusion of help files. Help file button additions in all input boxes allowed for the user to know exactly what was needed before a data entry was made.en
dc.description.degreeMaster of Scienceen
dc.identifier.otheretd-07192001-124624en
dc.identifier.sourceurlhttp://scholar.lib.vt.edu/theses/available/etd-07192001-124624/en
dc.identifier.urihttp://hdl.handle.net/10919/34057en
dc.publisherVirginia Techen
dc.relation.haspartChapter1.PDFen
dc.relation.haspartChapter6.pdfen
dc.relation.haspartFigures.PDFen
dc.relation.haspartChapter5.pdfen
dc.relation.haspartAppendixC.PDFen
dc.relation.haspartChapter4.pdfen
dc.relation.haspartAppendixA.PDFen
dc.relation.haspartAcknowledgments.pdfen
dc.relation.haspartAbstract.pdfen
dc.relation.haspartAppendixB.PDFen
dc.relation.haspartChapter2.PDFen
dc.relation.haspartComeauvita.pdfen
dc.relation.haspartComeauTableofCont.pdfen
dc.relation.haspartNomenclature.PDFen
dc.relation.haspartChapter7.pdfen
dc.relation.haspartContents.PDFen
dc.relation.haspartReferences.PDFen
dc.relation.haspartComeauChapter3doc.pdfen
dc.relation.haspartTitlePage.pdfen
dc.relation.haspartAppendixD.PDFen
dc.relation.haspartComeauFinalDoc.pdfen
dc.rightsIn Copyrighten
dc.rights.urihttp://rightsstatements.org/vocab/InC/1.0/en
dc.subjectstress elementsen
dc.subjectvisual basicen
dc.subjectcopy formen
dc.subjectaluminum 6061-t6en
dc.subjectaluminum 1100en
dc.subjectaluminum 3003-0en
dc.subjectFatigue curvesen
dc.subjectaluminumen
dc.subjectsn curvesen
dc.subjectFatigueen
dc.subjectASMEen
dc.subjectsnen
dc.subjectstatic stressen
dc.subjectnickel 200en
dc.subjectstressen
dc.titleCritical Erosion/Corrosion Piping Wall Thicknesses Under Static and Fatigue Stress Conditions According to ASME Guidelinesen
dc.typeThesisen
thesis.degree.disciplineMechanical Engineeringen
thesis.degree.grantorVirginia Polytechnic Institute and State Universityen
thesis.degree.levelmastersen
thesis.degree.nameMaster of Scienceen

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