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dc.rights.licenseRestricted to current Rensselaer faculty, staff and students. Access inquiries may be directed to the Rensselaer Libraries.
dc.contributorAnsell, George S.
dc.contributorDoremus, R. H.
dc.contributorGisser, David G.
dc.contributorMcCarthy, John J.
dc.contributorTomozawa, Minoru
dc.contributor.authorCarr, Martin J.
dc.date.accessioned2021-11-03T08:41:47Z
dc.date.available2021-11-03T08:41:47Z
dc.date.created2016-11-01T11:15:38Z
dc.date.issued1976-05
dc.identifier.urihttps://hdl.handle.net/20.500.13015/1802
dc.descriptionMay 1976
dc.descriptionSchool of Engineering
dc.description.abstractRecent work has considered the effects of Ms temperature, carbon content, austenite strength, and austenite stacking fault energy in determining the morphology of ferrous martensite. This thesis presents the results of a study of the relative effects of two of these properties upon martensite morphology: austenite strength and stacking fault energy. Toward this end, a series of alloys was designed to exhibit a wide range of austenite stacking fault energy maintaining constant Ms temperature, carbon content, and austenite grain size. The austenite yield strength was not purposefully controlled in this series.
dc.language.isoENG
dc.publisherRensselaer Polytechnic Institute, Troy, NY
dc.relation.ispartofRensselaer Theses and Dissertations Online Collection
dc.subjectMaterials engineering
dc.titleThe effect of Austenite stacking fault energy and Austenite strength on the morphology of martensite in Fe-Ni-Cr-0.3C steels
dc.typeElectronic thesis
dc.typeThesis
dc.digitool.pid177645
dc.digitool.pid177646
dc.digitool.pid177648
dc.digitool.pid177647
dc.digitool.pid177649
dc.rights.holderThis electronic version is a licensed copy owned by Rensselaer Polytechnic Institute, Troy, NY. Copyright of original work retained by author.
dc.description.degreePhD
dc.relation.departmentDept. of Materials Engineering


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