The effects of thermal cycling on residual stresses in thick- walled stainless steel pipe
The effects of thermal cycling on residual stresses are studied in thick-walled 316L stainless steel pipe. A relatively small AT of 280°F is considered. The residual stresses are measured by an x-ray diffraction technique. The initial stress state of the pipe wall shows periodic and random variabili...
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Virginia Tech
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ndltd-VTETD-oai-vtechworks.lib.vt.edu-10919-419782021-08-21T05:30:46Z The effects of thermal cycling on residual stresses in thick- walled stainless steel pipe Morgan, Nancy Abigail Materials Engineering LD5655.V855 1990.M674 Residual stresses -- Research Stainless steel The effects of thermal cycling on residual stresses are studied in thick-walled 316L stainless steel pipe. A relatively small AT of 280°F is considered. The residual stresses are measured by an x-ray diffraction technique. The initial stress state of the pipe wall shows periodic and random variability in stress from -30 to 20 ksi. The pipe was thermal cycled between a furnace and a quenchant bath. The macro residual stresses became 10 ksi more compressive after the first thermal cycle. Thereafter no significant changes are measured in the macro residual stresses, however, the micro residual stresses continue to increase linearly with the number of cycles. Master of Science 2014-03-14T21:33:14Z 2014-03-14T21:33:14Z 1990 2009-04-08 2009-04-08 2009-04-08 Thesis Text etd-04082009-040419 http://hdl.handle.net/10919/41978 http://scholar.lib.vt.edu/theses/available/etd-04082009-040419/ en OCLC# 22392032 LD5655.V855_1990.M674.pdf In Copyright http://rightsstatements.org/vocab/InC/1.0/ ix, 151 leaves BTD application/pdf application/pdf Virginia Tech |
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LD5655.V855 1990.M674 Residual stresses -- Research Stainless steel Morgan, Nancy Abigail The effects of thermal cycling on residual stresses in thick- walled stainless steel pipe |
description |
The effects of thermal cycling on residual stresses are studied in thick-walled 316L stainless steel pipe. A relatively small AT of 280°F is considered. The residual stresses are measured by an x-ray diffraction technique. The initial stress state of the pipe wall shows periodic and random variability in stress from -30 to 20 ksi. The pipe was thermal cycled between a furnace and a quenchant bath. The macro residual stresses became 10 ksi more compressive after the first thermal cycle. Thereafter no significant changes are measured in the macro residual stresses, however, the micro residual stresses continue to increase linearly with the number of cycles. === Master of Science |
author2 |
Materials Engineering |
author_facet |
Materials Engineering Morgan, Nancy Abigail |
author |
Morgan, Nancy Abigail |
author_sort |
Morgan, Nancy Abigail |
title |
The effects of thermal cycling on residual stresses in thick- walled stainless steel pipe |
title_short |
The effects of thermal cycling on residual stresses in thick- walled stainless steel pipe |
title_full |
The effects of thermal cycling on residual stresses in thick- walled stainless steel pipe |
title_fullStr |
The effects of thermal cycling on residual stresses in thick- walled stainless steel pipe |
title_full_unstemmed |
The effects of thermal cycling on residual stresses in thick- walled stainless steel pipe |
title_sort |
effects of thermal cycling on residual stresses in thick- walled stainless steel pipe |
publisher |
Virginia Tech |
publishDate |
2014 |
url |
http://hdl.handle.net/10919/41978 http://scholar.lib.vt.edu/theses/available/etd-04082009-040419/ |
work_keys_str_mv |
AT morgannancyabigail theeffectsofthermalcyclingonresidualstressesinthickwalledstainlesssteelpipe AT morgannancyabigail effectsofthermalcyclingonresidualstressesinthickwalledstainlesssteelpipe |
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