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ASME STP-PT-031

PRESSURE INDUCED FATIGUE

Organization:
ASME - ASME International
Year: 2010

Abstract: The purpose of this study is to begin the process of developing an appropriate and accurate method of predicting fatigue failure due to internal pressure loading in piping components. Historically, piping component fatigue has been analyzed using the approach of Markl [1]. The results from the cyclic pressure testing of 41 piping intersections have been evaluated. The fatigue results were found to follow the Markl type power law relationship with some considerable scatter. The scatter observed in the data is attributed to variation due to the nature of fatigue failure in large welded structures. It is further concluded that several design curves are appropriate for use as a design rule for pressure induced fatigue.
URI: http://mapnamagz.yabesh.ir/std;query=autho1826AF67FCdardstandardsfen/handle/yse/134771
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    ASME STP-PT-031

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contributor authorASME - ASME International
date accessioned2017-09-04T17:11:13Z
date available2017-09-04T17:11:13Z
date copyright2010.03.16
date issued2010
identifier otherYRYXHFAAAAAAAAAA.pdf
identifier urihttp://mapnamagz.yabesh.ir/std;query=autho1826AF67FCdardstandardsfen/handle/yse/134771
description abstractThe purpose of this study is to begin the process of developing an appropriate and accurate method of predicting fatigue failure due to internal pressure loading in piping components. Historically, piping component fatigue has been analyzed using the approach of Markl [1]. The results from the cyclic pressure testing of 41 piping intersections have been evaluated. The fatigue results were found to follow the Markl type power law relationship with some considerable scatter. The scatter observed in the data is attributed to variation due to the nature of fatigue failure in large welded structures. It is further concluded that several design curves are appropriate for use as a design rule for pressure induced fatigue.
languageEnglish
titleASME STP-PT-031num
titlePRESSURE INDUCED FATIGUEen
typestandard
page30
statusActive
treeASME - ASME International:;2010
contenttypefulltext
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