IMPACT OF STRESS MULTI-AXIAL EFFECT ON 316 STAINLESS STEEL CREEP DESIGN MARGIN

ASME NH high-temperature design code put limits on inelastic strain. However,there are several arguments about this provision. For instance,the multi-axial effect and different design margins for different materials were not considered.In this paper,a 316 stainless steel 90°elbow at 550℃ was simulat...

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Main Authors: SHEN XiaoPeng, XUAN FuZhen
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Strength 2016-01-01
Series:Jixie qiangdu
Subjects:
Online Access:http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2016.05.032
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author SHEN XiaoPeng
XUAN FuZhen
author_facet SHEN XiaoPeng
XUAN FuZhen
author_sort SHEN XiaoPeng
collection DOAJ
description ASME NH high-temperature design code put limits on inelastic strain. However,there are several arguments about this provision. For instance,the multi-axial effect and different design margins for different materials were not considered.In this paper,a 316 stainless steel 90°elbow at 550℃ was simulated to study impact of multi-axial effect on creep design strain margin. A continuum damage constitutive model was used,also new damage variables were defined based on multi-axial creep ductility theory. These damage variables were investigated when strains of the elbow reached corresponding limits in order to judge whether ASME NH strain limits are conservative. It is shown that all the damage variables are well below unity when the membrane strain of the elbow reaches the strain limits of 1%. It is thus concluded that ASME NH strain limits is still conservative when multi-axial effect is considered in a 316 stainless steel structure and can be used for design and verification at this temperature.
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spelling doaj.art-3a347985590b47b291f4c9879e177cdf2023-08-01T07:43:01ZzhoEditorial Office of Journal of Mechanical StrengthJixie qiangdu1001-96692016-01-01381087109230596483IMPACT OF STRESS MULTI-AXIAL EFFECT ON 316 STAINLESS STEEL CREEP DESIGN MARGINSHEN XiaoPengXUAN FuZhenASME NH high-temperature design code put limits on inelastic strain. However,there are several arguments about this provision. For instance,the multi-axial effect and different design margins for different materials were not considered.In this paper,a 316 stainless steel 90°elbow at 550℃ was simulated to study impact of multi-axial effect on creep design strain margin. A continuum damage constitutive model was used,also new damage variables were defined based on multi-axial creep ductility theory. These damage variables were investigated when strains of the elbow reached corresponding limits in order to judge whether ASME NH strain limits are conservative. It is shown that all the damage variables are well below unity when the membrane strain of the elbow reaches the strain limits of 1%. It is thus concluded that ASME NH strain limits is still conservative when multi-axial effect is considered in a 316 stainless steel structure and can be used for design and verification at this temperature.http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2016.05.032316 stainless steel;ASME NH;Multi-axial effect;Strain linerization;Creep ductility
spellingShingle SHEN XiaoPeng
XUAN FuZhen
IMPACT OF STRESS MULTI-AXIAL EFFECT ON 316 STAINLESS STEEL CREEP DESIGN MARGIN
Jixie qiangdu
316 stainless steel;ASME NH;Multi-axial effect;Strain linerization;Creep ductility
title IMPACT OF STRESS MULTI-AXIAL EFFECT ON 316 STAINLESS STEEL CREEP DESIGN MARGIN
title_full IMPACT OF STRESS MULTI-AXIAL EFFECT ON 316 STAINLESS STEEL CREEP DESIGN MARGIN
title_fullStr IMPACT OF STRESS MULTI-AXIAL EFFECT ON 316 STAINLESS STEEL CREEP DESIGN MARGIN
title_full_unstemmed IMPACT OF STRESS MULTI-AXIAL EFFECT ON 316 STAINLESS STEEL CREEP DESIGN MARGIN
title_short IMPACT OF STRESS MULTI-AXIAL EFFECT ON 316 STAINLESS STEEL CREEP DESIGN MARGIN
title_sort impact of stress multi axial effect on 316 stainless steel creep design margin
topic 316 stainless steel;ASME NH;Multi-axial effect;Strain linerization;Creep ductility
url http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2016.05.032
work_keys_str_mv AT shenxiaopeng impactofstressmultiaxialeffecton316stainlesssteelcreepdesignmargin
AT xuanfuzhen impactofstressmultiaxialeffecton316stainlesssteelcreepdesignmargin