THE COMPREHENSIVE SAFETY EVALUATION METHOD BASED ON THE DEFECT QUANTITATIVE FOR THE PRESSURE VESSEL IN SERVICE

The magnetic memory testing and fuzzy evaluation theory is applied to the comprehensive safety evaluation of pressure vessel in service,and a comprehensive safety evaluation model of the pressure vessel in service is established. The defect parameters of pressure vessel in service are obtained using...

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Main Authors: LIU Jun, HUANG Chen, CHENG ShaoWei, ZHANG XiaoHong, HE Xing
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Strength 2015-01-01
Series:Jixie qiangdu
Subjects:
Online Access:http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2015.04.018
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author LIU Jun
HUANG Chen
CHENG ShaoWei
ZHANG XiaoHong
HE Xing
author_facet LIU Jun
HUANG Chen
CHENG ShaoWei
ZHANG XiaoHong
HE Xing
author_sort LIU Jun
collection DOAJ
description The magnetic memory testing and fuzzy evaluation theory is applied to the comprehensive safety evaluation of pressure vessel in service,and a comprehensive safety evaluation model of the pressure vessel in service is established. The defect parameters of pressure vessel in service are obtained using the magnetic memory testing method and the corresponding defect quantitative formula. The membership degrees of fatigue and fracture failure are solved based on the assessment method of fatigue and fracture of pressure vessel in service. Then according to the established factor set,evaluation set and weight set,the comprehensive safety assessment of pressure vessels in service is realized using the weighted average method. Finally,the comprehensive safety evaluation method based on the defect quantitative for the pressure vessel in service is got and an example is provided.
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spelling doaj.art-176b4eaec9944f2dab58a0749c99774f2023-08-01T07:40:31ZzhoEditorial Office of Journal of Mechanical StrengthJixie qiangdu1001-96692015-01-013770671130592158THE COMPREHENSIVE SAFETY EVALUATION METHOD BASED ON THE DEFECT QUANTITATIVE FOR THE PRESSURE VESSEL IN SERVICELIU JunHUANG ChenCHENG ShaoWeiZHANG XiaoHongHE XingThe magnetic memory testing and fuzzy evaluation theory is applied to the comprehensive safety evaluation of pressure vessel in service,and a comprehensive safety evaluation model of the pressure vessel in service is established. The defect parameters of pressure vessel in service are obtained using the magnetic memory testing method and the corresponding defect quantitative formula. The membership degrees of fatigue and fracture failure are solved based on the assessment method of fatigue and fracture of pressure vessel in service. Then according to the established factor set,evaluation set and weight set,the comprehensive safety assessment of pressure vessels in service is realized using the weighted average method. Finally,the comprehensive safety evaluation method based on the defect quantitative for the pressure vessel in service is got and an example is provided.http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2015.04.018Pressure vessel;Safety evaluation;Fuzzy mathematics;Defect size
spellingShingle LIU Jun
HUANG Chen
CHENG ShaoWei
ZHANG XiaoHong
HE Xing
THE COMPREHENSIVE SAFETY EVALUATION METHOD BASED ON THE DEFECT QUANTITATIVE FOR THE PRESSURE VESSEL IN SERVICE
Jixie qiangdu
Pressure vessel;Safety evaluation;Fuzzy mathematics;Defect size
title THE COMPREHENSIVE SAFETY EVALUATION METHOD BASED ON THE DEFECT QUANTITATIVE FOR THE PRESSURE VESSEL IN SERVICE
title_full THE COMPREHENSIVE SAFETY EVALUATION METHOD BASED ON THE DEFECT QUANTITATIVE FOR THE PRESSURE VESSEL IN SERVICE
title_fullStr THE COMPREHENSIVE SAFETY EVALUATION METHOD BASED ON THE DEFECT QUANTITATIVE FOR THE PRESSURE VESSEL IN SERVICE
title_full_unstemmed THE COMPREHENSIVE SAFETY EVALUATION METHOD BASED ON THE DEFECT QUANTITATIVE FOR THE PRESSURE VESSEL IN SERVICE
title_short THE COMPREHENSIVE SAFETY EVALUATION METHOD BASED ON THE DEFECT QUANTITATIVE FOR THE PRESSURE VESSEL IN SERVICE
title_sort comprehensive safety evaluation method based on the defect quantitative for the pressure vessel in service
topic Pressure vessel;Safety evaluation;Fuzzy mathematics;Defect size
url http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2015.04.018
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