Characteristics of Metal Magnetic Memory Testing of 35CrMo Steel during Fatigue Loading

The fatigue fracture of a drillstring could cause drilling disturbances and some negative impacts (e.g., economic loss) will be brought when restoring the drillstring to functionality. In order to evaluate the effects of the fatigue damage of the drillstring during drilling, a new apparatus, which c...

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Main Authors: Zhibin Hu, Jianchun Fan, Shengnan Wu, Haoyuan Dai, Shujie Liu
Format: Article
Language:English
Published: MDPI AG 2018-02-01
Series:Metals
Subjects:
SEM
Online Access:http://www.mdpi.com/2075-4701/8/2/119
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spelling doaj-6454c2aa85724a699aed5b3cfc0f91912020-11-25T01:48:36ZengMDPI AGMetals2075-47012018-02-018211910.3390/met8020119met8020119Characteristics of Metal Magnetic Memory Testing of 35CrMo Steel during Fatigue LoadingZhibin Hu0Jianchun Fan1Shengnan Wu2Haoyuan Dai3Shujie Liu4College of Mechanical and Transportation Engineering, China University of Petroleum-Beijing, Beijing 102200, ChinaCollege of Mechanical and Transportation Engineering, China University of Petroleum-Beijing, Beijing 102200, ChinaCollege of Mechanical and Transportation Engineering, China University of Petroleum-Beijing, Beijing 102200, ChinaCollege of Mechanical and Transportation Engineering, China University of Petroleum-Beijing, Beijing 102200, ChinaChina National Offshore Oil Corporation, Beijing 100029, ChinaThe fatigue fracture of a drillstring could cause drilling disturbances and some negative impacts (e.g., economic loss) will be brought when restoring the drillstring to functionality. In order to evaluate the effects of the fatigue damage of the drillstring during drilling, a new apparatus, which could monitor the load level in real-time, was built to perform the four-point bending fatigue test on 35CrMo steel, a typical material of drillstrings. Such an apparatus is based on metal magnetic memory (MMM) technology and can acquire the tangential and normal components of MMM signals. Based on the analysis of the change of surface morphology and MMM signals, it was concluded that the variation of MMM signals could be divided into four stages, which are used to accurately describe the fatigue damage process of the drillstring. Additionally, the MMM signal characteristics are introduced to especially evaluate the fatigue damage of the drillstring, including crack initiation. Furthermore, the scanning electron microscopy (SEM) results demonstrated that morphologies of fatigue fracture were related to the variation of MMM signals. Linear fitting results indicated that fatigue crack length had a good linear relationship with the characteristics, so it is feasible to monitor fatigue damage and predict the residual life of a drillstring by using MMM technology.http://www.mdpi.com/2075-4701/8/2/119fatigue fracture of drillstringfour-point bending fatigue testsurface morphologyMMM signal characteristicsSEM
collection DOAJ
language English
format Article
sources DOAJ
author Zhibin Hu
Jianchun Fan
Shengnan Wu
Haoyuan Dai
Shujie Liu
spellingShingle Zhibin Hu
Jianchun Fan
Shengnan Wu
Haoyuan Dai
Shujie Liu
Characteristics of Metal Magnetic Memory Testing of 35CrMo Steel during Fatigue Loading
Metals
fatigue fracture of drillstring
four-point bending fatigue test
surface morphology
MMM signal characteristics
SEM
author_facet Zhibin Hu
Jianchun Fan
Shengnan Wu
Haoyuan Dai
Shujie Liu
author_sort Zhibin Hu
title Characteristics of Metal Magnetic Memory Testing of 35CrMo Steel during Fatigue Loading
title_short Characteristics of Metal Magnetic Memory Testing of 35CrMo Steel during Fatigue Loading
title_full Characteristics of Metal Magnetic Memory Testing of 35CrMo Steel during Fatigue Loading
title_fullStr Characteristics of Metal Magnetic Memory Testing of 35CrMo Steel during Fatigue Loading
title_full_unstemmed Characteristics of Metal Magnetic Memory Testing of 35CrMo Steel during Fatigue Loading
title_sort characteristics of metal magnetic memory testing of 35crmo steel during fatigue loading
publisher MDPI AG
series Metals
issn 2075-4701
publishDate 2018-02-01
description The fatigue fracture of a drillstring could cause drilling disturbances and some negative impacts (e.g., economic loss) will be brought when restoring the drillstring to functionality. In order to evaluate the effects of the fatigue damage of the drillstring during drilling, a new apparatus, which could monitor the load level in real-time, was built to perform the four-point bending fatigue test on 35CrMo steel, a typical material of drillstrings. Such an apparatus is based on metal magnetic memory (MMM) technology and can acquire the tangential and normal components of MMM signals. Based on the analysis of the change of surface morphology and MMM signals, it was concluded that the variation of MMM signals could be divided into four stages, which are used to accurately describe the fatigue damage process of the drillstring. Additionally, the MMM signal characteristics are introduced to especially evaluate the fatigue damage of the drillstring, including crack initiation. Furthermore, the scanning electron microscopy (SEM) results demonstrated that morphologies of fatigue fracture were related to the variation of MMM signals. Linear fitting results indicated that fatigue crack length had a good linear relationship with the characteristics, so it is feasible to monitor fatigue damage and predict the residual life of a drillstring by using MMM technology.
topic fatigue fracture of drillstring
four-point bending fatigue test
surface morphology
MMM signal characteristics
SEM
url http://www.mdpi.com/2075-4701/8/2/119
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AT jianchunfan characteristicsofmetalmagneticmemorytestingof35crmosteelduringfatigueloading
AT shengnanwu characteristicsofmetalmagneticmemorytestingof35crmosteelduringfatigueloading
AT haoyuandai characteristicsofmetalmagneticmemorytestingof35crmosteelduringfatigueloading
AT shujieliu characteristicsofmetalmagneticmemorytestingof35crmosteelduringfatigueloading
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