Influence of Stick Electrode Coating’s Moisture Content on the Diffusible Hydrogen in Underwater Wet Shielded Metal Arc Welding
In shielded metal arc welding, the major factors influencing hydrogen uptake into the weld metal are (i) the hydrogen content of the base metal, (ii) hydrogen input by the welding consumable, and (iii) the hydrogen introduced by the atmosphere surrounding the arc process. In this study, the relative...
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Published in | Advances in materials science Vol. 20; no. 4; pp. 27 - 37 |
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Main Authors | , |
Format | Journal Article |
Language | English |
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01.12.2020
De Gruyter Poland |
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Abstract | In shielded metal arc welding, the major factors influencing hydrogen uptake into the weld metal are (i) the hydrogen content of the base metal, (ii) hydrogen input by the welding consumable, and (iii) the hydrogen introduced by the atmosphere surrounding the arc process. In this study, the relative contribution of these factors is investigated and compared to each other for the case of underwater wet shielded metal arc welding. To assess the influence of the stick electrode’s moisture (capillary introduced water during handling operations) on the diffusible hydrogen in wet welded samples, wet and dry electrodes were welded at four different water depths. The moisture was absorbed through the sharpened electrode tip only, to ensure close to service conditions. The results show that the moist stick electrode coatings lead to 22.6% higher average diffusible hydrogen content in the weld metal (0.5 m water depth an average). However, the effect disappears with increasing water depths (no difference in 60 m water depth). |
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AbstractList | Abstract
In shielded metal arc welding, the major factors influencing hydrogen uptake into the weld metal are (i) the hydrogen content of the base metal, (ii) hydrogen input by the welding consumable, and (iii) the hydrogen introduced by the atmosphere surrounding the arc process. In this study, the relative contribution of these factors is investigated and compared to each other for the case of underwater wet shielded metal arc welding. To assess the influence of the stick electrode’s moisture (capillary introduced water during handling operations) on the diffusible hydrogen in wet welded samples, wet and dry electrodes were welded at four different water depths. The moisture was absorbed through the sharpened electrode tip only, to ensure close to service conditions. The results show that the moist stick electrode coatings lead to 22.6% higher average diffusible hydrogen content in the weld metal (0.5 m water depth an average). However, the effect disappears with increasing water depths (no difference in 60 m water depth). In shielded metal arc welding, the major factors influencing hydrogen uptake into the weld metal are (i) the hydrogen content of the base metal, (ii) hydrogen input by the welding consumable, and (iii) the hydrogen introduced by the atmosphere surrounding the arc process. In this study, the relative contribution of these factors is investigated and compared to each other for the case of underwater wet shielded metal arc welding. To assess the influence of the stick electrode’s moisture (capillary introduced water during handling operations) on the diffusible hydrogen in wet welded samples, wet and dry electrodes were welded at four different water depths. The moisture was absorbed through the sharpened electrode tip only, to ensure close to service conditions. The results show that the moist stick electrode coatings lead to 22.6% higher average diffusible hydrogen content in the weld metal (0.5 m water depth an average). However, the effect disappears with increasing water depths (no difference in 60 m water depth). |
Author | Klett, J. Hassel, T. |
Author_xml | – sequence: 1 givenname: J. surname: Klett fullname: Klett, J. email: klett@iw.uni-hannover.de organization: Leibniz Universität Hannover, Institut für Werkstoffkunde (Materials Science), An der Universität 2, 30823 Garbsen, Germany – sequence: 2 givenname: T. surname: Hassel fullname: Hassel, T. organization: Leibniz Universität Hannover, Institut für Werkstoffkunde (Materials Science), An der Universität 2, 30823 Garbsen, Germany |
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Cites_doi | 10.3390/ma13132947 10.1016/j.ijhydene.2017.07.225 10.1115/OMAE2012-83002 10.4028/www.scientific.net/KEM.69-70.95 10.1016/B978-0-08-030537-0.50027-2 10.1515/adms-2017-0036 10.1051/matecconf/20163903004 10.2478/pomr-2018-0104 10.1515/adms-2016-0018 10.3390/ma13173750 10.1016/j.matdes.2020.108482 10.1007/s42452-020-3066-8 10.1016/j.jmatprotec.2017.06.009 10.3390/ma13215001 10.1515/adms-2015-0015 10.1016/j.ijhydene.2020.01.195 10.1016/j.jmatprotec.2018.10.019 10.1002/maco.202011963 10.3390/ma12203372 10.3390/met10111498 10.1179/136217101322910560 10.3390/ma12060915 10.1016/j.matdes.2016.04.019 10.1016/j.jmatprotec.2018.06.034 10.26628/wtr.v91i7.1049 |
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References_xml | – ident: 2024050120343976090_j_adms-2020-0020_ref_024_w2aab3b7b5b1b6b1ab1ac24Aa – ident: 2024050120343976090_j_adms-2020-0020_ref_029_w2aab3b7b5b1b6b1ab1ac29Aa doi: 10.3390/ma13132947 – ident: 2024050120343976090_j_adms-2020-0020_ref_030_w2aab3b7b5b1b6b1ab1ac30Aa – ident: 2024050120343976090_j_adms-2020-0020_ref_002_w2aab3b7b5b1b6b1ab1ab2Aa doi: 10.1016/j.ijhydene.2017.07.225 – ident: 2024050120343976090_j_adms-2020-0020_ref_034_w2aab3b7b5b1b6b1ab1ac34Aa doi: 10.1115/OMAE2012-83002 – ident: 2024050120343976090_j_adms-2020-0020_ref_007_w2aab3b7b5b1b6b1ab1ab7Aa – ident: 2024050120343976090_j_adms-2020-0020_ref_016_w2aab3b7b5b1b6b1ab1ac16Aa – ident: 2024050120343976090_j_adms-2020-0020_ref_018_w2aab3b7b5b1b6b1ab1ac18Aa – ident: 2024050120343976090_j_adms-2020-0020_ref_022_w2aab3b7b5b1b6b1ab1ac22Aa doi: 10.4028/www.scientific.net/KEM.69-70.95 – ident: 2024050120343976090_j_adms-2020-0020_ref_026_w2aab3b7b5b1b6b1ab1ac26Aa – ident: 2024050120343976090_j_adms-2020-0020_ref_033_w2aab3b7b5b1b6b1ab1ac33Aa doi: 10.1016/B978-0-08-030537-0.50027-2 – ident: 2024050120343976090_j_adms-2020-0020_ref_015_w2aab3b7b5b1b6b1ab1ac15Aa doi: 10.1515/adms-2017-0036 – ident: 2024050120343976090_j_adms-2020-0020_ref_035_w2aab3b7b5b1b6b1ab1ac35Aa doi: 10.1051/matecconf/20163903004 – ident: 2024050120343976090_j_adms-2020-0020_ref_003_w2aab3b7b5b1b6b1ab1ab3Aa doi: 10.2478/pomr-2018-0104 – ident: 2024050120343976090_j_adms-2020-0020_ref_014_w2aab3b7b5b1b6b1ab1ac14Aa doi: 10.1515/adms-2016-0018 – ident: 2024050120343976090_j_adms-2020-0020_ref_032_w2aab3b7b5b1b6b1ab1ac32Aa doi: 10.3390/ma13173750 – ident: 2024050120343976090_j_adms-2020-0020_ref_021_w2aab3b7b5b1b6b1ab1ac21Aa doi: 10.1016/j.matdes.2020.108482 – ident: 2024050120343976090_j_adms-2020-0020_ref_004_w2aab3b7b5b1b6b1ab1ab4Aa doi: 10.1007/s42452-020-3066-8 – ident: 2024050120343976090_j_adms-2020-0020_ref_011_w2aab3b7b5b1b6b1ab1ac11Aa doi: 10.1016/j.jmatprotec.2017.06.009 – ident: 2024050120343976090_j_adms-2020-0020_ref_031_w2aab3b7b5b1b6b1ab1ac31Aa – ident: 2024050120343976090_j_adms-2020-0020_ref_023_w2aab3b7b5b1b6b1ab1ac23Aa – ident: 2024050120343976090_j_adms-2020-0020_ref_036_w2aab3b7b5b1b6b1ab1ac36Aa doi: 10.3390/ma13215001 – ident: 2024050120343976090_j_adms-2020-0020_ref_025_w2aab3b7b5b1b6b1ab1ac25Aa – ident: 2024050120343976090_j_adms-2020-0020_ref_001_w2aab3b7b5b1b6b1ab1ab1Aa doi: 10.1515/adms-2015-0015 – ident: 2024050120343976090_j_adms-2020-0020_ref_017_w2aab3b7b5b1b6b1ab1ac17Aa – ident: 2024050120343976090_j_adms-2020-0020_ref_020_w2aab3b7b5b1b6b1ab1ac20Aa doi: 10.1016/j.ijhydene.2020.01.195 – ident: 2024050120343976090_j_adms-2020-0020_ref_006_w2aab3b7b5b1b6b1ab1ab6Aa doi: 10.1016/j.jmatprotec.2018.10.019 – ident: 2024050120343976090_j_adms-2020-0020_ref_008_w2aab3b7b5b1b6b1ab1ab8Aa doi: 10.1002/maco.202011963 – ident: 2024050120343976090_j_adms-2020-0020_ref_012_w2aab3b7b5b1b6b1ab1ac12Aa doi: 10.3390/ma12203372 – ident: 2024050120343976090_j_adms-2020-0020_ref_037_w2aab3b7b5b1b6b1ab1ac37Aa doi: 10.3390/met10111498 – ident: 2024050120343976090_j_adms-2020-0020_ref_010_w2aab3b7b5b1b6b1ab1ac10Aa doi: 10.1179/136217101322910560 – ident: 2024050120343976090_j_adms-2020-0020_ref_027_w2aab3b7b5b1b6b1ab1ac27Aa – ident: 2024050120343976090_j_adms-2020-0020_ref_013_w2aab3b7b5b1b6b1ab1ac13Aa doi: 10.3390/ma12060915 – ident: 2024050120343976090_j_adms-2020-0020_ref_019_w2aab3b7b5b1b6b1ab1ac19Aa doi: 10.1016/j.matdes.2016.04.019 – ident: 2024050120343976090_j_adms-2020-0020_ref_005_w2aab3b7b5b1b6b1ab1ab5Aa doi: 10.1016/j.jmatprotec.2018.06.034 – ident: 2024050120343976090_j_adms-2020-0020_ref_028_w2aab3b7b5b1b6b1ab1ac28Aa doi: 10.26628/wtr.v91i7.1049 – ident: 2024050120343976090_j_adms-2020-0020_ref_009_w2aab3b7b5b1b6b1ab1ab9Aa |
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Snippet | In shielded metal arc welding, the major factors influencing hydrogen uptake into the weld metal are (i) the hydrogen content of the base metal, (ii) hydrogen... Abstract In shielded metal arc welding, the major factors influencing hydrogen uptake into the weld metal are (i) the hydrogen content of the base metal, (ii)... |
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SubjectTerms | Base metal Coated electrodes diffusible hydrogen Diffusion welding electrode coating moisture Electrodes Hydrogen Moisture content Shielded metal arc welding SMAW Underwater Underwater wet welding Water depth Weld metal |
Title | Influence of Stick Electrode Coating’s Moisture Content on the Diffusible Hydrogen in Underwater Wet Shielded Metal Arc Welding |
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