Assessment of the Stress Sensitivity of Magnetostriction in Grain-Oriented Silicon Steel
This paper describes a novel, versatile system for measuring the stress sensitivity of magnetostriction of Epstein strips of grain-oriented electrical steel, an analysis of results of measurements on several grades of commercial material, and an attempt to relate their stress sensitivity characteris...
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Veröffentlicht in: | IEEE transactions on magnetics 2007-08, Vol.43 (8), p.3467-3476 |
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description | This paper describes a novel, versatile system for measuring the stress sensitivity of magnetostriction of Epstein strips of grain-oriented electrical steel, an analysis of results of measurements on several grades of commercial material, and an attempt to relate their stress sensitivity characteristics to material properties. The maximum value of peak magnetostriction under applied stress is proportional to the strip gauge for both conventional and high permeability grades of material. A model explains the contributions of retained stress and stress due to the forsterite coatings on grain-oriented silicon steel. This model can be used to correlate the thickness of the fosterite coating to its calculated coating stress. It is also possible to separate the effect of the phosphate and forsterite coatings. Both types of coating set up a longitudinal stress in the steel in proportion to their thickness. |
doi_str_mv | 10.1109/TMAG.2007.893534 |
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The maximum value of peak magnetostriction under applied stress is proportional to the strip gauge for both conventional and high permeability grades of material. A model explains the contributions of retained stress and stress due to the forsterite coatings on grain-oriented silicon steel. This model can be used to correlate the thickness of the fosterite coating to its calculated coating stress. It is also possible to separate the effect of the phosphate and forsterite coatings. 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The maximum value of peak magnetostriction under applied stress is proportional to the strip gauge for both conventional and high permeability grades of material. A model explains the contributions of retained stress and stress due to the forsterite coatings on grain-oriented silicon steel. This model can be used to correlate the thickness of the fosterite coating to its calculated coating stress. It is also possible to separate the effect of the phosphate and forsterite coatings. Both types of coating set up a longitudinal stress in the steel in proportion to their thickness.</description><subject>Applied sciences</subject><subject>Assessments</subject><subject>Building materials</subject><subject>Coatings</subject><subject>Cross-disciplinary physics: materials science; rheology</subject><subject>Electric variables measurement</subject><subject>Exact sciences and technology</subject><subject>Forsterite</subject><subject>grain-oriented silicon steel</subject><subject>Magnetic analysis</subject><subject>Magnetic materials</subject><subject>Magnetism</subject><subject>Magnetostriction</subject><subject>Materials science</subject><subject>Mathematical models</subject><subject>Metals. Metallurgy</subject><subject>Other topics in materials science</subject><subject>Physics</subject><subject>Production techniques</subject><subject>Silicon</subject><subject>Silicon steels</subject><subject>Steel</subject><subject>Stress measurement</subject><subject>Stresses</subject><subject>Strip</subject><subject>Strips</subject><subject>Surface treatment</subject><issn>0018-9464</issn><issn>1941-0069</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2007</creationdate><recordtype>article</recordtype><sourceid>RIE</sourceid><recordid>eNp9kc9rFDEYhoNUcFu9C70MBfU065dMfh6XpW6Flh62greQyX5TU2YzNckK_e_NsMVCD55C8j7vC-Eh5COFJaVgvt7drDZLBqCW2nSi42_IghpOWwBpTsgCgOrWcMnfkdOcH-qVCwoL8nOVM-a8x1iaaWjKL2y2JdWXZosxhxL-hPI0JzfuPmKZcknBlzDFJsRmk1yI7W0KtY27ZhvG4GuyLYjje_J2cGPGD8_nGfnx7fJufdVe326-r1fXrecdlFYppLJXO8WRecNZz9lOM5S9GQajvdJCg2FiR3uU0uPgOg1CSqeU4k72ojsjX467j2n6fcBc7D5kj-PoIk6HbLUGKZkQqpKf_0t2XGoFfJ68eAU-TIcU6y-slpxyo5ipEBwhn6acEw72MYW9S0-Wgp2N2NmInY3Yo5Fa-fS867J345Bc9CG_9LQRUJ1V7vzIBUT8F3OmlNa8-wvDYpOL</recordid><startdate>20070801</startdate><enddate>20070801</enddate><creator>Anderson, P.I.</creator><creator>Moses, A.J.</creator><creator>Stanbury, H.J.</creator><general>IEEE</general><general>Institute of Electrical and Electronics Engineers</general><general>The Institute of Electrical and Electronics Engineers, Inc. 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Metallurgy</topic><topic>Other topics in materials science</topic><topic>Physics</topic><topic>Production techniques</topic><topic>Silicon</topic><topic>Silicon steels</topic><topic>Steel</topic><topic>Stress measurement</topic><topic>Stresses</topic><topic>Strip</topic><topic>Strips</topic><topic>Surface treatment</topic><toplevel>online_resources</toplevel><creatorcontrib>Anderson, P.I.</creatorcontrib><creatorcontrib>Moses, A.J.</creatorcontrib><creatorcontrib>Stanbury, H.J.</creatorcontrib><collection>IEEE All-Society Periodicals Package (ASPP) 2005-present</collection><collection>IEEE All-Society Periodicals Package (ASPP) 1998-Present</collection><collection>IEEE Electronic Library (IEL)</collection><collection>Pascal-Francis</collection><collection>CrossRef</collection><collection>Electronics & Communications Abstracts</collection><collection>Solid State and Superconductivity Abstracts</collection><collection>METADEX</collection><collection>Technology Research Database</collection><collection>Materials Research Database</collection><collection>Advanced Technologies Database with Aerospace</collection><collection>ANTE: Abstracts in New Technology & Engineering</collection><collection>Engineering Research Database</collection><jtitle>IEEE transactions on magnetics</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext_linktorsrc</fulltext></delivery><addata><au>Anderson, P.I.</au><au>Moses, A.J.</au><au>Stanbury, H.J.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Assessment of the Stress Sensitivity of Magnetostriction in Grain-Oriented Silicon Steel</atitle><jtitle>IEEE transactions on magnetics</jtitle><stitle>TMAG</stitle><date>2007-08-01</date><risdate>2007</risdate><volume>43</volume><issue>8</issue><spage>3467</spage><epage>3476</epage><pages>3467-3476</pages><issn>0018-9464</issn><eissn>1941-0069</eissn><coden>IEMGAQ</coden><abstract>This paper describes a novel, versatile system for measuring the stress sensitivity of magnetostriction of Epstein strips of grain-oriented electrical steel, an analysis of results of measurements on several grades of commercial material, and an attempt to relate their stress sensitivity characteristics to material properties. The maximum value of peak magnetostriction under applied stress is proportional to the strip gauge for both conventional and high permeability grades of material. A model explains the contributions of retained stress and stress due to the forsterite coatings on grain-oriented silicon steel. This model can be used to correlate the thickness of the fosterite coating to its calculated coating stress. It is also possible to separate the effect of the phosphate and forsterite coatings. Both types of coating set up a longitudinal stress in the steel in proportion to their thickness.</abstract><cop>New York, NY</cop><pub>IEEE</pub><doi>10.1109/TMAG.2007.893534</doi><tpages>10</tpages></addata></record> |
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subjects | Applied sciences Assessments Building materials Coatings Cross-disciplinary physics: materials science rheology Electric variables measurement Exact sciences and technology Forsterite grain-oriented silicon steel Magnetic analysis Magnetic materials Magnetism Magnetostriction Materials science Mathematical models Metals. Metallurgy Other topics in materials science Physics Production techniques Silicon Silicon steels Steel Stress measurement Stresses Strip Strips Surface treatment |
title | Assessment of the Stress Sensitivity of Magnetostriction in Grain-Oriented Silicon Steel |
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