Effect of Boron on Microstructure and Properties of Ultra-Low Carbon Steel
The effect of boron on microstructure, mechanical property and conductivity of ultra-low carbon steel wire rod with diameter 6.5 mm was studied. The results show that boron has little influence on the grain size and mechanical property of ultra-low carbon steel wire rod when adding 0.0020% boron alo...
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Published in | IOP conference series. Materials Science and Engineering Vol. 774; no. 1; pp. 12023 - 12026 |
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Format | Journal Article |
Language | English |
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Abstract | The effect of boron on microstructure, mechanical property and conductivity of ultra-low carbon steel wire rod with diameter 6.5 mm was studied. The results show that boron has little influence on the grain size and mechanical property of ultra-low carbon steel wire rod when adding 0.0020% boron alone and under the same process conditions; but when 0.0055% boron is added, the ASTM grain size number of the wire rod is coarsened from the 7.5 grade to 6 grade, at the same time, the tensile strength is reduced by 20 MPa and the electrical conductivity is increased from 16.2%IACS to 16.3%IACS. The effect of Boron on tensile strength is mainly caused by coarsening grain diameter. The effect of boron on grain diameter is related to [B]/[N], when the [B]/[N] is relatively high(for example 1.34), the grain diameter growth is obvious, conversely, when the [B]/[N] is relatively low(for example 0.44), the grain diameter growth is not obvious. |
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AbstractList | Abstract
The effect of boron on microstructure, mechanical property and conductivity of ultra-low carbon steel wire rod with diameter 6.5 mm was studied. The results show that boron has little influence on the grain size and mechanical property of ultra-low carbon steel wire rod when adding 0.0020% boron alone and under the same process conditions; but when 0.0055% boron is added, the ASTM grain size number of the wire rod is coarsened from the 7.5 grade to 6 grade, at the same time, the tensile strength is reduced by 20 MPa and the electrical conductivity is increased from 16.2%IACS to 16.3%IACS. The effect of Boron on tensile strength is mainly caused by coarsening grain diameter. The effect of boron on grain diameter is related to [B]/[N], when the [B]/[N] is relatively high(for example 1.34), the grain diameter growth is obvious, conversely, when the [B]/[N] is relatively low(for example 0.44), the grain diameter growth is not obvious. The effect of boron on microstructure, mechanical property and conductivity of ultra-low carbon steel wire rod with diameter 6.5 mm was studied. The results show that boron has little influence on the grain size and mechanical property of ultra-low carbon steel wire rod when adding 0.0020% boron alone and under the same process conditions; but when 0.0055% boron is added, the ASTM grain size number of the wire rod is coarsened from the 7.5 grade to 6 grade, at the same time, the tensile strength is reduced by 20 MPa and the electrical conductivity is increased from 16.2%IACS to 16.3%IACS. The effect of Boron on tensile strength is mainly caused by coarsening grain diameter. The effect of boron on grain diameter is related to [B]/[N], when the [B]/[N] is relatively high(for example 1.34), the grain diameter growth is obvious, conversely, when the [B]/[N] is relatively low(for example 0.44), the grain diameter growth is not obvious. |
Author | Zhao, Aimin Wang, Lijun Ruan, Shipeng |
Author_xml | – sequence: 1 givenname: Shipeng surname: Ruan fullname: Ruan, Shipeng email: shipengruan@163.com organization: Hebei Engineering Research Center for Wire Rod , China – sequence: 2 givenname: Aimin surname: Zhao fullname: Zhao, Aimin organization: Collaborative Innovation Center of Steel Technology; University of Science and Technology Beijing , China – sequence: 3 givenname: Lijun surname: Wang fullname: Wang, Lijun organization: Hebei Engineering Research Center for Wire Rod , China |
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Cites_doi | 10.4028/www.scientific.net/MSF.539-543.4238 |
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References | Yuan (MSE_774_1_012023bib6) 2005; 6 Ruan (MSE_774_1_012023bib1) 2015; 32 Li (MSE_774_1_012023bib3) 2006; 41 Deng (MSE_774_1_012023bib7) 2017; 46 Camurri (MSE_774_1_012023bib5) 2007; 539-543 Zhao (MSE_774_1_012023bib4) 2011; 36 Hui (MSE_774_1_012023bib2) 2009 |
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Snippet | The effect of boron on microstructure, mechanical property and conductivity of ultra-low carbon steel wire rod with diameter 6.5 mm was studied. The results... Abstract The effect of boron on microstructure, mechanical property and conductivity of ultra-low carbon steel wire rod with diameter 6.5 mm was studied. The... |
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SubjectTerms | Boron Coarsening conductivity Electrical resistivity Grain size Low carbon steel Low carbon steels Microstructure Steel wire strength Tensile strength Ultra-low carbon steel Wire rod |
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Title | Effect of Boron on Microstructure and Properties of Ultra-Low Carbon Steel |
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