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Volume 40 Issue S1
Dec.  2018
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Article Contents
XIAO Chao, CUI Heng. Effect of Al content on inclusions in the automobile high strength steel[J]. Chinese Journal of Engineering, 2018, 40(S1): 26-30. doi: 10.13374/j.issn2095-9389.2018.s1.004
Citation: XIAO Chao, CUI Heng. Effect of Al content on inclusions in the automobile high strength steel[J]. Chinese Journal of Engineering, 2018, 40(S1): 26-30. doi: 10.13374/j.issn2095-9389.2018.s1.004

Effect of Al content on inclusions in the automobile high strength steel

doi: 10.13374/j.issn2095-9389.2018.s1.004
  • Received Date: 2018-01-20
    Available Online: 2023-07-18
  • With the addition of Al, the type, amount and precipitation temperature of inclusions in high strength steel for automobile will change.The characteristics of inclusions including amount, species and precipitation temperature in three typical automotive high strength steels with different Al contents were investigated by oxygen and nitrogen analysis, scanning electron microscopy (SEM) , and thermodynamic calculation.The results show that the mass fraction of Al in steel increases from 0.054%to 1.35%, the mass fraction of T[O]in steel decreases from 0.00150%to 0.00075%, and the number of inclusions decreases from 38.28 mm-2to 28.12mm-2, the number of inclusions in steel tends to decrease.With the increase of Al mass fraction in the steel, the evolution route of main oxide inclusions is Al2O3·MnO→MgAl2O4, the main aluminum inclusion changes from Al2O3to Al N;and the evolution route of sulfide inclusions is MnS to MgS.The thermodynamic calculations indicate that the formation of Al N inclusions is related to the Al content in the steel, and the Al N inclusions in steel with high Al content are easier to be formed.The precipitation temperature of Al N increases with the increase of Al content, and the precipitation temperatures are 1375, 1528 and 1561 K, respectively.

     

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  • [1]
    Li J G, Zhang J D, Huang H L, et al. Research status and development trend of high strength steel for automotive use. Mater Rev, 2012, 26 (s1) :397 (李激光, 張金棟, 黃海亮, 等.高強汽車用鋼的研究現狀及發展趨勢.材料導報, 2012, 26 (s1) :397)
    [2]
    Han Z Y, Zhang M D, Xu H F, et al. Research and application of high performance automobile steel. Iron Steel, 2016, 51 (2) :1 (韓志勇, 張明達, 徐海峰, 等.高性能汽車鋼組織性能特點及未來研發方向.鋼鐵, 2016, 51 (2) :1)
    [3]
    Wang M, Zhang C, Hu F, et al. Current status and trend of TRIP automotive steels. J Iron Steel Res, 2016, 28 (8) :1 (汪淼, 張聰, 胡鋒, 等.相變誘導塑性汽車用鋼的發展現狀與趨勢.鋼鐵研究學報, 2016, 28 (8) :1)
    [4]
    Wang A H. The market and development trends of automobile steel in China. Steel Rolling, 2012, 29 (6) :49 (王愛華.我國汽車用鋼市場及其發展趨勢.軋鋼, 2012, 29 (6) :49)
    [5]
    Speer J G, Matlock D K, Moor E D, et al. Highlights of recent progress in automotive sheet steel development. Translated by Zhou S. World Iron Steel, 2013, 13 (5) :48 (Speer J G, Matlock D K, Moor E D, 等.汽車用鋼的最新研究進展.周澍, 譯.世界鋼鐵, 2013, 13 (5) :48)
    [6]
    Wang C Y, Shi J, Cao W Q, et al. Characterization of microstructure obtained by quenching and partitioning process in low alloy martensitic steel. Mater Sci Eng A, 2010, 527 (15) :3442
    [7]
    Yin H B, Skoczylas G. In-situ observations and thermodynamics of the chemical reaction between Al N particles and molten slag. Proc AISTech, 2006, 6:753
    [8]
    Vedani M, Dellasega D, Mannuccii A. Characterization of grainboundary precipitates after hot-ductility tests of microalloyed steels. ISIJ Int, 2009, 49 (3) :446
    [9]
    Wang Y N, Yang J, Xin X L, et al. The effect of cooling conditions on the evolution of non-metallic inclusions in high manganese TWIP steels. Metall Mater Trans B, 2016, 47 (2) :1378
    [10]
    Yang B F, Liu J H, Han Z B, et al. Effect of electroslag remelting on inclusions in Fe CrAl stainless steel. J Iron Steel Res, 2015, 27 (10) :19 (楊波鋒, 劉建華, 韓志彪, 等.電渣重熔對Fe CrAl不銹鋼中夾雜物的影響.鋼鐵研究學報, 2015, 27 (10) :19)
    [11]
    Jang J M, Kim D H, Paek M K, et al. Al N formation in high-Al and high-Mn alloyed advanced high strength steels//The Minerals, Metals&materials Society. EPD Congress 2014. John Wiley&Sons, Inc., 2014:285
    [12]
    Cai K K. Quality Control of Continuous Casting Slab. Beijing:Metallurgical Industry Press, 2010 (蔡開科.連鑄坯質量控制.北京:冶金工業出版社, 2010)
    [13]
    Wada H, Pehlke R D. Nitrogen solubility and aluminum nitride precipitation in liquid iron, Fe--Cr, Fe-Cr-Ni, and Fe-Cr-NiMo alloys. Metall Trans B, 1978, 9 (3) :441
    [14]
    Chen J X. Chart Data Sheet Used in Steelmaking. 2nd Ed. Beijing:Metallurgical Industry Press, 2010 (陳家祥.煉鋼常用圖表數據手冊. 2版.北京:冶金工業出版社, 2010)
    [15]
    Andersson M A T, J9nsson P G, Nzotta M M. Application of the sulphide capacity concept on high-basicity ladle slags used in bearing-steel production. ISIJ Int, 1999, 39 (11) :1140
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