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8 工程科学学报,第42卷,增刊1 J Mater Eng Perform,2017,26(6):2512 科技大学学报:自然科学版,2016,39(4):241) [10]Shi W N.Yang S F,Dong A P,et al.Understanding the corrosion [18]Goto H,Miyazawa K I,Yamaguchi K I,et al.Effect of cooling mechanism of spring steel induced by MnS inclusions with rate on oxide precipitation during solidification of low carbon different sizes.JOM,2018,70(11):2513 steels.ISI/Int,1994,34(5):414 [11]Liu X G,Wang C.Deng Q F,et al.High-temperature fracture [19]Chen Y L,Wang Y,Zhao A M.Precipitation of AIN and MnS in behavior of MnS inclusions based on GTN model.J Iron Steel Res low carbon aluminium-killed steel.J Iron Steel Res Int,2012. m,2019,26(9):941 19(4):51 [12]Pan X Q,Yang J,Zhi J J,et al.Evolution of inclusions in [20]Wang H,Bao Y P,Zhao M,et al.Effect of Ce on the cleanliness, steelmaking process for ultra low carbon BH auto exposed panel microstructure and mechanical properties of high strength low ron Steel,2019,54(8):48 alloy steel Q690E in industrial production process.J Miner (潘晓倩,杨健,职建军,等.超低碳汽车外板BH钢炼钢过程中夹 Metall Mater,2019,26(11):1372 杂物的演变.钢铁,2019.54(8):48) [21]Li ML,Wang F M,Li C R,et al.Effects of cooling rate and Al on [13]Huang Y,Cheng GG,Xie Y.Modification mechanism of cerium MnS formation in medium-carbon non-quenched and tempered on the inclusions in drill steel.Acta Metall Sin,2018,54(9):1253 steels.Int J Miner Metall Mater,2015,22(6):589 (黄宇,成国光,谢有.稀土Ce对钎具钢中夹杂物的改质机理研 [22]Yan J C,Li T,Shang Z Q,et al.Three-dimensional 究.金属学报,2018,54(9):1253) [14]Gao S,Wang M,GuoJL,et al.Characterization transformation of characterization of MnS inclusions in steel during rolling process. 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J Iron Steel Res Int, 2018, 25(8): 803 [15] Chen  S  F,  Liu  X,  Lei  H,  et  al.  Precipitation  behavior  of  MnS inclusions  during  solidification  of  manganese  steel. J Univ Sci Technol Liaoning, 2017, 40(4): 241 (陈士富, 刘学, 雷洪, 等. 锰钢凝固过程中MnS夹杂物析出行为. 辽宁科技大学学报, 2017, 40(4):241) [16] Zheng W, Qi P P, Shen X, et al. Precipitation behavior of MnS in low-carbon  low-sulfur  steel. J Wuhan Univ Sci Technol,  2016, 39(4): 241 (郑万, 齐盼盼, 沈星, 等. 低碳低硫钢中MnS析出行为分析. 武汉 [17] 科技大学学报:自然科学版, 2016, 39(4):241) Goto  H,  Miyazawa  K  I,  Yamaguchi  K  I,  et  al.  Effect  of  cooling rate  on  oxide  precipitation  during  solidification  of  low  carbon steels. ISIJ Int, 1994, 34(5): 414 [18] Chen Y L, Wang Y, Zhao A M. Precipitation of AIN and MnS in low  carbon  aluminium-killed  steel. J Iron Steel Res Int,  2012, 19(4): 51 [19] Wang H, Bao Y P, Zhao M, et al. Effect of Ce on the cleanliness, microstructure  and  mechanical  properties  of  high  strength  low alloy  steel  Q690E  in  industrial  production  process. Int J Miner Metall Mater, 2019, 26(11): 1372 [20] Li M L, Wang F M, Li C R, et al. Effects of cooling rate and Al on MnS  formation  in  medium-carbon  non-quenched  and  tempered steels. Int J Miner Metall Mater, 2015, 22(6): 589 [21] Yan  J  C,  Li  T,  Shang  Z  Q,  et  al.  Three-dimensional characterization of MnS inclusions in steel during rolling process. Mater Charact, 2019, 158: 109944 [22] Liu Y Q, Wang L J, Chou K C. Effect of cerium on the cleanliness of  spring  steel  used  in  fastener  of  high-speed  railway. J Rare Earths, 2014, 32(8): 759 [23] Cheng C X, Yang X J, He Y, et al. The effect of Ce on A356 alloy and the study of its refining mechanism. Chin J Rare Met, 2018, 42(11): 1127 (程昌学, 杨湘杰, 何毅, 等. Ce对A356合金的影响及细化机制的 研究. 稀有金属, 2018, 42(11):1127) [24] Zhou  Y,  Liu  W  D,  Yan  J,  et  al.  Valence  electron  theoretical interpretation on effect of rare-earth on antideformability of MnS. Chin J Rare Met, 2006, 30(2): 185 (周宇, 刘伟东, 阎杰, 等. 稀土元素对MnS夹杂物变形能力影响 的价电子理论分析. 稀有金属, 2006, 30(2):185) [25] · 8 · 工程科学学报,第 42 卷,增刊 1
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