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常立忠等:稀土一镁复合处理对GC15轴承钢中夹杂物的影响 ·771· 64) improved by Mg.J Iron Steel Res,2008,20(6):14 2]Li Y D,Yang Z G,Li S X,et al.Correlations between very high (陈斌,包萨日娜,姜敏,等.镁提高钢水纯净度的研究.钢 cycle fatigue properties and inclusions of GCrl5 bearing steel.Acta 铁研究学报,2008,20(6):14) Metall Sin,2008,44(8):968 [11]Yang J,Xu L.Y,Zhu K,et al.Improvement of HAZ toughness (李永德,杨振国,李守新,等.GCl5轴承钢超高周疲劳性 of steel plate for high heat input welding by inclusion control with 能与夹杂物相关性.金属学报,2008,44(8):968) Mg deoxidation.Steel Res Int,2015,86(6):619 B3]Zhang J M,Zhang J F,Yang ZG,et al.Estimation of maximum [12]Liu X,Yang J C,Yang L,et al.Effect of Ce oninclusions and inclusion size and fatigue strength in high strength steel.Acta Met- impact oroperty of 2Crl3 stainless steel.fron Steel Res Int, all Sin,2004,40(8):846 2010,17(12):59 (张继明,张建锋,杨振国,等.高强钢中最大夹杂物的尺寸 [13]Liu C,Revilla R I,Liu Z Y,et al.Effect of inclusions modified 估计与疲劳强度预测.金属学报,2004,40(8):846) by rare earth elements (Ce,La)on localized marine corrosion in 4]Chang LZ,Shi X F,Wang J J,et al.Effect of ultrasonic power Q460NH weathering steel.Corros Sci,2017,129:82 on distribution of Al2O inclusions in ESR ingots.Chin J Process [14]Yang J C,Li H W,Zhou L,et al.Mechanism of trace cerium in Eng,2015,15(1):79 ultra-clean IF steel.Iron Steel,2015,50(11):81 (常立忠,施晓芳,王建军,等.超声波功率对电渣钢锭中氧 (杨吉春,栗宏伟,周莉,等.微量稀土铈在超洁净F钢中 化铝夹杂物分布的影响.过程工程学报,2015,15(1):79) 的作用.钢铁,2015,50(11):81) [5]Wang H.Li J,Wang L L.Inclusion modification of magnesium [15]Song MM,Song B,Yang Z B,et al.Microstructure and inclu- treatment in H13 die steel.China Sciencepaper,2014,9(2):175 sion evolution in rare earth treated C-Mn steel.Chin Eng (王吴,李晶,王亮亮.镁对H13模具钢中夹杂物变性的影 2015,37(12):1564 响.中国科技论文,2014,9(2):175) (宋明明,宋波,杨占兵,等.稀土处理C-Mn钢显微组织和 [6]Wand D Y,Xu Z,Qu T P.Effect of Mg addition on inclusions 夹杂物演化.工程科学学报,2015,37(12):1564) and solidification structure in low carbon microalloy steels.Steel- [16]Xi X J,Lai C B,Li J S,et al.Effect of Y-base rare earth on the making,2017,33(5):12 microstructure and impact toughness of E36 steel plate.Chin (王德永,徐周,屈天鹏.镁处理对低碳微合金钢中夹杂物和 Eng,2017,39(2):244 凝固组织的影响.炼钢,2017,33(5):12) (习小军,赖朝彬,李京社,等.钇基稀土对36钢板显微组 Zheng W,Liu L,Li G Q,et al.Refinement mechanisms of inclu- 织及冲击性能的影响.工程科学学报,2017,39(2):244) sions in steel by Ti-Mg complex deoxidation.Chin J Eng,2015, [17]Sun H,Ji Y P,Chen L.Effect ofrare earth Ce on microstructure 37(7):873 and properties of X65 pipeline steels.Chin J Process Eng,2010, (郑万,刘磊,李光强,等.T-g复合脱氧钢中夹杂物细化 10(2):240 机制.工程科学学报,2015,37(7):873) (孙吴,计云萍,陈林.稀土Ce对X65管线钢组织和性能的 [8]Zheng W,Wu Z H,Li G Q,et al.Effects of Ti-Mg complex de- 影响.过程工程学报,2010,10(2):240) oxidation and sulfur content on the characteristics of inclusions and [18]Lu LT,Li W,Zhang J W,et al.Analysis of rotary bending giga- the precipitation behavior of MnS.Chin J Eng,2015,37 (3): cycle fatigue properties of bearing steel GCr15.Acta Metall Sin, 292 2009,45(1):73 (郑万,吴振华,李光强,等.T一Mg复合脱氧和硫含量对钢 (鲁连涛,李伟,张继旺,等.GC15钢旋转弯曲超长寿命疲 中夹杂物特征及MnS析出行为的影响.工程科学学报,2015, 劳性能分析.金属学报,2009,45(1):73) 37(3):292) [19]Uesugi T.Recent development of bearing steel in Japan.Tetsu- Zhang TS,Wang D Y,Zhang Y Q,et al.Dynamic evolution of to-Hagane,1988,74(10):1889 inclusions in Al-Mg deoxidation melts.I Northeast Unir Nat Sci, 220]Akesson J.SKFrolling bearing steels-properties and processes. 2014,35(9):1270 Ball Bear J,1983,217:32 (张同生,王德永,张永启,等.铝、镁脱氧钢中夹杂物的动态演 D1]Ohta H,Suito H.Activities in Ca0-MgO-Al2O3 slags and deox- 变规律.东北大学学报(自然科学版),2014,35(9):1270) idation equilibria of Al,Mg,and Ca.IS/J Int,1996,36(8): [10]Chen B,Bao S R N,Jiang M,et al.Cleanliness ofmolten steel 983常立忠等: 稀土--镁复合处理对 GCr15 轴承钢中夹杂物的影响 64) [2] Li Y D,Yang Z G,Li S X,et al. Correlations between very high cycle fatigue properties and inclusions of GCr15 bearing steel. Acta Metall Sin,2008,44( 8) : 968 ( 李永德,杨振国,李守新,等. GCr15 轴承钢超高周疲劳性 能与夹杂物相关性. 金属学报,2008,44( 8) : 968) [3] Zhang J M,Zhang J F,Yang Z G,et al. Estimation of maximum inclusion size and fatigue strength in high strength steel. Acta Met￾all Sin,2004,40( 8) : 846 ( 张继明,张建锋,杨振国,等. 高强钢中最大夹杂物的尺寸 估计与疲劳强度预测. 金属学报,2004,40( 8) : 846) [4] Chang L Z,Shi X F,Wang J J,et al. Effect of ultrasonic power on distribution of Al2O3 inclusions in ESR ingots. Chin J Process Eng,2015,15( 1) : 79 ( 常立忠,施晓芳,王建军,等. 超声波功率对电渣钢锭中氧 化铝夹杂物分布的影响. 过程工程学报,2015,15( 1) : 79) [5] Wang H,Li J,Wang L L. Inclusion modification of magnesium treatment in H13 die steel. China Sciencepaper,2014,9( 2) : 175 ( 王昊,李晶,王亮亮. 镁对 H13 模具钢中夹杂物变性的影 响. 中国科技论文,2014,9( 2) : 175) [6] Wand D Y,Xu Z,Qu T P. Effect of Mg addition on inclusions and solidification structure in low carbon microalloy steels. Steel￾making,2017,33( 5) : 12 ( 王德永,徐周,屈天鹏. 镁处理对低碳微合金钢中夹杂物和 凝固组织的影响. 炼钢,2017,33( 5) : 12) [7] Zheng W,Liu L,Li G Q,et al. Refinement mechanisms of inclu￾sions in steel by Ti--Mg complex deoxidation. Chin J Eng,2015, 37( 7) : 873 ( 郑万,刘磊,李光强,等. Ti--Mg 复合脱氧钢中夹杂物细化 机制. 工程科学学报,2015,37( 7) : 873) [8] Zheng W,Wu Z H,Li G Q,et al. Effects of Ti--Mg complex de￾oxidation and sulfur content on the characteristics of inclusions and the precipitation behavior of MnS. Chin J Eng,2015,37 ( 3) : 292 ( 郑万,吴振华,李光强,等. Ti--Mg 复合脱氧和硫含量对钢 中夹杂物特征及 MnS 析出行为的影响. 工程科学学报,2015, 37( 3) : 292) [9] Zhang T S,Wang D Y,Zhang Y Q,et al. Dynamic evolution of inclusions in Al--Mg deoxidation melts. J Northeast Univ Nat Sci, 2014,35( 9) : 1270 ( 张同生,王德永,张永启,等. 铝、镁脱氧钢中夹杂物的动态演 变规律. 东北大学学报( 自然科学版) ,2014,35( 9) : 1270) [10] Chen B,Bao S R N,Jiang M,et al. Cleanliness ofmolten steel improved by Mg. J Iron Steel Res,2008,20( 6) : 14 ( 陈斌,包萨日娜,姜敏,等. 镁提高钢水纯净度的研究. 钢 铁研究学报,2008,20( 6) : 14) [11] Yang J,Xu L Y,Zhu K,et al. Improvement of HAZ toughness of steel plate for high heat input welding by inclusion control with Mg deoxidation. Steel Res Int,2015,86( 6) : 619 [12] Liu X,Yang J C,Yang L,et al. Effect of Ce oninclusions and impact oroperty of 2Cr13 stainless steel. J Iron Steel Res Int, 2010,17( 12) : 59 [13] Liu C,Revilla R I ,Liu Z Y,et al. Effect of inclusions modified by rare earth elements ( Ce,La) on localized marine corrosion in Q460NH weathering steel. Corros Sci,2017,129: 82 [14] Yang J C,Li H W,Zhou L,et al. Mechanism of trace cerium in ultra-clean IF steel. Iron Steel,2015,50( 11) : 81 ( 杨吉春,栗宏伟,周莉,等. 微量稀土铈在超洁净 IF 钢中 的作用. 钢铁,2015,50( 11) : 81) [15] Song M M,Song B,Yang Z B,et al. Microstructure and inclu￾sion evolution in rare earth treated C--Mn steel. Chin J Eng, 2015,37( 12) : 1564 ( 宋明明,宋波,杨占兵,等. 稀土处理 C--Mn 钢显微组织和 夹杂物演化. 工程科学学报,2015,37( 12) : 1564) [16] Xi X J,Lai C B,Li J S,et al. Effect of Y-base rare earth on the microstructure and impact toughness of E36 steel plate. Chin J Eng,2017,39( 2) : 244 ( 习小军,赖朝彬,李京社,等. 钇基稀土对 E36 钢板显微组 织及冲击性能的影响. 工程科学学报,2017,39( 2) : 244) [17] Sun H,Ji Y P,Chen L. Effect ofrare earth Ce on microstructure and properties of X65 pipeline steels. Chin J Process Eng,2010, 10( 2) : 240 ( 孙昊,计云萍,陈林. 稀土 Ce 对 X65 管线钢组织和性能的 影响. 过程工程学报,2010,10( 2) : 240) [18] Lu L T,Li W,Zhang J W,et al. Analysis of rotary bending giga￾cycle fatigue properties of bearing steel GCr15. Acta Metall Sin, 2009,45( 1) : 73 ( 鲁连涛,李伟,张继旺,等. GCr15 钢旋转弯曲超长寿命疲 劳性能分析. 金属学报,2009,45( 1) : 73) [19] Uesugi T. Recent development of bearing steel in Japan. Tetsu￾to-Hagane,1988,74( 10) : 1889 [20] Akesson J. SKFrolling bearing steels--properties and processes. Ball Bear J,1983,217: 32 [21] Ohta H,Suito H. Activities in CaO--MgO--Al2O3 slags and deox￾idation equilibria of Al,Mg,and Ca. ISIJ Int,1996,36 ( 8) : 983 · 177 ·
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