【獲獎(jiǎng)】
[1]指導(dǎo)研究生分別獲得第五屆全國(guó)大學(xué)生冶金科技競(jìng)賽一、二等獎(jiǎng);
[2]指導(dǎo)研究生獲得第六屆全國(guó)大學(xué)生冶金科技競(jìng)賽二等獎(jiǎng)2項(xiàng);
[3]指導(dǎo)研究生獲得第八屆全國(guó)大學(xué)生冶金科技競(jìng)賽二等獎(jiǎng)1項(xiàng);
【代表性學(xué)術(shù)著作、論文】 部分學(xué)術(shù)論文如下:
[1]Xiao Y, Cao, L, Xu T, et al. Competition and precipitation mechanism of inclusions in the Al-Ti-Mg complex deoxidized steel. Steel Research International, 2024, 2400853.
[2]Xiao Y, Cao, L, Yuan, X, et al. Nucleation Mechanism of TiS in Al/Ti Simultaneously Deoxidized Steel based on Homogeneous and Heterogeneous Modes, Metallurgical and Materials Transactions B. 2024, 55(3): 1564-1581.
[3]Xiao Y, Cao, L, Wang, G, et al. Effect of Cooling Conditions on the Size and Morphology Evolution of MgAl2O4 Inclusions in Al‐Deoxidized Steel Coupling with Mg Treatment. Steel Research International, 2024, 95(5), 2300783.
[4]Xiao Y, Cao, L, Wang, G, et al. Evolution Pathway of Competitive Precipitation of Inclusions in Al-Ti-Deoxidized Steel, Steel Research International, 2024, 2400500.
[5]Xiao Y, Cao, L, Wang, G, et al. Nanoscale nucleation and growth of MgAl2O4 inclusion in Al-Mg deoxidized steel. Journal of Alloys and Compounds, 2024, 970: 172621.
[6]Zhang H, Lei H., Xiao Y*, et al. Atomic-scale nucleation pathways of MgAl2O4 particle in molten steel[J]. Computational and Theoretical Chemistry, 2024, 1234: 114544.
[7]Wang, G, Song, T, Xiao Y*, et al. Effect of cooling conditions on the size evolution of typical inclusions in the Al-Ti deoxidised steel. Ironmaking & Steelmaking, 2023, 50(9), 1260-1270.
[8]Xiao Y, Cao L, Wang G, et al. Formation and Precipitation Mechanism of TiN Inclusion in Mg-treated GCr15 Bearing Steel[J]. Metallurgical and Materials Transactions B, 2022, 53, 916-930.
[9]Xiao Y, Wang G, Jin P, et al. Atomistic nucleation mechanism of titanium oxides in steel based on homogeneous and heterogeneous modes[J]. Metallurgical and Materials Transactions B, 2021, 52, 3315-3331.
[10]Xiao Y, Jin P, Wang G, et al. New insight of the structural evolution of the TiO2-Ti3O5-Ti2O3-TiO-TixOyCz-TiC systems at nanoscale during reduction process[J]. Physical Chemistry Chemical Physics, 2021, 23, 4796-4804.
[11]Xiao Y, Wang G, Lei H, et al. Formation pathways for MgO·Al2O3 inclusions in iron melt[J]. Journal of Alloys and Compounds, 2020: 813, 152243.
[12]Xiao Y, Lei H, Zhang H, et al. Structural evolution of calcia during calcium deoxidation in Fe-O-Ca melt[J]. Physical Chemistry Chemical Physics, 2019, 21(25): 13847-13855.
[13]Xiao Y, Lei H, Yang B, et al. Nucleation and growth for magnesia inclusion in Fe-O-Mg melt[J]. RSC Advances, 2018, 8(67): 38336-38345.
[14] Xiao Y, Lei H, Yang B, et al. Thermodynamic insight into the growth of calcia inclusions at the nanoscale: the case of Fe-O-Ca melt[J]. RSC Advances, 2019, 9(20): 11135-11141.
[15] Wang G, Xiao Y, Zhao C, et al. Atomic cluster aggregates in nucleation of solid alumina inclusion in the aluminum deoxidation for liquid iron[J]. Metallurgical and Materials Transactions B, 2018, 49(1): 282-290.
[16] 王國(guó)承, 肖遠(yuǎn)悠, 宋玉來(lái), 等. 鋼液中原子與夾雜物顆粒間的介尺度物相及二步形核[J]. 煉鋼, 2016, 32(4): 60-72.
[17] 曹磊, 金朋亮, 肖遠(yuǎn)悠, 等. 鎂處理低碳鋼中MgAl2O4夾雜物的聚集行為[J]. 鋼鐵, 2020, 55(11): 37-46
【專(zhuān)利】 1.專(zhuān)利人:王國(guó)承; 曹磊; 肖遠(yuǎn)悠; 臧喜民。申請(qǐng)?zhí)枺篊N202411129651.0(發(fā)明專(zhuān)利),一種提高軸承鋼中非金屬夾雜物塑性變形的冶煉方法,2024。
2.專(zhuān)利人:王國(guó)承; 曹磊; 肖遠(yuǎn)悠; 臧喜民。申請(qǐng)?zhí)枺篊N202411129648.9(發(fā)明專(zhuān)利)一種實(shí)時(shí)監(jiān)測(cè)鋼中氧濃度的裝置及方法,2024。
3.專(zhuān)利人:王國(guó)承; 肖遠(yuǎn)悠; 許濤; 曹磊; 艾新港。申請(qǐng)?zhí)枺篊N202011533052.7(發(fā)明專(zhuān)利),授權(quán)號(hào):CN 112708728 B,提高鋁脫氧鋼/含鋁鋼中非金屬夾雜物塑性的方法及鋼材,2020。
【主要科研項(xiàng)目】 (1)國(guó)家自然基金青年項(xiàng)目,超純鐵素體不銹鋼中TiN夾雜形核路徑及細(xì)化機(jī)制研究(52404346),2025-2027,主持
(2)遼寧省教育廳項(xiàng)目,凝固及冷卻過(guò)程中鋼中硫化物夾雜析出演變機(jī)制(LJKMZ20220663),2022-2025,主持
(3)遼寧省科技廳項(xiàng)目,鋼液中納米夾雜物的界面性質(zhì)研究(2022-BS-282),2022-2024,主持
(4)東北大學(xué)EPM教育部重點(diǎn)實(shí)驗(yàn)室開(kāi)放課題,鋼中MgAl2O4夾雜物的析出與演變行為 (NEU-EPM-022),2022-2024,主持。
(5)東北大學(xué)EPM教育部重點(diǎn)實(shí)驗(yàn)室項(xiàng)目,基于二步形核理論的鋼中強(qiáng)脫氧產(chǎn)物尺寸控制基礎(chǔ)研究(NEU-EPM-001),2018-2019,參與。
(6)國(guó)家自然科學(xué)基金項(xiàng)目,基于二步形核理論的鋼液凝固過(guò)程中夾雜物細(xì)化控制基礎(chǔ)研究(51874170),2019-2022,參與。
(7)國(guó)家自然科學(xué)基金項(xiàng)目,高潔凈鋼液中納米尺度夾雜物形成及演變過(guò)程的熱力學(xué)研究(51004054),2011-2013,參與。
(8)遼寧省科技廳自然科學(xué)基金項(xiàng)目,基于二步形核理論的鋼中夾雜物形成機(jī)理及控制(2015020181),2016-2018,參與。
(9)遼科大-鞍鋼海工鋼國(guó)家重點(diǎn)實(shí)驗(yàn)室項(xiàng)目,基于二步形核理論的鋼種強(qiáng)脫氧產(chǎn)物尺寸控制基礎(chǔ)研究(SKLMEA - USTL - 201706),2018-2019,參與。
(10)山東鋼鐵股份有限公司(萊鋼),夾雜物/析出物無(wú)損提取系統(tǒng),2018-2019,參與。
(11)首鋼集團(tuán)合作項(xiàng)目,高性能鐵鉻鋁合金中第二相行為機(jī)制與調(diào)控,2023-2025,參與。