【代表性學(xué)術(shù)著作、論文】 [1] Xiao Yuanyou, Wang Guocheng, Jin Pengliang, et al. Atomistic nucleation mechanism of titanium oxides in steel based on homogeneous and heterogeneous modes[J]. Metallurgical and Materials Transactions B, 2021:1-17.
[2] Xiao Yuanyou, Cao Lei, Wang Guocheng, 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.
[3] Xiao Yuanyou, Jin Pengliang, Wang Guocheng, 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.
[4] Xiao Yuanyou, Wang Guocheng, Lei Hong, et al. Formation pathways for MgO·Al2O3 inclusions in iron melt[J]. Journal of Alloys and Compounds, 2019: 152243.
[5] Xiao Yuanyou, Lei Hong, Yang Bin, Wang Guocheng, Zhao Yang, Wang Qi. Thermodynamic insight into the growth of calcia inclusions at the nanoscale: the case of Fe-O-Ca melt [J].RSC Advance, 2019, 9 (20):11135-11141.
[6] Xiao Yuanyou, Lei Hong, Yang Bin, Wang Guocheng, Wang Qi, Jin Wei. Nucleation and growth for magnesia inclusion in Fe-O-Mg melt[J]. RSC Advances, 2018, 8(67): 38336-38345.
[7] Xiao Yuanyou, Lei Hong, Zhang Hongwei, Wang Guocheng, Wang Qi. Structural evolution of calcia during calcium deoxidation in Fe-O-Ca melt[J]. Physical Chemistry Chemical Physics, 2019, 21(25): 13847-13855.
[8] Xiao Yuanyou, Lei Hong, Yang Bin, Wang Guocheng, Wang Qi, Jin Wei. Thermodynamic modelling on nanoscale growth of magnesia inclusion in Fe-O-Mg melt[J]. Metals, 2019, 9(2): 174.
[9] Wang Guocheng, Xiao Yuanyou, Zhao Changming, 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.
[10] Wang Guocheng, Xiao Yuanyou, Song Yulai, et al. A density functional study on the aggregation of alumina clusters[J]. Research on Chemical Intermediates, 2017, 43(3): 1447-1463.
[11] Yuan Xinghu, Xiao Yuanyou, Wang Guocheng, et al. TiN inducing ferrite nucleation based on the bcc-Fe/TiN interfaces formation at atomic scale by first-principles calculation[J]. Computational Materials Science, 2021, 197, 110570
[12] Wang Guocheng, Zhao Yang, Xiao Yuanyou, et al. Diversified aggregated patterns of alumina inclusions in high-Al iron melt[J]. Metallurgical and Materials Transactions B, 2020:1-16.
[13] 王國承, 肖遠(yuǎn)悠, 宋玉來, 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.
[14] 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
【專利】 1.專利人:王國承;云茂帆;肖遠(yuǎn)悠;艾新港;趙昌明;張崇民。申請?zhí)枺篊N201510297961.8,一種抑制短路流的中間包湍流抑制器。
2.專利人:王國承;肖遠(yuǎn)悠;許濤;曹磊;艾新港。申請?zhí)枺篊N202011533052.7,提高鋁脫氧鋼/含鋁鋼中非金屬夾雜物塑性的方法及鋼材。
【主要科研項(xiàng)目】 (1)遼寧省教育廳項(xiàng)目,凝固及冷卻過程中鋼中硫化物夾雜析出演變機(jī)制,2022-2025,主持
(2)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
(3)東北大學(xué)EPM教育部重點(diǎn)實(shí)驗(yàn)室開放課題,鋼中MgAl2O4夾雜物的析出與演變行為 (NEU-EPM-022),2022-2024,主持。
(4)東北大學(xué)優(yōu)秀學(xué)生科研創(chuàng)新項(xiàng)目,F(xiàn)e-O-Al體系中鋁脫氧及夾雜物形核機(jī)理(N170906004),2018-2019,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程中夾雜物細(xì)化控制基礎(chǔ)研究(51874170),2019-2022,參與。
(7)國家自然科學(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程的熱力學(xué)研究(51004054),2011-2013,參與。
(8)遼科大-鞍鋼海工鋼國家重點(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。