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    题名 作者 年代 出处 被引量
1Formation and Modification of MgO?Al^sub 2^O3-Based Inclusions in Alloy Steels显示文摘Yang Shufeng Wang Qiangqiang Zhang Lifeng Li Jingshe Peaslee Kent 2012Metallurgical and Materials Transactions2012,,:1
2Effect of EMBr on flow in slab continuous casting mold and evaluation ushg nail dipping measurement 显示文摘ji Chuanbo Li Jingshe Tang Haiyan 2013Steel Research Int2013,84,3:1
3Mechanism of broadening of slab in continuous casting显示文摘The mechanism of broadening of slab in continuous casting was studied by numerical simulations and experimental measurements in factories. The mechanism is derived by gradual exclusion of various factors related to the broadening of slab. It is concluded that the slab exposes to no constraint at the direction of narrow face. Because of the static pressure of molten steel, the slab deforms creepily in the direction that consequently results in the broadening of slab. The broadening of slab increases with casting speed and static pressure of molten steel. The decrease of secondary cooling intensity and strength of steel at high temperature also contribute to the broadening of slab. The micro-alloying plays an important role in improving the strength of steel and in reducing the broadening of slab.FU JianXun LI JingShe ZHANG Hui 2011Science China(Technological Sciences)2011,54,5:1
4Thermo- dynamic Analysis on the Behavior of Titanium in Production Process of 95CrMo Hollow Steel显示文摘WANG LINZHU LI JINGSHE XIONG JIAZE 2014MS and T2014,2004,1:1
5Formation and Modification of MgO·Al2O3-Based Inclusions in Alloy Steels显示文摘Shufeng Yang Qiangqiang Wang Lifeng Zhang Jingshe Li Kent Peaslee 2012Metallurgical and Materials Transactions B2012,,4:1
6Structure optimization of horizontal continuous casting tundishes using mathematical modeling and water modeling 显示文摘Yang Shufeng Zhang Lifeng Li Jingshe 2009ISIJ International2009,49,10:1
7Effect of Flow Control Devices of Tundish on Cleanliness of Billets 显示文摘Tang Haiyan Li Jingshe Gao Jinguo 2008Journal of Iron and Steel Research International2008,,:1
8Al2O3 Based Incnuslio in Alloy Steel During the Refining Process显示文摘Shufeng Yang JingShe Li Lifeng Zhang etc Evolution of MgO 2010Metallurgical and Mining Industry2010,2,2:1
9Structure optimization of horizontal continuous casting tundishes using mathe-matical modeling and water modeling显示文摘Yang Shufeng Zhang Lifeng Li Jingshe 2009ISU international2009,49,10:1
10Microstructure,segregation and precipitate evolution in directionally solidified GH4742 superalloy显示文摘The evolution of microstructure,elemental segregation,and precipitation in GH4742 superalloy under a wide range of cooling rates was investigated using zonal melting liquid metal cooling(ZMLMC) experiments.Comparing various nickel-based superalloys,the primary dendrite spacing is significantly linearly correlated with G^(-1/2)V^(-1/4) at high cooling rates,where G and V are temperature gradient and drawing rate,respectively.As the cooling rate decreases,the primary dendrite spacing increases in a dispersive manner.The secondary dendrite arm spacing is significantly correlated with(GV)^(-0.4) for all cooling rate ranges.The degree of elemental segregation increases and then decreases as the cooling rate increases,which is due to the competition between solute counter-diffusion and dendrite tip subcooling.With increasing the solidification rate,the size of γ′,carbides,and non-metallic inclusions gradually decreases.The morphology of the γ′ precipitate changes from plume-like to cubic to spherical.The morphology of carbide changes from block to fine-strip then to Chinese-script.The morphology of carbide is controlled by both dendrite interstitial shape and element diffusion.The inclusions are mainly composite inclusions,which usually show the growth of Ti(C,N) with oxide as the heterogeneous nucleation center and carbide on the outer surface of the carbonitride.As the cooling rate increases,the number density of composite inclusions first increases and then decreases,which is closely related to the elemental segregation behavior.Shulei Yang Shufeng Yang Wei Liu Jingshe Li Jinguo Gao Yi Wang 2023International Journal of Minerals,Metallurgy and Materials2023,30,5:0
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