KANG Jian, YUAN Guo, ZHANG He, WANG Guo-dong. Microstructure Evolution of Low Carbon Si-Mn Steel During Direct Quenching and Isothermal Partitioning[J]. Journal of Northeastern University Natural Science, 2015, 36(1): 24-28.
[1]Lis J,Lis A K,Kolan C.Processing and properties of C-Mn steel with dual-phase microstructure[J].Journal of Materials Processing Technology,2005,162/163:350-354. [2]Wu D,Li Z.Effect of thermomechanical controlled processing on the microstructure and mechanical properties of Fe-C-Mn-Si multiphase steels[J].ISIJ International,2006,46(7):1059-1066. [3]Dobrzanski L A,Borek W.Thermo-mechanical treatment of Fe-Mn-(Al,Si)TRIP/TWIP steels[J].Archives of Civil and Mechanical Engineering,2012,12(3):299-304. [4]Clarke A J,Speer J G,Matlock D K,et al.Influence of carbon partitioning kinetics on final austenite fraction during quenching and partitioning[J].Scripta Materialia,2009,61(2):149-152. [5]王国栋.新一代控制轧制和控制冷却技术与创新的热轧过程[J].东北大学学报:自然科学版,2009,30(7):913-922.(Wang Guo-dong.New generation TMCP and innovative hot rolling process[J].Journal of Northeastern University:Natural Science,2009,30(7):913-922.) [6]Thomas G A,Speer J G,Matlock D K.Considerations in the application of the quenching and partitioning concept to hot rolled AHSS production[J].AIST Transactions,2008,5(5):209-217. [7]Thomas G A,Speer J G,Matlock D K.Quenched and partitioned microstructures produced via gleeble simulations of hot-strip mill cooling practices[J].Metallurgical and Materials Transactions A,2011,42:3652-3659. [8]Nohava J,Hausild P,Karlik M,et al.Electron backscattering diffraction analysis of secondary cleavage cracks in a reactor pressure vessel steel[J].Materials Characterization,2003,49:211-217. [9]Liu H P,Lu X W,Jin X J,et al.Enhanced mechanical properties of a hot stamped advanced high-strength steel treated by quenching and partitioning process[J].Scripta Materialia,2011,64(8):749-752.(上接第18页)从表1中可见,基于扩展图的链路调度算法能够获得更短的网络调度周期.这种性能提升的主要原因在于节点完全分解进一步细化了各链路、各节点的传输情况,提高了链路的并行传输性,最终促使网络性能的提升.4结论本文研究了WiMax WMN的链路调度问题,对吞吐量最优的无干扰链路调度问题进行建模分析,提出了针对单时隙需求的最优调度算法,设计了节点与链路分解的扩展图模型.通过细化网络传输过程,建立了链路单次传输与多次传输的统一调度框架.仿真实验表明,本文算法能够有效减少网络调度周期,提高网络吞吐量,具有优异的性能.