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,306 北京科技大学学报 第30卷 时调度策略,为进一步展开研究,开发能够应用于 (张涛,王梦光,唐立新,等.基于MT0管理系统的钢厂合同计 钢铁生产实际的实用算法提供了系统框架和理论 划方法.控制与决策,2000,15(6):649) 基础 [5]Brain D N.George G P.Nada R S.A hierarchical production plan for a maketo order steel fabrication plant.Prod Plann Con- trol,2004,15(3):324 参考文献 [6]Tang L X.Yang Z H.Shen HY,et al.Analysis of modeling fac- [1]Zheng B L.Hu K Y,Chang C G.Status and expectation of re- tor of integrated lot planning for SM-CC-HRM.Iron Steel, search on integrated planning for steel production.Control Eng 2000,35(5):74 China,2003,10(1):6 (唐立新,杨自厚,沈宏宇,等.炼钢一连铸一热轧集成批量计划 (郑秉霖,胡琨元,常春光·一体化钢铁生产计划系统的研究现 因素分析.钢铁,2000,35(5):74) 状与展望.控制工程,2003,10(1):6) [7]Zhu B L,Yu H B.Production scheduling model and algorithm for [2]Chai T Y,Jin Y H,Ren D X.et al.Contemporary integrated steelmaking continuous casting hot rolling processes.Comput In- manufacturing system based on three-layer structure in process in- tegr Manuf Syst.2003.9(1):33 dustry.Control Eng China.2002.9(3):1 (朱宝琳,于海斌。炼钢一连铸一热轧生产调度模型及算法研 (柴天佑,金以慧,任德祥,等.基于三层结构的流程工业现代集 究.计算机集成制造系统℃IMS,2003,9(1):33) 成制造系统·控制工程,2002,9(3):1) [8]Li T K.Cai Y,Xiao Y J.Model and algorithm for CSP rolling [3]Li T K.Zhang W X.Cui JS.The system framework of manu- batch planning//ICIM2004 Proceedings of the Seventh Interna- facturing execution systems in iron and steel enterprises.Metall tional Conference on Industrial Management.OkaYana.2004: 1 nd Autom,2003,27(4):18 215 (李铁克,张文新,崔建双.钢铁企业制造执行系统的体系结 [9]Liu G H.Li T K.A steelmaking continuous casting production 构.治金自动化,2003,27(4):18) scheduling model and its heuristic algorithm.Syst Eng.2002.20 [4]Zhang T.Wang M G.Tang L X,et al.The method for the or- (6):44 der planning of the steel plant based on the MTO management (刘光航,李铁克·炼钢一连铸生产调度模型及启发式算法,系 system.Control Decis,2000,15(6):649 统工程,2002,20(6):44) (上接第275页) [8]Lei Y,Xiong W H.The sintering perspective of nanoscale ceram- [3]Zhang QX,Zhao QS.Metallurgy of Tungsten and Molybde- ic materials.Mater Res,2003.17(5):28 num Beijing:Metallurgical Industry Press.2005 (雷燕,熊惟皓.纳米陶瓷材料烧结研究进展.材料导报, (张启修,赵秦生.钨钼治金学.北京:冶金工业出版社,2005) 2003,17(5):28) [4]Ma YZ.Huang B Y.Fan J L,et al.the sintering characteristic [9]Zhang F L.Wang C Y,Song Y X.et al.The sintering advance of compound pow der of nanoscale 90W-7Ni-3Fe.Trans Nonfer- of nanoscale block materials.Hard Alloys,2002.19(3):177 rous Met Soe China,2004.14(8):1382 (张风林,王成勇,宋月贤,等。纳米块体材料烧结技术进展 (马运柱,黄伯云,范景莲,等.纳米级90W一7Ni一3Fe复合粉末 硬质合金,2002,19(3):177) 的烧结特性.中国有色金属学报,2004,14(8):1382) [10]Lu G F.Hao J J.Guo Z M.Synthesis of nanosized tungsten [5]Zhao F.Lin T,Zhang L Y,et al.sintering characteristic and powder.JUniv Sci Technol Beijing.2005.5(12):43 mechanical property of supergrain W-40%Cu alloy.Uni Sci [11]Lin T.Zhang L Y,Zhao F.et al.The hypothermia sintering Technol Beijing.2005.27(5):578 characteristics of nanoscale tungsten compact.Mater Mech Eng. (赵放,林涛,张丽英,等.超细晶粒W一40%C合金的烧结和 2006,30(5).91 力学性能.北京科技大学学报,2005,27(5):578) (林涛,张丽英,赵放,等.纳米钨粉坯的低温固相烧结特征 [6]Lin T,Zhao F.Zhang L Y.Fine grain tungsten produced with 机械工程材料,2006,30(5):91) nanoscale powder.JUniv Sci Technol Beijing.2005.12(3):277 [12]YinSX.The Production Principle,Technology and Perfor- [7]Sun L.Jia CC.Cao R J.et al.The sintering present state and mance of Tungsten Filament.Beijing:Metallurgical Industry perspectives of nanoscale powder.Pow der Metall Technol. Press,1998 2006,24(2):147 (印世协.钨丝的生产原理、工艺及其性能.北京:冶金工业 (孙兰,贾成厂,曹瑞军,等.纳米粉末烧结的研究现状与前景 出版社,1998) 粉末冶金技术,2006,24(2):147)时调度策略.为进一步展开研究‚开发能够应用于 钢铁生产实际的实用算法提供了系统框架和理论 基础. 参 考 文 献 [1] Zheng B L‚Hu K Y‚Chang C G.Status and expectation of re￾search on integrated planning for steel production.Control Eng China‚2003‚10(1):6 (郑秉霖‚胡琨元‚常春光.一体化钢铁生产计划系统的研究现 状与展望.控制工程‚2003‚10(1) :6) [2] Chai T Y‚Jin Y H‚Ren D X‚et al.Contemporary integrated manufacturing system based on three-layer structure in process in￾dustry.Control Eng China‚2002‚9(3):1 (柴天佑‚金以慧‚任德祥‚等.基于三层结构的流程工业现代集 成制造系统.控制工程‚2002‚9(3):1) [3] Li T K‚Zhang W X‚Cui J S.The system framework of manu￾facturing execution systems in iron and steel enterprises.Metall Ind A utom‚2003‚27(4):18 (李铁克‚张文新‚崔建双.钢铁企业制造执行系统的体系结 构.冶金自动化‚2003‚27(4):18) [4] Zhang T‚Wang M G‚Tang L X‚et al.The method for the or￾der planning of the steel plant based on the MTO management system.Control Decis‚2000‚15(6):649 (张涛‚王梦光‚唐立新‚等.基于 MTO 管理系统的钢厂合同计 划方法.控制与决策‚2000‚15(6):649) [5] Brain D N‚George G P‚Nada R S.A hierarchical production plan for a make-to-order steel fabrication plant.Prod Plann Con￾trol‚2004‚15(3):324 [6] Tang L X‚Yang Z H‚Shen H Y‚et al.Analysis of modeling fac￾tor of integrated lot planning for SM-CC-HRM. Iron Steel‚ 2000‚35(5):74 (唐立新‚杨自厚‚沈宏宇‚等.炼钢—连铸—热轧集成批量计划 因素分析.钢铁‚2000‚35(5):74) [7] Zhu B L‚Yu H B.Production scheduling model and algorithm for steelmaking-continuous casting-hot rolling processes.Comput In￾tegr Manuf Syst‚2003‚9(1):33 (朱宝琳‚于海斌.炼钢—连铸—热轧生产调度模型及算法研 究.计算机集成制造系统—CIMS‚2003‚9(1):33) [8] Li T K‚Cai Y‚Xiao Y J.Model and algorithm for CSP rolling batch planning∥ ICIM’2004 Proceedings of the Seventh Interna￾tional Conference on Industrial Management.OkaYana‚2004: 215 [9] Liu G H‚Li T K.A steelmaking-continuous casting production scheduling model and its heuristic algorithm.Syst Eng‚2002‚20 (6):44 (刘光航‚李铁克.炼钢—连铸生产调度模型及启发式算法.系 统工程‚2002‚20(6):44) (上接第275页) [3] Zhang Q X‚Zhao Q S.Metallurgy of T ungsten and Molybde￾num.Beijing:Metallurgical Industry Press‚2005 (张启修‚赵秦生.钨钼冶金学.北京:冶金工业出版社‚2005) [4] Ma Y Z‚Huang B Y‚Fan J L‚et al.the sintering characteristic of compound powder of nanoscale90W-7N-i3Fe.T rans Nonfer￾rous Met Soc China‚2004‚14(8):1382 (马运柱‚黄伯云‚范景莲‚等.纳米级90W—7Ni—3Fe 复合粉末 的烧结特性.中国有色金属学报‚2004‚14(8):1382) [5] Zhao F‚Lin T‚Zhang L Y‚et al.sintering characteristic and mechanical property of supergrain W-40%Cu alloy.J Univ Sci Technol Beijing‚2005‚27(5):578 (赵放‚林涛‚张丽英‚等.超细晶粒 W—40%Cu 合金的烧结和 力学性能.北京科技大学学报‚2005‚27(5):578) [6] Lin T‚Zhao F‚Zhang L Y.Fine grain tungsten produced with nanoscale powder.J Univ Sci Technol Beijing‚2005‚12(3):277 [7] Sun L‚Jia C C‚Cao R J‚et al.The sintering present state and perspectives of nanoscale powder. Pow der Metall Technol‚ 2006‚24(2):147 (孙兰‚贾成厂‚曹瑞军‚等.纳米粉末烧结的研究现状与前景. 粉末冶金技术‚2006‚24(2):147) [8] Lei Y‚Xiong W H.The sintering perspective of nanoscale ceram￾ic materials.Mater Res‚2003‚17(5):28 (雷燕‚熊惟皓.纳米陶瓷材料烧结研究进展.材料导报‚ 2003‚17(5):28) [9] Zhang F L‚Wang C Y‚Song Y X‚et al.The sintering advance of nanoscale block materials.Hard Alloys‚2002‚19(3):177 (张凤林‚王成勇‚宋月贤‚等.纳米块体材料烧结技术进展. 硬质合金‚2002‚19(3):177) [10] Lu G F‚Hao J J‚Guo Z M.Synthesis of nanosized tungsten powder.J Univ Sci Technol Beijing‚2005‚5(12):43 [11] Lin T‚Zhang L Y‚Zhao F‚et al.The hypothermia sintering characteristics of nanoscale tungsten compact.Mater Mech Eng‚ 2006‚30(5):91 (林涛‚张丽英‚赵放‚等.纳米钨粉坯的低温固相烧结特征. 机械工程材料‚2006‚30(5):91) [12] Yin S X.The Production Principle‚Technology and Perfor￾mance of T ungsten Filament.Beijing:Metallurgical Industry Press‚1998 (印世协.钨丝的生产原理、工艺及其性能.北京:冶金工业 出版社‚1998) ·306· 北 京 科 技 大 学 学 报 第30卷
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