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    • 1. 发明申请
    • METHOD AND CONTROL AND TRACKING SYSTEM OF THE CHARGE OF MATERIAL TRANSPORTED BY A CONTINUOUS SUPPLY CONVEYOR OF A METALLURGICAL FURNACE, PARTICULARLY AN ELECTRIC FURNACE FOR THE PRODUCTION OF STEEL
    • 冶金炉连续供电输送机材料运输费用的方法与控制与跟踪系统,特别是用于生产钢铁的电炉
    • WO2012023029A1
    • 2012-02-23
    • PCT/IB2011/001899
    • 2011-08-15
    • TENOVA S.P.A.ASSANTE, Francesco, Alberto, MariaGIRELLI, RenatoREALI, Silvio, Maria
    • ASSANTE, Francesco, Alberto, MariaGIRELLI, RenatoREALI, Silvio, Maria
    • F27B3/18F27B3/28F27D13/00F27D19/00F27D21/00B65G43/08C21C5/52
    • B65G43/08C21C5/527C21C2005/5282C21C2005/5288F27B3/18F27B3/28F27D13/002F27D19/00F27D21/0035Y02P10/216
    • The present invention refers to a method and to a control and tracking system of the charge of material transported by a continuous supply conveyor (2) of a metallurgical furnace (3), in particular an electric furnace for the production of steel, wherein said continuous conveyor (2) comprises, in sequence starting from its inlet end towards its outlet end, a loading section (2A) of the charge of material to be supplied to said furnace (3), a preheating section (2B) of the charge of material loaded and an introduction section (2C) into said furnace (3) of the preheated charge of material, and wherein along said loading section (2A) at least a first loading station (200) of material is present, wherein the method comprises the steps consisting in determining (101) the type and the weight of the material of a first charge fraction to be loaded into the first loading station (200) in function of a predetermined charge recipe (100), supplying (102) the first loading station (200) with the first charge fraction, detecting (103) the weight of the first charge fraction, discharging (104) the first charge fraction (C1) onto the continuous conveyor (2), marking (105) the first charge fraction (C1) through identification means (M1, M1', M1''), detecting (106) the overall dimensions of the first charge fraction (C1) discharged onto the continuous conveyor (2), estimating (107, 108) the advancing speed of the first charge fraction (C1) along the loading section (2A) of the continuous conveyor (2) and the arrival time of the first charge fraction (C1) entering a possibly subsequent loading station (200n) of a further charge fraction or the preheating section (2B), and, in proximity to the inlet of the preheating section (2B), recognising (115) in the charge of material discharged onto the continuous conveyor (2) the first charge fraction (C1) and possible further charge fractions (Cn) subsequently discharged onto the continuous conveyor (2) by means of the respective identifying means (Ml, Mn), estimating (117, 118) the advancing speed of the first charge fraction (C1) and of possible further charge fractions (Cn) subsequently discharged onto the continuous conveyor (2) along the preheating section (2B) and the respective arrival time to the introduction section (2C) into the furnace (3).
    • 本发明涉及一种由冶金炉(3)的连续供给输送机(2),特别是用于生产钢的电炉输送的材料的加料方法和控制跟踪系统,其中所述连续 输送机(2)从其入口端朝向其出口端依次包括要供应到所述炉(3)的材料的装料部分(2A),材料装料的预热部分(2B) 并且其中沿所述装载部分(2A)至少存在材料的第一装载站(200),其中所述方法包括步骤(2),所述步骤 包括根据预定的费用配方(100)确定(101)要加载到第一装载站(200)中的第一充电部分的材料的类型和重量,供应(102)第一装载站( 200)与f 第一充电分数,检测(103)第一充电分数的重量,将第一充电分数(C1)排出(104)到连续输送机(2)上,通过识别装置(105)标记(105)第一充电分数(C1) M1,M1',M1“),检测(106)排出到连续输送机(2)上的第一加料分数(C1)的总体尺寸,估计(107,108)第一加料分数 )沿着连续输送机(2)的装载部分(2A)和进入另外的充电部分或预热部分(2B)的可能的后续加载站(200n)的第一加料分数(C1)的到达时间,以及 在预热部分(2B)的入口附近,识别(115)在排出到连续输送机(2)上的材料的装料中,第一加料部分(C1)和可能的进一步的进料馏分(Cn)随后排放到 连续输送机(2)通过相应的识别 (M1,Mn),估计(117,118)第一加料分数(C1)的进给速度和随后沿着预热部分(2B)排放到连续输送机(2)上的可能的进一步的进料分数(Cn)和 到引入部分(2C)到达炉子(3)的相应到达时间。
    • 3. 发明申请
    • A PANEL COOLED WITH A FLUID FOR METALLURGIC FURNACES, A COOLING SYSTEM FOR METALLURGIC FURNACES COMPRISING SUCH A PANEL AND METALLURGIC FURNACE INCORPORATING THEM
    • 用于冶金炉的液体冷却板,包含这样的面板和冶金炉的金属炉的冷却系统
    • WO2012017312A1
    • 2012-02-09
    • PCT/IB2011/001829
    • 2011-08-03
    • TENOVA S.P.A.MADDALENA, FabioCAMISANI, LucianoREALI, Silvio Maria
    • MADDALENA, FabioCAMISANI, LucianoREALI, Silvio Maria
    • F27B3/24F27D1/12F27D9/00C21B7/10
    • F27D9/00C21B7/10C21B7/20F27B3/24F27D1/12
    • The present invention refers to a panel (1) cooled with a fluid, for metallurgic furnaces (F), comprising a first chamber (2) having a face (2A) which, in assembly conditions, is destined to face the interior of a metallurgic furnace (F) and the opposite face (2B) in thermal contact with a face (3A) of a second chamber (3) whose opposed face (3B) is destined to face, in assembly conditions, the external part of the metallurgic furnace (F), in which the first chamber (2) and the second chamber (3) are mutually independent and in which the first chamber (3) comprises an inlet (5) and an outlet (7) of a cooling fluid and the second chamber (3) comprises an inlet (6) and an outlet (8) of a cooling fluid, the panel (1) having a first working configuration, in which the first chamber (2) is passed by a first cooling fluid (R1) and the second chamber (3) is passed by a second cooling fluid (R2) different from the first cooling fluid, and a second working configuration, in which the first chamber (2) is passed by said second cooling fluid (R2) and the second chamber (3) is passed by said first cooling fluid (R1).
    • 本发明涉及一种用于冶金炉(F)的用流体冷却的面板(1),包括具有面(2A)的第一室(2),所述表面(2A)在组装条件下注定要面向冶金炉 炉子(F)和与第二室(3)的表面(3A)热接触的相对面(2B),第二室(3)的相对面(3B)注定要在组装条件下面对冶金炉的外部 F),其中第一室(2)和第二室(3)彼此独立,并且其中第一室(3)包括冷却流体的入口(5)和出口(7),第二室 (3)包括冷却流体的入口(6)和出口(8),所述面板(1)具有第一工作构型,第一室(2)通过第一冷却流体(R1)和 第二室(3)通过与第一冷却流体不同的第二冷却流体(R2)和第二工作构造,其中第一室 (2)通过所述第二冷却流体(R2),第二室(3)通过所述第一冷却流体(R1)。