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    • 54. 发明公开
    • VERFAHREN UND WERKZEUG ZUR INFORMATIONSAUSGABE IN EINEM BEHÄLTERFLUSS SYSTEM
    • 方法和工具,信息输出在坦克水系
    • EP2714525A1
    • 2014-04-09
    • EP12719679.8
    • 2012-05-03
    • Krones AG
    • HAHN, Wolfgang
    • B65B59/02B65G21/20B65G43/08
    • B65G43/08B65G21/20G01B5/14
    • The invention discloses a method and a tool (2) for giving out information. Within the context of the method, one or more physical parameters of one or more components (15a, 15b) in a system (1) and/or one or more physical parameters of one or more components (15a, 15b) of an apparatus are established and/or sensed. There is also a first assignment means (Z1) present, which connects to a number of parameters in each case a first true piece of information or a first false piece of information (I1, N1), which is given out and/or presented in dependence on the parameters established and/or sensed. There is additionally a second assignment means (Z2) present, which connects to a number of parameters established and/or sensed in each case a second true piece of information or a second false piece of information (I2, N2), which is given out and/or presented in addition to, or in place of, the first true piece of information or false piece of information (I1, N1), in dependence on the parameters established and/or sensed. The system (1) is a container flow system (3) in which, between the at least two components (15a, 15b), containers (9) are directed and/or guided in a predetermined transporting direction (TR) and/or on a predetermined transporting route.
    • 56. 发明公开
    • Letter processing apparatus and letter processing method
    • Briefverarbeitungsvorrichtung und Briefverarbeitungsverfahren
    • EP2662155A1
    • 2013-11-13
    • EP13167228.9
    • 2013-05-10
    • Kabushiki Kaisha Toshiba
    • Mimura, Takayuki
    • B07C1/00
    • B65G43/08B07C1/00B07C5/00
    • According to one embodiment, a letter processing apparatus includes a first conveyance path (11a), a first detector (15a), a second conveyance path (11b), a second detector (15b), a third conveyance path (11d), and a sorting controller (20). The first detector is configured to detect a letter conveyed along the first conveyance path. The second detector is configured to detect a letter conveyed along the second conveyance path. The third conveyance path is configured to allow a letter to pass therethrough. The sorting controller is configured to sort a first letter to the first conveyance path and to sort a second letter, which is conveyed after the first letter, to the second conveyance path. The sorting controller is configured to sort a third letter, which is conveyed after the second letter, to one of the first conveyance path, the second conveyance path, and the third conveyance path based on an inter-letter distance between two letters to be conveyed, conveyance velocities of respective letters, and a preparation time after a first detection in each of the first detector and the second detector is complete until a second detection is ready to be executed.
    • 根据一个实施例,字母处理装置包括第一输送路径(11a),第一检测器(15a),第二输送路径(11b),第二检测器(15b),第三输送路径(11d) 排序控制器(20)。 第一检测器被配置为检测沿着第一输送路径传送的字母。 第二检测器被配置为检测沿着第二传送路径传送的字母。 第三输送路径被配置为允许字母通过。 排序控制器被配置为将第一字母分类到第一输送路径并且将在第一字母之后传送的第二字母分类到第二输送路径。 排序控制器被配置为基于要传送的两个字母之间的字母间距将第二字母之后传送的第三字母分类为第一传送路径,第二传送路径和第三传送路径中的一个 各个字母的输送速度,以及在第一检测器和第二检测器中的每一个中的第一检测之后的准备时间都完成,直到第二检测准备好执行。
    • 58. 发明公开
    • 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
    • 用于装入用连续供应方法和控制和跟踪系统公司建立了一个冶金炉,特别是电炉钢产量,所支持的材料
    • EP2606305A1
    • 2013-06-26
    • EP11773824.5
    • 2011-08-15
    • Tenova S.p.A.
    • 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).