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    • 2. 发明申请
    • METHOD AND DEVICE FOR TREATING PARTICULATE MATERIAL
    • 方法和装置处理粒料
    • WO02103063A2
    • 2002-12-27
    • PCT/EP0205856
    • 2002-05-28
    • VOEST ALPINE IND ANLAGENNAGL MICHAELSCHENK JOHANNESZSCHETZSCHE ALBERT
    • NAGL MICHAELSCHENK JOHANNESZSCHETZSCHE ALBERT
    • B04C5/04B04C5/00B04C5/22C21B13/00F27B15/00F27D25/00
    • B04C5/22B04C5/00C21B13/0033F27B15/00Y02P10/136
    • The invention relates to a method for treating, preferably for reducing, particulate material in at least one fluidization zone at an increased temperature, particularly for reducing ore dust. According to the method, the particulate material is held in the fluidization zone by a treatment gas that flows upward from the bottom, and fine-particulate material, which is transported out of the fluidization zone with the treatment gas is separated from the treatment gas in a separating zone. To this end, the following steps are carried out in the separating zone: feeding the stream, which consists of treatment gas and of transported fine-particulate material, to a separating device (8); separating the fine-particulate material from the treatment gas, whereby the treatment gas is extracted from the separating device as waste gas, and; withdrawing the separated fine-particulate material out of the separating device (8). The invention also relates to a device for carrying out the method. Coarse grained material is introduced into the separating zone whereby reducing the amount of baked on material and deposits thereof.
    • 本发明涉及用于治疗,优选地用于减少,颗粒材料在至少一个流化区在升高的温度,特别是用于减少细矿的方法,其中所述颗粒材料从与所述处理气体保持通过从底部到顶部的处理气体在流化区,并且其中流动的 所述流化材料排出细颗粒材料被沉积在从处理气体的沉积区,从而在分离区中进行以下步骤:将处理气体流和ausgetragenem细颗粒材料到分离器(8),从处理气体中分离微细颗粒材料,所述 处理气体抽出,作为流出物从所述分离装置,并排出从所述分离装置(8),以及用于执行该方法的装置所分离的细颗粒物质。 在分离区中粗粒材料被引入,由此结块和沉积物减少。
    • 3. 发明申请
    • METHOD AND DEVICE FOR DISTRIBUTING A LUMPY BULK MATERIAL
    • 用于分配片材产品的方法和装置
    • WO0227041A3
    • 2002-10-24
    • PCT/EP0109852
    • 2001-08-27
    • VOEST ALPINE IND ANLAGENKEPPLINGER LEOPOLD WERNERWURM JOHANNBERNER FRANZ
    • KEPPLINGER LEOPOLD WERNERWURM JOHANNBERNER FRANZ
    • C21B11/02C21B5/00C21B13/00F27B1/20F27D3/00F27D3/10C21B7/20
    • C21B5/008C21B13/002F27B1/20F27D2003/0007
    • The invention relates to a device and method for distributing a lumpy bulk material, in particular, at least partially prereduced iron ore, on an expansive surface, especially on a static bed. Said surface extends inside a reactor or vessel used in physical or chemical process technology, especially inside a reactor of a smelting works, for producing pig iron or steel intermediate products, and the lumpy bulk material is charged by means of at least one charging device, which has at least two, in particular, rotationally symmetrical drop shafts, which are preferably arranged at the same distance from the vertical longitudinal axis of the reactor. At least one portion of the bulk material, particularly after having been introduced into the drop shaft, is distributed, before striking the expansive surface, on a scattering device, which is assigned to at least one of the drop shafts, preferably inside the drop shaft. The distribution of the bulk material ensues, when viewed from above, in a radial and/or tangential direction.
    • 本发明涉及一种装置和用于分配一个块状散料的方法,特别是至少部分地预还原上的广泛表面铁矿石,特别是在固定的床,该表面在反应器中的物理或化学工艺工程中使用的反应器或容器内延伸的,特别是 用于生产生铁或初级钢制品,冶金厂占地面积,并经由至少一个充电装置,其具有至少两个,特别是旋转对称的,槽,其优选地被布置在相等的距离从所述反应器的垂直纵向轴线被充电块状块状材料。 在这种情况下,至少本体材料的一部分,特别是引入到所述下支路后,zugeorneten其上的一个,所述滑槽中的至少一个的宽表面上撞击之前,散射装置中,优选在所述腿部的情况下,在 - 径向和/或切线方向 - 从上方观察 分布。
    • 6. 发明申请
    • METHOD AND DEVICE FOR CHANGING THE THICKNESS OF A STRAND
    • 方法和设备改变一个STRAND的厚度
    • WO0027564A8
    • 2000-07-06
    • PCT/AT9900244
    • 1999-10-12
    • VOEST ALPINE IND ANLAGENMOERWALD KARLEIDINGER HELMUT
    • MOERWALD KARLEIDINGER HELMUT
    • B22D11/05B22D11/08B22D11/128B22D11/16
    • B22D11/086
    • The invention relates to a method for changing the thickness (D1) of a strand (1) from a first thickness (D1) to a second thickness (D2) during continuous casting using a continuous casting mould (6) comprising at least two first lateral walls (8, 8') which define the hollow space (5) on opposite sides and determine the width of the strand (1), at least two other lateral walls (10, 10') which adjoin the first lateral walls (8, 8') and determine the thickness (D1, D2) of said strand (1), and a strand guide (13) which supports the cast strand (1) in an extension of the second lateral walls (10, 10') and can be adjusted to different thicknesses (D1, D2) of the strand (1). According to said method the pouring of melt (2) into the continuous casting mould (6) is briefly interrupted such that an intermediate end (20) is formed, a sleeve (21) is placed against said intermediate end (20) of the strand (1), whereby the end (24) of the sleeve (21) facing away from the strand (1) corresponds to the second thickness (D2) of the strand (1). At least one of the second lateral walls (10, 10') is adjusted to the second thickness (D2). Drawing of the strand (1) adjusts the end (24) of the sleeve (21) facing away from the strand (1) to a certain height inside the continuous casting mould (6). Pouring of the melt (2) is then resumed and the strand guide (13) adjusted to the second thickness (D2).
    • 在用于使用连续铸造模具的连续铸造过程中从第一厚度(D1)变化的厚度(D1)的股线(1)的至第二厚度(D2)的方法(6)具有至少两个所述腔(5)在相对侧上 限定第一,带的限定的宽度(1)的侧壁(8,8“),以及至少两个其他所述第一侧壁(8,8”随后的)第二,该厚度的链确定(1)侧壁的(D1,D2) (10,10“),并与在所述第二侧表面(10,10的延续铸坯(1)”支承),并在该链的不同的厚度(D1,D2)(1)可调整的链引导件(13),该浇注是 (1)的中间端部(20)上连接套管(21),其中所述股线(1)在所述连续铸造模具(6)中形成短暂中断的中间端部(20) )远离Stra的第二厚度(D2)的套筒(21)的端部(24) NTOT(1),与第二厚度(D2)为第二侧壁中的至少一个(10,10“)进行调整,其特征在于,(1)通过拉动链背离套筒((21)的端部(24)远离所述条带 1)移动到连续铸造模具(6)内的高度水平,于是熔体(2)的铸造继续进行并且铸坯引导件(13)适应第二厚度(D2)。
    • 9. 发明申请
    • SEQUENTIAL CASTING METHOD FOR THE PRODUCTION OF A HIGH-PURITY CAST METAL BILLET
    • SEQUENZGIESSVERFAHREN用于生产铸造金属STRAND高纯度
    • WO2005053877A3
    • 2005-11-10
    • PCT/EP2004012711
    • 2004-11-10
    • VOEST ALPINE IND ANLAGENHOHENBICHLER GERALDECKERSTORFER GERALDBRUMMAYER MARKUS
    • HOHENBICHLER GERALDECKERSTORFER GERALDBRUMMAYER MARKUS
    • B22D11/103B22D11/118B22D11/18
    • B22D11/118B22D11/103B22D11/183
    • The invention relates to a sequential casting method for the production of a high-purity cast metal billet (13) from a metal melt, wherein the metal melt is supplied from a melt container (5) in a controlled manner to a distributor vessel (8) and is then supplied from said distributor vessel (8) in a controlled manner into a continuous casting ingot mold (4) without any interruption. According to the invention, in order to cast a qualitatively high-value metal billet even when the melt vessel is changed and to ensure that the restart phase is kept as short as possible, the flow rate into the distributor vessel is greater than the outflow rate from the distributor vessel during a period of time ranging from the resumption of the supply of the metal melt to the distributor vessel until a quasi-stationary operating bath level height is obtained in the distributor vessel (8), wherein during 70 % - 100 % of said time period, the inflow rate into the distributor vessel (8) is less than or equal to twice the outflow rate from the distributor vessel.
    • 本发明是一种Sequenzgiessverfahren用于从金属熔体中制造高纯度的铸造金属带材(13),所述金属熔体调节由熔融槽(5)控制供给到中间包容器(8)并从该分配容器(8)到一个连铸结晶器(4) 被排出,且其中继续进行所述熔融金属的供给到铸模(4)而不中断。 为了能够在熔化用容器改变,其中重启相位可以保持尽可能短期间模制在这个过程中的高品质的金属带材,所以建议在从恢复金属的供给的时间段熔入中间包容器中,直至一个准 -stationaryBetriebsbadspiegelhöhe在分配容器(8),流入速率进中间包容器比在此期间流入速度成分配容器(8)小于或等于从中间包容器中流出速率的两倍的70%至100%的流出速率从浇口盘容器,其中的和更大的 ,