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    • 2. 发明申请
    • DEVICE FOR DISTRIBUTING CHARGE MATERIAL INTO A SHAFT FURNACE
    • 将充电材料分配到轴承炉中的装置
    • WO2010139761A1
    • 2010-12-09
    • PCT/EP2010/057784
    • 2010-06-03
    • PAUL WURTH S.A.THILLEN, GuyLONARDI, EmileHAUSEMER, LionelTHIX, Christian Benoît
    • THILLEN, GuyLONARDI, EmileHAUSEMER, LionelTHIX, Christian Benoît
    • C21B7/20F16H37/08F27B1/20
    • C21B7/20F16H37/0806F27B1/20F27D3/10
    • A device (10) for distributing charge material into a shaft furnace comprises a main housing (12), a distribution chute, a suspension rotor (18) and an adjustment rotor (26), which are rotatable about a substantially vertical axis. The chute (32) is suspended to the suspension rotor (18) to rotate therewith for circumferential distribution of charge material and adjustable in orientation through the adjustment rotor (26) for radial distribution of charge material. A differential gear (72) interconnects the suspension rotor (18) and the adjustment rotor (26) and is configured to transmit to the adjustment rotor the same speed of rotation that is imparted to the suspension rotor by a main rotation drive (60) unless an adjustment drive (80) imparts differential rotation to the adjustment rotor. According to the invention, the device includes: - a first gear casing (50) arranged on the main housing (12) and enclosing a gear mechanism (52) that connects the main rotation drive (60) to a first output shaft (54) that protrudes into the main housing (12) where it is connected to a gearwheel (62) that meshes with a first gear ring (64) on the suspension rotor (18); - a second gear casing (70) arranged on the main housing (12) and enclosing the differential gear (72) that connects the adjustment drive (80) to a second output shaft (74) that protrudes into the main housing (12) where it is connected to a gearwheel (82) that meshes with a second gear ring (84) on the adjustment rotor (26); and - a shaft arrangement (90; 190) equipped with a compensating coupling (92, 94, 95; 192) and connecting the differential gear (72) in the second gear casing (70) to the gear mechanism (52) in the first gear casing (50).
    • 用于将加料材料分配到竖炉中的装置(10)包括可围绕基本上垂直的轴线旋转的主壳体(12),分配滑槽,悬架转子(18)和调节转子(26)。 斜槽(32)悬挂在悬架转子(18)上,以随其一起旋转,以便充电材料的周向分布,并且通过调节转子(26)的方向可调,用于充电材料的径向分布。 差速齿轮(72)将悬架转子(18)和调节转子(26)互连,并且构造成通过主旋转驱动器(60)将相同的旋转速度传递给调节转子,除非 调节驱动器(80)向调节转子施加差动旋转。 根据本发明,该装置包括: - 布置在主壳体(12)上并包围将主旋转驱动器(60)连接到第一输出轴(54)的齿轮机构(52)的第一齿轮箱(50) 突出到主壳体(12)中,其连接到与悬架转子(18)上的第一齿圈(64)啮合的齿轮(62); - 第二齿轮箱(70),其布置在所述主壳体(12)上并且包围所述差速齿轮(72),所述差速齿轮将所述调节驱动器(80)连接到突出到所述主壳体(12)中的第二输出轴(74) 其连接到与调节转子(26)上的第二齿圈(84)啮合的齿轮(82); 和 - 配备有补偿联轴器(92,94,95; 192)并且将第二齿轮箱(70)中的差动齿轮(72)连接到第一齿轮机构(52)的齿轮机构(52)的轴装置(90; 190) 齿轮箱(50)。
    • 3. 发明申请
    • COOLING OF A METALLURGICAL SMELTING REDUCTION VESSEL
    • 金属冶炼减压船的冷却
    • WO2009087183A1
    • 2009-07-16
    • PCT/EP2009/050150
    • 2009-01-08
    • PAUL WURTH S.A.LONARDI, EmileROTH, Jean-LucTOCKERT, Paul
    • LONARDI, EmileROTH, Jean-LucTOCKERT, Paul
    • F27D1/12F27B1/24F27B3/24C21B13/00
    • F27B3/24C21B13/0013C21C5/56F27B3/205F27B3/225F27D3/16F27D3/18F27D9/00
    • The invention concerns cooling of the refractory lining in a smelting reduction vessel for producing hot metal. The vessel comprises an outer shell and an inner refractory lining for containing a bath of molten metal and a layer of slag above the bath. In order to create a voluminous turbulent slag layer for improving post-combustion heat transfer within the slag layer, the vessel further comprises at least one of the following devices: - a bottom gas blowing device for bubbling the bath of molten metal and the layer of slag; - a pneumatic injection device for injecting carbonaceous material into the layer of slag; or - an oxidant gas injection device for injecting an oxidant gas into the layer of slag. The refractory lining is dimensioned to define a capacity of at least twice the maximum volume of the bath of molten metal in order to contain the voluminous turbulent slag layer. A cooling installation is arranged in the zone of the turbulent slag layer with at least a major portion of the installation being located above the maximum level of the bath of molten metal for cooling the inner refractory lining in the zone of slag turbulence. According to the invention, the cooling installation comprises at least one row of copper slabs mounted onto openings provided in the outer shell and so as to be in thermo-conductive contact with the inner refractory lining in the zone of the turbulent slag layer and at least one row of spray cooling devices associated to the row of copper slabs for spraying liquid coolant onto the copper slabs through the openings in the shell.
    • 本发明涉及用于生产热金属的冶炼还原容器中的耐火衬里的冷却。 容器包括外壳和用于容纳熔融金属浴的内部耐火衬里和在浴上方的一层熔渣。 为了产生用于改善渣层内的燃烧后热传递的大体积的湍流渣层,容器还包括以下装置中的至少一种: - 用于鼓泡熔融金属熔池的底部气体吹送装置, 矿渣; - 用于将碳质材料注入炉渣层的气动注射装置; 或 - 用于将氧化剂气体注入炉渣层的氧化剂气体注入装置。 耐火衬里的尺寸被设计为限定熔融金属浴的最大体积的至少两倍的容量,以便容纳大量的湍流渣层。 在湍流渣层的区域中布置有冷却装置,其中至少大部分装置位于熔融金属浴的最高水平以上,以冷却炉渣湍流区内的内耐火衬里。 根据本发明,冷却装置包括安装在设置在外壳中的开口上的至少一排铜板,并且与湍流渣层的区域中的内部耐火衬里导热接触,并且至少 一排喷射冷却装置与铜板的一排相关联,用于通过壳体中的开口将液体冷却剂喷射到铜板上。
    • 4. 发明申请
    • A ROTARY CHARGING DEVICE FOR A SHAFT FURNACE EQUIPPED WITH A COOLING SYSTEM
    • 用于具有冷却系统的轴瓦的旋转充电装置
    • WO2007071469A1
    • 2007-06-28
    • PCT/EP2006/066995
    • 2006-10-03
    • PAUL WURTH S.A.THILLEN, GuyLOUTSCH, JeannotHUTMACHER, PatrickLONARDI, Emile
    • THILLEN, GuyLOUTSCH, JeannotHUTMACHER, PatrickLONARDI, Emile
    • C21B7/20F27B1/20
    • F27B1/20C21B7/20F27D3/10F27D9/00
    • A rotary charging device for a shaft furnace, in particular a blast furnace, is disclosed. The charging device is equipped with a cooling system. The rotary charging device comprises a rotatable support for rotary distribution means as well as a stationary housing for the rotatable support. The cooling system comprises a rotary cooling circuit fixed in rotation with the rotatable support as well as a stationary cooling circuit on the stationary housing. A heat transfer device is provided which includes a stationary heat transfer element configured to be cooled by a cooling fluid flowing through the stationary cooling circuit and which includes a rotary heat transfer element configured to be heated by a separate cooling fluid circulated in the rotary cooling circuit. These heat transfer elements are arranged in facing relationship and have there between a heat transfer region for achieving heat transfer by convection and/or radiation through the heat transfer region without mixing of the separate cooling fluids of the rotary and stationary cooling circuits.
    • 公开了一种用于竖炉的旋转充电装置,特别是高炉。 充电装置配有冷却系统。 旋转充电装置包括用于旋转分配装置的可旋转支撑件以及用于可旋转支撑件的固定壳体。 冷却系统包括与可旋转支撑件一起旋转地固定的旋转冷却回路以及固定壳体上的固定冷却回路。 提供了一种传热装置,其包括固定传热元件,其被配置为由流过固定冷却回路的冷却流体冷却,并且包括旋转传热元件,其被配置为由在旋转冷却回路中循环的单独的冷却流体加热 。 这些传热元件以面对的关系布置,并且在传热区域之间具有用于通过对流传热和/或辐射通过传热区域的传热区域,而不会混合旋转和静止冷却回路的分开的冷却流体。
    • 7. 发明申请
    • BLAST FURNACE INSTALLATION
    • 最高炉安装
    • WO2013053644A1
    • 2013-04-18
    • PCT/EP2012/069697
    • 2012-10-05
    • PAUL WURTH S.A.
    • LONARDI, EmileROCCHI, DominiqueTHILLEN, GuyHAUSEMER, LionelDE GRUITER, ChristianVANDIVINIT, Jeff
    • F27B1/20F27D3/10F27D99/00C21B7/20
    • C21B7/20F27B1/20F27D3/10F27D99/0073
    • A blast furnace installation comprises a blast furnace and a chute transmission gearbox (20); the blast furnace comprising a top cone (12) with a top cone ring (24) arranged thereon for receiving a connection flange (28) of the chute transmission gearbox (20). The connection flange (28) is directly fixed onto the top cone ring (24) by fixing means (32) for establishing a firm connection between the top cone ring (24) and the connection flange (28). According to an aspect of the present invention, the connection flange (28) is fixed to the top cone ring (24) in three separated fixation regions (30, 30', 30''), each fixation region (30, 30', 30'') comprising one or more fixing means (32). According to a further aspect of the present invention, the blast furnace installation also comprises a flexible sealing element (36) arranged around the perimeter of the connection between the top cone ring (24) and the chute transmission gearbox (20).
    • 高炉装置包括高炉和斜槽传动齿轮箱(20); 所述高炉包括顶部锥体(12),顶部锥形环(24)布置在其上,用于接收所述斜槽传动齿轮箱(20)的连接凸缘(28)。 连接法兰(28)通过固定装置(32)直接固定在顶部锥形环(24)上,用于在顶部锥形环(24)和连接凸缘(28)之间建立牢固的连接。 根据本发明的一个方面,连接凸缘(28)在三个分离的固定区域(30,30',30“)中固定到顶锥环(24),每个固定区域(30,30',30” 30“)包括一个或多个固定装置(32)。 根据本发明的另一方面,高炉设备还包括围绕顶锥形环(24)和斜槽传动齿轮箱(20)之间的连接的周边布置的柔性密封元件(36)。