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    • 21. 发明申请
    • Rotary Charging Device for a Shaft Furnace Equipped with a Cooling System
    • 具有冷却系统的轴式炉的旋转充电装置
    • US20080290567A1
    • 2008-11-27
    • US12158955
    • 2006-10-03
    • Guy ThillenJeannot LoutschPatrick HutmacherEmile LonardiPaul Tockert
    • Guy ThillenJeannot LoutschPatrick HutmacherEmile LonardiPaul Tockert
    • C21B7/18
    • 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 includes a rotatable support for rotary distribution means as well as a stationary housing for the rotatable support. The cooling system includes 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在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。
    • 22. 发明授权
    • Variable device for bulk material distribution with rotary chute having variable angle of inclination
    • 具有可变倾斜角度的旋转滑槽的散装材料分配的可变装置
    • US06981831B2
    • 2006-01-03
    • US10380977
    • 2001-08-27
    • Emile LonardiEmile BredenGuy ThillenGiovanni Cimenti
    • Emile LonardiEmile BredenGuy ThillenGiovanni Cimenti
    • B65G11/00
    • C21B7/20F16H37/065
    • A device for distributing bulk materials includes a suspension rotor is mounted in a support frame which is capable of rotating about a substantially vertical axis of rotation. A chute is suspended to the suspension rotor and is tiltable about a substantially horizontal tilt axis. A first motor is capable of rotating the suspension rotor about its axis of rotation in a first direction, and a tilt controlling motor mounted in the support frame is capable of rotating about a substantially vertical axis of rotation. A tilting mechanism is also connected between the chute and the tilt controlling rotor, while a first braking device exerts a braking moment on the tilt controlling motor. A first control device controls the angle of inclination of the chute by controlled braking of the tilt controlling rotor.
    • 用于分配散装材料的装置包括悬架转子安装在支撑框架中,支撑框架能够围绕基本垂直的旋转轴线旋转。 滑槽悬挂在悬架转子上,并可围绕基本上水平的倾斜轴线倾斜。 第一电动机能够使悬架转子围绕第一方向的旋转轴线旋转,并且安装在支撑框架中的倾斜控制电动机能够围绕基本垂直的旋转轴线旋转。 倾斜机构也连接在滑槽和倾斜控制转子之间,而第一制动装置在倾斜控制电机上施加制动力矩。 第一控制装置通过倾斜控制转子的受控制动来控制滑槽的倾斜角度。
    • 24. 发明授权
    • Device for distributing charge material into a shaft furnace
    • 用于将充电材料分配到竖炉中的装置
    • US08920710B2
    • 2014-12-30
    • US13322992
    • 2010-06-03
    • Guy ThillenEmile LonardiLionel HausemerChristian Benoit Thix
    • Guy ThillenEmile LonardiLionel HausemerChristian Benoit Thix
    • F27B1/24C21B7/20F27B1/20F27D3/10F16H37/08
    • C21B7/20F16H37/0806F27B1/20F27D3/10
    • A shaft furnace charge material distribution device includes a main housing, a distribution chute, a suspension rotor and an adjustment rotor, which are rotatable about a vertical axis. The chute is suspended to the suspension rotor to rotate therewith for circumferential distribution of charge material and is adjustable in orientation for radial distribution of charge material. A differential gear interconnects the suspension rotor and adjustment rotor 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 unless an adjustment drive imparts differential rotation to the adjustment rotor. The device includes two gear casings arranged on the main housing and a shaft arrangement. The first gear encloses a gear mechanism connecting the main rotation drive to one output shaft. The second gear casing encloses the differential gear connecting the adjustment drive to another output shaft.
    • 竖炉充电材料分配装置包括可围绕垂直轴线旋转的主壳体,分配槽,悬架转子和调节转子。 滑槽悬挂到悬架转子上以与其一起旋转,以使充电材料周向分布,并且可以在充电材料径向分布的方向上调节。 差速齿轮将悬架转子和调节转子互连,并且构造成通过主旋转驱动将与旋转驱动相同的转速传递给调节转子,除非调节驱动器向调节转子施加差动旋转。 该装置包括布置在主壳体上的两个齿轮箱和轴装置。 第一齿轮包围将主旋转驱动器连接到一个输出轴的齿轮机构。 第二齿轮箱包围将调节驱动器连接到另一个输出轴的差速齿轮。
    • 25. 发明申请
    • DEVICE FOR DISTRIBUTING CHARGE MATERIAL IN A SHAFT FURNANCE
    • US20120070253A1
    • 2012-03-22
    • US13322981
    • 2010-06-03
    • Guy ThillenEmile LonardiLionel HausemerChristian Benoit Thix
    • Guy ThillenEmile LonardiLionel HausemerChristian Benoit Thix
    • F27B1/20F27D3/00C21B7/20
    • C21B7/20F27B1/20F27D3/10
    • 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 (86) 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 (96) imparts, through the differential gear, a differential rotation to the adjustment rotor. According to the invention, the device includes: a first casing (50) arranged on the main housing (12) and enclosing an angular transmission (52) between a substantially vertical output shaft (54), which protrudes from the first casing (50) into the main housing and is connected to a gearwheel (62) that meshes with a first gear ring (64) on the suspension rotor (18), and a connecting shaft (56), which protrudes from the first casing (50) at an angle, in particular perpendicularly, with respect to the output shaft (54); a second casing (70) arranged on the main housing (12) and enclosing an angular transmission (72) between a substantially vertical output shaft (74), which protrudes from the second casing (70) into the main housing and is connected to a gearwheel (78) that meshes with a second gear ring (80) on the adjustment rotor (26), and a connecting shaft (76(, which protrudes from the second casing (70) at an angle, in particular perpendicularly, with respect to the output shaft (74); a third casing (84) that is spaced apart from the first and second casings (50, 70) and encloses the differential gear (86), the differential gear being connected to a first shaft (88), which is coupled to the connecting shaft (56) of the first casing (50), and to a second shaft (90), which is coupled to the connecting shaft (76) of the second casing (70).
    • 26. 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
    • US20120068392A1
    • 2012-03-22
    • US13322992
    • 2010-06-03
    • Guy ThillenEmile LonardiLionel HausemerChristian Benoit Thix
    • Guy ThillenEmile LonardiLionel HausemerChristian Benoit Thix
    • F27B1/20B67D7/06
    • C21B7/20F16H37/0806F27B1/20F27D3/10
    • A device for distributing charge material into a shaft furnace includes a main housing, a distribution chute, a suspension rotor and an adjustment rotor, which are rotatable about a substantially vertical axis, the chute is suspended to the suspension rotor to rotate therewith for circumferential distribution of charge material and adjustable in orientation through the adjustment rotor for radial distribution of charge material, a differential gear interconnects the suspension rotor and the adjustment rotor 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 unless an adjustment drive imparts differential rotation to the adjustment rotor, the device further including: a first gear casing arranged on the main housing and enclosing a gear mechanism that connects the main rotation drive to a first output shaft that protrudes into the main housing where it is connected to a gearwheel that meshes with a first gear ring on the suspension rotor; a second gear casing arranged on the main housing and enclosing the differential gear that connects the adjustment drive to a second output shaft that protrudes into the main housing where it is connected to a gearwheel that meshes with a second gear ring on the adjustment rotor; and a shaft arrangement equipped with a compensating coupling and connecting the differential gear in the second gear casing to the gear mechanism in the first gear casing.
    • 用于将加料材料分配到竖炉中的装置包括可围绕基本上垂直的轴线旋转的主壳体,分配槽,悬架转子和调节转子,所述滑槽悬挂到悬架转子以随其旋转以进行周向分布 的充电材料,并且通过用于调节转子的调整转子可调节,用于充电材料的径向分布,差动齿轮将悬架转子和调节转子互连,并且被配置为向调节转子传递相同的转速提供给悬架转子 通过主旋转驱动器,除非调节驱动器向调节转子施加差速旋转,该装置还包括:第一齿轮箱,其布置在主壳体上并且包围齿轮机构,齿轮机构将主旋转驱动器连接到突出到第一输出轴 主壳体连接到啮合的齿轮上 在悬架转子上具有第一齿圈; 第二齿轮箱,布置在主壳体上并且包围差速齿轮,差速齿轮将调节驱动器连接到突出到主壳体中的第二输出轴,在该第二输出轴处,其连接到与调节转子上的第二齿圈啮合的齿轮; 以及配备有补偿联轴器并将第二齿轮箱中的差速齿轮连接到第一齿轮箱中的齿轮机构的轴装置。
    • 27. 发明申请
    • SHAFT FURNACE CHARGING INSTALLATION HAVING A DRIVE MECHANISM FOR A DISTRIBUTION CHUTE
    • 具有分配机构的驱动机构的轴承充电安装
    • US20120045298A1
    • 2012-02-23
    • US13319229
    • 2010-03-23
    • Guy ThillenEmile LonardiChristian Benoit ThixGerald Hubeaux
    • Guy ThillenEmile LonardiChristian Benoit ThixGerald Hubeaux
    • F27D3/10F27B1/20
    • F27B1/20C21B7/20F27D3/10
    • The invention concerns a drive mechanism for a distribution chute (14) in a shaft furnace charging installation. This drive mechanism comprises rotary supporting means (15) supporting the distribution chute so that it can be rotated, typically about a vertical axis of rotation (A), and a fixed structure (10) supporting the rotary supporting means (15). It has a main drive motor (30) for rotating the chute and an auxiliary drive motor (40) for adjusting the position of the chute, typically the pivotal position about a horizontal axis (B). The drive mechanism further comprises first, second and third transmission means (34; 46; 54). The first transmission (34) operationally couples the main drive motor (30) to a first ring gear (40) rigidly connected to the rotary supporting means (15). The second transmission (46) operationally couples the auxiliary drive motor (40) to a second ring gear (48) that is independently rotatable about the axis of rotation (A). The third transmission (54) is supported by the rotary supporting means (15) and operationally couples the second ring gear (48) to the distribution chute (14) for adjusting the position of the distribution chute, typically its pivotal position. According to the invention, the third transmission (54) comprises at least one epicyclic sun-and-planet gear train (56; 256; 356) that is supported by the rotary supporting means (15) and operationally coupled to a third ring gear (71; 471) rigidly connected to the fixed structure (10). The proposed epicyclic sun-and-planet gear train (56; 256; 356) has an input shaft (58; 258) driven by the second ring gear (48) and an output shaft (74; 274) connected to adjust the position of the distribution chute (14).
    • 本发明涉及一种用于竖炉加料装置中的分配槽(14)的驱动机构。 该驱动机构包括支撑分配滑槽的旋转支撑装置(15),使得其可以旋转,通常围绕垂直旋转轴线(A)旋转,以及支撑旋转支撑装置(15)的固定结构(10)。 它具有用于旋转斜槽的主驱动马达(30)和用于调节滑槽位置的辅助驱动马达(40),通常是围绕水平轴线(B)的枢转位置。 驱动机构还包括第一和第三传动装置(34; 46; 54)。 第一变速器(34)将主驱动电机(30)可操作地连接到刚性地连接到旋转支撑装置(15)的第一齿圈(40)。 第二变速器46将辅助驱动马达40可操作地连接到能够围绕旋转轴线(A)独立旋转的第二齿圈(48)。 第三变速器(54)由旋转支撑装置(15)支撑,并且可操作地将第二齿圈(48)连接到分配滑槽(14),用于调节分配滑槽的位置,通常是其枢转位置。 根据本发明,第三变速器(54)包括由旋转支撑装置(15)支撑并且可操作地联接到第三齿圈(56; 256; 356)的至少一个行星太阳和行星齿轮系 71; 471)刚性地连接到固定结构(10)。 所提出的行星太阳行星齿轮系(56; 256; 356)具有由第二齿圈(48)驱动的输入轴(58; 258)和输出轴(74; 274) 分配槽(14)。
    • 28. 发明授权
    • Rotary charging device for a shaft furnace equipped with a cooling system
    • 装有冷却系统的竖炉的旋转充气装置
    • US08021603B2
    • 2011-09-20
    • US12158955
    • 2006-10-03
    • Guy ThillenJeannot LoutschPatrick HutmacherEmile LonardiPaul Tockert
    • Guy ThillenJeannot LoutschPatrick HutmacherEmile LonardiPaul Tockert
    • C21B7/18
    • 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 includes a rotatable support for rotary distribution means as well as a stationary housing for the rotatable support. The cooling system includes 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在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。
    • 29. 发明申请
    • ROTARY CHARGING DEVICE FOR A SHAFT FURNACE
    • 旋转炉的旋转充电装置
    • US20100028106A1
    • 2010-02-04
    • US12520038
    • 2007-11-27
    • Emile BredenLionel HausemerEmile LonardiGuy Thillen
    • Emile BredenLionel HausemerEmile LonardiGuy Thillen
    • C21B7/20B23P6/00
    • C21B7/20F27B1/20F27D3/0033Y10T29/49718
    • A rotary charging device (10) for a shaft furnace commonly comprises a rotary distribution means (12) for distributing charge material on a charging surface in the shaft furnace. A rotatable structure supports (16) the rotary distribution means and a stationary support (18) rotatably supports the rotatable structure. According to the invention, the charging device (10) is equipped with an inductive coupling device (30) including a stationary inductor (34) fixed to the stationary support and a rotary inductor (36) fixed to the rotatable structure. The stationary inductor (34) and the rotary inductor (36) are separated by a radial gap and configured as rotary transformer for achieving contact-less electric energy transfer from the stationary support (18) to the rotatable structure (16) by means of magnetic coupling trough the radial gap for powering an electric load arranged on the rotatable structure (16) and connected to said rotary inductor (36).
    • 用于竖炉的旋转充电装置(10)通常包括用于在竖炉中的充电表面上分配充电材料的旋转分配装置(12)。 可旋转结构支撑(16)旋转分配装置,并且固定支撑件(18)可旋转地支撑可旋转结构。 根据本发明,充电装置(10)配备有电感耦合装置(30),该电感耦合装置包括固定在固定支架上的固定电感器(34)和固定在可旋转结构上的旋转电感器(36)。 固定电感器(34)和旋转电感器(36)由径向间隙分开,并被配置为旋转变压器,用于通过磁性实现从固定支撑件(18)到可旋转结构(16)的无接触电能传递 耦合到所述径向间隙,用于为布置在所述可旋转结构(16)上的电负载供电并连接到所述旋转电感器(36)。
    • 30. 发明申请
    • MULTIPLE HOPPER CHARGING INSTALLATION FOR A SHAFT FURNACE
    • 多功能炉充电安装用于轴承炉
    • US20090092465A1
    • 2009-04-09
    • US12161584
    • 2006-12-27
    • Emile LonardiGuy ThillenClaude ThinnesJeannot Loutsch
    • Emile LonardiGuy ThillenClaude ThinnesJeannot Loutsch
    • B65G3/00F23K3/16
    • F27D3/10C21B7/20F27B1/20F27D3/0025F27D3/0032F27D3/0033F27D2003/105
    • A multiple hopper charging installation for a shaft furnace includes a rotary distribution device for distributing bulk material in the shaft furnace by rotating a distribution member about a central axis of the shaft furnace and at least two hoppers arranged in parallel and offset from the central axis above the rotary distribution device. Each hopper has a lower funnel part ending in an outlet portion and each hopper has a material gate valve with a shutter member associated to its outlet portion. According to the invention, each funnel part is configured asymmetrically with its outlet portion being eccentric and arranged proximate to the central axis, each outlet portion is oriented vertically so as to produce a substantially vertical outflow of bulk material and each material gate valve has a one-piece shutter member and is configured with its respective shutter member opening in a direction pointing away from the central axis such that any partial valve opening area is located on the side of the associated outlet portion proximate to the central axis.
    • 用于竖炉的多料斗加料装置包括:旋转分配装置,用于通过围绕竖炉的中心轴线旋转分配构件并且平行布置并偏离中心轴线的至少两个料斗将分散体材料分散在竖炉中 旋转分配装置。 每个料斗具有终止于出口部分的下漏斗部分,并且每个料斗具有材料闸阀,其具有与其出口部分相关联的闸门部件。 根据本发明,每个漏斗部分被非对称地构造,其出口部分是偏心的并且靠近中心轴线布置,每个出口部分垂直取向,以便产生大体垂直的散装材料流出物,并且每个材料闸阀具有一个 构件具有其相应的挡板构件在远离中心轴线的方向上开口,使得任何部分阀开口区域位于相关联的出口部分的靠近中心轴线的侧面上。