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    • 1. 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。
    • 3. 发明授权
    • Rotary charging device for a shaft furnace
    • 竖炉旋转充气装置
    • US08088327B2
    • 2012-01-03
    • US12520038
    • 2007-11-27
    • Emile BredenLionel HausemerEmile LonardiGuy Thillen
    • Emile BredenLionel HausemerEmile LonardiGuy Thillen
    • C21B7/08
    • C21B7/20F27B1/20F27D3/0033Y10T29/49718
    • A rotary charging device for a shaft furnace commonly comprises a rotary distribution configured to distribute charge material on a charging surface in the shaft furnace. A rotatable structure supports the rotary distribution means and a stationary support rotatably supports the rotatable structure. According to the invention, the charging device is equipped with an inductive coupling device including a stationary inductor fixed to the stationary support and a rotary inductor fixed to the rotatable structure. The stationary inductor and the rotary inductor are separated by a radial gap and configured as rotary transformer for achieving contact-less electric energy transfer from the stationary support to the rotatable structure by means of magnetic coupling through the radial gap for powering an electric load arranged on the rotatable structure and connected to said rotary inductor.
    • 用于竖炉的旋转充电装置通常包括被配置为将充电材料分配在竖炉中的充电表面上的旋转分配器。 可旋转结构支撑旋转分配装置,并且固定支撑件可旋转地支撑可旋转结构。 根据本发明,充电装置配备有电感耦合装置,该电感耦合装置包括固定在固定支架上的固定电感器和固定在可旋转结构上的旋转电感器。 固定电感器和旋转电感器被径向间隙分开并且被配置为旋转变压器,用于通过用于为布置在其上的电负载供电的径向间隙的磁耦合实现从固定支撑件到可旋转结构的无接触电能传递 可旋转结构并连接到所述旋转电感器。
    • 4. 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)。
    • 5. 发明申请
    • METHOD AND SYSTEM FOR ADJUSTING THE FLOW RATE OF CHARGE MATERIAL IN A CHARGING PROCESS OF A SHAFT FURNACE
    • 用于调节轴承充电过程中充电材料流量的方法和系统
    • US20110311926A1
    • 2011-12-22
    • US13148953
    • 2010-02-11
    • Paul TockertEmile BredenEmile LonardiDamien Meyer
    • Paul TockertEmile BredenEmile LonardiDamien Meyer
    • F27D3/00
    • C21B7/20C21B7/24C21B2300/04F27B1/20F27B1/28F27D19/00F27D21/0035F27D2003/105F27D2019/0075F27D2019/0087
    • In a charging process of a shaft furnace, in particular of a blast furnace, batches of charge material are typically discharged in cyclical sequence into the furnace from a top hopper using a flow control valve. A method and system is proposed for adjusting the flow rate of charge material in such a process. Pre-determined valve characteristics for certain types of material are provided, each indicating the relation between flow rate and valve setting for one type of material. According to the invention, a specific valve characteristic is stored for each batch of charge material, each specific valve characteristic being bijectively associated to one batch and indicating the relation between flow rate and valve setting of the flow control valve specifically for the associated batch. In relation to discharging a given batch of the sequence the invention proposes: using the stored specific valve characteristic associated to the given batch for determining a requested valve setting corresponding to a flow rate setpoint and using the requested valve setting to operate the flow control valve; determining an actual average flow rate for the discharge of the given batch; correcting the stored specific valve characteristic associated to the given batch in case of a stipulated deviation between the flow rate setpoint and the actual average flow rate.
    • 在立式炉,特别是高炉的充电过程中,通常使用流量控制阀从一个上料斗中循环排出一批充电材料到炉中。 提出了一种在这种过程中调节充电材料的流量的方法和系统。 提供了某些类型材料的预定阀门特性,每个都表示一种材料的流量与阀门设置之间的关系。 根据本发明,针对每批充电材料存储特定的阀门特性,每个特定的阀门特性与一个批次大体上相关联,并且指示流量控制阀的流速和阀门设置之间的关系,专门针对相关联的批次。 关于排放本发明的给定批次,本发明提出:使用与给定批次相关联的存储的特定阀特性来确定对应于流量设定点的所请求的阀设置,并使用所请求的阀设置来操作流量控制阀; 确定给定批次的排放的实际平均流量; 在流量设定点和实际平均流量之间的规定偏差的情况下,校正与给定批次相关联的存储的特定阀特性。
    • 7. 发明授权
    • Method and system for adjusting the flow rate of charge material in a charging process of a shaft furnace
    • 在竖炉加料过程中调整充料材料流量的方法和系统
    • US08666557B2
    • 2014-03-04
    • US13148676
    • 2010-02-11
    • Paul TockertEmile BredenEmile LonardiDamien Meyer
    • Paul TockertEmile BredenEmile LonardiDamien Meyer
    • G05D11/00
    • C21B7/24C21B7/20C21B2300/04F27B1/20F27B1/28F27D19/00F27D2003/105
    • In a charging process of a shaft furnace, in particular of a blast furnace, batches of charge material are typically discharged in cyclical sequence into the furnace from a top hopper using a flow control valve. A method and system is proposed for adjusting the flow rate of charge material in such a process. According to the invention, a respective set of plural valve settings is stored for each batch, each valve setting of a set being associated to a different stage in the discharge of the batch. The method and system are configured to discharge a given batch so that, at each stage in the discharge of the given batch, the flow control valve operates at a constant valve opening according to the valve setting associated to that stage and so that an actual average flow rate at which charge material is discharged is determined for that stage. Further according to the invention, the method and system are configured to correct the plural valve settings offline and in function of the actual average flow rate determined for the associated stage.
    • 在立式炉,特别是高炉的充电过程中,通常使用流量控制阀从一个上料斗中循环排出一批充电材料到炉中。 提出了一种在这种过程中调节充电材料的流量的方法和系统。 根据本发明,对于每个批次存储相应的一组多个阀设置,一组的每个阀设置与批次的排出中的不同阶段相关联。 所述方法和系统被配置为排出给定的批料,使得在给定批次的排放的每个阶段,流量控制阀根据与该级相关联的阀设置在恒定的阀开口处操作,并且使得实际平均值 在该阶段确定充电材料的放电流量。 此外,根据本发明,该方法和系统被配置为根据为相关级确定的实际平均流量来离线校正多个阀设置。
    • 8. 发明申请
    • METHOD AND SYSTEM FOR ADJUSTING THE FLOW RATE OF CHARGE MATERIAL IN A CHARGING PROCESS OF A SHAFT FURNACE
    • 用于调节轴承充电过程中充电材料流量的方法和系统
    • US20110311346A1
    • 2011-12-22
    • US13148676
    • 2010-02-11
    • Paul TockertEmile BredenEmile LonardiDamien Meyer
    • Paul TockertEmile BredenEmile LonardiDamien Meyer
    • F27B1/20
    • C21B7/24C21B7/20C21B2300/04F27B1/20F27B1/28F27D19/00F27D2003/105
    • In a charging process of a shaft furnace, in particular of a blast furnace, batches of charge material are typically discharged in cyclical sequence into the furnace from a top hopper using a flow control valve. A method and system is proposed for adjusting the flow rate of charge material in such a process. According to the invention, a respective set of plural valve settings is stored for each batch, each valve setting of a set being associated to a different stage in the discharge of the batch. The method and system are configured to discharge a given batch so that, at each stage in the discharge of the given batch, the flow control valve operates at a constant valve opening according to the valve setting associated to that stage and so that an actual average flow rate at which charge material is discharged is determined for that stage. Further according to the invention, the method and system are configured to correct the plural valve settings offline and in function of the actual average flow rate determined for the associated stage.
    • 在立式炉,特别是高炉的充电过程中,通常使用流量控制阀从一个上料斗中循环排出一批充电材料到炉中。 提出了一种在这种过程中调节充电材料的流量的方法和系统。 根据本发明,对于每个批次存储相应的一组多个阀设置,一组的每个阀设置与批次的排出中的不同阶段相关联。 所述方法和系统被配置为排出给定的批料,使得在给定批次的排放的每个阶段,流量控制阀根据与该级相关联的阀设置在恒定的阀开口处操作,并且使得实际平均值 在该阶段确定充电材料的放电流量。 此外,根据本发明,该方法和系统被配置为根据为相关级确定的实际平均流量来离线校正多个阀设置。