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    • 4. 发明授权
    • Device and process for the separation and classification of particles
forming granular product
    • 用于分离和分类形成颗粒产品的颗粒的装置和方法
    • US5871103A
    • 1999-02-16
    • US750105
    • 1996-11-26
    • Laurent Durst
    • Laurent Durst
    • B07B4/02B07B11/00B07B11/04B07B4/00
    • B07B11/04B07B4/02
    • The device (10) includes a cylindrical guiding channel (16) communicating with a lower container (17) formed with two parallel planar walls (21) separated by a distance smaller than the maximum width of the guiding channel. The device is further provided with a motion generator (24) arranged to generate a substantially laminar fluid flow in the guiding channel for conveying particles to the guiding channel. The particles introduced in the guiding channel (16) receive the kinetic energy of the fluid flow, fall in the lower container (17) and are recovered at positions which depend of the mass and the kinetic energy received.
    • PCT No.PCT / CH95 / 00126 Sec。 371日期1996年11月26日 102(e)日期1996年11月26日PCT提交1995年5月31日PCT公布。 第WO95 / 32810号公报 1995年12月7日,装置(10)包括与形成有两个平行平面壁(21)的下部容器(17)连通的圆柱形引导通道(16),该两个平行平面壁(21)的间隔小于引导通道的最大宽度。 该装置还设置有运动发生器(24),其被布置成在导向通道中产生基本上层流的流体,用于将颗粒输送到引导通道。 导入引导通道(16)中的颗粒接收流体流动的动能,落在下部容器(17)中,并在取决于质量和接受的动能的位置回收。
    • 5. 发明授权
    • Air classifying apparatus with wear reducing deflector
    • 带减磨导流板的空气分级装置
    • US5301812A
    • 1994-04-12
    • US42040
    • 1993-04-02
    • Harvey M. GarrettGeorge M. Johnson
    • Harvey M. GarrettGeorge M. Johnson
    • B07B7/083B07B11/00B07B5/12
    • B07B7/083B07B11/00
    • Improvements are disclosed in apparatus for air classifying mineral particles by size. The apparatus is of the type including a vertically oriented flow channel for carrying an upwardly directed air flow stream in which the particles are dispersed and a cylindrical air classifier mounted in the flow channel. The classifier has a cage which is rotatable about a vertical axis and is laterally open to the flow channel. A plurality of spaced vertical rejector blades are mounted about the lateral periphery, and the cage is closed at its lower end by a support plate. An outlet is connected to the classifier interior for withdrawing particles passing radially through the blades for collection; and air drawing device is connected to the outlet for drawing the air stream and particles into the classifier and establishing an upward flow of air and dispersed particles within channel. The improvement prevents or limits damage of the classifier support plate by the abrasive impact of the particles carried by the upward flow. A hollow funnel-shaped deflector is fixedly secured below the classifier with its tip facing downwardly. The deflector is open at its base, and formed thereat into an axially-extending lip, the inside of which surrounds but is slightly spaced from the lateral edge of the face plate. An outward air flow is induced through the space between the support plate edge and the deflector lip. This provides an air seal preventing particles from entering the interior of the deflector where they can interfere with the rotation of the classifier or damage the support plate.
    • 在通过尺寸对矿物颗粒进行空气分类的装置中公开了改进。 该装置是包括垂直定向的流动通道,用于承载颗粒分散在其中的向上指向的气流,以及安装在流动通道中的圆柱形空气分级器。 分选机具有可围绕垂直轴线旋转并且横向于流动通道的保持架。 多个间隔开的垂直排料器叶片围绕侧面周边安装,并且保持架在其下端由支撑板封闭。 出口连接到分选机内部,用于抽出通过叶片径向通过收集的颗粒; 空气抽吸装置连接到出口,用于将空气流和颗粒吸入分选机,并在通道内建立向上的空气和分散颗粒。 该改进通过由向上的流动携带的颗粒的磨损冲击来防止或限制分级器支撑板的损坏。 中空的漏斗形偏转器固定地固定在分级机下面,其顶端朝下。 偏转器在其底部是开放的,并形成在一个轴向延伸的唇部中,其内侧围绕着与面板的侧边缘稍微间隔开。 通过支撑板边缘和偏转器唇缘之间的空间引起向外的气流。 这提供了空气密封,防止颗粒进入偏转器的内部,在那里它们可能干扰分级器的旋转或损坏支撑板。
    • 8. 发明授权
    • Apparatus and method of separating and concentrating organic and/or non-organic material
    • 分离和浓缩有机和/或非有机材料的装置和方法
    • US08651282B2
    • 2014-02-18
    • US11649685
    • 2007-01-04
    • Mark A. NessMatthew P. Coughlin
    • Mark A. NessMatthew P. Coughlin
    • B07B11/00
    • B03B4/06C10B57/10F23K1/04F23K2201/20F23K2201/30F26B3/084Y02P20/129
    • An apparatus for segregating particulate by density and/or size including a fluidizing bed having a particulate receiving inlet for receiving particulate to be fluidized. The fluidized bed also includes an opening for receiving a first fluidizing stream, an exit for fluidized particulate and at least one exit for non-fluidized particulate. A conveyor is operatively disposed in the fluidized bed for conveying the non-fluidized particulate to the non-fluidized particulate exit. A collector box is in operative communication with the fluidized bed to receive the non-fluidized particulate. There is a means for directing a second fluidizing stream through the non-fluidized particulate as while it is in the collector box to separate fluidizable particulate therefrom.
    • 一种用于通过密度和/或尺寸分离颗粒的装置,包括具有用于接收要流化的颗粒的颗粒接收入口的流化床。 流化床还包括用于接收第一流化物流的开口,用于流化颗粒的出口和用于非流化颗粒的至少一个出口。 输送机可操作地设置在流化床中,用于将非流化颗粒输送到非流化颗粒出口。 收集箱与流化床操作连通以接收非流化颗粒。 有一种方法,用于当第二流化物流在收集箱中时将第二流化物流引导通过非流化颗粒,以从其中分离出可流动的颗粒。
    • 10. 发明申请
    • Dycon gravity mineral recovery apparatus and process
    • Dycon重力矿物回收装置及工艺
    • US20080023377A1
    • 2008-01-31
    • US11492644
    • 2006-07-25
    • George P. Baummer
    • George P. Baummer
    • B03B11/00B07B11/00
    • B03B5/02B03B11/00B03B13/00
    • A gravity mineral recovery apparatus and process uses stratification to separate the relatively heavier valuable particulates from the lighter tailings in ore. A housing holds a process chamber therein, the chamber capable of oscillating within the housing. Ore is gravity fed into the process chamber and falls toward the bottom with the ore channeled to the outer sidewall of the process chamber by a deflector that creates an annular passage within the chamber. The oscillation of the chamber causes the heavier particulate to stratify into circumferentially disposed hoppers while the tailings are discharged through a central chute to a tailings hopper. The hoppers have compound sloped sidewalls and have a sensor for opening a discharge valve within the hopper once a given concentration is achieved. A series of sensors within the tailings hopper control a tailings discharge valve as well as an ore feed valve. Water constantly flows through the system yet does not participate in the actual transport of the particulates.
    • 重力矿物回收装置和方法使用分层法从矿石中的较轻的尾矿分离相对较重的有价值的颗粒。 外壳在其中容纳处理室,该室能够在壳体内摆动。 矿石是重力进料到处理室中并且朝向底部落下,矿石通过偏转器引导到处理室的外侧壁,该偏转器在室内产生环形通道。 室的振荡导致较重的颗粒分层成圆周设置的料斗,同时尾矿通过中央滑槽排出到尾料料斗。 料斗具有复合倾斜的侧壁,并且具有用于在达到给定浓度时在料斗内打开排出阀的传感器。 尾矿料斗内的一系列传感器控制尾矿排放阀以及进料阀。 水不断流经系统,但不参与颗粒的实际运输。