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    • 31. 发明申请
    • APPARATUS FOR DRYING PELLETS
    • 干燥颗粒的装置
    • US20120024760A1
    • 2012-02-02
    • US13191529
    • 2011-07-27
    • Hans-Walter Hefner
    • Hans-Walter Hefner
    • B07B4/08
    • F26B1/00B29B9/16B29B13/065F26B17/24F26B2200/08
    • An apparatus for drying pellets having a housing and a device for impressing motion. The device impresses directions of motion on the pellets and on a process fluid that differ locally from one another, so that the process fluid in which the pellets are originally located can be separated. The pellets by means of passage from a screen front to a screen rear in a dewatering region with at least one dewatering screen having dewatering screen openings that are smaller in size than the pellets. A classifying region with at least one classifying screen with classifying screen openings that are of such a size that the pellets of a desired size pass from a screen front through these classifying screen openings to a screen rear, wherein the classifying screen is arranged such that the pellets with the direction of motion impressed upon them pass through the classifying screen openings.
    • 一种用于干燥具有壳体的颗粒的装置和用于压印运动的装置。 该装置对颗粒和相互局部不同的工艺流体施加运动方向,从而可以分离出初始位于其中的工艺流体。 通过在脱水区域中从屏幕前部通过屏幕后部的颗粒,其中至少一个脱水筛网具有尺寸小于颗粒的脱水筛孔。 一种具有至少一个具有分级筛孔的分级筛的分级区,其具有如下尺寸,使得所需尺寸的颗粒从筛网前通过这些分类筛网开口延伸到筛网后部,其中分级筛布被布置成使得 具有施加在其上的运动方向的颗粒通过分类筛孔。
    • 34. 发明申请
    • Sieve screen level sensor
    • 筛网液位传感器
    • US20050107922A1
    • 2005-05-19
    • US10955427
    • 2004-09-30
    • Dale DeMaison
    • Dale DeMaison
    • G03G9/087B02C17/00B02C17/02B07B1/42B07B1/50B07B4/08B07B13/16B07B13/18G03G9/08G05D9/00
    • B07B1/50B07B4/08B07B13/16B07B13/18G03G9/081G03G9/0817
    • Sieve screen level sensing in a filtering apparatus (10) for filtering fine powder material (M) which includes a sieve (12) having a material inlet (24) and a material outlet (26), and a sieve screen (14) is disposed within the sieve (12) between the material inlet (24) and outlet (26) such that the material (M) must pass through the sieve screen (14) to enter the material outlet (26) and thereby exit the sieve (12). An input valve (22) controls the flow of material (M) into the sieve (12) through the material inlet (24). A sieve screen level sensor assembly (20) senses a level of material (M) accumulated upon the sieve screen (14), and issues a level sense signal (66) indicative of that level. A programmable logic controller (60) receives the level sense signal (66) and controls the inlet valve (22) dependent at least in part thereon to thereby control the flow of material (M) into the material inlet (24).
    • 在用于过滤包括具有材料入口(24)和材料出口(26)的筛子(12)的细粉末材料(M)的过滤装置(10)和筛网(14)中的筛筛分水平传感 在材料入口(24)和出口(26)之间的筛(12)内,使得材料(M)必须通过筛网(14)进入材料出口(26),从而离开筛子(12) 。 输入阀(22)通过材料入口(24)控制进入筛子(12)的材料(M)的流动。 筛网水平传感器组件(20)感测积累在筛网(14)上的材料(M)的水平,并且发出指示该水平的水平感测信号(66)。 可编程逻辑控制器(60)接收液位检测信号(66)并且控制入口阀(22)至少部分地依赖于其,由此控制材料(M)进入材料入口(24)的流动。
    • 35. 发明授权
    • Longitudinal micrometric separator for classifying solid particulate materials
    • 用于分类固体颗粒材料的纵向微分离器
    • US06848582B2
    • 2005-02-01
    • US10281911
    • 2002-10-28
    • Umberto Manola
    • Umberto Manola
    • B07B7/00B07B4/08B07B7/01B07B13/00B07C5/38
    • B07B13/003B07B4/08B07B7/01
    • A longitudinal micrometric separator for the classification of solid particulate materials comprising an outer casing having an inflow opening and an outflow opening for the particulate material, a collection chamber at the bottom, as well as a sliding support for the particulate material extending substantially along a longitudinal drawing axis, in which the material is conveyed in the direction of the aforesaid longitudinal axis by a forced fluid flow. The sliding support comprises at least one first inclined wall, lying in a plane parallel to the drawing axis, and at least one dropping channel with axis parallel to the drawing axis and connected to a side end of the same inclined wall, the other side end of the inclined wall being set at a distance from the internal surfaces of the casing.
    • 一种用于固体颗粒材料分类的纵向微量分离器,包括具有用于颗粒材料的流入开口和流出开口的外壳,位于底部的收集室,以及用于颗粒材料的滑动支撑件, 其中材料通过强制流体流沿着前述纵向轴线的方向输送。 滑动支架包括位于平行于牵引轴线的平面中的至少一个第一倾斜壁和至少一个具有平行于牵引轴线的轴线并连接到同一倾斜壁的侧端的下降通道,另一侧端 的倾斜壁设置在距壳体内表面一定距离处。
    • 36. 发明授权
    • Procedure and apparatus for separating heavy particles of material from
lighter ones
    • 从轻质材料中分离出重质颗粒的方法和设备
    • US5964355A
    • 1999-10-12
    • US715452
    • 1996-09-18
    • Pentti Raura
    • Pentti Raura
    • B07B4/08B03B4/00B03B4/04B07B4/00B03B7/00
    • B03B4/005B03B4/04
    • Procedure for separating heavy particles of material from lighter particles, e.g. for separating impurities from powdery or fragmental material, such as fibers or chips, in which procedure the material (2) to be treated is supplied onto a carrier surface (1) pervious to gas and gas impacts (P) are applied to the material through the carrier surface (1), causing the heavier particles to move closer to the carrier surface (1). The carrier surface (1) is mainly moved in one direction of movement to move the heavy particles (R) and the lighter particles (K) are passed, mainly by the agency of the inclination of the carrier surface (1) and/or the gas flow, in a direction substantially differing from the principal direction of movement of the carrier surface (1). The invention also relates to an apparatus implementing the procedure.
    • 将重质颗粒从较轻的颗粒分离的方法,例如 用于从粉末或碎片材料(例如纤维或碎屑)中分离杂质,其中待处理的材料(2)被供给到气体和气体冲击(P)上的载体表面(1)上,通过 载体表面(1),使较重的颗粒移动到靠近载体表面(1)。 载体表面(1)主要在一个运动方向上移动,以移动重颗粒(R),较轻的颗粒(K)主要通过载体表面(1)的倾斜和/或 气流在与载体表面(1)的主要移动方向基本不同的方向上。 本发明还涉及实现该过程的装置。
    • 37. 发明授权
    • Cereal separator using size and specific gravity grading
    • 谷物分离器使用大小和比重分级
    • US5860531A
    • 1999-01-19
    • US820707
    • 1997-03-18
    • Satake SatoruAkihiko KatouYasushi HisamitsuKoji Arishige
    • Satake SatoruAkihiko KatouYasushi HisamitsuKoji Arishige
    • B07B1/22B03B4/02B07B1/24B07B1/28B07B4/06B07B4/08B07B9/00B07B9/02
    • B07B4/06B03B4/02B07B1/24B07B9/00
    • A cereal separation apparatus includes a frame and a size grading device mounted at an upper portion of the frame for grading particles according to a size of the particles. An oscillating specific gravity grading device is mounted at a lower portion of the frame. An air flow-producing device produces an air flow for effecting the specific gravity grading. A feed passage feeds the particles, selected by the size grading device, from the size grading device to the specific gravity grading device. The size grading device comprises a perforated, hollow cylinder for grading the particles according to particle size. The cylinder is supported on the frame for rotation about an axis of the cylinder. The specific gravity grading device is supported on the frame through oscillation support portions. The apparatus further comprises a rotation drive device for rotating the hollow cylinder and an oscillation drive device for oscillating the specific gravity grading device. The rotation means and the oscillation drive means are operable independent of each other. An air passage connects the specific gravity grading means to the hollow cylinder so as to pass the air flow, produced by the air flow-producing means, which has passed through the specific gravity grading means, through the hollow cylinder.
    • 谷物分离装置包括框架和安装在框架的上部的尺寸分级装置,用于根据颗粒的尺寸对颗粒进行分级。 摆动比重分级装置安装在框架的下部。 气流产生装置产生用于实现比重分级的空气流。 进料通道将由尺寸分级装置选择的颗粒从尺寸分级装置送入比重分级装置。 尺寸分级装置包括用于根据颗粒尺寸分级颗粒的穿孔的中空圆柱体。 气缸支撑在框架上以围绕气缸的轴线旋转。 比重分级装置通过振动支撑部分支撑在框架上。 该装置还包括用于旋转中空圆筒的旋转驱动装置和用于摆动比重分级装置的振荡驱动装置。 旋转装置和振荡驱动装置可彼此独立地操作。 空气通道将比重分级装置连接到中空圆筒,以使通过比重分级装置的气流产生装置产生的空气流通过中空圆筒。
    • 38. 发明授权
    • Screening machine
    • 筛选机
    • US5590792A
    • 1997-01-07
    • US486730
    • 1995-06-07
    • Yoshikazu Kobayashi
    • Yoshikazu Kobayashi
    • B07B1/15B07B4/08B07B13/05
    • B07B4/08B07B1/155
    • A screening machine including a plurality of rotors adapted such that in a frame the axes of the rotors are arranged parallel to one another from a supply side where objects to be screened including mixed substances different at least in size are supplied from above by a conveyor to discharge side where the remainders after screening are discharged, and such that the rotors are rotated in the same direction by a rotating drive, each rotor further comprises at least two kinds of components, namely, a plurality of large diameter sections and a plurality of small diameter sections alternately disposed in the axial direction of each rotor and arranged in a staggered relation in the feeding direction to define screening gaps having desired dimensions between the large and small diameter sections.
    • 一种筛选机,包括多个转子,其适于使得在框架中,转子的轴线彼此平行地布置,从供给侧将包括至少尺寸不同的混合物质的待筛选对象(包括至少大小不等的混合物质)从上方由输送机供应到 排出侧,其中排出后的剩余部分,并且转子通过旋转驱动沿同一方向旋转,每个转子还包括至少两种部件,即多个大直径部分和多个小直径部分 直径部分交替地设置在每个转子的轴向上,并且在进给方向上以交错关系布置,以限定在大直径部分和小直径部分之间具有期望尺寸的筛分间隙。
    • 40. 发明授权
    • Method and apparatus for grinding material particles
    • 研磨材料颗粒的方法和装置
    • US5529248A
    • 1996-06-25
    • US262548
    • 1994-06-20
    • Seisuke SawamuraHiroshi UedaKanzaburo SutouMitsuaki Murata
    • Seisuke SawamuraHiroshi UedaKanzaburo SutouMitsuaki Murata
    • B07B4/08B02C15/04B02C17/00B02C21/00B02C23/12
    • B02C23/12B02C21/002
    • A grinding apparatus includes a roller mill in which material particles are pre-ground, a tube mill connected to the roller mill through a fluidized-bed-type classifying device in which the material particles are classified by size and a circulation line is connected between the classifying device and the roller mill, wherein a fluidized portion of the pre-ground particles, which consists of a fine material component is fed into a tube mill, a remaining portion of the pre-ground particles, which consists of course material and some amount of fine material not fed into the tube mill is returned to the roller mill through the circulation line where the remaining portion of the pre-ground particles is again crushed together with newly fed material particles in the roller mill. The fluidized-bed-type classifying device is provided with a first chute through which the fine material component flows out to the tube mill and a second chute connected to the circulation line through which the remaining portion is returned to the roller mill. The inner hollow space of the fluidized-bed-type classifying device is divided into an air introduction section and a fluidized bed section by a porous partition plate arranged horizontally with inclination toward the second chute. The fluidized bed section communicates with both the tube mill and the roller mill and the air introduction section communicates with the material fluidizing air which has a controllable flow rate.
    • 研磨装置包括:其中材料颗粒被预先磨碎的辊磨机,通过流化床型分级装置连接到辊磨机的管磨机,其中材料颗粒通过尺寸分类,循环管线连接在 分级装置和辊磨机,其中将由细料组分组成的预研磨颗粒的流化部分进料到管磨机中,剩余部分的预研磨颗粒由当然材料和一些量组成 没有送入管磨机的精细材料通过循环管线返回到辊磨机,其中剩余部分的预磨颗粒再次与辊磨机中的新进料材料颗粒一起粉碎。 流化床型分级装置设置有第一滑槽,细料组分通过该第一滑槽流出到管式研磨机中,第二滑槽连接到循环管线,剩余部分通过该第二滑槽返回到辊磨机。 流化床型分级装置的内部中空空间通过多个水平方向分配成空气引入部分和流化床部分,该多孔隔板朝向第二滑槽倾斜。 流化床部分与管磨机和辊磨机连通,空气引入部分与具有可控流量的材料流化空气连通。