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    • 3. 发明申请
    • MILLING STATION AND METHOD FOR GRINDING MILLING MATERIAL
    • 研磨站和研磨材料的方法
    • US20090020636A1
    • 2009-01-22
    • US11816247
    • 2006-02-14
    • Ludger SchulteFranz-Josef ZurhoveDonald A. Longhurst
    • Ludger SchulteFranz-Josef ZurhoveDonald A. Longhurst
    • B02C23/00
    • B02C21/002B02C17/183
    • The invention relates to a milling station and a method for grinding milling material by means of at least one coarse grinding circuit (1) and at least one fine grinding circuit (2). The coarse grinding circuit is provided with a classifier (10) and a material bed roller mill (11). The precrushed material of the material bed roller mill is fed to the classifier whose coarse material is redirected to the material bed roller mill and whose fine material is delivered to the fine grinding circuit. The fine grinding circuit encompasses a tube mill (20) with at least two grinding chambers (20a, 20b), a central outlet (20c), and a divider (21). At least some of the milling material of the coarse grinding circuit is subdivided in the divider and is delivered to the two grinding chambers while the milling material is jointly discharged from the two grinding chambers via the central outlet.
    • 本发明涉及一种研磨站和一种通过至少一个粗磨回路(1)和至少一个细研磨回路(2)研磨研磨材料的方法。 粗磨回路设有分级器(10)和料床辊磨机(11)。 将原料床辊磨机的预冲碎材料送入分选机,将粗料重新定向到料床辊磨机,并将其精细材料输送到细磨回路。 细磨回路包括具有至少两个研磨室(20a,20b),中心出口(20c)和分隔器(21)的管磨机(20)。 粗磨回路的至少一些铣削材料被细分成分隔件,并被输送到两个研磨室,同时铣削材料经由中心出口从两个研磨室共同排出。
    • 5. 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。
    • 7. 发明申请
    • METHOD FOR GRINDING NON-CONDUCTIVE MATERIAL
    • 研磨非导电材料的方法
    • US20110253014A1
    • 2011-10-20
    • US13171876
    • 2011-06-29
    • Nikolay Fyodorovich GLUKHAREV
    • Nikolay Fyodorovich GLUKHAREV
    • C04B20/00B02C19/00
    • B02C21/002B02C19/18B02C23/18Y02P40/20
    • The present invention relates to a method for grinding a material, for example, cement or cement additive. The method according to the present invention includes at least one step of mechanical grinding the said material in a grinding apparatus, wherein grinding apparatus comprises grinding bodies, wherein the method further includes a step of neutralizing a debris-layer formed at the pre-surface layer of the grinding bodies by using in combination, in any order, simultaneously or sequentially, the following operations: a) applying electric potential to the grinding bodies in the said at least one grinding step, and b) applying a surfactant to the said non-conductive material in the said at least one grinding step, wherein the amount of surfactant is from 50% to 100% of the normative amount.The method provides reduction in surfactant consumption, increase of the equipment productivity, reduction of energy consumption and improvement of the wear resistance of the grinding bodies as well as production of cement with the enhanced flow index.
    • 本发明涉及一种用于研磨材料的方法,例如水泥或水泥添加剂。 根据本发明的方法包括在研磨装置中机械研磨所述材料的至少一个步骤,其中研磨装置包括研磨体,其中所述方法还包括中和形成在所述预表面层处的碎屑层的步骤 通过以任何顺序同时或相继地组合使用以下操作:a)将电位施加到所述至少一个研磨步骤中的研磨体,以及b)将表面活性剂施加到所述非金属粉末, 所述至少一个研磨步骤中的导电材料,其中表面活性剂的量为标准量的50%至100%。 该方法降低表面活性剂消耗,提高设备生产率,减少能量消耗,提高研磨体的耐磨性以及增加流动指数的水泥生产。