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    • 1. 发明授权
    • Supersonic jet crusher of collisional type
    • 碰撞式超音速喷射式破碎机
    • US5358188A
    • 1994-10-25
    • US183237
    • 1994-01-19
    • Nobuyasu MakinoNagaki SatoToshiyuki FukaseHiroyuki Yoshikawa
    • Nobuyasu MakinoNagaki SatoToshiyuki FukaseHiroyuki Yoshikawa
    • B02C19/06G03G9/087
    • B02C19/066
    • A supersonic jet crusher of a collisional type has an injecting nozzle for injecting a jet stream into a crushing chamber; a jet stream path for supplying a crushing material into the jet stream; a collisional plate disposed in a position opposite to the injecting nozzle; a detachable jig disposed in said crushing chamber; and a secondary collisional plate detachably arranged in the detachable jig such that the crushing material collides with the collisional plate and further collides with the secondary collisional plate. Another supersonic jet crusher of a collisional type has an injecting nozzle for injecting a jet stream into a crushing chamber; a supplying port for supplying a crushing material into the jet stream; and a collisional member opposed to the injecting nozzle and having a crushing face on which the crushing material directly collides against to finely crush the crushing material. The crushing face of the collisional member is vertically moved or rotated with respect to an injecting direction of the jet stream so as change a position of the crushing face to permit the jet stream to directly collide with the collisional member.
    • 碰撞式超音速喷射破碎机具有喷射喷嘴,用于将喷射流喷射到破碎室中; 用于将破碎材料供应到喷射流中的喷射流路径; 设置在与所述喷射喷嘴相对的位置的碰撞板; 设置在所述破碎室中的可拆卸夹具; 以及可拆卸地布置在可拆卸夹具中的次级碰撞板,使得破碎材料与碰撞板碰撞,并进一步与次冲击板碰撞。 另一种碰撞型超音速喷射破碎机具有喷射喷嘴,用于将喷射流喷射到破碎室中; 用于将粉碎材料供应到喷射流中的供给口; 以及与注射喷嘴相对并具有破碎面的撞击构件,破碎材料直接碰撞在其上,以细碎破碎材料。 碰撞构件的破碎面相对于射流的喷射方向垂直移动或旋转,以便改变破碎面的位置,以允许喷射流直接与碰撞构件碰撞。
    • 7. 发明授权
    • Classification device
    • 分类装置
    • US08757387B2
    • 2014-06-24
    • US12629430
    • 2009-12-02
    • Nobuyasu MakinoMasakazu YashiroKazuo Kuratani
    • Nobuyasu MakinoMasakazu YashiroKazuo Kuratani
    • B07B7/00B07B7/04
    • B07B4/06B07B7/083B07B9/02G03G9/0817
    • A classification device for classifying particles by size including an upper impeller-type rotor, a first end of which is covered with a cover disc without penetration hole and a second end of which is covered with an upper cover disc with a penetration hole; and a lower impeller-type rotor, a first end of which is covered with a cover disc without penetration hole and a second end of which is covered with a lower cover disc with a penetration hole. The upper impeller-type rotor and the lower impeller-type rotor are provided so that axes thereof are coincident and the first ends face with each other forming a gap therebetween in an axial direction, and the diameters of the penetration holes of the upper cover disc and the lower cover disc are different.
    • 一种分级装置,用于按照尺寸对颗粒进行分级,包括上叶轮式转子,第一端用不具有穿透孔的盖盘覆盖,第二端覆盖有具有穿透孔的上盖盘; 以及下部叶轮型转子,其第一端覆盖有没有穿透孔的盖盘,并且其第二端覆盖有具有穿透孔的下盖盘。 上叶轮式转子和下叶轮型转子设置成使其轴线重合,并且第一端部彼此面对,在轴向方向上形成间隙,并且上盖板的贯通孔的直径 下盖盘不同。
    • 8. 发明授权
    • Method for producing powder and fluidized bed pulverizing apparatus
    • 粉末和流化床粉碎设备的生产方法
    • US08540174B2
    • 2013-09-24
    • US12888964
    • 2010-09-23
    • Nobuyasu Makino
    • Nobuyasu Makino
    • B02C19/06
    • B02C19/065B02C23/12B02C25/00
    • A method for producing powder including supplying a powder material to a fluidized bed container, jetting fluid from each of a plurality of fluid jetting nozzles provided in the fluidized bed container to collide against each other, thereby fluidizing and pulverizing the powder material in the fluidized bed container to form powder, classifying the powder using a centrifugal classification rotor provided at the upper part of the fluidized bed container and discharging the classified powder from an outlet by being guided by the centrifugal classification rotor, wherein the centrifugal classification rotor is rotated at a first rotating speed for a predetermined time from the beginning of the flow of the powder material in the fluidized bed container, and at a second rotating speed after the predetermined time has passed, and the centrifugal classification rotor is controlled so that the first rotating speed is higher than the second rotating speed.
    • 一种生产粉末的方法,包括向流化床容器供应粉末材料,从设置在流化床容器中的多个流体喷射喷嘴中的每一个喷射流体以相互碰撞,从而流化和粉碎流化床中的粉末材料 容器形成粉末,使用设置在流化床容器上部的离心分级转子对粉末进行分级,并通过离心分级转子引导将分级粉末从出口排出,其中离心分级转子以第一 旋转速度从流化床容器中的粉末材料的开始流动开始一段预定时间,并且在经过预定时间后以第二转速进行控制,并且控制离心分级转子使得第一转速更高 比第二转速。
    • 9. 发明授权
    • Airflow classifier and particulate material preparing apparatus using the airflow classifier
    • 气流分选机和使用气流分选机的颗粒物料制备装置
    • US08469297B2
    • 2013-06-25
    • US13090638
    • 2011-04-20
    • Nobuyasu Makino
    • Nobuyasu Makino
    • B02C23/10
    • B07B7/08B07B9/02B07B11/04
    • The airflow classifier includes a dispersing chamber dispersing a powdery raw material with high pressure air; a classifying chamber located below the dispersing chamber and including a center core located on an upper portion thereof and a separator core having an opening at a center thereof and located on a lower portion of the classifying chamber to subject the raw material, which is fed from the dispersing chamber, to centrifugal classification to classify the raw material into coarse particles and fine particles; a fine particle feeding pipe connected with a lower portion of the opening of the separator core; a shield ring to cover an upper portion of the opening; and a louver pipe which is located above the shield ring and in which plural blades are arranged on an edge of the opening at predetermined intervals.
    • 气流分选机包括用高压空气分散粉状原料的分散室; 位于分散室下方的分级室,其中心芯位于其上部,分隔芯在其中心具有开口,并位于分级室的下部以对待原材料,该原料从 分散室,进行离心分级,将原料分类为粗颗粒和细颗粒; 与分离器芯的开口的下部连接的细颗粒供给管; 屏蔽环,以覆盖开口的上部; 以及位于屏蔽环上方的多个叶片,其中多个叶片以预定间隔布置在开口的边缘上。