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    • 1. 发明申请
    • Circular-cylinder sieve
    • 圆筒筛
    • US20060102527A1
    • 2006-05-18
    • US10540885
    • 2003-12-24
    • Fumio KatoYoshio SakakibaraHidenori Yamaguchi
    • Fumio KatoYoshio SakakibaraHidenori Yamaguchi
    • B07B1/20
    • B07B1/4672B07B1/18B07B1/20B07B1/48B07B2201/02
    • In a cylindrical sieve, a first frame 7 is provided with a first ring plate 7a arranged in a radial direction and a ring plate 7b extended inward in an axial direction X of the sieve from an inner end of the first ring plate 7a. The ring plate 7b has an inwardly warped end. A ring projection 2a is fit in a ring-shaped cavity K1 defined by a ring recess 10a and the first frame 7. The ring plate 7b presses the ring projection 2a inward in the radial direction to prevent the ring projection 2a from being slipped off the matching recess. Through holes 7c (counter bores) are formed in the first frame 7 along the axial direction X. Four of the through holes 7c are used to fasten the rods 6 and receive the Phillips head screws 6f seated therein, and the remaining through holes 7c receives Phillips head screws 20 (see FIG. 1) seated therein for reinforced linkage of the first frame 7 with the holder frame 11.
    • 在圆筒筛中,第一框架7设置有沿径向布置的第一环板7a和从第一环板7a的内端沿筛轴的轴向X向内延伸的环板7b 。 环形板7b具有向内翘曲的端部。 环形突起部2a配合在由环形凹部10a和第一框架7限定的环状空腔K 1中。环形板7b沿径向向内压环状突起2a以防止环形突起2 a从匹配的凹槽中滑落。 在第一框架7中沿着轴向方向X形成有通孔7c(对应孔)。四个通孔7c用于固定杆6并接收安置在其中的十字头螺钉6f,并且剩余的通孔 孔7c接收安置在其中的十字头螺钉20(参见图1),用于加强第一框架7与保持架11的连接。
    • 2. 发明授权
    • Cylindrical sieve
    • 圆柱筛
    • US07549543B2
    • 2009-06-23
    • US12007950
    • 2008-01-17
    • Fumio KatoYoshio SakakibaraHidenori Yamaguchi
    • Fumio KatoYoshio SakakibaraHidenori Yamaguchi
    • B07B1/20
    • B07B1/4672B07B1/18B07B1/20B07B1/48B07B2201/02
    • In a cylindrical sieve, a first frame 7 is provided with a first ring plate 7a arranged in a radial direction and a ring plate 7b extended inward in an axial direction X of the sieve from an inner end of the first ring plate 7a. The ring plate 7b has an inwardly warped end. A ring projection 2a is fit in a ring-shaped cavity K1 defined by a ring recess 10a and the first frame 7. The ring plate 7b presses the ring projection 2a outward in the radial direction to prevent the ring projection 2a from being slipped off the matching recess. Through holes 7c (counter bores) are formed in the first frame 7 along the axial direction X. Four of the through holes 7c are used to fasten the rods 6 and receive the Phillips head screws 6f seated therein, and the remaining through holes 7c receives Phillips head screws 20 (see FIG. 1) seated therein for reinforced linkage of the first frame 7 with the holder frame 11.
    • 在圆筒筛中,第一框架7设置有沿径向布置的第一环板7a和从第一环板7a的内端沿筛轴的轴向X向内延伸的环板7b。 环形板7b具有向内弯曲的端部。 环形突起2a装配在由环形凹部10a和第一框架7限定的环形空腔K1中。环形板7b沿径向向外按压环形突出部2a,以防止环形突起2a从第一框架7滑出。 匹配凹槽 在第一框架7中沿着轴向X形成通孔7c(对应孔)。四个通孔7c用于固定杆6并接收其中放置的十字头螺钉6f,并且剩余的通孔7c接收 安置在其中的十字头螺钉20(参见图1)用于加强第一框架7与保持架11的连接。
    • 3. 发明申请
    • PARTICULATE SIFTER
    • 颗粒形变
    • US20090020460A1
    • 2009-01-22
    • US10598131
    • 2005-04-22
    • Fumio KatoTeruo InoueYoshio SakakibaraSinsaku Kamimura
    • Fumio KatoTeruo InoueYoshio SakakibaraSinsaku Kamimura
    • B07B1/22B07B1/24
    • B07B1/50B07B1/24
    • The purpose of the invention is to prevent accumulation of particulates on the outside of a net body of a particulate sifter having a cylindrical net body and to extend the lifetime of the net body. To achieve the purpose, in a particulate sifter which is provided with a sieve 21 having a cylindrical net body 26 extending in a horizontal direction and a booster having rotating blades which rotate along the inner surface of the net body 26 and which separates particulates that pass through the net body 26 from particulates and/or foreign substances that do not pass through the net body 26 while agitating the particulates that have flowed inside the sieve 21 with the booster, the sieve 21 is located rotatably around the central axis of the cylindrical net body 26. The sieve 21 may be rotated forcibly by an electric motor as a driving source or may be rotated by kinetic energy of particulate-air mixture agitated by rotating blades without a driving source.
    • 本发明的目的是防止颗粒物在具有圆柱形网体的颗粒筛网的网体的外侧积聚并延长网体的寿命。 为了达到这个目的,在设置有具有沿水平方向延伸的圆筒形网体26的筛子21的颗粒筛分器和具有沿网状体26的内表面旋转并且分离通过的微粒的旋转叶片的助力器 通过网体26从不通过网体26的颗粒和/或异物同时用助推器搅拌在筛网21内流动的微粒,筛21可绕圆柱形网的中心轴线旋转 筛21可以通过作为驱动源的电动机强制旋转,或者可以通过没有驱动源的旋转叶片搅动的颗粒状空气混合物的动能来旋转。
    • 4. 发明申请
    • Cylindrical sieve
    • 圆柱筛
    • US20080116120A1
    • 2008-05-22
    • US12007950
    • 2008-01-17
    • Fumio KatoYoshio SakakibaraHidenori Yamaguchi
    • Fumio KatoYoshio SakakibaraHidenori Yamaguchi
    • B07B1/00
    • B07B1/4672B07B1/18B07B1/20B07B1/48B07B2201/02
    • In a cylindrical sieve, a first frame 7 is provided with a first ring plate 7a arranged in a radial direction and a ring plate 7b extended inward in an axial direction X of the sieve from an inner end of the first ring plate 7a. The ring plate 7b has an inwardly warped end. A ring projection 2a is fit in a ring-shaped cavity K1 defined by a ring recess 10a and the first frame 7. The ring plate 7b presses the ring projection 2a outward in the radial direction to prevent the ring projection 2a from being slipped off the matching recess. Through holes 7c (counter bores) are formed in the first frame 7 along the axial direction X. Four of the through holes 7c are used to fasten the rods 6 and receive the Phillips head screws 6f seated therein, and the remaining through holes 7c receives Phillips head screws 20 (see FIG. 1) seated therein for reinforced linkage of the first frame 7 with the holder frame 11.
    • 在圆筒筛中,第一框架7设置有沿径向布置的第一环板7a和从第一环板7a的内端沿筛轴的轴向X向内延伸的环板7b 。 环形板7b具有向内翘曲的端部。 环形突起部2a嵌合在由环形凹部10a和第一框架7限定的环状空腔K 1中。 环形板7b将环形突起2向径向向外按压以防止环形突起部2a从匹配凹部滑出。 在第一框架7中沿着轴向方向X形成有通孔7c(对应孔)。四个通孔7c用于固定杆6并接收安置在其中的十字头螺钉6f,并且剩余的通孔 孔7c接收安置在其中的十字头螺钉20(参见图1),用于加强第一框架7与保持架11的连接。
    • 5. 发明授权
    • Particulate sifter
    • 颗粒筛选机
    • US07699178B2
    • 2010-04-20
    • US10598131
    • 2005-04-22
    • Fumio KatoTeruo InoueYoshio SakakibaraSinsaku Kamimura
    • Fumio KatoTeruo InoueYoshio SakakibaraSinsaku Kamimura
    • B07B1/22B07B1/24
    • B07B1/50B07B1/24
    • The purpose of the invention is to prevent accumulation of particulates on the outside of a net body of a particulate sifter having a cylindrical net body and to extend the lifetime of the net body. To achieve the purpose, in a particulate sifter which is provided with a sieve 21 having a cylindrical net body 26 extending in a horizontal direction and a booster having rotating blades which rotate along the inner surface of the net body 26 and which separates particulates that pass through the net body 26 from particulates and/or foreign substances that do not pass through the net body 26 while agitating the particulates that have flowed inside the sieve 21 with the booster, the sieve 21 is located rotatably around the central axis of the cylindrical net body 26. The sieve 21 may be rotated forcibly by an electric motor as a driving source or may be rotated by kinetic energy of particulate-air mixture agitated by rotating blades without a driving source.
    • 本发明的目的是防止颗粒物在具有圆柱形网体的颗粒筛网的网体的外侧积聚并延长网体的寿命。 为了达到这个目的,在设置有具有沿水平方向延伸的圆筒形网体26的筛子21的颗粒筛分器和具有沿网状体26的内表面旋转并且分离通过的微粒的旋转叶片的助力器 通过网体26从不通过网体26的颗粒和/或异物同时用助推器搅拌在筛网21内流动的微粒,筛21可绕圆柱形网的中心轴线旋转 筛21可以通过作为驱动源的电动机强制旋转,或者可以通过没有驱动源的旋转叶片搅动的颗粒状空气混合物的动能来旋转。
    • 6. 发明授权
    • Circular-cylinder sieve
    • 圆筒筛
    • US07410064B2
    • 2008-08-12
    • US10540885
    • 2003-12-24
    • Fumio KatoYoshio SakakibaraHidenori Yamaguchi
    • Fumio KatoYoshio SakakibaraHidenori Yamaguchi
    • B07B1/20
    • B07B1/4672B07B1/18B07B1/20B07B1/48B07B2201/02
    • In a cylindrical sieve, a first frame 7 is provided with a first ring plate 7a arranged in a radial direction and a ring plate 7b extended inward in an axial direction X of the sieve from an inner end of the first ring plate 7a. The ring plate 7b has an inwardly warped end. A ring projection 2a is fit in a ring-shaped cavity K1 defined by a ring recess 10a and the first frame 7. The ring plate 7b presses the ring projection 2a outward in the radial direction to prevent the ring projection 2a from being slipped off the matching recess. Through holes 7c (counter bores) are formed in the first frame 7 along the axial direction X. Four of the through holes 7c are used to fasten the rods 6 and receive the Phillips head screws 6f seated therein, and the remaining through holes 7c receives Phillips head screws 20 (see FIG. 1) seated therein for reinforced linkage of the first frame 7 with the holder frame 11.
    • 在圆筒筛中,第一框架7设置有沿径向布置的第一环板7a和从第一环板7a的内端沿筛轴的轴向X向内延伸的环板7b 。 环形板7b具有向内翘曲的端部。 环形突起部2a嵌合在由环形凹部10a和第一框架7限定的环状空腔K 1中。 环形板7b将环形突起2向径向向外按压以防止环形突起部2a从匹配凹部滑出。 在第一框架7中沿着轴向方向X形成有通孔7c(对应孔)。四个通孔7c用于固定杆6并接收安置在其中的十字头螺钉6f,并且剩余的通孔 孔7c接收位于其中的十字头螺钉20(参见图1 ),用于加强第一框架7与保持架11的连接。
    • 7. 发明授权
    • Slide gate valve for powder and granular material
    • 滑动闸阀用于粉末和颗粒材料
    • US06817593B2
    • 2004-11-16
    • US10204753
    • 2002-08-23
    • Fumio KatoYoshio Sakakibara
    • Fumio KatoYoshio Sakakibara
    • F16K144
    • F16K3/0227F16K3/0281
    • A sealing member includes a gland packing pressed into a wide, flat, ring-shaped seal housing to seal a sliding portion of a gate plate. The seal housing has a bamboo shoot-like shape or a bevel-like shape structure in front and cross sectional view and includes wide ring-shaped or oval shaped steps and a rear step. An inner wall of the seal housing has an included face that abruptly rises to be oriented almost perpendicular to the axis of the gate plate, in the sliding direction, a ring-shaped face that is extended from the included face to be oriented almost parallel to the axis, the step that is extended from the ring-shaped face, a ring-shaped face that is similar to the ring-shaped face and is extended from the step, the step that is extended from the ring-shaped face, a ring-shaped face that is similar to the ring-shaped face and is extended from the step, and an opening end that is extended from the ring-shaped face.
    • 密封构件包括压入宽,平的环形密封壳体中的压盖密封件,以密封闸板的滑动部分。 密封壳体在前面和横截面图中具有竹笋状或斜面状的结构,并且包括宽的环形或椭圆形的台阶和后台阶。 密封壳体的内壁具有突出地上升以在滑动方向上几乎垂直于闸板的轴线定向的一个环形表面,该环形表面从被包围的面几乎平行于 所述轴线,从所述环形面延伸的台阶,与所述环状面相似并从所述台阶延伸的环状面,从所述环状面延伸的台阶,环 形状的表面类似于环形表面并从台阶延伸,并且开口端从环形表面延伸。
    • 10. 发明申请
    • POWDER/PARTICULATE MATERIAL AGITATOR
    • 粉末/颗粒物料搅拌机
    • US20110255364A1
    • 2011-10-20
    • US13140432
    • 2010-09-01
    • Fumio Kato
    • Fumio Kato
    • B01F15/02B01F7/04
    • B01F7/04B01F3/18B01F7/00133B01F7/00158B01F7/00633B01F7/00708B01F7/08B01F13/0032B01F13/1038B01F15/027B01F15/0289
    • An agitator 1 has a vessel 4 provided between an upper powder/particulate material supplier 2 and a lower powder/particulate material discharger 3 to hold therein powder/particulate material to be stirred. The agitator 1 also has a stirrer 7 provided in the vessel 4 to have a stirrer rotating shaft 5 arranged in a horizontal direction and main paddles 6 fastened to the rotating shaft 5, and a multi-feeder 8 provided in the powder/particulate material discharger 3 to have both forward rotation and reverse rotation. The multi-feeder 8 has a discharger rotating shaft 81 and small-size auxiliary paddles 9 integrally rotated with the rotating shaft 81 and designed to be smaller in size than the main paddles 6. In the state of stirring the powder/particulate material in the vessel 4 by means of the stirrer 7, the agitator 1 has stirring assist function during reverse rotation of the multi-feeder 8 to cause the auxiliary paddles 9 to stir up the powder/particulate material in the powder/particulate material discharger 3 and feed the powder/particulate material back into the vessel 4. The agitator 1 also has discharge function during forward rotation of the multi-feeder 8 to discharge the powder/particulate material out of the powder/particulate material discharger 3 and the vessel 4. This arrangement effectively prevents the powder/particulate material from being accumulated in any dead space, while reducing the total height of the powder/particulate material discharger of the agitator.
    • 搅拌器1具有设置在上部粉末/颗粒材料供应器2和下部粉末/颗粒材料排出器3之间的容器4,以容纳待搅拌的粉末/颗粒材料。 搅拌器1还具有设置在容器4中的搅拌器7,以具有沿水平方向设置的搅拌器旋转轴5和紧固到旋转轴5的主桨6,以及设置在粉末/颗粒材料排出器中的多进料器8 3具有正向旋转和反向旋转。 多进料器8具有与旋转轴81一体旋转的排出器旋转轴81和小型辅助桨叶9,并且设计成比主桨6更小的尺寸。在搅拌中的粉末/颗粒材料的状态下 容器4通过搅拌器7,搅拌器1在多进料器8反向旋转期间具有搅拌辅助功能,以使辅助桨叶9搅拌粉末/颗粒材料排出器3中的粉末/颗粒材料并将 粉末/颗粒材料返回到容器4.搅拌器1在多进料器8的正向旋转期间也具有排出功能,以将粉末/颗粒材料从粉末/颗粒材料排放器3和容器4排出。这种布置有效地 防止粉末/颗粒材料积聚在任何死空间中,同时降低搅拌器的粉末/颗粒材料排出器的总高度。