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    • 2. 发明授权
    • Pneumatic conveyor for particulate material
    • 气动输送机用于颗粒材料
    • US4695206A
    • 1987-09-22
    • US851217
    • 1986-04-14
    • Jens O. E. Hansen
    • Jens O. E. Hansen
    • B65G53/46
    • B65G53/4641
    • A pneumatic conveyor for particulate material of low weight per piece comprises a separator formed by a cellular rotor with a filter wall adapted to separate the particulate material as the carrying air flows to the suction side of a blower. The pressure side of said blower is in communication with a conveyor duct communicating with the separator and having a threshold forcing part of the air upwards into the rotor so as to pass the filter wall in the opposite direction, thereby blowing the filter clean before the air contributes to the further conveyance of material through the duct.
    • 用于每件重量轻的颗粒材料的气动输送机包括由细胞转子形成的隔膜,所述隔板具有过滤壁,适于当携带空气流入鼓风机的吸入侧时分离颗粒材料。 所述鼓风机的压力侧与与分离器连通的输送管道连通,并且具有使部分空气向上进入转子的阈值,以使过滤壁沿相反方向通过,从而在空气之前吹扫过滤器 有助于通过管道进一步输送材料。
    • 8. 发明授权
    • Cyclone separator for separating particulate material, in particular
seed, from an air flow
    • 用于从空气流中分离颗粒材料,特别是种子的旋风分离器
    • US4381930A
    • 1983-05-03
    • US379459
    • 1982-05-18
    • Jens O. E. Hansen
    • Jens O. E. Hansen
    • B01D45/12B04C5/10B04C5/103
    • B04C5/103B01D45/12B04C5/10
    • In a centrifugal separator, in particular for separating light materials, such as grass seed, from an air flow, a whirl chamber is provided between a circumferential wall of the separator casing and a radially inner filter consisting of a louvred shell imparting a change of direction of about 180.degree. to the air flow on its way from the whirl chamber to the air outlet of the casing, thereby creating within the shell a counter-rotating whirl of air and material passed through the slits together with air.To separate such material from the air, the shell is provided with a vertically extending slot associated with an ejector rail adapted to remove the outer portions of the counter-rotating whirl and feed them back for renewed separation in the whirl chamber of the separator casing. The slits may then be given such a size that they will not be blocked up by the material or give rise to an increased loss of pressure, as the ejector rail provides for regaining the material passed through the slits.
    • 在离心分离器中,特别是用于从空气流中分离诸如草籽的轻质材料,在分离器壳体的圆周壁和径向内部过滤器之间设置旋转室,所述径向内部过滤器由带有改变方向的百叶窗 大约为180度,从空气流到旋转室到外壳的空气出口,从而在外壳内产生空气和材料与空气一起穿过狭缝的反向转动旋转。 为了将这种材料与空气分开,壳体设置有垂直延伸的狭槽,其与排出器轨道相关联,该排出器轨道适于移除反向旋转的涡流的外部部分并将其送回,以在分离器壳体的旋转室中更新分离。 然后,狭缝可以被赋予这样的尺寸,使得它们不会被材料阻挡或引起增加的压力损失,因为排出器轨道用于重新获得通过狭缝的材料。