HIGH CAPACITY PARTICULATE LOADER AND TRANSFER APPARATUS
    1.
    发明申请
    HIGH CAPACITY PARTICULATE LOADER AND TRANSFER APPARATUS 失效
    高容量颗粒装载机和传送装置

    公开(公告)号:US20070269276A1

    公开(公告)日:2007-11-22

    申请号:US11423429

    申请日:2006-06-09

    IPC分类号: B65G53/04

    CPC分类号: A01D87/10 A01D87/00 B65G53/48

    摘要: A high capacity particulate loader having an intake hose on one sidewall thereof which communicates with a source of negative pressure formed by a multi-stage suction mechanism, to create a high suction, high volume and high speed air stream that draws particulate materials through the hose and propels them into a separation chamber where they separate from the air stream and are directed into a discharge auger assembly on the opposite sidewall of the loader. The multi-stage suction mechanism communicates with a separation chamber and/or a settling chamber, the settling chamber providing an area where dust or fine chaff from the suctioned particulate materials, which may be present in the air stream, can settle, through gravity, on a bottom surface of the settling chamber, thus avoiding contact with the blowers so as to prevent clogging of the blowers and rotor wear thereof.

    摘要翻译: 高容量颗粒装载机在其一个侧壁上具有与多级抽吸机构形成的负压源连通的进气软管,以产生高吸力,高体积和高速气流,其通过软管吸取颗粒材料 并将其推进分离室,在该分离室中,它们与空气流分离并且被引导到装载机的相对侧壁上的排出螺旋钻组件中。 多级抽吸机构与分离室和/或沉降室连通,沉降室提供可能存在于空气流中的来自吸入的颗粒材料的灰尘或细小的谷壳可以通过重力沉降的区域, 在沉降室的底面上,从而避免与鼓风机接触,以防止鼓风机堵塞和转子磨损。

    High capacity particulate loader and transfer apparatus
    2.
    发明授权
    High capacity particulate loader and transfer apparatus 失效
    大容量颗粒装载机和转运装置

    公开(公告)号:US07431537B2

    公开(公告)日:2008-10-07

    申请号:US11423429

    申请日:2006-06-09

    IPC分类号: B65G53/08

    CPC分类号: A01D87/10 A01D87/00 B65G53/48

    摘要: A high capacity particulate loader having an intake hose on one sidewall thereof which communicates with a source of negative pressure formed by a multi-stage suction mechanism, to create a high suction, high volume and high speed air stream that draws particulate materials through the hose and propels them into a separation chamber where they separate from the air stream and are directed into a discharge auger assembly on the opposite sidewall of the loader. The multi-stage suction mechanism communicates with a separation chamber and/or a settling chamber, the settling chamber providing an area where dust or fine chaff from the suctioned particulate materials, which may be present in the air stream, can settle, through gravity, on a bottom surface of the settling chamber, thus avoiding contact with the blowers so as to prevent clogging of the blowers and rotor wear thereof.

    摘要翻译: 高容量颗粒装载机在其一个侧壁上具有与多级抽吸机构形成的负压源连通的进气软管,以产生高吸力,高体积和高速气流,其通过软管吸取颗粒材料 并将其推进分离室,在该分离室中,它们与空气流分离并且被引导到装载机的相对侧壁上的排出螺旋钻组件中。 多级抽吸机构与分离室和/或沉降室连通,沉降室提供可能存在于空气流中的来自吸入的颗粒材料的灰尘或细小的谷壳可以通过重力沉降的区域, 在沉降室的底面上,从而避免与鼓风机接触,以防止鼓风机堵塞和转子磨损。

    Auger airlock assembly and end dump housing
    3.
    发明授权
    Auger airlock assembly and end dump housing 失效
    螺旋式气闸总成和末端倾卸式外壳

    公开(公告)号:US07552817B2

    公开(公告)日:2009-06-30

    申请号:US11399295

    申请日:2006-04-06

    IPC分类号: B65G33/22

    摘要: An auger airlock assembly and end dump housing having a spring loaded bottom for use in a bulk loader which utilizes a source of negative pressure to create a suction air stream that draws particulate materials into the loader for transfer, via the auger assembly, to a location remote of the loader. Materials exiting the auger assembly accumulate within the housing to a point wherein, once the accumulated material has acquired a certain weight, the bottom of the housing is forced open to permit discharge of the material, and, once the material is removed, and is not present in enough quantity to maintain the bottom of the housing to remain open, the spring loaded connection biases the bottom back into a position sealably closing the housing. The bottom of the housing may also be opened by the auger feeding more material into an already full housing, whereby the material is compressed so as to force the door open. Side portions of the housing limit the opportunity for outside air to enter the airlock assembly during the discharge of materials, maintaining the vacuum suction created by the negative pressure in the auger assembly.

    摘要翻译: 具有弹簧加载底部的螺旋气锁组件和端部倾卸壳体,其用于散装装载机,其利用负压源产生吸入空气流,所述抽吸空气流将颗粒物质通过螺旋钻组件传送到位置, 遥控的装载机。 离开螺旋钻组件的材料在壳体内聚集到一个点,其中一旦积聚的材料已经获得一定的重量,壳体的底部被强制打开以允许材料的排出,并且一旦材料被移除,而不是 存在足够的量以保持壳体的底部保持打开,弹簧加载的连接将底部背部偏压到可密封地封闭壳体的位置。 壳体的底部也可以由螺旋钻打开,将更多的材料进入已经完全的壳体,由此材料被压缩以迫使门打开。 壳体的侧部限制了在排放材料期间外部空气进入气锁组件的机会,保持由螺旋钻组件中的负压产生的真空吸力。

    Auger airlock assembly and end dump housing
    4.
    发明申请
    Auger airlock assembly and end dump housing 失效
    螺旋式气闸总成和末端倾卸式外壳

    公开(公告)号:US20070163859A1

    公开(公告)日:2007-07-19

    申请号:US11399295

    申请日:2006-04-06

    IPC分类号: B65G33/00

    摘要: An auger airlock assembly and end dump housing having a spring loaded bottom for use in a bulk loader which utilizes a source of negative pressure to create a suction air stream that draws particulate materials into the loader for transfer, via the auger assembly, to a location remote of the loader. Materials exiting the auger assembly accumulate within the housing to a point wherein, once the accumulated material has acquired a certain weight, the bottom of the housing is forced open to permit discharge of the material, and, once the material is removed, and is not present in enough quantity to maintain the bottom of the housing to remain open, the spring loaded connection biases the bottom back into a position sealably closing the housing. The bottom of the housing may also be opened by the auger feeding more material into an already full housing, whereby the material is compressed so as to force the door open. Side portions of the housing limit the opportunity for outside air to enter the airlock assembly during the discharge of materials, maintaining the vacuum suction created by the negative pressure in the auger assembly.

    摘要翻译: 具有弹簧加载底部的螺旋气锁组件和端部倾卸壳体,其用于散装装载机,其利用负压源产生吸入空气流,所述抽吸空气流将颗粒物质通过螺旋钻组件传送到位置, 遥控的装载机。 离开螺旋推运器组件的材料在壳体内积聚到一个点,其中一旦积聚的材料已经获得一定的重量,壳体的底部被强制打开以允许材料的排出,并且一旦材料被移除,而不是 存在足够的量以保持壳体的底部保持打开,弹簧加载的连接将底部背部偏压到可密封地封闭壳体的位置。 壳体的底部也可以由螺旋钻打开,将更多的材料进入已经完全的壳体,由此材料被压缩以迫使门打开。 壳体的侧部限制了在排放材料期间外部空气进入气锁组件的机会,保持由螺旋钻组件中的负压产生的真空吸力。