HYDRAULIC FEEDER SYSTEM HAVING COMPRESSION STAGE WITH MULTI-CYLINDER HYDRAULIC CIRCUIT
    3.
    发明申请
    HYDRAULIC FEEDER SYSTEM HAVING COMPRESSION STAGE WITH MULTI-CYLINDER HYDRAULIC CIRCUIT 有权
    具有多缸液压回路的压缩送料系统

    公开(公告)号:US20160207273A1

    公开(公告)日:2016-07-21

    申请号:US15086353

    申请日:2016-03-31

    Abstract: A feeder system for advancing a compressible material has a hydraulic circuit associated with a final compression stage. The hydraulic circuit includes a platen attached to a primary ram configured to travel within a primary cylinder. The platen is operatively connected to a main piston cylinder assembly and at least two ancillary piston cylinder assemblies. In a first mode of operation, the hydraulic circuit forces the ancillary piston cylinder assemblies to advance the platen and ram in a forward compression direction until they reach a first predetermined position between travel extremes, while the main piston cylinder assembly passively travels along in the forward compression direction. Once the first predetermined position is reached, in a second mode of operation, the hydraulic circuit additionally forces the main piston cylinder assembly to compress the compressible material. In a third mode of operation, the hydraulic circuit retracts the platen and primary ram.

    Abstract translation: 用于推进可压缩材料的馈送系统具有与最终压缩级相关联的液压回路。 液压回路包括附接到主冲压器的压板,其被配置为在主缸内行进。 压板可操作地连接到主活塞气缸组件和至少两个辅助活塞气缸组件。 在第一操作模式中,液压回路迫使辅助活塞气缸组件向前推压压板和压头,直到它们到达行程极限之间的第一预定位置,而主活塞气缸组件被动地沿前进方向行进 压缩方向。 一旦达到第一预定位置,在第二操作模式中,液压回路另外迫使主活塞缸组件压缩可压缩材料。 在第三种操作模式中,液压回路使压盘和主压头回缩。

    HYDRAULIC FEEDER SYSTEM HAVING COMPRESSION STAGE WITH MULTI-CYLINDER HYDRAULIC CIRCUIT

    公开(公告)号:US20160031177A1

    公开(公告)日:2016-02-04

    申请号:US14775071

    申请日:2013-04-08

    CPC classification number: B30B9/3057 B30B15/16 B30B15/22

    Abstract: A feeder system for advancing a compressible material has a hydraulic circuit associated with a final compression stage. The hydraulic circuit includes a platen attached to a primary ram configured to travel within a primary cylinder. The platen is operatively connected to a main piston cylinder assembly and at least two ancillary piston cylinder assemblies. In a first mode of operation, the hydraulic circuit forces the ancillary piston cylinder assemblies to advance the platen and ram in a forward compression direction until they reach a first predetermined position between travel extremes, while the main piston cylinder assembly passively travels along in the forward compression direction. Once the first predetermined position is reached, in a second mode of operation, the hydraulic circuit additionally forces the main piston cylinder assembly to compress the compressible material. In a third mode of operation, the hydraulic circuit retracts the platen and primary ram.

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