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    • 1. 发明授权
    • Feeding system
    • 喂食系统
    • US08272535B2
    • 2012-09-25
    • US12620735
    • 2009-11-18
    • Chien-Feng Huang
    • Chien-Feng Huang
    • B67D7/16
    • B29C45/18B29C31/02B29C45/76B29C2945/76163B29C2945/76167B29C2945/76183B29C2945/76287B29C2945/76354B29C2945/76461
    • A feeding system includes a hopper for containing materials therein, a dispensing pipe, a sensor, a scraper, a driving mechanism. The dispensing pipe is connected to the hopper and is configured for dispensing the materials in the hopper to a predetermined position. The sensor is arranged adjacent to the dispensing pipe and is configured for detecting an amount of the materials loaded in the dispensing pipe. The scraper is arranged in the dispensing pipe and is configured for removing the materials remained on the inner wall of the dispensing pipe by scraping the inner wall of the dispensing pipe. The driving mechanism is configured for driving the scraper to rotate in the dispensing pipe and scrape along the inner wall of the dispensing pipe.
    • 进料系统包括用于容纳材料的料斗,分配管,传感器,刮刀,驱动机构。 分配管连接到料斗并且被配置为将料斗中的材料分配到预定位置。 传感器布置成与分配管相邻,并且构造成用于检测装入分配管中的材料的量。 刮刀布置在分配管中并且构造成通过刮擦分配管的内壁来去除分配管的内壁上残留的材料。 所述驱动机构被配置为驱动所述刮刀在所述分配管中旋转并沿所述分配管的内壁刮擦。
    • 4. 发明授权
    • Injection molding machine
    • 注塑机
    • US07431583B2
    • 2008-10-07
    • US11491243
    • 2006-07-24
    • Satoshi TakatsugiWataru ShiraishiHiroyasu AsaokaToshio IshikuroHiroshi Imamura
    • Satoshi TakatsugiWataru ShiraishiHiroyasu AsaokaToshio IshikuroHiroshi Imamura
    • B29C45/18B29C45/47B29C45/76
    • B29C45/18B29C31/02B29C45/76B29C2045/1891B29C2945/76096B29C2945/76107B29C2945/76183
    • The invention provides an injection molding capable of adjusting a detection level with a simple structure and detecting a deposit level of the resin pellets near a plasticizing screw. A cooling jacket is mounted so that a resin supplying hole of the cooling jacket communicates with a resin supplying hole of a heating cylinder. A sensor head mounted on a sensor mounting plate is inserted into the resin supplying hole through a sensor insertion port provided on a hopper plate and a resin inlet and detects the deposit level of the resin pellets deposited in the resin supplying hole. Changing the extent of insertion of the sensor head enables the resin pellets deposit detection level to be changed, and further, enables the deposit level near the outer periphery of the screw to be detected. Setting the sensor detection direction perpendicular to the resin deposit direction enables dirtying of the sensor detection surface by the resin pellets to be reduced, thus enabling erroneous detection readings to be reduced.
    • 本发明提供能够以简单的结构调节检测水平并检测塑化螺杆附近的树脂颗粒的沉积物水平的注射成型。 安装冷却套,使冷却套的树脂供给孔与加热筒的树脂供给孔连通。 安装在传感器安装板上的传感器头通过设置在料斗板和树脂入口上的传感器插入口插入到树脂供给孔中,并检测沉积在树脂供给孔中的树脂颗粒的沉积层。 改变传感器头的插入程度使树脂颗粒的沉积物检测水平发生变化,并且能够检测螺杆外周附近的沉积物水平。 设置与树脂沉积方向垂直的传感器检测方向可以使树脂颗粒污染传感器检测表面,从而减少误差检测读数。
    • 8. 发明申请
    • FEEDING SYSTEM
    • 进料系统
    • US20100163575A1
    • 2010-07-01
    • US12620735
    • 2009-11-18
    • CHIEN-FENG HUANG
    • CHIEN-FENG HUANG
    • B67D7/16B67D1/08
    • B29C45/18B29C31/02B29C45/76B29C2945/76163B29C2945/76167B29C2945/76183B29C2945/76287B29C2945/76354B29C2945/76461
    • A feeding system includes a hopper for containing materials therein, a dispensing pipe, a sensor, a scraper, a driving mechanism. The dispensing pipe is connected to the hopper and is configured for dispensing the materials in the hopper to a predetermined position. The sensor is arranged adjacent to the dispensing pipe and is configured for detecting an amount of the materials loaded in the dispensing pipe. The scraper is arranged in the dispensing pipe and is configured for removing the materials remained on the inner wall of the dispensing pipe by scraping the inner wall of the dispensing pipe. The driving mechanism is configured for driving the scraper to rotate in the dispensing pipe and scrape along the inner wall of the dispensing pipe.
    • 进料系统包括用于容纳材料的料斗,分配管,传感器,刮刀,驱动机构。 分配管连接到料斗并且被配置为将料斗中的材料分配到预定位置。 传感器布置成与分配管相邻,并且构造成用于检测装入分配管中的材料的量。 刮刀布置在分配管中并且构造成通过刮擦分配管的内壁来去除分配管的内壁上残留的材料。 所述驱动机构被配置为驱动所述刮刀在所述分配管中旋转并沿所述分配管的内壁刮擦。