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    • 3. 发明申请
    • DISPENSING CYLINDER, LARGE CAPACITY DISPENSING DEVICE AND METHOD OF USING LARGE CAPACITY DISPENSING DEVICE
    • 配电缸,大容量配电装置及使用大容量配电装置的方法
    • US20110215118A1
    • 2011-09-08
    • US13089111
    • 2011-04-18
    • Hideji TAJIMAYoshinao Hirahara
    • Hideji TAJIMAYoshinao Hirahara
    • B67D7/58
    • G01N35/1065G01N35/0098G01N35/10Y10T436/2575
    • The invention relates to a dispensing cylinder, a large capacity dispensing device, and a method of using a large capacity dispensing device, and aims at providing a dispensing cylinder, a large capacity dispensing device, and a method of using a large capacity dispensing device, with high quantitativity and capable of suppressing the scale of the device and efficiently utilizing working space, despite the relatively large volumes of fluid handled. The construction comprises: a small diameter section, a large diameter section which communicates with the small diameter section and is capable of holding fluids, a sliding section provided in a slidable manner within the large diameter section which enables fluid to be sucked and discharged to and from the large diameter section through the small diameter section, and a connection section which connects the sliding section in a detachable manner to a suction and discharge mechanism which drives the sliding section.
    • 本发明涉及一种分配缸,大容量分配装置和使用大容量分配装置的方法,其目的在于提供一种分配缸,大容量分配装置和使用大容量分配装置的方法, 具有很高的定量性,并能够抑制装置的尺寸并有效利用工作空间,尽管处理的流体体积相对较大。 该结构包括:小直径部分,与小直径部分连通并且能够保持流体的大直径部分,在大直径部分内以可滑动方式设置的滑动部分,其使流体能够被吸入和排出, 从大直径部分通过小直径部分,以及连接部分,其将滑动部分以可拆卸的方式连接到驱动滑动部分的抽吸和排出机构。
    • 4. 发明授权
    • Dispensing cylinder, large capacity dispensing device, and method of using large capacity dispensing device
    • 分配缸,大容量分配装置和使用大容量分配装置的方法
    • US07947512B2
    • 2011-05-24
    • US10552913
    • 2004-04-15
    • Hideji TajimaYoshinao Hirahara
    • Hideji TajimaYoshinao Hirahara
    • B01L3/02
    • G01N35/1065G01N35/0098G01N35/10Y10T436/2575
    • The invention relates to a dispensing cylinder, a large capacity dispensing device, and a method of using a large capacity dispensing device, and aims at providing a dispensing cylinder, a large capacity dispensing device, and a method of using a large capacity dispensing device, with high quantitativity and capable of suppressing the scale of the device and efficiently utilizing working space, despite the relatively large volumes of fluid handled. The construction comprises: a small diameter section, a large diameter section which communicates with the small diameter section and is capable of holding fluids, a sliding section provided in a slidable manner within the large diameter section which enables fluid to be sucked and discharged to and from the large diameter section through the small diameter section, and a connection section which connects the sliding section in a detachable manner to a suction and discharge mechanism which drives the sliding section.
    • 本发明涉及一种分配缸,大容量分配装置和使用大容量分配装置的方法,其目的在于提供一种分配缸,大容量分配装置和使用大容量分配装置的方法, 具有很高的定量性,并能够抑制装置的尺寸并有效利用工作空间,尽管处理的流体体积相对较大。 该结构包括:小直径部分,与小直径部分连通并且能够保持流体的大直径部分,在大直径部分内以可滑动方式设置的滑动部分,其使流体能够被吸入和排出, 从大直径部分通过小直径部分,以及连接部分,其将滑动部分以可拆卸的方式连接到驱动滑动部分的抽吸和排出机构。
    • 7. 发明申请
    • Dispensing cylinder, large capacity dispensing device, and method of using large capacity dispensing device
    • 分配缸,大容量分配装置和使用大容量分配装置的方法
    • US20060263260A1
    • 2006-11-23
    • US10552913
    • 2004-04-15
    • Hideji TajimaYoshinao Hirahara
    • Hideji TajimaYoshinao Hirahara
    • B01L3/02
    • G01N35/1065G01N35/0098G01N35/10Y10T436/2575
    • The invention relates to a dispensing cylinder, a large capacity dispensing device, and a method of using a large capacity dispensing device, and aims at providing a dispensing cylinder, a large capacity dispensing device, and a method of using a large capacity dispensing device, with high quantitativity and capable of suppressing the scale of the device and efficiently utilizing working space, despite the relatively large volumes of fluid handled. The construction comprises: a small diameter section, a large diameter section which communicates with the small diameter section and is capable of holding fluids, a sliding section provided in a slidable manner within the large diameter section which enables fluid to be sucked and discharged to and from the large diameter section through the small diameter section, and a connection section which connects the sliding section in a detachable manner to a suction and discharge mechanism which drives the sliding section.
    • 本发明涉及一种分配缸,大容量分配装置和使用大容量分配装置的方法,其目的在于提供一种分配缸,大容量分配装置和使用大容量分配装置的方法, 具有很高的定量性,并能够抑制装置的尺寸并有效利用工作空间,尽管处理的流体体积相对较大。 该结构包括:小直径部分,与小直径部分连通并且能够保持流体的大直径部分,在大直径部分内以可滑动方式设置的滑动部分,其使流体能够被吸入和排出, 从大直径部分通过小直径部分,以及连接部分,其将滑动部分以可拆卸的方式连接到驱动滑动部分的抽吸和排出机构。
    • 8. 发明申请
    • Monitoring function-equipped dispensing system and method of monitoring dispensing device
    • 监控功能配备的分配系统和监控分配装置的方法
    • US20060133965A1
    • 2006-06-22
    • US10543688
    • 2004-01-30
    • Hideji TajimaYoshinao Hirahara
    • Hideji TajimaYoshinao Hirahara
    • G01N35/00B01L3/00
    • G01N35/1009
    • A monitoring function-equipped dispensing system and a method of monitoring the dispensing system wherein conditions in a pipeline can be identified accurately and precisely by not only optically measuring conditions in the pipeline, but performing other measurements reinforcing the former. The system comprises: one or more translucent or semi-translucent pipelines; one or more pressure regulating units which respectively regulate the pressures in the pipelines; an elevating/lowering unit which enables the pipelines to be elevated/lowered; a pressure measuring unit which measures the pressures in the respective pipelines when operation instructions are given to the pressure regulating unit; an optical measurement unit which optically measures the conditions of the pipelines above the container disposition area, when operations based on operation instructions including operation instructions to the pressure regulating unit are completed; and a monitoring unit which judges the conditions in the pipelines based on the operation instructions and measurement results of the pressure measuring unit and the optical measurement unit so as to obtain monitoring results that associate the judged results with respective pipelines and the operation instructions.
    • 具有监视功能的分配系统和监测分配系统的方法,其中通过不仅光学地测量管道中的条件,而且进行加强前者的其它测量,可以准确和精确地识别管道中的条件。 该系统包括:一个或多个半透明或半透明管道; 一个或多个压力调节单元,分别调节管道中的压力; 能够使管道升降的升降单元; 压力测量单元,当操作指令被提供给压力调节单元时,测量各个管道中的压力; 光学测量单元,当基于包括对压力调节单元的操作指令的操作指令的操作完成时,光学地测量容器配置区域上方的管道的状况; 以及监视单元,其基于压力测量单元和光学测量单元的操作指令和测量结果来判断管道中的状况,以获得将判断结果与各个管道和操作指令相关联的监视结果。