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    • 1. 发明公开
    • SEPARATOR AND SEPARATION METHOD
    • 分离器在TRENNVERFAHREN
    • EP2251072A1
    • 2010-11-17
    • EP09712566.0
    • 2009-02-17
    • Hanex Co., Ltd.
    • SEMBA, FujioOHHIRA, SatoshiSHIOYA, TakuoTSUNODA, Atsushi
    • B01D29/01B01D29/00B01D39/10E03F5/14
    • E03F5/14B01D29/03B01D29/31B01D29/445B01D29/906B01D2201/02
    • A problem is to solve problems on removal of solids by a screen and on an installation space and pipe connection in a separator. A solution to the problem is as follows. A separator 1, which is a device for separating solids contained in influent liquid, has a separation tank 2; a partition plate 5 partitioning an inside space of the separation tank 2 into an inflow chamber 3 and an outflow chamber 4; a screen 8 provided at the partition plate 5; a liquid inlet 6 formed at the inflow chamber 3; and a discharge outlet 7 formed at the outflow chamber 4; the inflow chamber 3 is provided with a guide unit 9, 10, 10a for forming a vertical swirling flow in the inflow chamber 3 by reversing the influent liquid from the liquid inlet 6; the screen 8 is disposed along a side face of the swirling flow thus formed. This configuration permits the solids to be removed, without clogging the screen with the solids.
    • 一个问题是解决通过屏幕以及分离器中的安装空间和管道连接去除固体的问题。 解决问题的方法如下。 分离器1是用于分离流入液体中的固体的分离装置,具有分离槽2, 将分离罐2的内部空间分隔成流入室3和流出室4的隔板5; 设置在隔板5上的屏幕8; 形成在流入室3的液体入口6; 和形成在流出室4的排出口7; 流入室3设置有引导单元9,10,10a,用于通过使来自液体入口6的流入液体反转而在流入室3中形成垂直回旋流; 屏幕8沿着如此形成的旋流的侧面设置。 该配置允许去除固体,而不会使固体堵塞屏幕。
    • 8. 发明公开
    • RFID TAG HOUSING STRUCTURE, RFID TAG INSTALLATION STRUCTURE AND RFID TAG COMMUNICATION METHOD
    • RFID-ETIKETTEN-GEHÄUSESTRUKTUR,RFID-ETIKETTEN-INSTALLATIONSSTRUKTUR UND RFID-ETIKETTEN-KOMMUNIKATIONSVERFAHREN
    • EP1308883A4
    • 2006-04-19
    • EP01948006
    • 2001-07-13
    • HANEX CO LTD
    • SENBA FUJIOHYODO NAKAMAROFUJII JUNUCHIYAMA TOMOKIKIDA SHIGERU
    • G06K7/08G06K19/04G06K19/077H01Q1/22H01Q1/42H01Q7/00G06K17/00G06K19/07H04B1/59H05K5/02
    • H01Q1/2225G06K7/10336G06K19/041G06K19/07728G06K19/07749G06K19/07758G06K19/07771G06K19/07777H01Q1/22H01Q1/42H01Q7/00
    • First, a novel RFID tag housing structure capable of providing an effective protection against an external stress and impact, and an external communication during storing and transporting and while in use. Second, a novel RFID tag installation structure capable of external communication even when the tag is installed on a conductive member made of such as metal and covered on the surface thereof with a high-strength, durable protection element made of a conductive material such as metal. Third, a communication method for a RFID tag covered around the surface thereof with a conductive member made of such as metal. A structure characterized by having a constitution capable of communication between a RFID tag (1a) and a reader/writer terminal apparatus (9) by using leakage magnetic fluxes going through a magnetic flux leakage passage (12) formed by a gap in a container (A) even when the RFID tag (1a) is housed in the container (A) made of a high-mechanical-strength, conductive material such as metal.
    • 本发明的第一目的在于提供一种用于RFID标签的新型安装结构,其有效地保护RFID标签免受在存储,运输和使用期间的外部应力或冲击,并且允许与外部的通信。 本发明的第二个目的在于提供一种用于RFID标签的新型安装结构,即使将RFID标签安装在诸如金属构件的导电构件上也能够与外部通信,并且其表面被覆盖 通常由具有优异的强度和耐久性的金属制成的保护构件。 本发明的第三个目的是提供一种使用RFID标签作为通常由金属制成的导电部件包围的通信方法。 即使RFID标签1a容纳在通常由诸如具有大机械强度的金属的导电材料制成的容器A中,RFID标签1a可以与外部读/写端子9进行通信,如由仅漏电磁通 在这样的容器A中形成例如由间隙构成的漏磁路径12