发明公开
EP3236269A1 SAMPLING NOZZLE, AUTOMATED ANALYZER USING SAME, AND SAMPLING NOZZLE MANUFACTURING METHOD
审中-公开
采样喷嘴,使用自动分析仪和采样喷嘴制造方法
- 专利标题: SAMPLING NOZZLE, AUTOMATED ANALYZER USING SAME, AND SAMPLING NOZZLE MANUFACTURING METHOD
- 专利标题(中): 采样喷嘴,使用自动分析仪和采样喷嘴制造方法
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申请号: EP15869827.4申请日: 2015-12-07
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公开(公告)号: EP3236269A1公开(公告)日: 2017-10-25
- 发明人: HORIE Yosuke , INOUE Tomohiro , TOKIEDA Hitoshi , MORI Takamichi
- 申请人: Hitachi High-Technologies Corporation
- 申请人地址: 24-14 Nishishimbashi 1-chome Minato-ku Tokyo 105-8717 JP
- 专利权人: Hitachi High-Technologies Corporation
- 当前专利权人: Hitachi High-Technologies Corporation
- 当前专利权人地址: 24-14 Nishishimbashi 1-chome Minato-ku Tokyo 105-8717 JP
- 代理机构: Strehl Schübel-Hopf & Partner
- 优先权: JP2014255707 20141218
- 国际公布: WO2016098622 20160623
- 主分类号: G01N35/10
- IPC分类号: G01N35/10 ; G01N1/00
摘要:
An object of the present invention is to provide a CTS nozzle having functions of: reducing rubber chips produced when the CTS nozzle is inserted into and extracted from a rubber plug; further inhibiting the wear of the tip of the CTS nozzle; and withstanding the repeated use thereof, the CTS nozzle piercing the rubber plug of a sample container and dispensing a sample therein.
Since the CTS nozzle of the invention has two cut surfaces at its tip, the pressure applied from the rubber when the nozzle is inserted into the rubber plug is dispersed onto the two cut surfaces without being deflected onto one of the cut surfaces. A tip-side tapered portion 504 (a second surface), which is one of the two cut surfaces, has at a local position of the tip of the nozzle a curved surface that is curved in the circumferential direction of a cylindrically-shaped portion and is tilted linearly lengthwise of the nozzle. The pressure applied to the nozzle due to the resilience of the rubber pushed away by the nozzle is thus dispersed. Consequently, it becomes easier to push away the cut rubber while stably inhibiting the oblique insertion of the nozzle. Moreover, the invention makes it possible to reduce the rubber chips produced by the friction between the cut surfaces of the nozzle and the rubber. As a result of the reduced friction against the rubber, the wear of the tip of the nozzle is minimized, which enables the life of the nozzle to be longer.
Since the CTS nozzle of the invention has two cut surfaces at its tip, the pressure applied from the rubber when the nozzle is inserted into the rubber plug is dispersed onto the two cut surfaces without being deflected onto one of the cut surfaces. A tip-side tapered portion 504 (a second surface), which is one of the two cut surfaces, has at a local position of the tip of the nozzle a curved surface that is curved in the circumferential direction of a cylindrically-shaped portion and is tilted linearly lengthwise of the nozzle. The pressure applied to the nozzle due to the resilience of the rubber pushed away by the nozzle is thus dispersed. Consequently, it becomes easier to push away the cut rubber while stably inhibiting the oblique insertion of the nozzle. Moreover, the invention makes it possible to reduce the rubber chips produced by the friction between the cut surfaces of the nozzle and the rubber. As a result of the reduced friction against the rubber, the wear of the tip of the nozzle is minimized, which enables the life of the nozzle to be longer.
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