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    • 8. 发明授权
    • Process for withdrawing a gaseous and liquid cryogenic medium from a storage container, and storage container
    • 从储存容器和储存容器中取出气态和液态低温介质的方法
    • US06334312B1
    • 2002-01-01
    • US09667572
    • 2000-09-22
    • Klaus-Dieter MackWilfried Henning ReeseHerbert Schimmer
    • Klaus-Dieter MackWilfried Henning ReeseHerbert Schimmer
    • F17C702
    • F17C7/04F17C7/00F17C7/02F17C2205/0326F17C2221/012F17C2223/0123F17C2223/0161F17C2270/0168F17C2270/0184Y02E60/321
    • A process for withdrawing a gaseous and liquid cryogenic medium from a storage container is described, whereby the withdrawing from the gas phase or the liquid phase is carried out via at least one withdrawal line in each case, and these withdrawal lines are joined to at least one line that leads to the consumer of the cryogenic medium and can be switched using a valve between the two withdrawal lines. Further described is a storage container for a cryogenic medium with at least one withdrawal line, via which gaseous, cryogenic medium can be removed, and with at least one withdrawal line, via which liquid cryogenic medium can be removed, with a line, to which the withdrawal lines are joined and with at least one valve, which makes it possible to switch between the two withdrawal lines. According to the invention, valve (9) is moved using at least one electrochemical actuator (10), and the valve (9) and/or electrochemical actuator (10) can be arranged inside storage container (1).
    • 描述了从储存容器中取出气态和液态低温介质的方法,由此在每种情况下通过至少一个抽出管线从气相或液相中排出,并将这些排出管路连接至少 一条线路导致低温介质的使用者,并且可以使用两个退出管线之间的阀来切换。 进一步描述的是用于具有至少一个取出管线的低温介质的储存容器,通过该储存容器可以除去气态低温介质,并且可以利用至少一个取出管线将液体低温介质除去, 抽出管路连接并具有至少一个阀,这使得可以在两条抽出管线之间切换。 根据本发明,阀(9)使用至少一个电化学致动器(10)移动,并且阀(9)和/或电化学致动器(10)可以布置在储存容器(1)的内部。
    • 10. 发明申请
    • FILLER-NECK COUPLING
    • FILLER-NECK耦合
    • US20140175790A1
    • 2014-06-26
    • US13825401
    • 2011-10-08
    • Wilfried-Henning ReeseMartin BrücklmeierRoland Szardenings
    • Wilfried-Henning ReeseMartin BrücklmeierRoland Szardenings
    • F16L59/18F17C13/00
    • F16L59/182F16L19/025F16L29/007F16L59/141F16L59/181F17C13/001Y02E60/321
    • Described as a filler-tank coupling, exhibitinga) a coupling plug (S), b) in which is arranged an axially movable conduit (R), c) a coupling socket (D) corresponding to the coupling plug (S), d) wherein the conduit (R) extends beyond the parting plane (T) into the coupling socket (D) in the coupled state, so that a media opening (9) provided in the front area of the conduit (R) becomes aligned with the inlet opening of a media line (L) arranged in the coupling socket (D), and e) means for joining the coupling plug (S) and coupling socket (D). According to the invention f) the conduit (R) has an insulated design (1), g) a first insulating body (2) is arranged at the front end of the conduit (R), h) the coupling socket (D) exhibits a second insulating body (6) that can move in an axial direction and corresponds to the first insulating body (2), and i) the conduit (R), first insulating body (2) and second insulating body (6) are sealed gastight (3, 4, 7).
    • 描述为填料槽联接器,其显示a)联接塞(S),其中布置有可轴向移动的导管(R),c)对应于联接塞(S)的联接插座(D),d ),其中所述导管(R)处于联接状态延伸超过分型平面(T)到联接插座(D)中,使得设置在导管(R)的前部区域中的介质开口(9)与 布置在联接插座(D)中的介质线(L)的入口开口,以及e)用于连接联接插头(S)和联接插座(D)的装置。 根据本发明,f)导管(R)具有绝缘设计(1),g)第一绝缘体(2)布置在导管(R)的前端,h)联接插座(D) 第二绝缘体(6),其能够沿轴向移动并对应于第一绝缘体(2),以及i)导管(R),第一绝缘体(2)和第二绝缘体(6)密封气密 (3,4,7)。