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    • 4. 发明授权
    • Control apparatus for controlling an aspirator tube in an automatic
sample dispenser
    • 用于控制自动样品分配器中的抽吸管的控制装置
    • US5059812A
    • 1991-10-22
    • US595129
    • 1990-10-09
    • Bernhard Huber
    • Bernhard Huber
    • G01F23/292G01N1/00G01N35/10
    • G01N35/1009G01F23/292G01N2035/1025Y10S250/902
    • The control apparatus controls the lowering motion of an aspirator tube into a sample vessel in an automatic sample dispenser in a manner such that the smallest possible portion of an external surface of the aspirator tube is wetted by a liquid present in the sample vessel. A servo drive lowers the aspirator tube into the sample vessel. A sensor arrangement containing a single light guide, a light transmitter and a photoelectric receiver is associated with the aspirator tube and responds to light reflections at the liquid surface upon immersion of the lower aspirator tube end into the liquid. The light guide guides the propagating light beam and a returning reflected light beam. An electronic control controls the advancement of the aspirator tube via the servo drive into a position in which a predetermined short length in the region of the lower aspirator tube end dips into the liquid. When the liquid level drops due to aspiration of liquid into the aspirator tube, the lower end of the latter follows just this drop of the liquid level so that the aspirator tube continuously remains immersed into the liquid but only with the short length at its lower end.
    • 控制装置控制吸气管在自动样品分配器中的样品容器中的下降运动,使得吸气管的外表面的最小可能部分被存在于样品容器中的液体润湿。 伺服驱动器将吸气管降低到样品容器中。 包含单个光导,光发射器和光电接收器的传感器装置与抽吸管相关联,并且在将下吸气管管端浸入液体中时对液面处的光反射作出响应。 光导引导传播的光束和返回的反射光束。 电子控制器通过伺服驱动器将抽吸管的前进控制到下抽吸管端部区域中预定的短长度浸入液体中的位置。 当由于液体进入吸气管而液面下降时,后者的下端跟随液面的下降,使得吸气管连续地保持浸入液体中,但仅在其下端具有较短的长度 。
    • 6. 发明授权
    • Rinsing liquid apparatus for analytical instruments
    • 用于分析仪器的冲洗液体装置
    • US4991610A
    • 1991-02-12
    • US10352
    • 1987-02-03
    • Bernhard HuberToma Tomoff
    • Bernhard HuberToma Tomoff
    • G01N35/10G01N1/00G01N21/31
    • G01N35/1095
    • The present application is directed to new and improved apparatus for use in analytical instruments which includes an elongated dosing tube having a tip at one end which is constructed and arranged to move between a sample vessel, a rinsing vessel and an analytical instrument; the other end of the dosing tube being connected in fluid flow communication to a rinsing liquid supply vessel through a sample pump assembly and a rinsing liquid pump assembly; the liquid pump assembly including a pump cylinder having an inlet and an outlet; a pump piston arranged for reciprocal movement in the pump cylinder between a first end position in the discharge direction and an opposite second end position in the intake direction; a first check valve mounted on the inlet of the pump cylinder and a second check valve mounted on the outlet of the pump cylinder; a seal mounted adjacent the outlet which cooperates with the pump piston to sealingly close the outlet when the pump piston is positioned in its first end position in the discharged direction.
    • 本申请涉及用于分析仪器的新的和改进的装置,其包括细长的计量管,其具有在一端的尖端,其构造和布置成在样品容器,漂洗容器和分析仪器之间移动; 定量管的另一端通过样品泵组件和冲洗液体泵组件与流体流动连通地连接到冲洗液体供应容器; 所述液体泵组件包括具有入口和出口的泵筒; 泵活塞,其布置成在排出方向上的第一端部位置和进气方向上相对的第二端部位置之间在泵筒中往复移动; 安装在泵缸的入口上的第一止回阀和安装在泵缸的出口上的第二止回阀; 邻近出口安装的密封件,当泵活塞沿排出方向定位在其第一端部位置时,该密封件与泵活塞协作以密封地关闭出口。
    • 9. 发明授权
    • Storage racks
    • 储物架
    • US08157498B2
    • 2012-04-17
    • US12340908
    • 2008-12-22
    • Armin StolzerBernhard Huber
    • Armin StolzerBernhard Huber
    • B65G1/10
    • B65G1/0485
    • A storage rack having a shelf with storage spaces, arranged over top of each other, for pallets that are horizontally removed sideways. A rack operating device moves the pallets from the spaces, and a station cart forms a lowermost space for a pallet, and can be horizontally moved from the rack on first rails. An upper cart is located above the station cart and forms another one of the spaces to receive a pallet and is horizontally movable on second rails that have a wider track than the first rails and also lead out of the rack. The upper cart has a greater clearance in an area of the station cart which is larger than a length of the pallet, and runs on the second rails, and parts of the upper cart not related to the support structure thereof can be inserted between the vertical rack supports of the rack.
    • 一种具有搁板的存放架,其具有彼此顶部布置的托架,用于横向从侧面移除的托盘。 机架操作装置将托盘从空间移动,站台车形成用于托盘的最低空间,并且可以在第一轨道上从机架水平移动。 上部车位于车站上方,并形成另一个接收托盘的空间,并且可在第二轨道上水平移动,该第二轨道具有比第一轨道更宽的轨道,并且还引出机架。 上部推车在站车的区域中的间隙大于托盘的长度,并且在第二轨道上运行,并且与其支撑结构无关的上推车的部件可以插入在垂直方向 机架支架。
    • 10. 发明授权
    • Method and device for analyzing solid substances on mercury
    • 用于分析汞固体物质的方法和装置
    • US5045476A
    • 1991-09-03
    • US527926
    • 1990-05-24
    • Bernhard Huber
    • Bernhard Huber
    • G01N21/31
    • G01N21/3103G01N2021/3107Y10T436/25375Y10T436/255Y10T436/25875
    • For analyzing solid substances on mercury by measuring the atomic absorption, the substance is heated in order to expel the mercury. The generated mercury vapor is conveyed with a carrier gas flow over a body having a large surface made of an amalgam-generating material, so that the mercury vapor bonds and is accumulated as amalgam on the surface of this body. Subsequently, the body is heated in order to set the mercury accumulated as amalgam free again, and is conveyed by a carrier gas flow into a measuring vessel of an atomic absorption spectrometer. The solid substance which is to be analyzed is enclosed within a vessel having a closure which is destroyed during the heating of the solid substance. For this purpose, a cover is sealingly placed onto the vessel above the destructable closure through which cover a carrier gas flow can be supplied and be carried off. Subsequently, the heating of the solid substance takes place with the closure being destroyed, and then the generated mercury vapor being passed by the carrier gas flow over the amalgam-generating body.
    • 为了通过测量原子吸收来分析汞上的固体物质,物质被加热以排出汞。 所产生的汞蒸气以载气流在具有由汞齐生成材料制成的大表面的主体上输送,使得汞蒸汽键合并作为汞齐积聚在该体的表面上。 随后,加热身体以便再次将汞积聚为汞齐,并通过载气流输送到原子吸收光谱仪的测量容器中。 要分析的固体物质封闭在具有在固体物质加热期间被破坏的封闭物的容器中。 为此,将盖子密封地放置在可破坏的封闭件上方的容器上,通过该盖可以提供载气流并将其移走。 随后,固体物质的加热发生在封闭件被破坏的情况下,然后由载气流过的产生的汞蒸汽流过汞齐产生体。