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    • 2. 发明授权
    • Micromixer
    • US06982064B1
    • 2006-01-03
    • US10018198
    • 2000-06-10
    • Wolfgang EhrfeldFrank MichelAstrid LohfVolker Graeff
    • Wolfgang EhrfeldFrank MichelAstrid LohfVolker Graeff
    • G01N33/48B01F15/00B01F5/06
    • H04W28/22H04B7/26H04W28/24
    • Known static micromixers that work according to the principle of multilamination allow for a rapid mixing by diffusion. The invention provides a means for substantially increasing the throughput of known micromixers. To this end, the inventive micromixer for mixing two or more reactants comprises microstructures that define mixer cells. Each of said mixer cells is provided with a feeding chamber which adjoins at least two groups of digital channels. Said channels intermesh with the digital channels of the groups adjoining the feeding channels in a comb-like manner, thereby producing mixing zones]. Outlet ports are located above said mixing zones, said outlet ports extending perpendicularly to the digital channels and discharging the product. The inventive micromixer is especially useful for the large-scale production of mixtures, dispersions and emulsions.
    • 根据多层结构原理工作的已知的静态微混合器允许通过扩散快速混合。 本发明提供了用于显着提高已知微混合器的通过量的方法。 为此,用于混合两种或多种反应物的本发明的微混合器包括限定混合器电池的微结构。 每个所述混合器单元设置有与至少两组数字通道相邻的进料室。 所述通道以梳状方式与邻接进料通道的组的数字通道相互啮合,从而产生混合区。 出口端口位于所述混合区上方,所述出口端口垂直于数字通道延伸并排出产品。 本发明的微混合器特别适用于大规模生产混合物,分散体和乳液。
    • 5. 发明授权
    • Disk motor with bearing prestressing feature
    • 具有轴承预应力功能的圆盘电机
    • US06700278B1
    • 2004-03-02
    • US09889500
    • 2001-10-05
    • Wolfgang EhrfeldHans-Dieter StöltingFrank MichelMatthias NienhausStephan Kleen
    • Wolfgang EhrfeldHans-Dieter StöltingFrank MichelMatthias NienhausStephan Kleen
    • H02K2900
    • H02K5/1737H02K1/27H02K3/47H02K15/03H02K21/24
    • The invention relates to a disk motor with an armature disk, which is rotatably mounted and provided with permanent magnets, and with a stator which comprises a stator plate which is equipped with coils. The aim of the invention is to provide a disk motor that is as flat as possible and that is characterized by an improved smoothness of running. To this end, an annular soft-magnetic prestressing device is arranged concentrically on the stator plate in such a manner that at least one section of the prestressing device is located below the coil window of the coils in the axial direction. The armature disk may support an annular flux-return element opposite which the annular prestressing device is located in the radial direction. Said prestressing device has a cross-sectional contour that guides the magnetic lines of electric flux from the annular flux-return element to the coil window.
    • 本发明涉及一种具有电枢盘的盘式电动机,该电动机可旋转地安装并设置有永磁体,并且具有定子,该定子包括具有线圈的定子板。 本发明的目的是提供尽可能平坦的盘式电动机,其特征在于提高了运行的平滑度。 为此,将环形软磁预应力装置同心地布置在定子板上,使得预应力装置的至少一个部分沿着轴向位于线圈的线圈窗下方。 电枢盘可以支撑与环形预应力装置位于径向方向相对的环形磁通返回元件。 所述预应力装置具有将来自环形磁通返回元件的电流的磁线引导到线圈窗的横截面轮廓。
    • 7. 发明授权
    • Method for producing and magazining individual magnetic components and the assembly thereof for producing miniaturized magnetic systems and such magnetic systems
    • 用于制造和杂志各个磁性部件的方法及其组装用于生产小型化磁性系统和这种磁性系统
    • US06906607B1
    • 2005-06-14
    • US10129682
    • 2000-11-08
    • Lutz WeberMatthias NienhausStephan KleenWolfgang Ehrfeld
    • Lutz WeberMatthias NienhausStephan KleenWolfgang Ehrfeld
    • H01F7/02H01F41/02
    • H01F7/0221H01F41/0266
    • The object of the invention is to produce multipole magnetic systems that are composed of a plurality of individual magnetic components that preferably are made of rare-earth magnetic material. The invention relates to a method for producing and magazining at least one individual magnetic component, a magazine for at least one individual magnetic component by molding and for conventionally magnetizing the same. The invention further relates to a method of assembly for producing a magnetic system and to the resulting magnetic systems. The invention teaches that extremely flat multipole magnetic systems in the form of magnet rings or magnet strips and three-dimensional magnet bodies such as a magnetic scale, for example, can be produced by means of individual magnetic components that are directly adjacent to each other or are arranged at a distance by means of a molding material, for example. The magnetic systems taught by the invention are provided with a particularly high level of integration of the individual magnetic components and a uniform overall magnetization of the magnet segments which, acting as permanent magnet components, can be used in electromagnetic drives, magnetic path and angle measuring systems, magnetic couplings and valves, for example.
    • 本发明的目的是制造由多个单独的磁性部件组成的多极磁性体系,该多个磁性部件优选由稀土类磁性材料制成。 本发明涉及一种用于通过模制生产和杂交至少一个单独的磁性部件,用于至少一个单独的磁性部件并用于常规磁化的磁带的方法。 本发明还涉及一种用于制造磁系统和所得磁系统的组装方法。 本发明教导了例如可以通过直接相邻的单个磁性部件来产生磁环或磁条形式的非常平坦的多极磁体系统,例如磁标尺的三维磁体,或 通过例如模制材料一定距离地布置。 由本发明教导的磁系统具有特别高水平的各个磁性部件的集成度和磁体段的均匀的整体磁化作用,其作为永磁体部件可用于电磁驱动,磁路和角度测量 系统,磁耦合和阀门。
    • 10. 发明授权
    • Method for producing a spinning nozzle plate
    • 纺丝喷嘴板的制造方法
    • US4705605A
    • 1987-11-10
    • US863989
    • 1986-05-16
    • Erwin BeckerWolfgang EhrfeldPeter Hagmann
    • Erwin BeckerWolfgang EhrfeldPeter Hagmann
    • D01D4/02B23P15/16C25D1/08
    • C25D1/08B23P15/16
    • A spinning nozzle plate having nozzle capillaries is produced by depositing a layer 11 of a material whose characteristics can be changed by high-energy radiation (resist material) on a galvanic electrode 12. After resist layer 11 is irradiated in a predetermined pattern and after resist material is selectively removed by a treatment which utilizes the different material characteristics resulting from the irradiation, columns of resist material remain on galvanic electrode 12 to serve as negatives 21 of the nozzle capillaries. A galvanic layer 31 which encloses the negatives 21 of the nozzle capillaries is then produced on the galvanic electrode 12. Then the galvanic layer 31 is levelled and the negatives 21 are removed, as is the galvanic electrode 12. The process is particularly useful for producing spinning nozzle plates having nozzle capillaries with profiles of a special shape, essentially if the cross-sectional dimensions of the nozzle capillaries are small.
    • 具有喷嘴毛细管的纺丝喷嘴板通过在电极12上沉积特性可以通过高能量辐射(抗蚀剂材料)改变的材料的层11而制造。在抗蚀剂层11以预定图案和抗蚀剂 通过利用由照射产生的不同材料特性的处理选择性地除去材料,抗蚀剂材料柱保留在电极12上,用作喷嘴毛细管的负片21。 然后在电极12上产生包围喷嘴毛细管的底片21的电镀层31.然后,电镀层31被平整并且去除电极电极12上的底片21.该方法特别适用于生产 旋转喷嘴板具有具有特殊形状轮廓的喷嘴毛细管,基本上如果喷嘴毛细管的横截面尺寸较小。