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    • 44. 发明授权
    • Method for arranging an optical module in a measuring apparatus and a measuring apparatus
    • 在测量装置和测量装置中布置光学模块的方法
    • US08400618B2
    • 2013-03-19
    • US12706560
    • 2010-02-16
    • Martin RathUlrich MuellerWaldemar Mielke
    • Martin RathUlrich MuellerWaldemar Mielke
    • G03B27/32
    • G02B27/62G03F7/70141G03F7/70258G03F7/70833G03F7/7085G03F7/70975
    • A method for arranging an optical module in a measuring apparatus includes: providing the measuring apparatus with an irradiation system for irradiating the optical module with electromagnetic radiation, a reference component, and a detection element defining a detection surface, the detection element being disposed in a defined position in relation to the reference component, disposing the optical module in the measuring apparatus such that the radiation emitted by the irradiation system passes through the optical module and impinges onto the detection surface as an exit beam, measuring a position of the exit beam in relation to the detection surface, adjusting the position of the optical module within the measuring apparatus such that the position of the exit beam in relation to the detection surface is brought to correspond to a predetermined position, and establishing position parameters defining the position of the optical module in relation to the reference component.
    • 一种用于在测量装置中布置光学模块的方法包括:向测量设备提供用于利用电磁辐射照射光学模块的照射系统,参考部件和限定检测表面的检测元件,所述检测元件设置在 将光学模块设置在测量装置中,使得由照射系统发射的辐射通过光学模块并作为出射光束入射到检测表面上,测量出射光束的位置 关于检测表面,调整测量装置内的光学模块的位置,使得出射光束相对于检测表面的位置对应于预定位置,并且建立定义光学位置的位置参数 模块相对于参考组件。
    • 45. 发明申请
    • LEAF SPRING ARRANGEMENT
    • 叶子弹簧装置
    • US20120267835A1
    • 2012-10-25
    • US13515727
    • 2010-12-15
    • Rodscha DrabonUlrich MuellerPeter Stastny
    • Rodscha DrabonUlrich MuellerPeter Stastny
    • B60G11/04
    • B60G11/04B60G2204/121B60G2206/7101
    • In a leaf spring arrangement for a chassis of a motor vehicle, a leaf spring includes multiple layers made of a glass fiber composite plastic, a reinforcement made of a carbon composite plastic and being disposed between an upper and a lower one of the layers, and a core made of a different material than the reinforcement and being disposed between the upper and lower layers, wherein the reinforcement is arranged along a longitudinal a side of the core. The leaf spring is coupled at its center region to an axle of the motor vehicle by a center connection and to the vehicle body by bodywork connections, wherein the leaf spring is tilted by an angle relative to the vertical axis of the motor vehicle.
    • 在用于机动车辆的底盘的板簧装置中,板簧包括由玻璃纤维复合塑料制成的多层,由碳复合塑料制成的增强件,并且设置在上层和下层之间, 由不同于所述加强件的材料制成并设置在所述上​​层和下层之间的芯,其中所述加强件沿着所述芯的纵向方向布置。 板簧通过中心连接在其中心区域连接到机动车辆的车轴,并通过车身连接与车体相连,其中板簧相对于机动车辆的垂直轴线倾斜一定角度。
    • 48. 发明授权
    • Silicate producing method
    • 硅酸盐生产方法
    • US07947244B2
    • 2011-05-24
    • US12090027
    • 2006-10-11
    • Ulrich MuellerRoger RuetzHermann Gies
    • Ulrich MuellerRoger RuetzHermann Gies
    • C01B33/00C01B33/20C01B33/26
    • C01B37/02Y02P20/582
    • The present invention relates to a process for the preparation of a silicate comprising at least silicon and oxygen, comprising (1) mixing of silicon dioxide and/or of a silicon dioxide precursor with an aqueous solution comprising at least one tetraalkylammonium compound comprising R1R2R3R4N+ and at least one base, wherein R1 and R2 are methyl and both R3 and R4 are n-propyl; (2) heating of the colloidal solution obtained according to (1) to a temperature in the range of from greater than the boiling point of the colloidal solution under the chosen pressure to 180° C. at atmospheric pressure to give a suspension comprising at least one silicate, wherein the silicate comprising at least silicon and oxygen is added as a crystallization auxiliary in (1).
    • 本发明涉及一种制备至少包含硅和氧的硅酸盐的方法,包括(1)将二氧化硅和/或二氧化硅前体与包含至少一种包含R1R2R3R4N +的四烷基铵化合物的水溶液混合,并在 至少一个碱,其中R 1和R 2是甲基,R 3和R 4都是正丙基; (2)将根据(1)获得的胶体溶液在大气压下加热到大于压力下的胶体溶液的沸点至180℃的温度范围内,得到至少包含至少 一种硅酸盐,其中在(1)中加入至少含有硅和氧的硅酸盐作为结晶助剂。