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    • 1. 发明授权
    • Electromagnetic device, especially for an anti-slip, hydraulic vehicle brake system
    • 电磁装置,特别是防滑液压车辆制动系统
    • US06598944B1
    • 2003-07-29
    • US09830648
    • 2001-12-07
    • Guenter WolffFriedrich MegerleMartin OehlerDirk Hofmann
    • Guenter WolffFriedrich MegerleMartin OehlerDirk Hofmann
    • B60T836
    • F16K31/0655B60T8/363B60T15/028B60T17/04
    • The invention relates to an electromagnetic device, in particular for a slip-controlled, hydraulic vehicle brake system, having at least a first magnet valve which is closed in its currentless basic position and having at least a second magnet valve which is open in its currentless basic position, the first and second magnet valves being received in receiving bores of a valve block. The invention provides that the first and second magnet valves have structurally identical, one-piece valve housings, in each of which all the magnet valve components are received essentially without any axial protrusion, and that the total length of each of the first and second magnet valves is recessed in the receiving bores of the valve block, and that a nonferromagnetic spacer ring is disposed between a face end, pointing toward the valve seat, of at least one magnet coil and a dividing plane between this magnet coil and the associated pole piece.
    • 本发明涉及一种电磁装置,特别是用于滑动控制的液压车辆制动系统,其具有至少一个第一磁阀,该第一磁阀在其无电流的基本位置处封闭并且具有至少一个第二磁阀,其在其无电流状态下是开放的 基本位置,第一和第二磁阀被接收在阀块的接收孔中。 本发明提供了第一和第二磁阀具有结构相同的一体式阀壳体,其中每个阀壳体中的所有磁阀组件基本上没有任何轴向突出地接收,并且第一和第二磁体中的每一个的总长度 阀门凹入阀块的接收孔中,并且非磁性隔离环设置在至少一个磁体线圈的指向阀座的面端和该磁体线圈与相关联的极片之间的分隔平面之间 。
    • 6. 发明授权
    • Method for the pyrometallurgical treatment of fine grained solids to
produce molten products
    • 用于火法冶金处理细粒固体以产生熔融产物的方法
    • US4566903A
    • 1986-01-28
    • US657122
    • 1984-10-03
    • Gerhard MelcherFriedrich MegerleWolfgang Wuth
    • Gerhard MelcherFriedrich MegerleWolfgang Wuth
    • C22B5/14C22B15/00
    • C22B15/0047C22B5/14
    • A method and apparatus for the pyrometallurgical treatment of fine grained solids such as non-ferrous metal ore concentrates with an oxygen-containing gas wherein the solids are mixed with the gas to form a suspension which is blown through a nozzle into a reaction chamber such as a vertical melting cyclone. In the reaction chamber, the solids are brought to reaction and melted. The invention is concerned with injecting a particle stream through the reaction zone as a focused open jet having mass flow velocity of greater than 50 kg/m.sup.2.sec and having a linear speed of more than 35 m/sec. The particle stream is ignited by the hot combustion gases thereof or by a pilot flame. In a preferred embodiment of the invention, the particle stream is directed along a horizontal secant of the chamber to the opposite wall.
    • 一种用含氧气体进行火法冶金处理细粒固体如有色金属矿浓缩物的方法和装置,其中固体与气体混合形成悬浮液,该悬浮液通过喷嘴吹入反应室,例如 垂直熔化旋风。 在反应室中,使固体反应并熔融。 本发明涉及将粒子流作为聚焦的开放射流注入反应区,其质量流速大于50kg / m2.sec,线速度大于35m / sec。 颗粒物流由其热燃烧气体或引燃火焰点燃。 在本发明的优选实施例中,颗粒物流沿着腔室的水平割线被引导到相对的壁。
    • 9. 发明授权
    • Furnace system for smelting ore concentrate and the like
    • 熔炼精矿等的炉系
    • US4358094A
    • 1982-11-09
    • US194903
    • 1980-10-07
    • Friedrich MegerleHeinz Cordewener
    • Friedrich MegerleHeinz Cordewener
    • C22B9/16F27B3/12F27B3/24C21B7/10
    • C22B9/16F27B3/12F27B3/24
    • A furnace system for smelting ore concentrate and the like which includes a furnace housing provided with wall means which divide the housing into a smelting shaft, an exhaust gas shaft and a settling hearth. The settling hearth and the smelting shaft are separated by a partition wall preventing gaseous interaction therebetween but permitting liquid flow therebetween. In accordance with the invention, the partition wall between the exhaust gas shaft and the smelting shaft, as well as the wall between the settling hearth and the smelting shaft and exhaust gas shaft comprises a supporting frame on which there are a plurality of interengaged cooling elements which are releasably secured to the supporting frame and are provided with means for circulating a coolant therethrough.
    • 一种用于冶炼矿石精矿等的炉系,其包括炉壳体,炉壳体设置有将壳体分为熔炼轴,排气轴和沉降炉的壁装置。 沉降炉和冶炼轴由分隔壁隔开,防止其间的气体相互作用,但允许液体在其间流动。 根据本发明,废气轴与冶炼轴之间的分隔壁以及沉降炉底与冶炼轴和废气轴之间的壁包括支撑框架,在该框架上有多个相互接合的冷却元件 其可释放地固定到支撑框架并且设置有用于使冷却剂循环通过的装置。
    • 10. 发明授权
    • Stack for the thermal treatment of material
    • 堆叠用于材料的热处理
    • US4315620A
    • 1982-02-16
    • US133906
    • 1980-03-25
    • Friedrich MegerleJorg Kruger
    • Friedrich MegerleJorg Kruger
    • C21B13/00F27B1/24F27D9/00C21B7/10
    • F27D9/00F27B1/24
    • Wall structure for a smelting stack is comprised of a cooling fluid flow pipe membrane layer comprised of a series of vertical, parallel arranged pipes extending between upper and lower manifold members. The pipe membrane completely surrounds a hot zone in the smelting stack. The upper and lower manifolds extend interiorly of the pipe wall membrane to define an alcove in which there is positioned a series of vertically arranged lengths of insulation cladding which are spaced from one another by gaps filled with fire-proof materials. The gaps contain elements of the pipe membrane layer directed interiorly of the pipe membrane. A waste-gas stack may be mounted directly adjacent the smelting stack with a common wall therebetween. The waste-gas stack wall comprises only a pipe membrane. The primary function of the stack wall structure in the waste-gas stack is to remove heat from the waste gases; whereas, the primary function in the smelting stack is to retain heat within the stack and enable the furnace wall structure to withstand the smelting heat. A common wall serves both these functions. Since the load-bearing elements of the wall structure are the pipe membranes, the stack wall structures may be supported in a blast furnace system by suspension from the upper manifold or erection upon the lower manifold.
    • 用于冶炼堆的壁结构包括由在上歧管构件和下歧管构件之间延伸的一系列垂直的平行布置的管道组成的冷却流体流动管膜层。 管膜完全围绕冶炼堆中的热区。 上歧管和下歧管在管壁膜的内部延伸以限定凹室,其中定位有一系列垂直布置的绝缘包层,其间隔开填充有防火材料的间隙。 间隙包含管膜内部管状膜层的元件。 废气堆可以直接与冶炼堆叠相邻,其间具有公共壁。 废气堆叠壁仅包括管膜。 废气堆叠中堆叠壁结构的主要功能是从废气中除去热量; 而冶炼堆的主要功能就是保持堆内的热量,使炉壁结构能够承受冶炼热。 一个共同的墙壁为这两个功能服务。 由于壁结构的承载元件是管膜,所以堆叠壁结构可以通过从上歧管悬挂或在下歧管上架设而支撑在高炉系统中。