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    • 72. 发明授权
    • Cooling module for charged particle beam column elements
    • 用于带电粒子束柱元件的冷却模块
    • US07345287B2
    • 2008-03-18
    • US11240279
    • 2005-09-30
    • Thomas JasinskiDieter WinklerWilliam A. Eckes
    • Thomas JasinskiDieter WinklerWilliam A. Eckes
    • H01J1/50F28D15/00
    • H01J37/141H01J2237/002
    • We have developed a method and apparatus for cooling electromagnetic lens coils of the kind used in charged particle beams. The method and apparatus provide not only a symmetrical cooling effect around the optical axis of the charged particle beam, but also provide improved uniformity of heat transfer. This improved uniformity enables control over the optical axis of the charged particle beam within about 1 nm for high current charged particle beam columns, wherein the current ranges from about 100 nanoamps to about 1000 nanoamps. The use of a squat and wide electromagnetic lens coil in combination with an essentially flat modular cooling panel, which provides uniform cooling to the electromagnetic lens coil, not only enables control over the optical axis of the charged particle beam, but also provides mechanical stability for the charged particle beam column.
    • 我们开发了一种用于冷却带电粒子束中使用的电磁透镜线圈的方法和装置。 该方法和装置不仅提供了带电粒子束的光轴周围的对称冷却效果,而且提供了改善的传热均匀性。 这种改进的均匀性使得能够对高电流带电粒子束柱控制带电粒子束的光轴在约1nm内,其中电流范围为约100纳安 - 约1000纳帕。 使用蹲式和宽电磁透镜线圈与基本上平坦的模块化冷却面板组合,其提供对电磁透镜线圈的均匀冷却,不仅能够控制带电粒子束的光轴,而且还提供机械稳定性 带电粒子束柱。
    • 76. 发明申请
    • Method and apparatus for the combustion of a fuel-oxidator mixture
    • 燃料 - 氧化剂混合物燃烧的方法和装置
    • US20060080968A1
    • 2006-04-20
    • US11066926
    • 2005-02-28
    • Timothy GriffinDieter Winkler
    • Timothy GriffinDieter Winkler
    • F23R3/40
    • F23C13/00F23C2900/13002F23C2900/9901F23R3/40
    • The present invention relates to a method and an apparatus (6) for carrying out the method, the method being used for combustion of a fuel-oxidator mixture in a combustion chamber (7) of a turbogroup, in particular of a power plant. A total oxidator flow (12) is divided into a main oxidator flow (14) and a secondary oxidator flow (15). The main oxidator flow (14) is lean mixed with a main fuel flow (21) in a premix burner (8), and the mixture (23) is fully oxidized in the combustion chamber (7). The secondary oxidator flow (15) is divided into a pilot oxidator flow (17) and a heat-exchanging oxidator flow (18). The pilot oxidator flow (17) is rich mixed with a pilot fuel flow (22), and the mixture (17, 22) is partially oxidized in a catalyst (24), with hydrogen being formed. Downstream of the catalyst (24), the partially oxidized pilot fuel-oxidator mixture (25) and the heat-exchanging oxidator flow (18) are together introduced into at least one zone (26) which is suitable for stabilizing the combustion of the main fuel-oxidator mixture (23).
    • 本发明涉及一种用于实施该方法的方法和装置(6),该方法用于在涡轮组(特别是发电厂)的燃烧室(7)中燃烧燃料 - 氧化剂混合物。 总的氧化剂流(12)被分成主氧化剂流(14)和次级氧化剂流(15)。 主氧化剂流(14)与预混燃烧器(8)中的主燃料流(21)稀混合,并且混合物(23)在燃烧室(7)中被完全氧化。 次级氧化剂流(15)被分为先导氧化剂流(17)和热交换氧化剂流(18)。 先导氧化剂流(17)与引燃燃料流(22)富混合,并且混合物(17,22)在催化剂(24)中部分氧化,形成氢气。 在催化剂(24)的下游,部分氧化的先导燃料 - 氧化剂混合物(25)和热交换氧化剂流(18)一起被引入至少一个适于稳定主燃烧器的燃烧的区域(26) 燃料 - 氧化剂混合物(23)。
    • 77. 发明授权
    • Multi beam charged particle device
    • 多光束带电粒子装置
    • US06943349B2
    • 2005-09-13
    • US10258869
    • 2001-04-27
    • Pavel AdamecRalf DegenhardtHans-Peter FeuerbaumHarry MunackDieter Winkler
    • Pavel AdamecRalf DegenhardtHans-Peter FeuerbaumHarry MunackDieter Winkler
    • G01Q30/02H01J37/04H01J37/09H01J37/26G21K1/08G01N23/00H01J3/14H01J37/28
    • H01J37/04H01J37/09H01J37/266
    • The present invention provides an improved column for a charged particle beam device. The column comprises an aperture plate having multiple apertures to produce multiple beams of charged particles and a deflector to influence the beams of charged particles so that each beam appears to come from a different source. Furthermore, an objective lens is used in order to focus the charged-particle beams onto the specimen. Due to the deflector, multiple images of the source are created on the surface of the specimen whereby all the images can be used for parallel data acquisition. Accordingly, the speed of data acquisition is increased. With regard to the focusing properties of the objective lens, the beams of charged particles can basically be treated as independent particle beams which do not negatively affect each other. Accordingly, each beam basically provides the same resolution as the beam of a conventional charged particle beam device.
    • 本发明提供了一种用于带电粒子束装置的改进的柱。 柱包括具有多个孔的孔板,以产生多个带电粒子束和偏转器,以影响带电粒子束,使得每个束似乎来自不同的源。 此外,使用物镜以将带电粒子束聚焦到样本上。 由于偏转器,在样品的表面上产生了源的多个图像,从而所有图像可以用于并行数据采集。 因此,数据采集的速度增加。 关于物镜的聚焦特性,带电粒子束基本上可以被视为不会相互影响的独立的粒子束。 因此,每个光束基本上提供与常规带电粒子束装置的光束相同的分辨率。
    • 78. 发明申请
    • Premix burner
    • 预混燃烧器
    • US20050115244A1
    • 2005-06-02
    • US10989029
    • 2004-11-16
    • Timothy GriffinFrank ReissDieter Winkler
    • Timothy GriffinFrank ReissDieter Winkler
    • F23D14/62F23D17/00F23R3/28F23R3/30
    • F23D14/62F23C2900/07002F23C2900/9901F23D17/002F23R3/286
    • A premix burner includes a swirler (7) for a combustion air stream and a device for injection of fuel into the combustion air stream. The swirler (7) includes one or more inlet openings for combustion air of the combustion air stream entering the burner. The device for injection of fuel into the combustion air stream includes one or more first fuel lines (8) with first fuel injection openings (4). The opening diameter and/or the injection angle of the injection openings varies with respect to the axial and/or radial direction. Alternatively or in addition, some of the first fuel injection openings (4) may be arranged in one or more first groups of closely grouped fuel injection openings (4) so that each of the first groups forms one fuel jet with a large cross section. An improved mixing of the fuel with the combustion air is achieved with the burner in particular in cases in which the fuel is injected at the end of the burner facing the combustion chamber.
    • 预混燃烧器包括用于燃烧空气流的旋流器(7)和用于将燃料喷射到燃烧空气流中的装置。 旋流器(7)包括用于燃烧空气流进入燃烧器的燃烧空气的一个或多个入口。 用于将燃料喷射到燃烧空气流中的装置包括具有第一燃料喷射开口(4)的一个或多个第一燃料管线(8)。 喷射开口的开口直径和/或喷射角度相对于轴向和/或径向方向变化。 或者或另外,一些第一燃料喷射开口(4)可以布置在一组或多个紧密分组的燃料喷射开口(4)中,使得每个第一组形成具有大截面的一个燃料喷射。 燃烧器与燃烧空气的改进的混合是通过燃烧器实现的,特别是在燃烧器面向燃烧室的燃烧器端部喷射燃料的情况下。
    • 79. 发明授权
    • Method for generating steam, in particular ultrapure steam, and steam generator
    • 产生蒸汽的方法,特别是超纯蒸汽和蒸汽发生器
    • US06834622B2
    • 2004-12-28
    • US10662376
    • 2003-09-16
    • Timothy GriffinAndreas SchlegelDieter Winkler
    • Timothy GriffinAndreas SchlegelDieter Winkler
    • F22D100
    • C01B5/00B01B1/005F22B1/003
    • Method for generating steam, in particular ultrapure steam, and steam generator The invention relates to a method and a steam generator for generating steam, in particular ultrapure steam, by reacting a stoichiometric mixture comprising a fuel, in particular hydrogen, and an oxidizing agent, in particular oxygen, and injecting water into the hot reaction gases, which is distinguished by a high purity of the steam generated. The object of providing a method for generating an ultrahigh purity steam is achieved, according to the invention, by two-stage combustion, in that the reaction mixture which is generated in a first combustion and evaporation stage is subjected to catalytic afterburning. A steam generator is distinguished by the fact that a catalytic afterburning chamber (3) with a through-flow body (16) is arranged downstream of the combustion and evaporation chamber (2).
    • 用于产生蒸汽的方法,特别是超纯蒸汽和蒸汽发生器本发明涉及一种用于产生蒸汽,特别是超纯蒸汽的方法和蒸汽发生器,其通过使包含燃料,特别是氢的化学计量混合物和氧化剂在 特别是氧,并将水注入热的反应气体中,其特征在于产生的蒸汽的高纯度。根据本发明,通过两阶段燃烧实现提供产生超高纯度蒸汽的方法的目的, 因为在第一燃烧和蒸发阶段产生的反应混合物经过催化后燃.A蒸汽发生器的特征在于具有通流体(16)的催化后燃烧室(3)布置在 燃烧和蒸发室(2)。