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    • 1. 发明授权
    • Spatially relaying radiation components
    • 空间中继辐射元件
    • US09030733B2
    • 2015-05-12
    • US14110757
    • 2012-04-05
    • Oleg ProninAlexander ApolonskiyFerenc KrauszVladimir Pervak
    • Oleg ProninAlexander ApolonskiyFerenc KrauszVladimir Pervak
    • H01S3/106G02B27/10G02B5/28G01N21/25H01S3/08
    • G02B27/1006G01N21/25G02B5/283H01S3/08H01S3/08059H01S3/106
    • A method of spatially relaying a first radiation component (1) having a first wavelength and a second radiation component (2) having a second wavelength different from the first radiation component (1), using an optical relaying device (10) which comprises a transparent plate (11) having anti-reflection coatings (12, 13) on both side surfaces thereof, comprises transmitting the first radiation component (1) across the optical relaying device (10) with predetermined incident (a) and emergent angles (β), resp., wherein said anti-reflection coatings (12, 13) being effective for the first radiation component (1) at the incident and emergent angles (α, β), resp., and reflecting the second radiation component (2) at the optical relaying device (10) with a predetermined reflection angle (a) being equal to at least one of said incident and emergent angles (α, β), wherein the first and second radiation components (1, 2) are split from each other toward different directions or combined into a common beam path. Furthermore, an optical relaying device (10) and a resonator device, in particular enhancement cavity device (100) and a laser resonator, are described.
    • 一种使用包括透明的光中继装置(10)的具有第一波长的第一辐射分量(1)和具有不同于第一辐射分量(1)的第二波长的第二辐射分量(2)的空间中继的方法, 在其两个侧表面上具有防反射涂层(12,13)的板(11)包括以预定的入射(a)和出射角度(&bgr)将第一辐射分量(1)穿过光中继装置(10) 其中所述防反射涂层(12,13)在入射和出射角度(α,θ)处对第一辐射分量(1)有效,并且反射第二辐射分量(2), 在光中继装置(10)上,预定的反射角(a)等于所述入射角和出射角(α,bgr)中的至少一个,其中第一和第二辐射分量(1,2)从 彼此朝向不同的方向或梳子 嵌入共同的光束路径。 此外,描述了光中继装置(10)和谐振器装置,特别是增强型腔装置(100)和激光谐振器。
    • 3. 发明授权
    • Mounting system for a bank of storage units and the combination of a bank of storage units connected to the mounting system
    • 一组存储单元的安装系统和连接到安装系统的一组存储单元的组合
    • US08967745B2
    • 2015-03-03
    • US13220145
    • 2011-08-29
    • Kevin Everett Booth
    • Kevin Everett Booth
    • A47B91/00
    • A47B87/008A47B91/005A47B91/022
    • A mounting system for mounting a bank of storage units in side-by-side relationship above a ground surface includes an elongate member having an elongate top wall, having side edges and at least one leg section extending downwardly from one of the side edges. Each of the at least one leg section includes an elongate flange at a distal end that is contiguous to the ground. The elongate top wall has an elongate dimension between opposed ends for receiving a bank of storage units in side-by-side relationship on an upper surface thereof. The top wall includes attachment members for cooperating with a mounting plate for attaching the bank of storage units in side-by-side relationship to the top wall. The elongate flanges include a plurality of leveling adjuster passages for receiving leveling adjusters therethrough and a plurality of anchor passages for receiving anchoring members therethrough. The plurality of adjuster passages on each flange includes leveling adjuster passages located adjacent each elongate end of the flanges for receiving leveling adjuster members therethrough to engage a ground surface and provide a leveling function. A plurality of anchor passages is adapted to receive anchoring members insertable into the ground surface for securing the elongate member to the ground surface. The invention also resides in the combination of the mounting system and a bank of lockers attached to it, as well as to storage units including a mounting plate as part of its construction.
    • 一种用于在地表面上方并排安装一组存储单元的安装系统包括具有细长顶壁的细长构件,其具有侧边缘和从侧边缘之一向下延伸的至少一个腿部段。 所述至少一个腿部段中的每一个包括在与所述地面相邻的远端处的细长凸缘。 细长的顶壁在相对的两端之间具有细长的尺寸,用于在其上表面上并排地接收一排存储单元。 顶壁包括用于与安装板配合的附接构件,用于将存储单元组与顶壁并排连接。 细长凸缘包括多个调平调节器通道,用于容纳通过其中的调平调节器和多个锚定通道,用于接收通过其中的锚定构件。 每个凸缘上的多个调节器通道包括位于凸缘的每个细长端附近的调平调节器通道,用于接收穿过其的调平调节件以接合地面并提供调平功能。 多个锚定通道适于接收可插入到地面中的锚固构件,用于将细长构件固定到地面。 本发明还在于安装系统和附接到其上的一组储物柜以及包括作为其结构的一部分的安装板的存储单元的组合。
    • 5. 发明授权
    • Polycrystalline silicon portion and method for breaking a silicon body
    • 多晶硅部分和破坏硅体的方法
    • US08939336B2
    • 2015-01-27
    • US13709211
    • 2012-12-10
    • Wacker Chemie AG
    • Laszlo FabryPeter GrueblChristian Huber
    • C01B33/02B26F3/00C01B33/035
    • C01B33/02B26F3/002C01B33/035Y10T225/10
    • The invention relates to a polycrystalline silicon portion having at least one fracture surface or cut surface, which includes metal contamination of from 0.07 ng/cm2 to 1 ng/cm2. The invention also relates to a method for breaking a silicon body, preferably a rod of polycrystalline silicon, including the steps: a) determining the lowest natural bending frequency of the silicon body; b) exciting the silicon body in its lowest natural bending frequency by means of an oscillation generator, the excitation being carried out at an excitation point of the silicon body such that the silicon body breaks at the excitation point; so that a silicon portion having a fracture surface results which includes metal contamination of from 0.07 ng/cm2 to 1 ng/cm2.
    • 本发明涉及具有至少一个断裂面或切割面的多晶硅部分,其包括0.07ng / cm 2至1ng / cm 2的金属污染。 本发明还涉及一种用于破坏硅体,优选多晶硅棒的方法,包括以下步骤:a)确定硅体的最低自然弯曲频率; b)通过振荡发生器激发其最低自然弯曲频率的硅体,激发在硅体的激发点处进行,使得硅体在激发点处断裂; 从而导致具有0.07ng / cm 2至1ng / cm 2的金属污染的具有断裂面的硅部分。
    • 9. 发明授权
    • Bay-type greenhouse with optimal performance
    • 湾型温室具有最佳性能
    • US08881449B2
    • 2014-11-11
    • US13879216
    • 2011-10-06
    • Arnauld Thery
    • Arnauld Thery
    • A01G9/00A01G9/14A01G9/24
    • A01G9/14A01G9/242Y02A40/268
    • A span type greenhouse has structural units installed parallel to one another over an entire length of a bay defined under a span. The ratio of a distance between a top of the greenhouse and a horizontal straight line passing through top ends of side posts over the bay width is less than 1/5. This greenhouse also has central double opening windows. In a transverse profile of the greenhouse, and angle formed between a straight line tangential to an arch segment in a transverse plane of the greenhouse at a side lintel, and a straight line intersecting a hinge axis and the end of a closed side window in the transverse plane of the greenhouse is non-zero in the direction of a concave side of the greenhouse profile, this break in slope procuring a slope for the closed window that is at least 15°.
    • 跨度式温室具有在跨度限定的隔间的整个长度上彼此平行地安装的结构单元。 温室顶部和通过侧柱顶端的水平直线之间的距离比在伞形宽度上小于1/5。 这个温室也有中央双开窗。 在温室的横向剖面中,在与侧壁的温室的横向平面中与拱形区段切线的直线与在铰链轴线处相交的直线与在该侧壁处的封闭侧窗口的端部之间形成的角度 温室的横向平面在温室剖面的凹面方向上不为零,这种斜面的断裂为封闭窗口的斜率采取了至少15°的斜率。