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    • 2. 发明申请
    • MIRROR MOUNTING ASSEMBLY
    • 镜子安装组件
    • WO2017204973A1
    • 2017-11-30
    • PCT/US2017/029586
    • 2017-04-26
    • NORTHROP GRUMMAN SYSTEMS CORPORATION
    • ZAMEL, James, M.
    • G02B7/18G02B7/183
    • G02B7/181A47G1/02A47G1/16G02B7/183
    • An exemplary support structure for a planar faceplate includes ribs extending substantially perpendicular to a bottom surface of the planar faceplate. Spaced apart projections extend from the ribs towards the bottom surface of the planar faceplate and have distal ends that engage and are secured to the bottom surface. Each distal end defines an area with a numerical value that is less than the thickness of the planar faceplate measured in the same measurement units as the area to limit any stress formations induced in the planar faceplate due to thermal changes from reaching a top surface of the planar faceplate. Alternatively, the projections may be spaced apart mesas extending outward from a rigid material.
    • 用于平面面板的示例性支撑结构包括基本上垂直于平面面板的底表面延伸的肋。 间隔开的凸起从肋向着平面面板的底表面延伸,并具有接合并固定到底面的远端。 每个远端限定数值小于平面面板的厚度的区域,所述数值在与面积相同的测量单元中测量,以限制由于热变化引起的在平面面板中感应的任何应力结构到达 平面的面板。 或者,突起可以是从刚性材料向外延伸的间隔开的台面。
    • 3. 发明申请
    • METHOD FOR PRODUCING LIGHTWEIGHT CONSTRUCTION STRUCTURAL ELEMENTS
    • 用于生产轻质结构元素
    • WO2012113651A3
    • 2012-10-18
    • PCT/EP2012052207
    • 2012-02-09
    • FRAUNHOFER GES FORSCHUNGKALKOWSKI GERHARDRISSE STEFANEBERHARDT RAMONA
    • KALKOWSKI GERHARDRISSE STEFANEBERHARDT RAMONA
    • G02B7/183B32B17/06C03B23/203G02B5/18
    • C03B23/203B32B3/266B32B17/06C03B23/20C04B37/001C04B37/04C04B2237/34C04B2237/343C04B2237/365C04B2237/366C04B2237/52C04B2237/62G02B5/1847G02B7/183
    • The invention relates to a method for producing lightweight construction structural elements which are produced as a composite construction element having at least one cover plate and one carrier element that are connected to each other. A carrier element, on which at least one through-hole and/or at least one recess is formed, and at least one other element, which is a cover plate, are connected to each other. The carrier element and at least one cover plate can be made of glass, glass ceramic, ceramic and/or silicon having an oxidic surface layer, which is formed at least in the joining region of the elements to be connected to each other. According to the invention, the carrier element should have an at least double thickness with respect to the thickness of a cover plate. The surfaces of the cover plate(s) to be connected to each other and of the carrier element should be intensively cleaned and smoothed in the joining regions thereof such that a roughness of the surface is attained in said regions and such that, under the action of a compressive force, at least 80% of the joining surfaces of said surfaces are in direct contact, and a thermal treatment at a temperature of at least 100°C and a maintaining of the temperature over a period of at least 0.5 hrs is carried out in order to establish a joint connection of the cover plate(s) and the carrier element. Further, at least one cover plate should be connected to a surface of the carrier element, on which at least one opening of a through-hole or a recess is arranged.
    • 本发明涉及一种用于生产具有至少一个顶板并且被彼此连接的支撑元件的复合部件轻质结构元件的制造方法。 它可以是这是一个盖板,其上形成至少一个开口和/或至少一个凹部的支撑构件,和至少另一种元素,而彼此连接。 承载元件和至少一个覆盖板可以由玻璃,玻璃陶瓷,陶瓷和/或硅与可以至少被形成为连接元件形成在所述接合区的氧化物表面层的。 所述支撑构件的厚度应至少两倍相对于盖板的厚度。 表面接合在一起覆盖板(S)和所述载体元件可以在它们的接合区域集中地清洁,因此平滑的,有表面的粗糙度达到,它们是在一定压力下在直接相邻接触作用的它们的接合表面的至少80%的力 而在至少100℃的温度下的热处理和保持温度在一段至少为0.5小时,以产生所述盖板(S)和所述载体元件的关节连接。 在这种情况下,应连接的至少一个覆盖板与所述支撑构件的表面被布置在一开口或凹部中的所述至少一个开口。
    • 5. 发明申请
    • PROCEDE DE REALISATION D'UN MIROIR COMPOSITE ET MIROIR COMPOSITE OBTENU SELON LE PROCEDE
    • 用于生产由该方法获得的复合反射镜和复合镜的方法
    • WO2011089079A1
    • 2011-07-28
    • PCT/EP2011/050495
    • 2011-01-17
    • ASTRIUM SASDESAGULIER, ChristianBARIL, Stéphane
    • DESAGULIER, ChristianBARIL, Stéphane
    • G02B7/183G02B5/08
    • B29D11/00596G02B5/0808G02B7/183
    • Procédé de réalisation d'un miroir composite. Il comporte les étapes consistant à prévoir une ébauche en verre à faible coefficient de dilatation, à usiner une forme convexe (4) dans l'ébauche en verre, à draper une peau avant (6) imprégnée de résine sur la forme convexe (4) de l'ébauche en verre (2), à usiner dans une structure arrière porteuse (8) une forme concave complémentaire de la forme convexe usinée dans l'ébauche en verre (2), à coller la forme concave (10) de la structure porteuse (8) sur la forme convexe de l'ébauche en verre (2), à usiner une forme convexe sur la structure porteuse, à draper une peau arrière (14) imprégnée de résine sur un moule, à coller la peau arrière (14) sur la forme convexe de la structure porteuse (8), à retourner l'ensemble de sorte que l'ébauche (2) se trouve en partie supérieure de l'ensemble, à usiner et polir un miroir dans l'ébauche en verre (2).
    • 本发明涉及一种复合反射镜的制造方法。 所述方法包括以下步骤:提供具有低膨胀系数的玻璃坯料,将玻璃坯料的凸形(4)加工成玻璃坯料,将玻璃坯料的凸形(4)浸渍树脂的前表皮(6) 2)将加工成玻璃坯料(2)的凸形匹配的凹形加工成后支撑结构(8),将支撑结构(8)的凹形(10)粘接到玻璃坯料的凸形( 2),在支撑结构上加工凸形,将浸渍有树脂的后表皮(14)覆盖在模具上,将后表皮(14)粘附到支撑结构(8)的凸起形状,将组件 坯料(2)位于组件的上部,并且在玻璃坯料(2)中加工和抛光镜子。
    • 6. 发明申请
    • CURVED LAMINATED PANEL, PREFERABLY PARABOLIC, WITH A MIRROR, AND PROCESS FOR ITS MANUFACTURING
    • 弯曲的层压板,具有镜子的优选抛光面及其制造工艺
    • WO2010138087A1
    • 2010-12-02
    • PCT/SI2010/000029
    • 2010-05-24
    • SONCNA ENERGIJA D.O.O.HROVATIC, Igor
    • HROVATIC, Igor
    • F24J2/10G02B5/10G02B7/183
    • G02B5/10B29C43/18B29C43/206B29C2043/185B29D11/00596B29K2105/04B29K2105/06B29K2705/00B29L2011/0058F24S23/71F24S23/74F24S23/82Y02E10/40
    • Laminated curved panel, preferably parabolic, with a mirror and process for its manufacturing solves technical problem of rigidity of thin layer curved mirrors. Laminated curved panel according to the first embodiment comprising light reflecting layer (1), preferably flexible, preferably in form of a foil with an adhesive layer (2) attached to the inner supporting layer (3), and according to the second embodiment comprising reflective layer (19), onto which said mesh (7) is attached by means of spacer adhesive layer (8) in such a manner that adhesive of said spacer adhesive layer (8) fills predominant part of gaps between mesh wires and that said adhesive is further attached to the filling- adhesive layer (11) made of filling-adhesive mass which essentially fills holes (10) in spacer material (9), while the filling-adhesive mass of the filling-adhesive layer (11) further on the other side of the spacer material (9) connects with and attaches to the mesh (12) and the outer supporting layer 14. Process for manufacturing of laminated curved panel, preferably parabolic, with a mirror is comprised of placing onto inner convex form tool (17) at least either light reflecting layer (1), preferably flexible, preferably in form of foil, adhesive layer (2) and internal support layer (3), or reflective layer (19), further placing onto said layer or plurality thereof the mesh (7), the spacer material (9), and the outer supporting layer (14), whereas adhesive in form of adhesive mass or adhesive film is applied between each of said layers and whereby the holes (10) of said spacer material (9) are filled with the filling-adhesive mass, preferably polyurethane or epoxy, and further by setting external concave form tool (18) onto so formed layers, and further pressing so formed layers between said internal (17) and external form tools (18).
    • 具有反射镜和其制造方法的层叠弯曲板,优选抛物线,解决了薄层曲面镜刚度的技术问题。 根据第一实施例的叠层弯曲面板包括光反射层(1),优选是柔性的,优选为具有附接到内支撑层(3)的粘合剂层(2)的箔形式,并且根据第二实施例包括反射 层(19),所述网格(7)借助于间隔物粘合剂层(8)以这样的方式附接到所述网格(7)上,使得所述间隔物粘合剂层(8)的粘合剂填充网眼之间的主要部分间隙,并且所述粘合剂 进一步附着到填充粘合剂层(11)上,填充粘合剂层(11)由基本上填充间隔材料(9)中的孔(10)而填充粘合剂层(11)的填充粘合剂块进一步填充 隔离材料(9)的一侧与网(12)和外支撑层14连接并附接到其上。用反射镜制造层叠曲面板,优选抛物线的方法包括放置在内凸形工具(17)上 )在leas 优选柔性的光反射层(1),优选为箔形粘合剂层(2)和内部支撑层(3)或反射层(19)的形式,进一步将所述网格(7) ),间隔材料(9)和外部支撑层(14),而粘合剂或粘合剂膜形式的粘合剂被施加在每个所述层之间,由此所述间隔材料(9)的孔(10) 填充填充粘合剂块,优选聚氨酯或环氧树脂,并且还通过将外部凹形工具(18)设置在这样形成的层上,并且进一步在所述内部(17)和外部成形工具(18)之间压制成形的层。
    • 7. 发明申请
    • ASSEMBLY FOR CONVEYING SOLAR RAYS, PARTICULARLY FOR SYSTEMS FOR CONVERTING SOLAR ENERGY INTO ELECTRIC AND/OR THERMAL ENERGY
    • 用于输送太阳能的组件,特别是用于将太阳能转化为电和/或热能的系统
    • WO2010052282A1
    • 2010-05-14
    • PCT/EP2009/064712
    • 2009-11-05
    • SUN GEN SRLMANFREDI, Ugo
    • MANFREDI, Ugo
    • F24J2/10F24J2/12G02B7/183F24J2/16G02B5/09
    • B29C44/16B29D11/00596F24S23/74F24S23/82F24S2023/874Y02E10/45Y02P80/15
    • An assembly (1) for conveying solar rays, particularly for systems for converting solar energy into electric power and/or thermal energy, which comprises a structure (5) for supporting at least one conveyance device, comprising a plurality of conveyance devices, each of which comprises at least one sheet (2) made of a material that is optically reflective and has at least one profile that is substantially curved along a single axis of curvature (C1), the profile having a substantially parabolic shape for obtaining the focused reflection of a concentrated luminous image (3) having a substantially rectangular shape, the conveyance devices being associated jointly with the supporting structure (5) and being arranged substantially laterally adjacent to one another without discontinuities, so as to obtain the focal reflection of a substantially rectangular concentrated luminous image (3).
    • 一种用于输送太阳光线的组件(1),特别是用于将太阳能转换为电能和/或热能的系统,其包括用于支撑至少一个输送装置的结构(5),所述结构(5)包括多个输送装置,每个输送装置 其包括由光学反射的材料制成的至少一个片材(2),并具有至少一个沿着单一曲率轴线(C1)弯曲的轮廓,所述轮廓具有基本抛物线形状,用于获得聚焦反射 具有大致矩形形状的集中发光图像(3),所述输送装置与所述支撑结构(5)联合地配置并且基本上横向相邻地布置而没有不连续,以便获得基本上矩形的集中的焦点 发光图像(3)。