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    • 27. 发明公开
    • Laminated safety mirror with reflective coating adjacent the bonding layer
    • Beschichtung auf der Bindungsschicht的Laminierter Sicherheitsspiegel mit reflektierender
    • EP0882997A1
    • 1998-12-09
    • EP98109167.1
    • 1998-05-20
    • Globe-Amerada Glass Company
    • Kellman-Turek, Cheri L.
    • G02B1/10G02B5/08B32B17/10
    • B32B17/10036B32B17/1022B32B17/1077B32B17/10853B32B17/10862C03C17/3663C03C17/38G02B5/0808G02B5/0875
    • A laminated safety mirror comprises at least two layers of glass and a bonding layer. A mirrored coating is formed on the first inner surface of a glass sheet comprising an outer surface of the laminate and, through a protective coating, immediately adjacent the bonding layer. A dual-sided mirror can be formed with two mirrored coatings, one on each of the first inner surfaces of the glass sheets forming the outer surfaces of the laminate. The bonding layer is a light stable bonding polyether-based aliphatic polyurethane material. The laminate so formed is durable against separation of layers and against loss of its bonding strength and safety capabilities. The laminate will meet the strength and other characteristics of, for example, the Consumer Product Safety Code, 16 CFR 1201 category I and II (U. S. Safety Standards) for withstanding up to 400 foot-pounds of impact energy. Soda lime glass, tempered glass, chemically-strengthened glass, colored glass, and other materials can be used in one or more layers of a laminated glass mirror of the invention.
    • 层压安全镜包括至少两层玻璃和粘合层。 在包括层压体的外表面的玻璃板的第一内表面上形成镜像涂层,并且通过保护涂层紧邻结合层。 双面镜可以形成有两个镜面涂层,玻璃板的每个第一内表面中的一个形成层压体的外表面。 粘合层是光稳定的结合聚醚基脂族聚氨酯材料。 如此形成的层压板耐层分离,并且抵抗其粘结强度和安全性能的损失。 层压板将满足例如“消费品安全规范”16 CFR 1201 I类和II类(美国安全标准)的强度和其他特性,以承受高达400英尺磅的冲击能量。 钠钙玻璃,钢化玻璃,化学强化玻璃,彩色玻璃等材料可用于本发明的层压玻璃镜的一层或多层中。
    • 28. 发明公开
    • Microscope system
    • Mikroskopsystem
    • EP0807840A2
    • 1997-11-19
    • EP97107790.4
    • 1997-05-13
    • Nikon Corporation
    • Otaki, TatsuroNihoshi, ToshiakiSato, ManabuKaizu, HitoshiOuchi, Yumiko
    • G02B21/02
    • G02B21/02
    • A microscope system for observing an image of a sample at desired magnifications includes a first objective lens having an objective side surface which is telecentric, a focusing lens, disposed in an optical path along which optical rays emitted from the first objective lens travel, for focusing the optical rays and forming a sample image and a second objective lens having a magnification factor different from that of the first objective lens. An interchanging member holds the first objective lens and the second objective lens and is used for placing one of the first and second objective lenses in an observational optical path between the sample and the focusing lens. The inequality 0.29 is satisfied, assuming D to be a parfocal length which equals a distance between a surface of the sample and an attachment plane of the objective lens and fI to be a focal length of the focusing lens.
    • 用于以期望的倍率观察样品的图像的显微镜系统包括具有远心的物镜侧表面的第一物镜,聚焦透镜,设置在从第一物镜行进的光线穿过的光路中,用于聚焦 并且形成样本图像和具有与第一物镜不同的放大倍数的第二物镜。 交换构件保持第一物镜和第二物镜,并且用于将第一和第二物镜之一放置在样品和聚焦透镜之间的观察光路中。 假定D为与样品的表面和物镜的附着面之间的距离等于被聚焦透镜的焦距的fI的准焦距,则满足不等式0.29
    • 30. 发明公开
    • SYSTEM FOR SECURING PLATEFORMED ELEMENTS ON A SURFACE
    • 系统用于固定板状元素的表面
    • EP0725874A1
    • 1996-08-14
    • EP94901078.0
    • 1993-11-18
    • PLAN & PROSJEKT AS
    • THORSRUD, Arne
    • E04F13
    • E04F13/0821
    • A securing system is disclosed for the securing of slab elements such as slate plates or metal slabs to mainly plane surfaces, said securing system comprising a mainly horizontal (6) and optionally a mainly vertical (1) securing rail, where the cross section of the rails is mainly u-formed, and where to the horizontal securing rail there may be attached at least one brace (11) substantially designed with a u-shaped and with a backwards bent section at its ends to fit over the short leg (8) of the securing rail. The u-formed brace (11) carries the slab element (17) in the securing system. Further, the system comprises at least a mainly s-formed brace (14) which may be secured to the second leg (8) of the horizontal securing rail (6) as an upper support for the slab element (17). The system also preferably comprises a resilient element (19) which may also be secured to the second leg (8) of the securing rail (6), and which presses the slab element (17) against the securing braces (11, 14).