Process for the production of coaxial and confocal mirrors having
grazing incidence
    1.
    发明授权
    Process for the production of coaxial and confocal mirrors having grazing incidence 失效
    用于生产具有掠入射的同轴和共聚焦镜的方法

    公开(公告)号:US5942166A

    公开(公告)日:1999-08-24

    申请号:US17721

    申请日:1998-02-04

    Inventor: Oberto Citterio

    CPC classification number: G21K1/06 G02B5/10 G21K2201/067 Y10S359/90

    Abstract: A process for the production of coaxial and confocal mirrors having grazing incidence consists essentially of a support element or a carrier made of ceramic material, a layer reflecting X-rays and intermediate layer which is a buffer and which avoids the transfer of the rough surface of the carrier or support element to the reflecting layer. The support element or carrier is prepared by deposition involving the spraying of the ceramic material in the form of plasma (plasma spray deposition).

    Abstract translation: 用于生产具有掠入射的同轴和共聚焦镜的方法主要由支撑元件或由陶瓷材料制成的载体,反射X射线的层和作为缓冲区的中间层组成,并且避免了粗糙表面的转移 载体或支撑元件到反射层。 支撑元件或载体通过涉及以等离子体喷涂沉积形式喷射陶瓷材料的沉积来制备。

    Grazing incidence co-axial and confocal
    2.
    发明授权
    Grazing incidence co-axial and confocal 失效
    掠入射同轴和共焦

    公开(公告)号:US5592338A

    公开(公告)日:1997-01-07

    申请号:US397768

    申请日:1995-03-02

    Inventor: Oberto Citterio

    Abstract: Grazing incidence co-axial and confocal mirrors, used in particular for X-ray telescopes for astronomic observations, having a parabola/hyperbola double-cone truncated-cone structure, with polynomial sections or other geometric configurations, and consisting of an internal reflecting surface (15), in the form of a gold layer, an epoxy resin layer (14) and a supporting mechanical structural element (carrier) (11), formed of a ceramic material having physical-chemical properties improved compared to nickel and obtained according to the process of chemical vapor deposition (CVD) or other fabrication processes.

    Abstract translation: 用于特别用于用于天文观测的X射线望远镜的掠射入射同轴和共焦反射镜,具有抛物线/双曲线双锥截锥锥结构,具有多项式截面或其他几何构造,并且由内部反射表面 15),金层形式的环氧树脂层(14)和支撑机械结构元件(载体)(11),由具有与镍相比提高的物理化学性质的陶瓷材料形成,并且根据 化学气相沉积(CVD)或其他制造工艺。

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