METALLIC CLAD CAPILLARY TUBING
    1.
    发明公开
    METALLIC CLAD CAPILLARY TUBING 失效
    金属涂覆的毛细管。

    公开(公告)号:EP0063580A1

    公开(公告)日:1982-11-03

    申请号:EP81902932.0

    申请日:1981-10-22

    IPC分类号: F16L9 B01D15 C03C17 G01N30

    摘要: Capillaire en verre (10) pourvu d'un revetement metallique indique pour l'utilisation dans des applications de chromatographie en phase gazeuse. Un revetement ou chemise (12) metallique est forme sur le capillaire en verre (11) en le recouvrant d'un metal ou d'un alliage au fur et a mesure qu'il sort du four. Le metal ou alliage utilise est du type virtuellement chimiquement inerte par rapport aux materiaux comprenant le capillaire en verre a la temperature de depot pendant le revetement du capillaire en verre au moyen du metal ou de l'alliage et forme un joint hermetique autour de la surface exterieure du revetement en verre. Le revetement metallique empeche tout endommagement de nature chimique ou mecanique a la surface du verre, permettant ainsi de maintenir ou proteger la resistance initiale du capillaire en verre. Un revetement plastique (13) est prevu de maniere facultative pour assurer une protection supplementaire de la surface metallique.

    METALLIC CLAD CAPILLARY TUBING
    2.
    发明授权
    METALLIC CLAD CAPILLARY TUBING 失效
    金属帽毛细管

    公开(公告)号:EP0063580B1

    公开(公告)日:1987-01-21

    申请号:EP81902932.3

    申请日:1981-10-22

    IPC分类号: F16L9/10 B01D15/08

    摘要: Metallic clad glass capillary (10) suitable for use in gas chromatography applications. A metallic coating or jacket (12) is formed on the glass capillary (11) by coating the glass capillary with a metal or alloy as the capillary is drawn from the furnace. The metal or alloy employed is one that is substantially chemically inert with respect to the material comprising the glass capillary at the deposition temperature during coating of the metal or alloy onto the glass capillary and forms a hermetic seal around the outer surface of the glass cladding. The metallic coating prevents chemical or mechanical damage to the glass surface to thereby maintain or preserve the nascent strength of the glass capillary. A plastic coating (13) is optionally provided for additional protection of the metal surface.

    DEVICE FOR CONNECTION BETWEEN ADJACENT SOLAR RECEIVER TUBES
    6.
    发明公开
    DEVICE FOR CONNECTION BETWEEN ADJACENT SOLAR RECEIVER TUBES 审中-公开
    VORRICHTUNG ZUR VERBINDUNG ZWISCHEN BENACHBARTENSOLAREMPFÄNGERROHREN

    公开(公告)号:EP2940401A1

    公开(公告)日:2015-11-04

    申请号:EP13867209.2

    申请日:2013-12-26

    IPC分类号: F24J2/46 F24J2/05 F24J2/14

    摘要: Device for connection between adjacent solar receiver tubes of the type which are at the end of the solar receiver tube (1) to be joined with another adjacent solar collector tube, comprising:
    - An expansion compensating element with at least two concentric bellows (7, 8) that are connected to each other and to a rigid ring (9) by means of a welded joint, which keeps them concentric in the expansion and compression process and joined to the glass tube (4) by the cover (12) and glass- metal transition element (21),
    - A connection flange (5) to connect the solar receiver tube (1) to the one adjacent thereto, the flange (5) being a round metal plate with a hole that houses the absorber tube (3),
    - Some through bolts (20) passing through the connection flange (5) to attach it with flange of the adjacent receiving tube (1).

    摘要翻译: 用于在与另一相邻的太阳能收集器管接合的太阳能接收管(1)的端部处的相邻太阳能接收管之间的连接装置,包括: - 具有至少两个同心波纹管(7, 8),其通过焊接接头彼此连接到刚性环(9),其在膨胀和压缩过程中保持同心,并通过盖(12)和玻璃(12)与玻璃管(4)接合 - 金属过渡元件(21), - 连接凸缘(5),用于将太阳能接收管(1)连接到与其相邻的太阳能接收管(1),所述凸缘(5)是具有孔的圆形金属板,所述孔容纳所述吸收管 ) - 一些穿过连接法兰(5)的贯穿螺栓(20)将其与相邻的接收管(1)的凸缘相连。

    GLASS TUBE
    7.
    发明公开
    GLASS TUBE 审中-公开
    GLASROHR

    公开(公告)号:EP2726420A1

    公开(公告)日:2014-05-07

    申请号:EP12742932.2

    申请日:2012-06-28

    IPC分类号: C03B23/207

    摘要: Two conventional thick- walled, drawn, fused quartz tubes (1,2) are arranged the one within the other. At their forward end of them, each is gripped in a collet (3,4). These forward collets are supported for travel along a track (5) by a distance equivalent to the length of the tubes. A heating, and drawing, station (6) is arranged a short distance back in the length of the tubes from an initial position of the forward chucks. At its furthest end, the outer tube is gripped by a tensioning collet (8), itself supported on the track. The collets are arranged to be driven along the track by respective stepper motors (9, 10, 11). At the heating station, heaters in the form of burners (12) are provided for heating the outer tube. Heat is applied at a rate to soften the outer tube. The forwards stepper motors draw the forward collets (3,4) such that the outer tube stretches. The rear, tensioning collet (8) moves forwards more slowly, whereby the outer tube is stretched sufficiently to reduce it in diameter into contact with the inner tube.

    METALLIC CLAD CAPILLARY TUBING.
    9.
    发明公开
    METALLIC CLAD CAPILLARY TUBING. 失效
    金属涂覆的毛细管。

    公开(公告)号:EP0063580A4

    公开(公告)日:1983-03-23

    申请号:EP81902932

    申请日:1981-10-22

    发明人: WYSOCKI JOSEPH A

    摘要: Metallic clad glass capillary (10) suitable for use in gas chromatography applications. A metallic coating or jacket (12) is formed on the glass capillary (11) by coating the glass capillary with a metal or alloy as the capillary is drawn from the furnace. The metal or alloy employed is one that is substantially chemically inert with respect to the material comprising the glass capillary at the deposition temperature during coating of the metal or alloy onto the glass capillary and forms a hermetic seal around the outer surface of the glass cladding. The metallic coating prevents chemical or mechanical damage to the glass surface to thereby maintain or preserve the nascent strength of the glass capillary. A plastic coating (13) is optionally provided for additional protection of the metal surface.