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    • 1. 发明申请
    • MULTI-PORT ILLUMINATING AND VIEWING UNIT
    • 多端口照明和查看单元
    • US20020067622A1
    • 2002-06-06
    • US09727649
    • 2000-12-01
    • J M CANTY, INC
    • Gary K. WalckRichard L. Marinelli
    • G02B006/04
    • F21V33/0052B01J3/004F21W2131/411G02B23/2469G02B23/2476G02B23/26
    • An illuminating and viewing unit for illuminating the interior of a vessel with source radiation and observing the vessel interior comprises a housing including a front wall facing the vessel interior. The front wall is of a material that does not transmit the source radiation, and includes one or more illumination ports individually fused into the front wall that transmit the source radiation to the vessel interior. A detection port is also individually fused into the front wall for transmitting detectable radiation along a detection path from the vessel interior to a radiation detector mounted in the housing. The optical isolation of the illumination and detection ports in the front wall prevents unwanted internal reflection of source radiation into the detection path, and allows for independent selection of port materials and configurations, while maintaining a hermetic seal between the housing and the internal contents of the vessel.
    • 用于用源辐射照射容器内部并观察容器内部的照明和观察单元包括壳体,其包括面向容器内部的前壁。 前壁是不透射源辐射的材料,并且包括单独融合到前壁中的一个或多个照明端口,其将源辐射传输到容器内部。 检测端口也单独地融合到前壁中,用于沿着从容器内部到安装在壳体中的辐射探测器的检测路径传输可检测的辐射。 前壁中的照明和检测端口的光学隔离防止源辐射不期望地内部反射到检测路径中,并且允许独立选择端口材料和构造,同时保持壳体与内部内容物之间的气密封 船只。
    • 8. 发明申请
    • SIGHT GLASS COVER WITH INTEGRATED CLEANING DEVICE
    • US20190243129A1
    • 2019-08-08
    • US16316492
    • 2017-07-06
    • Bayer Aktiengesellschaft
    • Andreas SZALOKI
    • G02B27/00B01J3/00G02B7/00
    • G02B27/0006B01J3/004B08B3/02G02B7/007
    • The invention relates to a sight glass cover (10) with an integrated cleaning device, for closing an opening (14), comprising a sight glass (18), which has a glass edge (57) and a glass inner side (20), wherein the glass inner side (20) is facing the opening (14) when a sight glass cover (10) is placed on the opening (14), and a frame device (16), which encloses the sight glass (18) at least in the region of the glass edge (57), wherein the frame device (16) has a frame inner side (32), which is facing away from the glass inner side (20) and lies against a wall region 34 surrounding the opening (14) when a sight glass cover (10) is placed on the opening (14), a cleaning device (22), which is formed in the frame device (16) and has at least one channel (24) with an inlet opening (26) and an outlet opening (28) at a distance from the inlet opening (26), wherein the outlet opening (28) of the channel (24) is formed between the glass inner side (20) and the frame inner side (32), and the channel (24) is designed and formed in such a way that the glass inner side (20) of the sight glass (18) can be at least partially wetted with a medium (30) fed into the channel (24) by way of the inlet opening (26) and leaving by way of the outlet opening (28). This is a way of providing a cover with a sight glass in the case of which the sight glass can be cleaned in a closed state of the cover with little effort.
    • 9. 发明授权
    • Safe pressure system viewing port
    • 安全压力系统观察口
    • US08916245B2
    • 2014-12-23
    • US12455934
    • 2009-06-08
    • Joseph Alexander Mansour, II
    • Joseph Alexander Mansour, II
    • E06B3/00E06B7/00F21V33/00G02B27/00B01J3/00H01L21/00
    • B01J3/004B01J3/00H01L21/00
    • A fracture-safe viewport for a pressure system having a pressure port which is pumped by said pressure system to a pressure above or below atmospheric pressure, comprising a plurality of panes each capable of passing electromagnetic radiation therethrough, each pane being mounted inside a tubular structure and being hermetically sealed to the wall of the pressure chamber. Each of the panes may be a different material or any combination of materials may be used from the group comprising sapphire, glass and quartz or any other material through which a high powered laser or other electromagnetic beam may be directed without adverse consequences. Highly pure, defect-free, ultra-polished, single-crystal sapphire is preferred. Spacing between the panes is used in most embodiments to avoid shrapnel damage in case of catastrophic failure of a pane. Half-donut shaped or chimney-shaped strain relief mounts are used in some embodiments to relieve strain caused by differential rates of thermal expansion when the structure is heated.
    • 一种用于压力系统的破裂保护视口,其具有由所述压力系统泵送到高于或低于大气压力的压力的压力端口,包括多个能够通过电磁辐射的窗格,每个窗格安装在管状结构内 并且密封到压力室的壁上。 每个窗格可以是不同的材料,或者可以从包括蓝宝石,玻璃和石英的组或任何其它材料中使用任何材料的组合,通过其可以引导高功率激光或其他电磁束而没有不利后果。 高纯度,无缺陷,超抛光,单晶蓝宝石是首选。 在大多数实施例中,使用窗格之间的间距以避免在窗格的灾难性故障的情况下的弹片损坏。 在一些实施例中使用半环形或烟囱形应变消除装置来减轻当结构被加热时由不同热膨胀率引起的应变。
    • 10. 发明授权
    • Multi-port illuminating and viewing unit
    • 多端口照明和观察单元
    • US06450655B1
    • 2002-09-17
    • US09727649
    • 2000-12-01
    • Gary WalckRichard Marinelli
    • Gary WalckRichard Marinelli
    • G03B1502
    • F21V33/0052B01J3/004F21W2131/411G02B23/2469G02B23/2476G02B23/26
    • An illuminating and viewing unit for illuminating the interior of a vessel with source radiation and observing the vessel interior comprises a housing including a front wall facing the vessel interior. The front wall is of a material that does not transmit the source radiation, and includes one or more illumination ports individually fused into the front wall that transmit the source radiation to the vessel interior. A detection port is also individually fused into the front wall for transmitting detectable radiation along a detection path from the vessel interior to a radiation detector mounted in the housing. The optical isolation of the illumination and detection ports in the front wall prevents unwanted internal reflection of source radiation into the detection path, and allows for independent selection of port materials and configurations, while maintaining a hermetic seal between the housing and the internal contents of the vessel.
    • 用于用源辐射照射容器内部并观察容器内部的照明和观察单元包括壳体,其包括面向容器内部的前壁。 前壁是不透射源辐射的材料,并且包括单独融合到前壁中的一个或多个照明端口,其将源辐射传输到容器内部。 检测端口也单独地融合到前壁中,用于沿着从容器内部到安装在壳体中的辐射探测器的检测路径传输可检测的辐射。 前壁中的照明和检测端口的光学隔离防止源辐射不期望地内部反射到检测路径中,并且允许独立选择端口材料和构造,同时保持壳体与内部内容物之间的气密封 船只。