Device and method for producing hydrogen
    1.
    发明授权
    Device and method for producing hydrogen 有权
    用于生产氢的装置和方法

    公开(公告)号:US07815891B2

    公开(公告)日:2010-10-19

    申请号:US11652151

    申请日:2007-01-11

    摘要: A hydrogen manufacturing apparatus for manufacturing hydrogen by utilizing heat generated in a nuclear plant. The apparatus has a heat exchanger or steam reformer to be brought into contact with cooling water containing tritium produced from the nuclear plant and a tritium permeation suppressing ceramic coating at least either the outer surface or the inner surface of the heat exchanger or steam reformer for suppressing permeation of tritium. Instead of coating with a tritium permeation suppressing ceramic, a structure prepared by combining at least two types of materials having different crystal structures may be used.

    摘要翻译: 一种用于通过利用在核电站中产生的热来制造氢的氢制造装置。 该装置具有热交换器或蒸汽重整器,与核电厂产生的含有氚的冷却水接触,并且至少在热交换器的外表面或内表面或蒸汽重整器的氚渗透抑制陶瓷涂层中进行接触,以抑制 氚渗透。 可以使用通过混合至少两种具有不同晶体结构的材料而制备的结构,而不是用氚渗透抑制陶瓷涂覆。

    Device and method for producing hydrogen
    2.
    发明申请
    Device and method for producing hydrogen 有权
    用于生产氢的装置和方法

    公开(公告)号:US20070231253A1

    公开(公告)日:2007-10-04

    申请号:US11652151

    申请日:2007-01-11

    IPC分类号: H01M8/06

    摘要: A hydrogen manufacturing apparatus for manufacturing hydrogen by utilizing heat generated in a nuclear plant. The apparatus has a heat exchanger or steam reformer to be brought into contact with cooling water containing tritium produced from the nuclear plant and a tritium permeation suppressing ceramic coating at least either the outer surface or the inner surface of the heat exchanger or steam reformer for suppressing permeation of tritium. Instead of coating with a tritium permeation suppressing ceramic, a structure prepared by combining at least two types of materials having different crystal structures may be used.

    摘要翻译: 一种用于通过利用在核电站中产生的热来制造氢的氢制造装置。 该装置具有热交换器或蒸汽重整器,与核电厂产生的含有氚的冷却水接触,并且至少在热交换器的外表面或内表面或蒸汽重整器的氚渗透抑制陶瓷涂层中进行接触,以抑制 氚渗透。 可以使用通过混合至少两种具有不同晶体结构的材料而制备的结构,而不是用氚渗透抑制陶瓷涂覆。

    Rotational polygon mirror and method of manufacturing the same
    4.
    发明授权
    Rotational polygon mirror and method of manufacturing the same 失效
    旋转多面镜及其制造方法

    公开(公告)号:US4826271A

    公开(公告)日:1989-05-02

    申请号:US768219

    申请日:1985-08-22

    IPC分类号: G02B5/09 G02B26/10

    CPC分类号: G02B5/09

    摘要: A rotational polygon mirror and a method of manufacture thereof comprising a base member having a polygonal pole-like portion, the base member being formed of a relatively light-weight material which can be easily molded into a complicated shape, and a coating film which is provided on one or more side surfaces of the polygonal pole-like portion and on which a reflecting mirror surface is formed, the coating film being of at least one layer structure.

    摘要翻译: 一种旋转多面镜及其制造方法,包括:具有多边形极点部分的基座部件,所述基座部件由比较轻质的材料形成,所述材料可以容易地模制成复杂的形状;以及涂膜是 设置在所述多边形极片状部分的一个或多个侧表面上并且在其上形成反射镜表面的涂层膜具有至少一层结构。

    Optical element molding method
    7.
    发明授权
    Optical element molding method 失效
    光学元件成型法

    公开(公告)号:US5549855A

    公开(公告)日:1996-08-27

    申请号:US260969

    申请日:1994-06-15

    摘要: It is an object of this invention to provide an optical element molding method capable of correcting local processing errors in an optical element without increasing the size of an apparatus or raising the manufacturing cost. To achieve this object, an optical element molding method includes the first step of setting molding conditions before molding of said optical element, such that a constant shape error is stably formed on an optical function surface of the optical element, the second step of dividing the optical function surface of the optical element to be molded under the molding conditions into a plurality of regions, and approximating the shape error by using a function so that the divided regions are continuous in the boundaries between the regions, the third step of processing the shape of the cavity surface of the optical-insert member into a shape by which the constant shape error is canceled, on the basis of the function obtained in the second step, and the fourth step of molding the optical element by using the optical insert member processed in the third step.

    摘要翻译: 本发明的目的是提供一种能够在不增加设备尺寸或提高制造成本的情况下校正光学元件中的局部加工误差的光学元件模制方法。 为了实现该目的,光学元件成型方法包括:在成型前设定成形条件的第一步骤,使得在光学元件的光学功能表面上稳定地形成恒定的形状误差;第二步骤, 在模塑条件下将要模制的光学元件的光学功能表面形成多个区域,并且通过使用功能来近似形状误差,使得分割区域在区域之间的边界中是连续的,处理形状的第三步骤 基于第二步骤中获得的功能,将光学插入构件的空腔表面形成为消除恒定形状误差的形状;以及第四步骤,通过使用加工的光学插入构件来模制光学元件 在第三步。

    High-pressure treatment apparatus, feeding method thereto and protection method thereof
    8.
    发明授权
    High-pressure treatment apparatus, feeding method thereto and protection method thereof 有权
    高压处理装置及其输送方法及其保护方法

    公开(公告)号:US06749816B1

    公开(公告)日:2004-06-15

    申请号:US09472150

    申请日:1999-12-27

    IPC分类号: B01J800

    摘要: A high-pressure treatment apparatus comprises a first solid reservoir, a second solid reservoir connected to the first solid reservoir through a first connecting pipe, a high-pressure reactor connected to the second solid reservoir through a second connecting pipe, means for feeding reaction medium into the high-pressure reactor, a first sealing unit and a second sealing unit intervened respectively in the first connecting pipe and second connecting pipe, a first fluid feed unit for feeding a first fluid between the first sealing unit and the second sealing unit, a second fluid feed unit for feeding a second fluid between the second sealing unit and the high-pressure reactor, and means for opening the second sealing unit at the time of shut-off of the first sealing unit and controlling the first fluid and the second fluid to form a pressure-gradient so that pressure between the first sealing unit and the second sealing unit and pressure between the second sealing unit and the high-pressure reactor decrease gradually toward the high-pressure reactor.

    摘要翻译: 高压处理装置包括第一固体储存器,通过第一连接管连接到第一固体储存器的第二固体储存器,通过第二连接管连接到第二固体储存器的高压反应器,用于将反应介质 分别插入到第一连接管和第二连接管中的第一密封单元和第二密封单元,用于在第一密封单元和第二密封单元之间输送第一流体的第一流体供给单元, 用于在所述第二密封单元和所述高压反应器之间供给第二流体的第二流体供给单元,以及用于在所述第一密封单元关闭时打开所述第二密封单元并控制所述第一流体和所述第二流体的装置 以形成压力梯度,使得第一密封单元和第二密封单元之间的压力和第二密封单元与高压之间的压力 反应堆逐渐向高压反应堆逐渐减少。

    Optical element, method of molding the same, and laser scanning optical
system
    9.
    发明授权
    Optical element, method of molding the same, and laser scanning optical system 失效
    光学元件,其成型方法和激光扫描光学系统

    公开(公告)号:US6091532A

    公开(公告)日:2000-07-18

    申请号:US652318

    申请日:1996-05-23

    摘要: It is an object of this invention to provide an optical element molding method capable of correcting local processing errors in an optical element without increasing the size of an apparatus or raising the manufacturing cost. To achieve this object, an optical element molding method includes the first step of setting molding conditions before molding of said optical element, such that a constant shape error is stably formed on an optical function surface of the optical element, the second step of dividing the optical function surface of the optical element to be molded under the molding conditions into a plurality of regions, and approximating the shape error by using a function so that the divided regions are continuous in the boundaries between the regions, the third step of processing the shape of the cavity surface of the optical insert member into a shape by which the constant shape error is canceled, on the basis of the function obtained in the second step, and the fourth step of molding the optical element by using the optical insert member processed in the third step.

    摘要翻译: 本发明的目的是提供一种能够在不增加设备尺寸或提高制造成本的情况下校正光学元件中的局部加工误差的光学元件模制方法。 为了实现该目的,光学元件成型方法包括:在成型前设定成形条件的第一步骤,使得在光学元件的光学功能表面上稳定地形成恒定的形状误差;第二步骤, 在模塑条件下将要模制的光学元件的光学功能表面形成多个区域,并且通过使用功能来近似形状误差,使得分割区域在区域之间的边界中是连续的,处理形状的第三步骤 基于第二步骤中获得的功能,将光学插入构件的空腔表面形成为消除恒定形状误差的形状,以及第四步骤,通过使用加工成的光学插入构件来模制光学元件 第三步。