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    • 22. 发明授权
    • Microsolenoid coil and its manufacturing method
    • 微电磁线圈及其制造方法
    • US06725528B1
    • 2004-04-27
    • US09914542
    • 2001-08-29
    • Takashi Nishi
    • Takashi Nishi
    • H01F706
    • H01F17/0033H01F41/041Y10T29/4902Y10T29/49073Y10T29/49155Y10T29/49156Y10T428/149Y10T428/19Y10T428/24
    • A photosensitive material is coated on an insulating material (13) stacked on a substrate (1) (FIG. 16A), and exposed and developed using a mask having a light-shielding film capable of controlling a light transmittance from 100% to 0% annularly and continuously to form a spiral photosensitive material (FIG. 16B). After conducting treatment at a high temperature, the insulating material under the photosensitive material is spirally formed by etching (FIG. 16C). A metal (12) is stacked on the substrate (FIG. 16D), and a photosensitive material is coated (FIG. 16E). The photosensitive material is exposed and developed using a mask having an annular light-shielding film with a light transmittance of 0% to leave the photosensitive material covering only the metal on the base of the spiral structure (FIG. 16F). After treatment at a high temperature is conducted and the metal exposed is etched (FIG. 16G), the photosensitive material is removed (FIG. 16H).
    • 将感光材料涂覆在层叠在基板(1)上的绝缘材料(13)(图16A)上,并且使用具有能够将透光率从100%控制到0%的遮光膜的掩模曝光和显影, 环形并连续地形成螺旋感光材料(图16B)。 在高温下进行处理之后,感光材料下面的绝缘材料通过蚀刻而螺旋形成(图16C)。 金属(12)层叠在基板(图16D)上,并且涂敷感光材料(图16E)。 使用具有0%的透光率的环形遮光膜的掩模将感光材料曝光和显影,以使感光材料仅覆盖螺旋结构的基底上的金属(图16F)。 在高温下进行处理并暴露金属(图16G)之后,去除感光材料(图16H)。
    • 27. 发明授权
    • Method of manufacturing a longitudinal microsolenoid
    • 制造纵向微电极的方法
    • US07107668B2
    • 2006-09-19
    • US10817273
    • 2004-04-02
    • Takashi Nishi
    • Takashi Nishi
    • H01F7/06
    • H01F17/0033H01F41/041Y10T29/4902Y10T29/49073Y10T29/49155Y10T29/49156Y10T428/149Y10T428/19Y10T428/24
    • A photosensitive material is coated on an insulating material (13) stacked on a substrate (1) (FIG. 16A), and exposed and developed using a mask having a light-shielding film capable of controlling a light transmittance from 100% to 0% annularly and continuously to form a spiral photosensitive material (FIG. 16B). After conducting treatment at a high temperature, the insulating material under the photosensitive material is spirally formed by etching (FIG. 16C). A metal (12) is stacked on the substrate (FIG. 16D), and a photosensitive material is coated (FIG. 16E). The photosensitive material is exposed and developed using a mask having an annular light-shielding film with a light transmittance of 0% to leave the photosensitive material covering only the metal on the base of the spiral structure (FIG. 16F). After treatment at a high temperature is conducted and the metal exposed is etched (FIG. 16G), the photosensitive material is removed (FIG. 16H).
    • 将感光材料涂覆在层叠在基板(1)上的绝缘材料(13)(图16A)上,并使用具有能够将透光率从100%控制到0的遮光膜的掩模进行曝光和显影 %环形和连续地形成螺旋感光材料(图16B)。 在高温下进行处理之后,感光材料下面的绝缘材料通过蚀刻而螺旋形成(图16C)。 金属(12)堆叠在基板上(图16D),并且涂覆感光材料(图16E)。 使用具有0%的透光率的环形遮光膜的掩模将感光材料曝光和显影,以使感光材料仅覆盖螺旋结构的基底上的金属(图16F)。 在高温下进行处理并暴露金属(图16G)之后,去除感光材料(图16H)。
    • 28. 发明申请
    • Web page update notification method and web page update notification device
    • 网页更新通知方式和网页更新通知装置
    • US20050108363A1
    • 2005-05-19
    • US10720690
    • 2003-11-25
    • Shin TorigoeTakashi Nishi
    • Shin TorigoeTakashi Nishi
    • G06F12/00G06F13/00G06F15/16G06F17/30
    • G06F16/9535
    • In order to provide an update notification device and method, which can output update notifications from which whether information meaningful to a user on a Web page was updated or not can be easily determined, the invention is an update notification device and method for repeatedly accessing at least one Web site identifiable with a preset address and outputting a notification message including the presence or absence of the update to the outside if any web page has been updated in the Web site. In this case, updated data is extracted from the updated Web page, and, in outputting, one or both of the title of the updated data and the updated data and the address of the Web page are added to the notification message.
    • 为了提供可以容易地确定能够输出更新通知的更新通知装置和方法,所述更新通知装置和方法可以从其中更新对网页上的用户有意义的信息是否被更新,本发明是一种更新通知装置和方法, 至少一个网站可以用预设地址识别,并且如果网站中已经更新了任何网页,则向外部输出包括更新的存在或不存在的通知消息。 在这种情况下,从更新的网页提取更新的数据,并且在输出时,更新的数据的标题和更新的数据的标题以及网页的地址中的一个或两个被添加到通知消息中。
    • 29. 发明授权
    • Neutron shielding materials and a cask for spent fuel
    • 中子屏蔽材料和乏燃料的桶
    • US06797972B2
    • 2004-09-28
    • US10235644
    • 2002-09-06
    • Mamoru KamoshidaMasashi OdaTakashi NishiKiminori IgaMasashi Shimizu
    • Mamoru KamoshidaMasashi OdaTakashi NishiKiminori IgaMasashi Shimizu
    • G21F300
    • G21F1/10
    • A high-polymer neutron shielding material which scarcely reduces the hydrogen number density when exposed to a high temperature of 150 to 200° C. for a long time period A heat-setting type epoxy resin is employed. The base resin is selected from various epoxy resins such as bisphenol A type epoxy resin. The hardener is selected from alicyclic polyamine, polyamide amine, aromatic polyamine, acid anhydride, and so on. These materials are mixed and hardened at a temperature higher than the room temperature. To give a flame resistance to the hardened resin, a fire retardant such as magnesium hydroxide is added to the mixture. To improve the neutron shielding performance of the hardened resin, a neutron absorbing material is added to the mixture. Further, to increase the moderating performance, hydrogenated bisphenol A epoxy resin is used as the base resin or metal hydride or hydrogen absorbing alloy is added. The present neutron shielding material works as a significant neutron shielding material as its hydrogen number density does not go down for a long time under a high-temperature condition and the neutron shielding performance does not go down.
    • 高分子中子屏蔽材料,当长时间暴露于150〜200℃的高温时,几乎不降低氢数密度。采用热固型环氧树脂。 基础树脂选自各种环氧树脂如双酚A型环氧树脂。 固化剂选自脂环族多胺,聚酰胺胺,芳香族多胺,酸酐等。 这些材料在高于室温的温度下混合并硬化。 为了赋予硬化树脂耐火性,向混合物中加入阻燃剂如氢氧化镁。 为了改善硬化树脂的中子屏蔽性能,向混合物中加入中子吸收材料。 此外,为了提高调节性能,使用氢化双酚A环氧树脂作为基础树脂,或添加金属氢化物或吸氢合金。 本中子屏蔽材料作为重要的中子屏蔽材料起作用,因为其氢数密度在高温条件下长时间不会下降,并且中子屏蔽性能不下降。
    • 30. 发明授权
    • Method of treating radioactive liquid wastes containing surface active agents
    • 含有表面活性剂的放射性废液处理方法
    • US06483004B1
    • 2002-11-19
    • US09469627
    • 1999-12-22
    • Toshiaki MatsuoTakashi NishiTakayuki MatsumotoMasami MatsudaAtsushi Yukita
    • Toshiaki MatsuoTakashi NishiTakayuki MatsumotoMasami MatsudaAtsushi Yukita
    • G21F900
    • G21F9/04
    • Radioactive laundry liquid wastes are supplied in a liquid waste heating vessel. Hydrogen peroxide and an alkali solution are supplied to the liquid waste heating vessel. pH of radioactive laundry liquid wastes is adjusted to 7 or higher by the alkali solution. The radioactive laundry liquid wastes are heated to 50° C. or higher by a heating device. The heated radioactive laundry liquid wastes are introduced to first and second aeration vessels. Ozone is supplied from an ozone generator by way of an ozone gas discharge port to the first aeration vessel. Ozone discharged from the first aeration vessel is introduced from the ozone gas discharge port to the second aeration vessel. Therefore, the amount of ozone dissolved into the radioactive laundry liquid wastes is increased so that the amount of hydroxy radicals formed for decomposing organic substances increases, since the laundry liquid wastes are heated to 50° C. or higher under the presence of hydrogen peroxide.
    • 放射性洗衣液废液供应在液体废物加热容器中。 将过氧化氢和碱溶液供给至废液加热容器。 放射性洗衣液废液的pH值通过碱溶液调节至7以上。 放射性洗衣液废物通过加热装置加热至50℃以上。 加热的放射性洗涤液体废物被引入第一和第二曝气容器。 臭氧从臭氧发生器通过臭氧气体排放口供应到第一通气容器。 从第一曝气容器排出的臭氧从臭氧气体排放口引入第二曝气容器。 因此,由于在过氧化氢的存在下将洗衣液废弃物加热至50℃以上,所以溶解于放射性洗涤用液体废物中的臭氧的量增加,从而形成用于分解有机物质的羟基自由基的量增加。