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    • 1. 发明申请
    • Plasma Cutting Method
    • 等离子切割方法
    • US20110297652A1
    • 2011-12-08
    • US12664918
    • 2008-06-18
    • Akira FurujoMasatoshi MotoyamaNobuo ItoGo SasakiTakayuki TakaradaKayoko Morishita
    • Akira FurujoMasatoshi MotoyamaNobuo ItoGo SasakiTakayuki TakaradaKayoko Morishita
    • B23K10/00
    • B23K10/00B23K35/383
    • [PROBLEMS] To reduce the generation of fume in cutting a material to be cut typified by a steel plate with plasma.[MEANS FOR SOLVING PROBLEMS] A plasma cutting method comprising spraying a plasma arc directed through a material to be cut from a plasma torch nozzle to cut the cutting material, wherein a plasma arc formed by supplying a mixed gas as a plasma gas composed of a single gas or a plurality of gases selected from halogen gases and rare gases belonging to up to the second row elements of the periodic table and a hydrogen gas, and oxygen-, argon- or nitrogen-containing gas to a part around an electrode, and electrifying a part between the electrode and the nozzle or between the electrode and the cutting material is sprayed toward the cutting material to cut the cutting material, or wherein a single gas or a plurality of gases selected from halogen gases or rare gases belonging to up to the second row elements of the periodic table and a hydrogen gas, together with the plasma arc composed mainly of an oxygen, argon or nitrogen gas, is sprayed toward the cutting material to cut the cutting material.
    • [问题]减少用等离子体钢板切割代替的待切割材料中的烟气的产生。 解决问题的方法等离子体切割方法包括从等离子体喷枪喷射待切割材料的等离子体电弧以切割切割材料,其中通过供给作为等离子体气体的混合气体形成的等离子体电弧 选自属于周期表的第二排元件的卤素气体和稀有气体的单一气体或多种气体和氢气,以及含氧,含氩或含氮气体到电极周围的部分,以及 将电极和喷嘴之间或电极和切割材料之间的部分通电朝向切割材料喷射以切割切割材料,或者其中选自卤素气体或稀有气体中的单一气体或多种气体属于 周期表的第二排元件和氢气以及主要由氧气,氩气或氮气组成的等离子弧被喷射到切割材料上以切割切割 太棒了
    • 2. 发明授权
    • Plasma cutting method for cutting a carbon steel plate and for reducing fine particles
    • 用于切割碳钢板和减少细小颗粒的等离子切割方法
    • US08598487B2
    • 2013-12-03
    • US12664918
    • 2008-06-18
    • Akira FurujoMasatoshi MotoyamaNobuo ItoGo SasakiTakayuki TakaradaKayoko Morishita
    • Akira FurujoMasatoshi MotoyamaNobuo ItoGo SasakiTakayuki TakaradaKayoko Morishita
    • B23K10/00
    • B23K10/00B23K35/383
    • [PROBLEMS] To reduce the generation of fume in cutting a material to be cut typified by a steel plate with plasma.[MEANS FOR SOLVING PROBLEMS] A plasma cutting method comprising spraying a plasma arc directed through a material to be cut from a plasma torch nozzle to cut the cutting material, wherein a plasma arc formed by supplying a mixed gas as a plasma gas composed of a single gas or a plurality of gases selected from halogen gases and rare gases belonging to up to the second row elements of the periodic table and a hydrogen gas, and oxygen-, argon- or nitrogen-containing gas to a part around an electrode, and electrifying a part between the electrode and the nozzle or between the electrode and the cutting material is sprayed toward the cutting material to cut the cutting material, or wherein a single gas or a plurality of gases selected from halogen gases or rare gases belonging to up to the second row elements of the periodic table and a hydrogen gas, together with the plasma arc composed mainly of an oxygen, argon or nitrogen gas, is sprayed toward the cutting material to cut the cutting material.
    • [问题]减少用等离子体钢板切割代替的待切割材料中的烟气的产生。 解决问题的方法等离子体切割方法包括从等离子体喷枪喷射待切割材料的等离子体电弧以切割切割材料,其中通过供给作为等离子体气体的混合气体形成的等离子体电弧 选自属于周期表的第二排元件的卤素气体和稀有气体的单一气体或多种气体和氢气,以及含氧,含氩或含氮气体到电极周围的部分,以及 将电极和喷嘴之间或电极和切割材料之间的部分通电朝向切割材料喷射以切割切割材料,或者其中选自卤素气体或稀有气体中的单一气体或多种气体属于 周期表的第二排元件和氢气以及主要由氧气,氩气或氮气组成的等离子弧被喷射到切割材料上以切割切割 太棒了
    • 3. 发明授权
    • Electronic camera with plurality of imaging mode including a self imaging mode
    • 具有包括自身成像模式的多种成像模式的电子照相机
    • US08421896B2
    • 2013-04-16
    • US12968718
    • 2010-12-15
    • Go Sasaki
    • Go Sasaki
    • H04N5/222
    • H04N5/232H04N5/23241H04N5/2351H04N5/2353
    • An electronic camera includes an imager. An imager repeatedly outputs image data representing a forward scene of a camera housing. A first requester requests a monitor having a screen directed to backward of the camera housing to display a moving image based on the image data outputted from the imager. A selector selects any one of a plurality of imaging modes including a self imaging mode in response to a mode selection operation. An adjuster adjusts an imaging condition in a manner to be adapted to the imaging mode selected by the selector. A restrictor restricts the display operation of the monitor after a first time period has elapsed since the timing of the mode selection operation, when the imaging mode selected by the selector is the self imaging mode.
    • 电子照相机包括成像器。 成像器重复地输出表示相机外壳的前进场景的图像数据。 第一请求者请求具有针对照相机外壳后方的屏幕的显示器,以基于从成像器输出的图像数据显示运动图像。 选择器响应于模式选择操作,选择包括自身成像模式的多个成像模式中的任何一个。 调节器以适于由选择器选择的成像模式的方式调整成像条件。 当由选择器选择的成像模式是自我成像模式时,限制器在从模式选择操作的定时经过第一时间段之后限制监视器的显示操作。
    • 6. 发明授权
    • Storage container for liquid chlorosilane and closing lid therefor
    • 液氯氯硅烷储存容器及其盖子
    • US08297304B2
    • 2012-10-30
    • US12462946
    • 2009-08-11
    • Go SasakiTakanori Ito
    • Go SasakiTakanori Ito
    • F16J13/02F17C3/12
    • F16K5/0631F16K27/067Y10T137/4238Y10T137/5109Y10T137/5283
    • The storage container for a liquid chlorosilane of the present invention comprises, a tank which stores the liquid chlorosilane, a valve which is connected to the tank and to which an external pipe can be connected detachably, and a closing lid which seals the valve when the external pipe is detached from the valve. The valve comprises a housing and a valve body provided in the housing. The closing lid has a lid body having a sealing surface contacting the connecting surface of the connecting flange, a supply pipe which supplies an inert gas to a space between the closing lid and the valve body in the housing, a supply valve which opens or closes the supply pipe, a discharge pipe which discharges a gas in the space, and a discharge valve which opens or closes the discharge pipe.
    • 本发明的液体氯硅烷的储存容器包括存储液体氯硅烷的罐,连接到罐的可拆卸地连接有外部管的阀,以及当阀 外部管道与阀门分离。 阀包括壳体和设置在壳体中的阀体。 关闭盖具有盖体,其具有与连接凸缘的连接表面接触的密封面,供给管,其将惰性气体供应到壳体中的关闭盖和阀体之间的空间;打开或关闭的供给阀 供给管,排出空间中的气体的排出管和打开或关闭排出管的排出阀。
    • 7. 发明申请
    • Storage container for liquid chlorosilane and closing lid therefor
    • 液氯氯硅烷储存容器及其盖子
    • US20100038362A1
    • 2010-02-18
    • US12462946
    • 2009-08-11
    • Go SasakiTakanori Ito
    • Go SasakiTakanori Ito
    • B65D90/22B65D85/84
    • F16K5/0631F16K27/067Y10T137/4238Y10T137/5109Y10T137/5283
    • The storage container for a liquid chlorosilane of the present invention comprises, a tank which stores the liquid chlorosilane, a valve which is connected to the tank and to which an external pipe can be connected detachably, and a closing lid which seals the valve when the external pipe is detached from the valve. The valve comprises a housing and a valve body provided in the housing. The closing lid has a lid body having a sealing surface contacting the connecting surface of the connecting flange, a supply pipe which supplies an inert gas to a space between the closing lid and the valve body in the housing, a supply valve which opens or closes the supply pipe, a discharge pipe which discharges a gas in the space, and a discharge valve which opens or closes the discharge pipe.
    • 本发明的液体氯硅烷的储存容器包括存储液体氯硅烷的罐,连接到罐的可拆卸地连接有外部管的阀,以及当阀 外部管道与阀门分离。 阀包括壳体和设置在壳体中的阀体。 关闭盖具有盖体,其具有与连接凸缘的连接表面接触的密封面,供给管,其将惰性气体供应到壳体中的关闭盖和阀体之间的空间;打开或关闭的供给阀 供给管,排出空间中的气体的排出管和打开或关闭排出管的排出阀。
    • 9. 发明申请
    • ELECTRONIC CAMERA
    • 电子相机
    • US20110149105A1
    • 2011-06-23
    • US12968718
    • 2010-12-15
    • Go Sasaki
    • Go Sasaki
    • H04N5/228
    • H04N5/232H04N5/23241H04N5/2351H04N5/2353
    • An electronic camera includes an imager. An imager repeatedly outputs image data representing a forward scene of a camera housing. A first requester requests a monitor having a screen directed to backward of the camera housing to display a moving image based on the image data outputted from the imager. A selector selects any one of a plurality of imaging modes including a self imaging mode in response to a mode selection operation. An adjuster adjusts an imaging condition in a manner to be adapted to the imaging mode selected by the selector. A restrictor restricts the display operation of the monitor after a first time period has elapsed since the timing of the mode selection operation, when the imaging mode selected by the selector is the self imaging mode.
    • 电子照相机包括成像器。 成像器重复地输出表示相机外壳的前进场景的图像数据。 第一请求者请求具有针对照相机外壳后方的屏幕的显示器,以基于从成像器输出的图像数据显示运动图像。 选择器响应于模式选择操作,选择包括自身成像模式的多个成像模式中的任何一个。 调节器以适于由选择器选择的成像模式的方式调整成像条件。 当由选择器选择的成像模式是自我成像模式时,限制器在从模式选择操作的定时经过第一时间段之后限制监视器的显示操作。
    • 10. 发明申请
    • Method of packing silicon and packing body
    • 硅和包装体的包装方法
    • US20090056279A1
    • 2009-03-05
    • US12230141
    • 2008-08-25
    • Go Sasaki
    • Go Sasaki
    • B65B11/58
    • B65D31/04B65D31/08B65D81/03
    • When packing a polycrystalline silicon with a two-layer structured packing body comprising an inner bag (1a) and an outer bag (1b), there are used the inner bag (1a) and the outer bag (1b) having bottom sections (4a, 4b) provided with a pair of tucked sections, the shape of which is substantially a triangle in plan view, formed by inward-folding the portions continued from both of rectangular side face sections (3a, 3b), and when storing the inner bag (1a) that stores the polycrystalline silicon therein into the outer bag (1b), the bottom sections (4a, 4b) are superimposed with the respective tucked sections (6a, 6b) of the inner bag (1a) and the outer bag (1b) displaced from each other by 90° so that they do not overlap on each other.
    • 当用包括内袋(1a)和外袋(1b)的双层规整填料体包装多晶硅时,使用内袋(1a)和外袋(1b),其具有底部(4a, 4b),其设置有一对折叠部分,其形状在平面图中基本上为三角形,通过向内折叠从两个矩形侧面部分(3a,3b)连续的部分形成,并且当存储内袋( 如图1a所示,其中存储多晶硅到外袋(1b)中,底部(4a,4b)与内袋(1a)和外袋(1b)的各个折叠部分(6a,6b)重叠, 彼此相差90°,使得它们彼此不重叠。