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    • 22. 发明申请
    • Inflator
    • 气筒
    • US20050116446A1
    • 2005-06-02
    • US10990770
    • 2004-11-18
    • Satoshi MabuchiEiji Sato
    • Satoshi MabuchiEiji Sato
    • B60R21/16B60R21/20B60R21/207B60R21/217B60R21/26
    • B60R21/231B60R21/207B60R21/26B60R21/261
    • An inflator according to the present invention is located inside an airbag of airbag device for supplying inflation gas. The inflator includes a substantially cylindrical body for generating inflation gas, and a substantially tubular retainer made of sheet metal to be mounted around the body for holding the body by fastening a fastening portion. The retainer includes mounting bolts for mounting the airbag to a predetermined mounting position. The retainer includes a fastening portion, a first support portion and a second support portion which are arranged in order along axial direction of the body to abut against a circumference of the body. The fastening portion and the second support portion are located in a substantially opposite area from the first support portion in the circumference of the body based on a center of a cross section of the body taken perpendicularly to the axial direction of the body as the retainer holds the body. In the inflator of the present invention, the inflator body is easily assembled with the retainer disposed inside a folded airbag, which facilitates a folding work of the airbag.
    • 根据本发明的充气机位于用于供应膨胀气体的气囊装置的气囊内部。 充气机包括用于产生充气气体的基本上圆柱形的主体和由金属板制成的大体上管状的保持器,以便通过紧固紧固部分而围绕主体安装以保持本体。 保持器包括用于将安全气囊安装到预定安装位置的安装螺栓。 保持器包括紧固部分,第一支撑部分和第二支撑部分,其沿着主体的轴向依次布置以抵靠主体的圆周。 紧固部分和第二支撑部分位于与身体的圆周上的第一支撑部分基本上相对的区域中,其基于当身体的轴向方向垂直于身体的轴向方向截取的身体的横截面的中心, 身体。 在本发明的充气机中,充气机主体容易地组装有安置在折叠的气囊内的保持器,这有助于气囊的折叠工作。
    • 23. 发明授权
    • Voltage conversion system and method and recording medium
    • 电压转换系统及方法及记录介质
    • US06775115B2
    • 2004-08-10
    • US10318226
    • 2002-12-13
    • Eiji Sato
    • Eiji Sato
    • H02H504
    • H02M5/4585H02M2001/0012
    • A battery voltage is increased in a converter and is input to an inverter that supplies a motor with a motor drive current. A control unit detects input and output voltages of the converter from outputs of voltage sensors and controls the switching in the converter in accordance with the detected input and output voltages. When one of the sensors fails, the control unit estimates the voltage that would have otherwise been detected by the failed voltage sensor based on the switching state in the converter and the voltage detected by the other voltage sensor.
    • 电池电压在转换器中增加,并被输入到向电动机提供电动机驱动电流的逆变器。 控制单元从电压传感器的输出检测转换器的输入和输出电压,并根据检测到的输入和输出电压控制转换器中的开关。 当其中一个传感器发生故障时,控制单元基于转换器中的开关状态和由另一个电压传感器检测到的电压来估计由故障电压传感器另外检测到的电压。
    • 24. 发明授权
    • Consumable electrode type AC pulse arc welding apparatus
    • 消耗电极式交流脉冲弧焊机
    • US5990445A
    • 1999-11-23
    • US56087
    • 1998-04-07
    • Takaaki OgasawaraMasaru TabataMasahiro HommaEiji Sato
    • Takaaki OgasawaraMasaru TabataMasahiro HommaEiji Sato
    • B23K9/173B23K9/09B23K9/12B23K9/23
    • B23K9/092B23K9/124
    • The consumable electrode type AC pulse arc welding apparatus is configured so that the pulse width setting circuit 16 includes the pulse width setting device 16a for hard wire, the pulse width setting device 16b for soft wire and the switch SW2 for switching the pulse width setting device. Further, the frequency setting device 20 includes the frequency setting device 20a for hard wire, the frequency setting device 20b for soft wire and the switch SW3 for switching the frequency setting device. By switching the switch SW1 when switching wire type, within the pulse width setting devices and the frequency setting devices, the selection between the hard wire side and the soft wire side can be simultaneously switched, thereby welding can be implemented with a suitable welding condition according to the wire type.
    • 消耗电极型交流脉冲电弧焊接装置构成为使脉冲宽度设定电路16具有用于硬线的脉冲宽度设定装置16a,软线用的脉冲宽度设定装置16b和用于切换脉冲宽度设定装置的开关SW2 。 此外,频率设定装置20包括用于硬线的频率设定装置20a,软线的频率设定装置20b和用于切换频率设定装置的开关SW3。 通过在切换线路类型时切换开关SW1,在脉冲宽度设定装置和频率设定装置内,可以同时切换硬线侧和软线侧之间的选择,从而可以通过适当的焊接条件实现焊接 到线型。
    • 26. 发明授权
    • Woven fabric having multi-layer structure and composite material
comprising the woven fabric
    • 具有多层结构的织物和包含织造织物的复合材料
    • US5021283A
    • 1991-06-04
    • US379736
    • 1989-07-13
    • Koji TakenakaEiji Sato
    • Koji TakenakaEiji Sato
    • D03D11/00
    • D03D11/02Y10S428/902Y10T428/24149Y10T428/24165
    • Disclosed is a woven fabric having a plurality of fabric layers which are integrated through combined portions formed by interlacing warps or wefts of one of adjacent layers of some of warps or wefts of said one layer and warps or wefts of the other layer or some of warps or wefts of said other layer with common wefts or warps, wherein a set of adjacent four layers comprises recurring structural units comprising (A) a part having one combined portion formed by intermediate two layers, (B) a first non-combined part having no combined portion, (C) a part having two combined portions formed by subsequent two layers, respectively, and (B) a second non-combined part having no combined portion. A honeycomb structure having cells of a shape of tetragons, hexagons or a combination thereof is formed among the entire layers when the multi-layer fabric is expanded. 40-100 wt. % of the fibers constituting the fabric are organic fibers which are infusible or have a melting point of at least 300.degree. C. and have an initial modulus of at least 250 g/d, and 0-60 wt. % of the fibers constituting the fabric are inorganic fibers or metal fibers. A composite material comprising the multi-layer fabric as a reinforcer and a thermoplastic resin as a matrix has good mechanical strengths and thermal resistance and is valuable, e.g., as a structural material for an aircraft.