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    • 1. 发明授权
    • Fluid injection nozzle
    • 流体注射喷嘴
    • US06439484B2
    • 2002-08-27
    • US09790912
    • 2001-02-23
    • Akinori HarataYukio SawadaYukio Mori
    • Akinori HarataYukio SawadaYukio Mori
    • B05B100
    • F02M51/0678F02M51/0614F02M61/1853
    • At fuel downstream end of a valve body, there is arranged an injection port plate formed into a thin disc shape. In the injection port plate, there are formed four injection ports having fuel inlets in a common circumference on the center axis of the injection port plate. The injection ports are formed in the fuel injecting direction apart from the center axis of the injection port plate. In each injection port, with respect to the injection port axis joining the center of the fuel inlet and the center of the fuel outlet of each injection port, the injection port inner circumference more distant from the center axis of the injection port plate is more inclined toward the outer circumference with respect to the center axis than the injection port inner circumference less distance from the center axis of the injection port plate with respect to the injection port axis.
    • 在阀体的燃料下游端设有形成为薄盘状的注入口板。 在注入口板中,形成有在注入口板的中心轴线上的共同圆周上具有燃料入口的四个注入口。 喷射口形成在与喷射孔板的中心轴线隔开的燃料喷射方向上。 在每个注入口中,相对于连接燃料入口的中心和每个注入口的燃料出口的中心的注入口轴线,更远离注入口板的中心轴线的注入口内圆周更倾斜 相对于中心轴线的外周,相对于喷射口内周距离喷射口板的中心轴线相对于喷射口轴线的距离较小。
    • 7. 发明授权
    • Temperature balancing method for reversing heat exchangers
    • 换热器的温度平衡方法
    • US4034420A
    • 1977-07-12
    • US671437
    • 1976-03-29
    • Akiyoshi GotohTakumi MizokawaYukio SawadaTaichi Katsuki
    • Akiyoshi GotohTakumi MizokawaYukio SawadaTaichi Katsuki
    • F28F27/02F25J5/00F28D17/00
    • F25J5/00
    • Disclosed is a new and improved method for automatically balancing the temperature of a plurality of reversing heat exchanger units provided in parallel relation with each other. The balancing method comprises the steps of: detecting the temperature in portions of each core of the reversing heat exchangers whenever the flow paths of a feed stream and a heat medium stream are changed over, calculating a mean temperature of each core from the said detected values during the most recent certain changeover period from the current time point, calculating a mean temperature for all exchangers from the said calculated mean temperatures of each core, calculating deviation and deviation trend in temperature of respective exchangers depending on a difference between the mean temperature of each core and the mean temperature of all exchangers, feeding back a system deviation in dependence on the said deviation and deviation trend to control valves for balancing the temperature of reversing heat exchangers.
    • 公开了一种用于自动平衡彼此平行设置的多个反向热交换器单元的温度的新的和改进的方法。 平衡方法包括以下步骤:每当切换进料流和热介质流的流路时,检测反向热交换器的每个芯部分的温度,根据所述检测值计算每个核心的平均温度 在从当前时间点开始的最近的某个转换期间,根据所计算的每个核心的平均温度计算所有交换器的平均温度,根据每个交换机的平均温度之间的差异计算各个交换机的温度的偏差和偏差趋势 核心和所有交换器的平均温度,根据所述偏差和偏差趋势反馈系统偏差,以控制用于平衡反向热交换器的温度的阀。
    • 8. 发明授权
    • LED unit with annular mounting structure and mounting method thereof
    • 具有环形安装结构的LED单元及其安装方法
    • US07572021B2
    • 2009-08-11
    • US11627437
    • 2007-01-26
    • Yukio SawadaYoshifumi Fujisaki
    • Yukio SawadaYoshifumi Fujisaki
    • G03B15/03F21V17/10F21V21/30
    • G03B15/00
    • A mounting structure of an LED includes an LED unit including an LED, a lens element in front of the LED, and a collar around the lens element; a support member including a through-hole through which the lens element of the LED unit is exposed and an annular portion; an annular contacting surface formed on one of the annular portion as an annular concave surface and the collar as an annular convex surface; an annular contacting portion, formed on the other of the annular portion and the collar, wherein an orientation of the LED unit is adjusted by changing a relative contacting position between the annular contacting surface and the annular contacting portion; and a fixing device which fixes the LED unit to the support member while maintaining the contacting position of the annular contacting surface and the annular contacting portion after the adjustment.
    • LED的安装结构包括LED单元,其包括LED,LED前面的透镜元件和围绕透镜元件的凸缘; 支撑构件,其包括LED单元的透镜元件露出的通孔和环形部分; 环形接触表面,其形成在作为环形凹面的所述环形部分中的一个上,并且所述套环形成为环形凸起表面; 形成在所述环形部分和所述套环中的另一个上的环形接触部分,其中通过改变所述环形接触表面和所述环形接触部分之间的相对接触位置来调节所述LED单元的取向; 以及固定装置,其将LED单元固定到支撑构件,同时在调节之后保持环形接触表面和环形接触部分的接触位置。
    • 10. 发明授权
    • Thermal flow meter with less turbulence in fluid flow
    • 流量流量较小的热流量计
    • US5894088A
    • 1999-04-13
    • US883340
    • 1997-06-26
    • Yukio SawadaYukio MoriRyo NagasakaTomoyuki Takiguchi
    • Yukio SawadaYukio MoriRyo NagasakaTomoyuki Takiguchi
    • G01F1/68F02D35/00F02D41/18G01F1/684G01F5/00
    • G01F1/684F02D41/187G01F1/6842G01F5/00
    • A central member of a sensor unit is inserted through a sensor unit mounting hole of a cylindrical body having a main passage and the sensor unit is assembled on the cylindrical body. The sensor unit comprises the central member which is provided at the center of the main passage and has internally a bypass passage, a flow sensor provided in the bypass passage, a rib which supports the central member, a mounting section which secures the rib to the cylindrical body, an electronic circuit assembled on the rib, and a connector section retaining terminals being connected electrically to the electronic circuit section. Positioning, mounting and securing of the flow sensor can be made simultaneously by a simple process to insert the sensor sensor unit through the hole. Turbulence, eccentricity and others in the upstream air are reduced so that the flow rate of a highly rectified fluid can be measured.
    • 传感器单元的中心构件通过具有主通道的圆筒体的传感器单元安装孔插入,并且传感器单元组装在圆柱体上。 传感器单元包括设置在主通道中心并具有旁路通道的中心构件,设置在旁通通道中的流量传感器,支撑中心构件的肋,将肋固定到 圆柱体,组装在肋上的电子电路,以及与电子电路部分电连接的连接器部分保持端子。 流量传感器的定位,安装和固定可以通过简单的过程将传感器传感器单元插入孔中同时进行。 上游空气中的湍流,偏心等减少,可以测量高精度流体的流量。