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    • 4. 发明申请
    • STEAM TURBINE
    • 汽轮机
    • US20090068001A1
    • 2009-03-12
    • US12195897
    • 2008-08-21
    • Hiroshi KAWAKAMI
    • Hiroshi KAWAKAMI
    • F01D1/02
    • F01D25/26F01D9/047F05D2240/55
    • A steam turbine has a stationary section, a turbine rotor, nozzle diaphragms, and a nozzle box. The stationary section includes a casing. The turbine rotor includes moving blade stages arranged in an axial direction. Each of the moving blade stages is provided with moving blades arranged in a circumferential direction, and rotatably provided in the casing. Each of the nozzle diaphragms has turbine nozzles arranged in the circumferential direction provided substantially coaxially with the turbine rotor by being secured to the stationary section. The nozzle box is supported on the stationary section and arranged at an upstream part of the moving blade stages substantially coaxially with the turbine rotor so as to lead steam flowing toward the turbine moving blades. The nozzle box holds at least two stages of the nozzle diaphragms.
    • 蒸汽轮机具有固定部分,涡轮转子,喷嘴隔膜和喷嘴箱。 固定部分包括壳体。 涡轮转子包括沿轴向布置的活动叶片级。 每个动叶片台设置有沿圆周方向布置的可动叶片,并且可旋转地设置在壳体中。 每个喷嘴隔膜具有通过固定到静止部分而沿着与涡轮机转子大致同轴设置的圆周方向布置的涡轮喷嘴。 喷嘴箱支撑在静止部分上,并且布置在与涡轮转子大致同轴的动叶片的上游部分处,以引导蒸汽朝向涡轮机动叶片流动。 喷嘴箱保持喷嘴隔膜的至少两级。
    • 6. 发明申请
    • INKJET RECORDING METHOD
    • 喷墨记录方法
    • US20100091055A1
    • 2010-04-15
    • US12573896
    • 2009-10-06
    • Hiroshi KAWAKAMITeppei YAMAMOTO
    • Hiroshi KAWAKAMITeppei YAMAMOTO
    • B41J29/38
    • B41J2/175B41J2/17596B41J2/18B41J2/19B41J2/195B41J29/377B41J2202/12
    • An inkjet recording method recording on an inkjet recording medium having an ink receiving layer containing at least inorganic microparticles, a water-soluble resin and a crosslinking agent, by ejecting(1) an inkjet ink containing at least a dye, water and a water-soluble organic solvent, wherein 50% by weight or more of the water-soluble organic solvent is a solvent which gives a swelling ratio of 3% or less for the water-soluble resin crosslinked by the crosslinking agent, using (2) an image forming apparatus equipped with an ink circulating apparatus including: (i) a plurality of liquid droplet ejecting elements, (ii) a common flow channel, and (iii) a common circulation channel, wherein the inkjet ink is supplied from the common flow channel to the plurality of liquid droplet ejecting elements, and circulates to the common circulation channel. The inkjet recording method gives a sharp and high-density printing, and is excellent in ejection stability.
    • 一种喷墨记录方法,在喷墨记录介质上记录有至少含有无机微粒的油墨接收层,水溶性树脂和交联剂,喷射(1)至少含有染料,水和水溶性的喷墨油墨, 水溶性有机溶剂,其中,50重量%以上的水溶性有机溶剂是通过交联剂交联的水溶性树脂的溶胀比为3%以下的溶剂,(2)图像形成 装备有墨水循环装置的装置包括:(i)多个液滴喷射元件,(ii)公共流动通道,以及(iii)公共循环通道,其中喷墨油墨从公共流动通道供应到 多个液滴喷射元件,并且循环到公共循环通道。 喷墨记录方法提供清晰且高密度的印刷,并且喷射稳定性优异。
    • 9. 发明申请
    • INKJET RECORDING METHOD AND RECORDED ARTICLE
    • 喷墨记录方法和记录文章
    • US20100207975A1
    • 2010-08-19
    • US12701621
    • 2010-02-08
    • Hiroshi KAWAKAMINaoki KUSUNOKIHideki KAIMOTO
    • Hiroshi KAWAKAMINaoki KUSUNOKIHideki KAIMOTO
    • B41J29/38B41J29/393B41J3/407
    • B41M5/52B41J11/0005B41J29/393B41M5/5218B41M5/5245
    • An image is recorded by ejecting two or more ink compositions on a porous layer that contains inorganic microparticles and a water-soluble resin and has a porosity [%] of 50% or more with a maximum total ejection amount (mL/m2) set at less than 90% of an absorption capacity (mL/m2) of diethylene glycol in the porous layer. The porosity=(absorption capacity of diethylene glycol (mL/m2))/(thickness of porous layer (μm))×100. The maximum total ejection amount=(maximum ejection amount of one dot (mL/m2))×(total amount of ink (%)). An inkjet recording method capable of inhibiting color change from occurring to cause color irregularities when papers are stacked on an image portion within a relatively short time after recording in high-speed processing or processing of a large number of sheets, and capable of stably obtaining images recorded with desired color tone.
    • 通过在包含无机微粒和水溶性树脂的多孔层上喷射两种或更多种油墨组合物并且具有50%以上的孔隙率[%],最大总喷射量(mL / m 2)设定在 在多孔层中小于90%的二甘醇的吸收能力(mL / m 2)。 孔隙率=(二甘醇的吸收容量(mL / m 2))/(多孔层的厚度(μm))×100。 最大总喷射量=(一个点的最大喷射量(mL / m 2))×(油墨总量(%))。 能够在记录高速处理或处理大量纸张之后的相对短的时间内将纸堆积在图像部分上时能够抑制颜色变化的颜色变化的喷墨记录方法,并且能够稳定地获得图像 用所需的色调录制。