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    • 2. 发明授权
    • Thermal power generating timepiece and rear cover for thermal power generating timepiece
    • 火力发电时计和后盖用于发电时间表
    • US06970399B2
    • 2005-11-29
    • US10030166
    • 2001-05-31
    • Shigeru WatanabeAtsushi MurakamiYumiko Sakamaki
    • Shigeru WatanabeAtsushi MurakamiYumiko Sakamaki
    • G04B37/18G04C10/00G04C3/00G04B37/00
    • G04C10/00G04B37/18
    • A thermoelectric power generating timepiece (1) comprises a dial (30), a movement (40), and a heat conduction sheet (50), provided within an enclosed space, defined by a case (10) made of metal, with a glass (20) fixedly attached thereto, and a case back (70), and further comprises a thermoelectric element (60), housed in a gap between the heat conduction sheet (50) and the case back (70). The case back 70 is made of two kinds of materials each having a thermal conductivity differing from that of the other. The case back (70) is made up of a heat conducting part (71) made of material, such as metal, and the like, having a high thermal conductivity, and formed in a shape larger in outer size than the thermoelectric element (60), so as to be disposed opposite to the thermoelectric element (60), and a heat insulating part (72) made of material having a low thermal conductivity such as plastics, and the like, and formed so as to be disposed on the outside of the heat conducting part (71).
    • 一种热电发电时钟(1)包括设置在由金属制的壳体(10)限定的封闭空间内的玻璃(30),移动体(40)和导热片(50),玻璃 (20)和壳体背部(70),并且还包括容纳在导热片(50)和壳体背(70)之间的间隙中的热电元件(60)。 背面70由两种不同于另一种材料的导热性材料制成。 背面(70)由导热部(71)构成,导热部(71)由金属等材料制成,具有高导热性,并形成为比热电元件(60)大的外形尺寸 ),以与热电元件(60)相对的方式设置,以及由具有低导热性的材料(例如塑料等)制成的隔热部件72,并且被形成为设置在外部 的导热部(71)。
    • 6. 发明授权
    • Resin composition for fuel cell separator, process for producing same, and fuel cell separator
    • 用于燃料电池隔板的树脂组合物,其制造方法和燃料电池隔板
    • US08663871B2
    • 2014-03-04
    • US12935697
    • 2009-07-29
    • Takayoshi ShimizuAtsushi Murakami
    • Takayoshi ShimizuAtsushi Murakami
    • H01M8/04C08K3/04
    • H01M8/0221C08L63/00H01M8/0213H01M8/0226Y02P70/56
    • A fuel cell separator is produced by forming a fuel cell separator resin composition including, as essential components, (A) an epoxy resin; (B) a curing agent; (C) a curing accelerator; and (D) a carbon material, in which the content of the (D) is 50 to 85% by mass based on the total amount of the composition, in which the (D) includes high crystalline artificial graphite having an average particle size of 100 μm or more and less than 150 μm in an amount of 5 to 100% by mass based on the total amount of the (D), and in which the content of the (C) is 0.1 to 20 parts by weight per 100 parts by weight of the (B). The resin composition is excellent in electric conductivity and fluidity and contains little impurities, and can provide a fuel cell separator which is excellent in electric conductivity and dimensional accuracy, and has no fear of causing deterioration in performance of a solid electrolyte.
    • 通过形成燃料电池隔板树脂组合物制造燃料电池隔板,所述燃料电池隔板树脂组合物包含作为必要成分的(A)环氧树脂; (B)固化剂; (C)固化促进剂; 和(D)其中(D)的含量相对于组合物的总量为50〜85质量%的碳材料,其中(D)包括平均粒径为(D)的高结晶人造石墨 100质量%以上且小于150μm,相对于(D)的总量为5〜100质量%,其中(C)的含量为0.1〜20重量份/ 100份 (B)的重量。 树脂组合物的导电性和流动性优异,杂质少,能够提供导电性和尺寸精度优异的燃料电池隔板,不会引起固体电解质的性能劣化。
    • 9. 发明授权
    • Inkjet recording apparatus and recording method
    • 喷墨记录装置和记录方法
    • US08128212B2
    • 2012-03-06
    • US12252612
    • 2008-10-16
    • Masahito KatadaAtsushi Murakami
    • Masahito KatadaAtsushi Murakami
    • B41J2/18
    • B41J2/175B41J2/17513B41J2/17553
    • An inkjet recording apparatus has: a pressure control device which controls a liquid movement device in accordance with determination results of a first pressure determination device and a second pressure determination device in such a manner that interiors of a first liquid chamber and a second liquid chamber respectively assume prescribed pressures, wherein the pressure control device controls the liquid movement device so as to adjust the internal pressures of the first liquid chamber and the second liquid chamber in such a manner that a prescribed pressure differential between the internal pressures of the first liquid chamber and the second liquid chamber is produced and a prescribed back pressure is applied to the liquid inside a plurality of nozzles of a recording head.
    • 喷墨记录装置具有:压力控制装置,其按照第一压力确定装置和第二压力确定装置的确定结果,分别以第一液体室和第二液体室的内部的方式控制液体移动装置 承担规定的压力,其中压力控制装置控制液体移动装置,以便调节第一液体室和第二液体室的内部压力,使得第一液体室的内部压力和 产生第二液体室,并且对记录头的多个喷嘴内的液体施加规定的背压。
    • 10. 发明授权
    • Liquid droplet ejecting device
    • 液滴喷射装置
    • US07988269B2
    • 2011-08-02
    • US12632880
    • 2009-12-08
    • Atsushi MurakamiMasashi HiratsukaKishiharu Itazu
    • Atsushi MurakamiMasashi HiratsukaKishiharu Itazu
    • B41J2/175
    • B41J2/18
    • The present invention provides a liquid droplet ejecting device including a liquid droplet ejecting head; a liquid storage unit that stores a liquid; a first flow path and a second flow path that connect the liquid droplet ejecting head and the liquid storage unit, the second flow path connecting with the first flow path in the liquid droplet ejecting head; a bypass flow path connected with the first flow path and the second flow path; a liquid feed unit provided between the liquid storage unit and a connecting portion of the bypass flow path and the first flow path, and circulating the liquid in the liquid droplet ejecting head and the liquid storage unit, and a pressure control unit provided at the bypass flow path, and controlling pressure of the liquid flowing through the bypass flow path from the first flow path side to the second flow path side.
    • 本发明提供一种包括液滴喷射头的液滴喷射装置, 存储液体的液体存储单元; 连接液滴喷射头和液体存储单元的第一流路和第二流路,与液滴喷射头中的第一流路连接的第二流路; 与第一流路和第二流路连接的旁通流路; 液体供给单元,设置在所述液体容纳单元与所述旁路流路和所述第一流路的连接部之间,并且使所述液体在所述液滴喷射头和所述液体容纳单元中循环;以及压力控制单元,其设置在所述旁路 并且控制从第一流路侧向第二流路侧流过旁通流路的液体的压力。