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    • 34. 发明授权
    • Method for manufacturing ink jet head and ink jet head manufactured by such method
    • 通过这种方法制造喷墨头和喷墨头的方法
    • US06790309B2
    • 2004-09-14
    • US10025534
    • 2001-12-26
    • Masashi MiyagawaYoshiaki Kurihara
    • Masashi MiyagawaYoshiaki Kurihara
    • B41J201
    • B41J2/1623B41J2/1603B41J2/1604B41J2/1607B41J2/1634
    • A method for manufacturing an ink jet head by bonding with liquid-like adhesive a member at least having a discharge port for discharging ink, and a substrate having energy generating elements to generate energy for discharging ink comprises the steps of coating the liquid-like adhesive on the member or the substrate, the liquid-like adhesive containing at least ultraviolet curing cation polymeric starter and epoxy resin; irradiating ultraviolet rays to the liquid-like adhesive to activate the ultraviolet curing cation polymeric starter; positioning the member and the substrate without heating process; and heating in a state of the member and the substrate being positioned to cure the activated liquid-like adhesive. With the method thus structured, the ink jet head can be manufactured with excellent stability of preservation, while making it not only possible to position the ink discharge port and the energy generating element on the substrate of the ink jet head in high precision at low temperature for bonding but also, to implement high resistance to ink and heat after the adhesive has been cured.
    • 一种喷墨头的制造方法,其特征在于,通过与液状粘接剂粘合至少具有用于排出墨水的排出口的构件和具有能量产生元件以产生用于排出墨水的能量的基板的基板,包括以下步骤:将液体状粘合剂 在该构件或基底上,至少含有紫外线固化阳离子聚合物起始物和环氧树脂的液体状粘合剂; 将紫外线照射到液体状粘合剂上以活化紫外线固化阳离子聚合物起始剂; 定位构件和基板不加热过程; 并且在所述构件和所述基板的状态下进行加热以使所述活化的液体状粘合剂固化。 通过如此构造的方法,可以制造具有优异的保存稳定性的喷墨头,同时不仅可以在低温下以高精度将喷墨头和能量产生元件放置在喷墨头的基​​板上 用于粘合,而且在粘合剂固化后实现高耐油墨和耐热性。
    • 36. 发明申请
    • LIQUID EJECTION HEAD
    • 液体喷射头
    • US20120236077A1
    • 2012-09-20
    • US13366527
    • 2012-02-06
    • Toshiaki KanekoShozo HattoriMasashi Miyagawa
    • Toshiaki KanekoShozo HattoriMasashi Miyagawa
    • B41J2/135
    • B41J2/16B41J2/1623B41J2/1637B41J2002/14362
    • A liquid ejection head including an ejection device substrate having a substrate provided with an energy-generating element that generates energy for ejecting a liquid, a liquid supply member that supplies the liquid to the ejection device substrate, and a support member that is provided between and joined to the ejection device substrate and the liquid supply member. The support member has at least two liquid supply flow paths that are through-holes extending through the support member and has a projected or depressed portion at its joint surface with respect to the liquid supply member. A spacing between two adjoining liquid supply flow paths at the joint surface with respect to the liquid supply member is larger than a spacing between the adjoining two liquid supply flow paths at a joint surface of the support member with respect to the ejection device substrate.
    • 一种液体喷射头,包括具有基板的喷射装置基板,所述基板设置有产生用于喷射液体的能量的能量产生元件,将液体供应到喷射装置基板的液体供应构件以及设置在喷射装置基板之间的支撑构件, 接合到喷射装置基板和液体供应部件。 支撑构件具有至少两个液体供应流动路径,其是穿过支撑构件延伸的通孔,并且在其与液体供应构件的接合表面处具有突出或凹陷部分。 相对于液体供应构件,在接合表面处的两个邻接的液体供应流动路径之间的间隔大于在支撑构件相对于喷射装置基板的接合表面处的相邻两个液体供应流动路径之间的间隔。
    • 37. 发明授权
    • Exhaust heat recovery apparatus
    • 废热回收装置
    • US08020524B2
    • 2011-09-20
    • US12218996
    • 2008-07-18
    • Masashi Miyagawa
    • Masashi Miyagawa
    • F01P11/08
    • F28F1/126F01N5/02F28D15/0266F28D21/0003F28F2265/26Y02T10/16
    • An exhaust heat recovery apparatus includes an evaporator and a condenser. The evaporator and the condenser form an operation medium circuit such that an operation medium circulates through the evaporator and the condenser. The evaporator has tubes and is disposed in a duct part through which an exhaust gas generated from an engine flows. The condenser is disposed in a heated fluid circuit through which a heated fluid flows for heating the heated fluid by condensation of the operation medium. The heated fluid circuit is separate from an engine coolant circuit through which an engine coolant for cooling the engine flows. The evaporator further has a fin between the tubes. The fin is provided with an operation force reducing portion that is capable of reducing an operation force applied to the fin due to a thermal expansion difference between the tubes, which are exposed to the exhaust gas.
    • 排气热回收装置包括蒸发器和冷凝器。 蒸发器和冷凝器形成操作介质回路,使得操作介质通过蒸发器和冷凝器循环。 蒸发器具有管并设置在管道部分中,从发动机产生的废气流过该管道部分。 冷凝器设置在加热的流体回路中,加热的流体通过该流体流动,以通过操作介质的冷凝来加热被加热的流体。 加热的流体回路与用于冷却发动机的发动机冷却剂流过的发动机冷却剂回路分开。 蒸发器还在管之间具有翅片。 翅片设置有操作力减小部分,其能够降低由于暴露于废气的管之间的热膨胀差而施加到翅片的操作力。
    • 39. 发明授权
    • Exhaust heat recovery device
    • 废热回收装置
    • US07877991B2
    • 2011-02-01
    • US12150474
    • 2008-04-28
    • Masashi MiyagawaKimio KoharaSeiji Inoue
    • Masashi MiyagawaKimio KoharaSeiji Inoue
    • F01N3/02F01N5/02B60H1/00
    • F01N5/02F01N2240/02F01P2003/225F01P2060/08F28D15/0266F28D15/06F28D21/0003Y02T10/16
    • An exhaust heat recovery device includes an evaporator for evaporating working medium sealed thereinto by exhaust heat from an internal combustion engine, a condenser for cooling the working medium evaporated at the evaporator, and a communication portion for communicating the evaporator with the condenser in an annular shape. The exhaust heat recovery device further includes an internal pressure operating valve adapted to be closed when a pressure of the working medium is equal to or more than a predetermined pressure, and a temperature operating valve adapted to be closed when a temperature of the coolant is equal to or more than a predetermined temperature. The internal pressure operating valve and the temperature operating valve are disposed between a downstream side of the condenser and an upstream side of the evaporator.
    • 一种废热回收装置,包括:蒸发器,用于通过来自内燃机的排气来密封其中的工作介质,用于冷却在蒸发器蒸发的工作介质的冷凝器;以及用于使蒸发器与冷凝器连通的连通部分, 。 排气热回收装置还包括适于当工作介质的压力等于或大于预定压力时关闭的内压操作阀,以及当冷却剂的温度相等时适于关闭的温度操作阀 达到或超过预定温度。 内部压力操作阀和温度操作阀设置在冷凝器的下游侧和蒸发器的上游侧之间。