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    • 21. 发明授权
    • Damper device and high pressure pump having the same
    • 阻尼器和高压泵具有相同的功能
    • US08662868B2
    • 2014-03-04
    • US12706160
    • 2010-02-16
    • Shinobu OikawaHiroatsu YamadaHiroshi Inoue
    • Shinobu OikawaHiroatsu YamadaHiroshi Inoue
    • F04B11/00
    • F04B53/16F04B37/12F04B53/004
    • In a housing, a damper member is placed in a fluid chamber communicated with a pressurizing chamber, at which a plunger is reciprocated to pressurize fuel, and an opening of the fluid chamber is covered with a cover member. The damper member includes first and second-side diaphragms. A first-side support member is located between the damper member and the cover member and is engaged with a first-side outer peripheral portion of the first-side diaphragm and the cover member. A second-side support member is located between the damper member and the housing and is engaged with a second-side outer peripheral portion of the second-side diaphragm and the housing. The first and second-side support members are urged between the housing and the cover member.
    • 在壳体中,阻尼器构件被放置在与加压室连通的流体室中,在该加压室中柱塞往复运动以加压燃料,并且流体室的开口被盖构件覆盖。 阻尼器构件包括第一和第二侧隔膜。 第一侧支撑构件位于阻尼构件和盖构件之间并且与第一侧隔膜的第一侧外周部分和盖构件接合。 第二侧支撑构件位于阻尼构件和壳体之间并且与第二侧隔膜和壳体的第二侧外周部分接合。 第一和第二侧支撑构件被推压在壳体和盖构件之间。
    • 24. 发明授权
    • High-pressure fuel pump and seal system for high-pressure fuel pump
    • 高压燃油泵和高压燃油泵密封系统
    • US08573112B2
    • 2013-11-05
    • US12087848
    • 2006-12-14
    • Junichi NakayamaNobuyuki EguchiTamio InamuraKokichi HamamotoHiroshi Inoue
    • Junichi NakayamaNobuyuki EguchiTamio InamuraKokichi HamamotoHiroshi Inoue
    • F16J15/20
    • F04B53/02F02M59/102F02M59/442F04B53/04F04B53/164
    • To cope with severe use conditions, a high-pressure fuel pump has a seal system (21) for separating/sealing fuel and lubricating oil, in an annular space between an axle reciprocating within the pump and a housing having the axle passing therethrough, wherein the seal system (21) consists of a combination of a fuel-side seal (31) for sealing fuel and lubricating-oil-side seal (41) for sealing lubricating oil, the fuel-side seal (31) is composed of a plastic-made seal ring (32) and a rubbery-elastomer-made O ring (33) for backup of the seal ring (32), the lubricating-oil-side seal (41) consists of a single body of single-lip-type oil seal (42) having a rubbery-elastomer-made seal lip (44) fitted to a metal ring (43) and arranged toward the lubricating oil side, and a distance between the fuel-side seal (31) and the lubricating-oil-side seal (41) is set to be larger than the reciprocating distance of the axle.
    • 为了应对严重的使用条件,高压燃料泵具有用于在泵内往复运动的轴与通过其的轴的壳体之间的环形空间中分离/密封燃料和润滑油的密封系统(21),其中 密封系统(21)由用于密封燃料的燃料侧密封件(31)和用于密封润滑油的润滑油侧密封件(41)的组合构成,燃料侧密封件(31)由塑料 所述密封环(32)和用于支承所述密封环(32)的橡胶弹性体制造的O形环(33),所述润滑油侧密封件(41)由单体单唇型 油封(42),其具有安装在金属环(43)上且朝向润滑油侧配置的橡胶弹性体制成的密封唇(44),并且燃料侧密封件(31)和润滑油 侧面密封件(41)被设定为大于轴的往复距离。
    • 25. 发明授权
    • Electric deionized water production apparatus
    • 电去离子水生产设备
    • US08529759B2
    • 2013-09-10
    • US11994506
    • 2005-07-20
    • Naoyuki TajimaKoji YamanakaHiroshi InoueAkira Nakamura
    • Naoyuki TajimaKoji YamanakaHiroshi InoueAkira Nakamura
    • C02F1/469
    • B01J20/28042B01D61/48B01D61/485B01J47/018B01J47/08C02F1/441C02F1/4695C02F5/00C02F2201/4611C02F2201/46115C02F2201/4617
    • An electric deionized water production apparatus in which a direct current field is applied to a deionizing chamber packed with an ion-exchange material such that ions to be discharged are allowed to migrate in the direction identical or opposite to the direction of the water flow in the ion-exchange material, whereby ionic impurities adsorbed in the ion-exchange material are discharged from the system, the ion-exchange material being a mixture of a monolith-shaped organic porous ion-exchange material and ion-exchange resin particles. The electric deionized water production apparatus has a simple structure that can reduce material cost, process cost, and assembly cost, capable of accelerating migration of the adsorbed ionic impurities to facilitate discharge of the adsorbed ions and free from a deflected flow due to swelling or shrinkage accompanying an ion-exchanging reaction, and from poor contact with an ion-exchange membrane.
    • 一种电去离子水生产装置,其中直流电场施加到装有离子交换材料的去离子室,使得排出的离子允许沿与水流中的水流方向相同或相反的方向迁移 离子交换材料,其中吸附在离子交换材料中的离子杂质从系统中排出,离子交换材料是整料形有机多孔离子交换材料和离子交换树脂颗粒的混合物。 电去离子水生产设备具有简单的结构,其可以降低材料成本,工艺成本和组装成本,能够加速吸附的离子杂质的迁移,以促进吸附的离子的排出并且由于膨胀或收缩而没有偏转的流动 伴随着离子交换反应,并且与离子交换膜接触不良。
    • 26. 发明申请
    • TACTILE SENSATION PROVIDING APPARATUS
    • 提供设备的触觉传感器
    • US20130154988A1
    • 2013-06-20
    • US13818962
    • 2011-08-11
    • Hiroshi InoueAkinori Sato
    • Hiroshi InoueAkinori Sato
    • G06F3/01
    • G06F3/016G06F3/044
    • A tactile sensation providing apparatus, so as to reduce an influence by provision of a tactile sensation on detection of a position by a touch sensor, includes a touch sensor 11, a tactile sensation providing unit 12 disposed near the sensor 11 and configured to vibrate the sensor 11, a touch sensor control unit 20 configured to transmit a scanning signal to the sensor 11 and, by receiving the signal from the sensor 11, to detect the position of the contact to the sensor, signal lines 16, 18 configured to transmit the signal between the sensor 11 and the control unit 20, and a tactile sensation control unit 30 configured to, based on the position of the contact detected by the control unit 20, control the providing unit 12 to vibrate the sensor 11. The providing unit 12 is disposed avoiding overlapping with the lines 16, 18.
    • 一种触敏感觉提供装置,通过提供触觉感测来检测触摸传感器的位置来减少影响,包括:触觉传感器11,设置在传感器11附近的触觉感觉提供部12, 传感器11,触摸传感器控制单元20,被配置为将扫描信号发送到传感器11,并且通过接收来自传感器11的信号来检测接触到传感器的位置,信号线16,18被配置为传送 传感器11和控制单元20之间的信号,以及触觉控制单元30,其被配置为基于由控制单元20检测到的接触位置来控制提供单元12使传感器11振动。提供单元12 被设置成避免与线16,18重叠。
    • 28. 发明授权
    • Head cleaning method and head cleaning apparatus
    • 头部清洁方法和头部清洁装置
    • US08342639B2
    • 2013-01-01
    • US12750345
    • 2010-03-30
    • Hiroshi Inoue
    • Hiroshi Inoue
    • B41J2/165
    • B41J2/16535B41J2/16585B41J2202/21
    • A head cleaning method of wiping and cleaning a nozzle surface of a head with a band-shaped liquid absorbing body by, while pressing and abutting a pressing member on which the liquid absorbing body that travels is wrapped against the nozzle surface of the head, sliding the pressing member over the nozzle surface of the head, includes: a first cleaning step of wiping and cleaning the nozzle surface of the head with a non-wet region of the liquid absorbing body; a wet region forming step of forming a wet region on the liquid absorbing body; and a second cleaning step of wiping and cleaning the nozzle surface of the head with the wet region of the liquid absorbing body.
    • 一种用带状液体吸收体擦拭和清洁头部的喷嘴表面的头部清洁方法,其中,当压入和抵接行进的液体吸收体被包裹在头部的喷嘴表面上的挤压部件滑动时, 所述按压部件在所述头部的喷嘴表面上方包括:第一清洁步骤,用所述液体吸收体的非湿润区域擦拭和清洁所述头部的喷嘴表面; 在液体吸收体上形成湿区域的湿区域形成步骤; 以及第二清洗步骤,其与液体吸收体的湿区域一起擦拭和清洁头部的喷嘴表面。
    • 30. 发明授权
    • Wireless communication method and wireless communication apparatus
    • 无线通信方法和无线通信装置
    • US08208957B2
    • 2012-06-26
    • US12443425
    • 2007-09-27
    • Hiroshi Inoue
    • Hiroshi Inoue
    • H04W4/00
    • H04W68/12H04W88/06
    • A wireless communication method and a wireless communication apparatus capable of efficiently improving communication throughput of a second wireless communication system while securing a capturing capability of informative information in a first wireless communication system are provided. A transmitting/receiving unit (2, 3, 6) capable of transmitting/receiving information through first and second wireless communication systems (1x and EVDO) and a receiving unit (4, 7) capable of receiving information through the first and second wireless communication systems and whose reception gain in the first wireless communication system is smaller than the transmitting/receiving unit are used to detect that a reception sensitivity of informative information notifying a reception by the transmitting/receiving unit through the first wireless communication system has exceeded a first threshold or a second threshold set in accordance with a reception gain difference between the transmitting/receiving unit and the receiving unit when information is being transmitted/received by the transmitting/receiving unit through the second wireless communication system, and to switch reception of the informative information from the transmitting/receiving unit to the receiving unit.
    • 提供一种能够在确保第一无线通信系统中的信息性信息的捕获能力的同时有效地提高第二无线通信系统的通信吞吐量的无线通信方法和无线通信装置。 能够通过第一和第二无线通信系统(1x和EVDO)发送/接收信息的发送/接收单元(2,3,6)和能够通过第一和第二无线通信接收信息的接收单元(4,7) 系统,其第一无线通信系统中的接收增益小于发送/接收单元,用于检测通过第一无线通信系统通知发送/接收单元的接收的信息信息的接收灵敏度已经超过第一阈值 或者当发送/接收单元通过第二无线通信系统发送/接收信息时,根据发送/接收单元和接收单元之间的接收增益差设置的第二阈值,并且切换信息信息的接收 从发送/接收单元到接收单元。