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    • 1. 发明授权
    • Plane commutator and method of manufacturing the same
    • 平面换向器及其制造方法
    • US06525445B2
    • 2003-02-25
    • US09823745
    • 2001-04-03
    • Kenzo KiyoseKiyotoshi OiYoshio Ebihara
    • Kenzo KiyoseKiyotoshi OiYoshio Ebihara
    • H02K100
    • H01R39/06H01R39/045H01R43/08H02K13/04
    • A plane commutator includes a plurality of commutator segments made of carbon compound, a resinous boss member having a body portion supporting a base portion of the commutator segments and an outer peripheral portion supporting an outer periphery of the same and a plurality of metal base plates. Each metal base plate has a contact portion in contact with the base portion of the commutator segment, an axial portion extending along a peripheral portion of the boss member and a terminal portion. The axial portion of the metal base plates is disposed on an outer periphery of the plane commutator in parallel with the outer peripheral portions of the boss member to separate the outer peripheral portion from the body portion. The outer peripheral portion moves freely from the body portion as the metal base plates thermally expand.
    • 平面换向器包括由碳化合物制成的多个换向器片段,具有支撑整流子片段的基部的主体部分的树脂凸起部件和支撑其的外周的外周部分和多个金属基板。 每个金属基板具有与换向器部分的基部接触的接触部分,沿凸起部件的周边部分延伸的轴向部分和端子部分。 金属基板的轴向部分平行于凸台部件的外周部分布置在平面换向器的外周上,以将外周部分与主体部分分开。 当金属基板热膨胀时,外周部分从本体部分自由移动。
    • 2. 发明申请
    • Impeller for fuel pump and fuel pump in which the impeller is employed
    • 用于燃油泵和燃油泵的叶轮,其中采用叶轮
    • US20070231120A1
    • 2007-10-04
    • US11727976
    • 2007-03-29
    • Hideki NarisakoTadashi HazamaKiyotoshi OiYoshio Ebihara
    • Hideki NarisakoTadashi HazamaKiyotoshi OiYoshio Ebihara
    • F04D5/00
    • F04D29/188
    • An impeller is employed for a fuel pump and boosts a pressure of fuel by rotating the fuel in a pump passage formed in the fuel pump in a rotational direction of the impeller. The impeller includes a plurality of vane grooves formed adjacent to each other in the rotational direction of the impeller and a plurality of vanes formed adjacent to each other in the rotational direction. Each one of the plurality of vanes divides one of adjacent two of the plurality of vane grooves from the other. A difference between a maximal value and a minimum value of an adjacent vane angle is set in a range of 2.5° to 4°. A fuel pump includes a motor unit, the impeller, and a casing member. The impeller is rotated by rotation driving force of the motor unit. The casing member rotatably receives the impeller and defines the pump passage.
    • 叶轮被用于燃料泵,并且通过在燃料泵中形成的泵通道中的燃料沿着叶轮的旋转方向旋转来提高燃料的压力。 叶轮包括在叶轮的旋转方向上彼此相邻形成的多个叶片槽和沿旋转方向彼此相邻地形成的多个叶片。 多个叶片中的每一个将多个叶片槽中相邻的两个叶片中的一个分隔开。 相邻叶片角度的最大值和最小值之间的差设定在2.5°至4°的范围内。 燃料泵包括马达单元,叶轮和壳体构件。 叶轮通过马达单元的旋转驱动力旋转。 壳体构件可旋转地接收叶轮并限定泵通道。
    • 3. 发明授权
    • Fuel pump for internal combustion engine
    • 内燃机燃油泵
    • US06497552B2
    • 2002-12-24
    • US09835062
    • 2001-04-16
    • Atsushige KobayashiKiyotoshi OiHiroaki TakeiYoshio Ebihara
    • Atsushige KobayashiKiyotoshi OiHiroaki TakeiYoshio Ebihara
    • F04D500
    • F04D29/188
    • An impeller has a plurality of blades at an outer periphery thereof. Each of the adjacent blades define a groove space, and a partition wall is provided in the groove space. The partition wall is disposed at a center area of the groove space in an axial direction of the impeller for partitioning the groove space from a root of the blade. The blade inclines backwardly in the rotating direction at the root side thereof, and inclines frontwardly in the rotating direction at a radial outer end side thereof. A front face is inwardly concaved from both axial ends, and warps from the root to the radial outer end of the blade to form the concave such that the concave gradually becomes small from the root to the radial outer end.
    • 叶轮在其外周具有多个叶片。 每个相邻的叶片限定凹槽空间,并且在凹槽空间中设置有分隔壁。 分隔壁设置在叶轮的轴向方向上的槽空间的中心区域,用于将槽空间与叶片的根部分隔开。 叶片在其根部侧沿旋转方向向后倾斜,并且在其径向外端侧沿旋转方向向前倾斜。 前表面从两个轴向端部向内凹陷,并且从叶片的根部到径向外端经过弯曲以形成凹部,使得凹部从根部向径向外端逐渐变小。
    • 6. 发明授权
    • Fuel pump for vehicle
    • 汽车燃油泵
    • US6010301A
    • 2000-01-04
    • US961089
    • 1997-10-30
    • Kiyotoshi OiMasashi Miyamoto
    • Kiyotoshi OiMasashi Miyamoto
    • F02M37/08F02M37/10F04D5/00F04D9/00F01D25/14
    • F04D9/002F04D5/002
    • A fuel pump of returnless type fuel supply system for a vehicle includes a pump case, an impeller disposed in the pump case and a pump passage connected between the fuel inlet port and fuel discharge port. The pump passage is composed of a guiding passage section connected to the fuel inlet and pressure section connected between the guiding section and the fuel discharge port, and the guiding section has a first vapor discharge port disposed near the fuel inlet port and a second vapor discharge port disposed near the pressure passage section. Thus, fuel vapor is discharged from the first and second vapor discharge ports along with a small amount of the fuel returning to the fuel tank.
    • 一种用于车辆的无返型燃料供给系统的燃料泵包括泵壳,设置在泵壳中的叶轮和连接在燃料入口和燃料排出口之间的泵通道。 泵通道由连接在引导部分和燃料排出口之间的燃料入口和压力部分连接的引导通道部分组成,并且引导部分具有设置在燃料入口附近的第一蒸汽排放口和第二蒸气放电 端口设置在压力通道部分附近。 因此,燃料蒸气与少量返回到燃料箱的燃料一起从第一和第二蒸汽排出口排出。
    • 7. 发明授权
    • Bearing for fuel pump, method of manufacturing the same, and fuel pump
    • 燃油泵轴承,制造方法和燃油泵
    • US06962444B2
    • 2005-11-08
    • US10394171
    • 2003-03-24
    • Kiyotoshi Oi
    • Kiyotoshi Oi
    • F02M37/08F02M37/10F04D5/00F04D7/02F04D29/04F04D29/046F04D29/047F16C33/16
    • F04D29/047F04D5/002F16C33/121F16C33/16
    • A bearing for a fuel pump includes a sliding layer made of mainly carbon, and a supporting layer made of mainly carbon and a metal. The supporting layer is connected to the sliding layer to support the sliding layer. Because the sliding layer of the bearing is made of mainly carbon, corrosion resistance of the bearing can be improved. Further, the supporting layer improves the strength of the bearing. Accordingly, the bearing with the two-layer structure effectively improves the corrosion resistance while the strength thereof can be increased. The bearing can be suitably used for the fuel pump. In this case, the bearing is press-fitted to a casing member on the supporting layer, and a rotary shaft of the fuel pump is slidably held in the bearing on the sliding layer.
    • 用于燃料泵的轴承包括主要由碳制成的滑动层和主要由碳和金属制成的支撑层。 支撑层连接到滑动层以支撑滑动层。 由于轴承的滑动层主要由碳制成,因此可以提高轴承的耐腐蚀性。 此外,支撑层提高了轴承的强度。 因此,具有双层结构的轴承有效地提高了耐腐蚀性,同时可以提高其强度。 该轴承可适用于燃油泵。 在这种情况下,将轴承压配合到支撑层上的壳体构件,并且燃料泵的旋转轴可滑动地保持在滑动层上的轴承中。
    • 10. 发明授权
    • Fuel supply device
    • 燃油供应装置
    • US5613476A
    • 1997-03-25
    • US301429
    • 1994-09-09
    • Kiyotoshi OiAtsushige KobayashiKazushi NakashimaYasushi KawanoHideki Kaga
    • Kiyotoshi OiAtsushige KobayashiKazushi NakashimaYasushi KawanoHideki Kaga
    • B01D35/027F02M37/10F02M37/22F02M37/04
    • F02M37/10B01D35/0273F02M2037/228Y10T137/2574Y10T137/86228
    • An in-tank type fuel pump which can easily be installed and reduces the vibration caused by the fuel pump. The fuel pumped up by a pump part passes through a filter to have foreign matter contained therein removed. Then, the fuel flows from a fuel passage, through an opening part in a cap, into a recessed part and a second fuel passage. The fuel that has flowed into the second fuel passage lifts a check valve and flows into the recessed part. Then, the fuel flows through a third fuel passage to a discharge pipe, and then is guided to the outside of the fuel tank. A ball moves within a large-diameter passage according to the fuel pressure to regulate the fuel pressure required for fuel injection. When the fuel pumping is ceased, the fuel pressure falls to 0, and therefore the ball is forced to contact a valve seat by the spring force of a compression coil spring. Then, the head part of the check valve is forced to contact a valve seat to block the fuel passage. As a result, the residual fuel pressure can be maintained downstream from the recessed part.
    • 一种罐式燃油泵,可轻松安装,减少燃油泵引起的振动。 由泵部件抽出的燃料通过过滤器以除去其中包含的异物。 然后,燃料从燃料通路通过盖中的开口部流入凹部和第二燃料通路。 已经流入第二燃料通道的燃料提升止回阀并流入凹入部分。 然后,燃料通过第三燃料通道流到排放管,然后被引导到燃料箱的外部。 根据燃料压力,球在大直径通道内移动,以调节燃料喷射所需的燃料压力。 当燃料泵送停止时,燃料压力下降到0,因此球被压缩螺旋弹簧的弹簧力迫使阀座接触阀座。 然后,止回阀的头部被迫接触阀座以堵塞燃料通道。 结果,残留燃料压力可以保持在凹部的下游。