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    • 6. 发明申请
    • Fuel pump unit
    • 燃油泵单元
    • US20060048756A1
    • 2006-03-09
    • US11217432
    • 2005-09-02
    • Masaki Ikeya
    • Masaki Ikeya
    • B01D35/153F02M37/04
    • F02M37/14B01D29/111B01D29/15B01D35/027B01D35/26B01D2201/0415B01D2201/4084F02M37/10F02M37/22F02M2037/225
    • A fuel pump unit (1) may comprise a fuel filter (10) and a fuel pump (30). The fuel filter (10) may comprise frames (14, 20) and filters (15, 22) that seal openings (16, 21) of the frames. A closed space (internal space) may be formed by the frames and the filters. The fuel pump (30) may comprise a suction port (32) and a discharge port (33). The fuel pump (30) draws in fuel through the suction port (32), pressurizes it, and discharges it from the discharge port (33). Preferably, the fuel pump (30) is substantially accommodated within the internal space of the fuel filter (10). The suction port (32) of the fuel pump (30) opens in the internal space of the fuel filter (10), and the discharge port opens outside the fuel filter (10).
    • 燃料泵单元(1)可以包括燃料过滤器(10)和燃料泵(30)。 燃料过滤器(10)可以包括框架(14,20)和密封框架的开口(16,21)的过滤器(15,22)。 封闭空间(内部空间)可以由框架和过滤器形成。 燃料泵(30)可以包括吸入口(32)和排出口(33)。 燃料泵(30)通过吸入口(32)吸入燃料,对其进行加压,并将其从排出口(33)排出。 优选地,燃料泵(30)基本上容纳在燃料过滤器(10)的内部空间内。 燃料泵(30)的吸入口(32)在燃料过滤器(10)的内部空间开口,排出口在燃料过滤器(10)的外侧开口。
    • 7. 发明申请
    • Fuel pump
    • 燃油泵
    • US20050074347A1
    • 2005-04-07
    • US10950523
    • 2004-09-28
    • Masaki Ikeya
    • Masaki Ikeya
    • F02M37/10F04D5/00F04B17/00F04B11/00
    • F04D5/002
    • A side feed fuel pump with a tube for fixing a fuel filter is developed in that the tube is formed as a portion of an overall housing for jointly enclosing a pump section and a motor section for driving the pump section. The tube that projects laterally from the side feed fuel pump is formed of the overall housing that jointly encloses both the pump section and the motor section. Inner space of the tube forms an intake port, and the intake port communicates a side intake passage formed in the pump casing with an exterior of the fuel pump. A fuel filter can be easily attached to the tube. The tube may be formed by pressing metal plate or integrally molded with a main portion of the overall housing by resin material.
    • 开发了具有用于固定燃料过滤器的管的侧进料燃料泵,其中管被形成为用于共同封闭泵部分和驱动泵部分的电动机部分的整体壳体的一部分。 从侧进料燃料泵横向突出的管由共同封闭泵部分和电动机部分的整个壳体形成。 管的内部空间形成进气口,进气口将形成在泵壳内的侧进气通路与燃料泵的外部连通。 燃料过滤器可以容易地附接到管。 管可以通过按压金属板或通过树脂材料与整个壳体的主要部分一体模制而形成。
    • 8. 发明授权
    • Fuel injection valve
    • 燃油喷射阀
    • US06367721B1
    • 2002-04-09
    • US09614908
    • 2000-07-12
    • Masaki IkeyaSumito Takeda
    • Masaki IkeyaSumito Takeda
    • B05B130
    • F02M51/0671F02M2200/306
    • The fuel injection valve of the present invention is constituted such that a needle valve 5 and a movable core 4 are movably disposed in an axial direction in the inside of a body 1. Here, a fixed member 8 which the movable core 4 approaches at the time of closing the valve is disposed in the body 1, and a gap is formed between the movable core 4 and the fixed member 8 at the time of closing the valve. When fuel remaining in the gap between the movable core 4 and the fixed member 8 is pressurized according to the movement of the movable core 4 to the valve closing side, a squeezing portion SB1 is disposed at a portion which constitutes a passage for the fuel extruded from the gap. At the time of closing the valve, a squeezing reaction force (reaction force against the squeezing-out force or pushing-out force generated at the time of pressurizing a liquid and squeezing a liquid through the gap) is generated on the movable core 4. Since the squeezing reaction force is increased in an inversely proportional manner to the cube of the size of the gap between the movable core 4 and the fixed member 8, even when the gap between two opposing surface (that is, the gap between the proximal end surface of the fixed member 8 and the distal end surface of the movable core 4) is small, a large squeezing reaction force is generated. Further, a braking is quickly applied to the movable core 4 and and the needle valve 5 due to this squeezing reaction force just slightly before the point of time when the valve is closed.
    • 本发明的燃料喷射阀构成为使得针阀5和可动铁芯4在主体1的内部沿轴向移动地设置。这里,可动铁芯4接近的固定部件8 关闭阀的时间设置在主体1中,并且在关闭阀时在可动芯4和固定构件8之间形成间隙。 当可动铁芯4与固定部件8之间的间隙中剩余的燃料根据可动铁心4向闭阀侧的移动而被加压时,挤压部分SB1设置在构成燃料挤压通道的部分 从差距。 在关闭阀时,在可动铁芯4上产生挤压反作用力(抵抗挤出力或在液体加压时产生的挤出力,并通过间隙挤压液体)的反作用力。 由于挤压反作用力与可动铁芯4和固定部件8之间的间隙尺寸的立方成反比地增加,所以即使当两个相对表面之间的间隙(即,近端 固定部件8的表面和可动铁芯4的前端面)小,产生大的挤压反作用力。 此外,由于这种挤压反作用力在阀被关闭的时刻之前就略微制动,所以可动铁芯4和针阀5迅速地被施加。
    • 9. 发明授权
    • Ultrasonic vibrator
    • 超声波振动器
    • US5929552A
    • 1999-07-27
    • US907855
    • 1997-08-08
    • Masaki Ikeya
    • Masaki Ikeya
    • B06B1/06H01L41/09H02N2/00H01L41/08
    • H01L41/0906
    • An ultrasonic vibrator which is preferable for transporting a small flow rate of powder is realized. A leaked vibrating energy is reduced to increase an efficiency of the device. A variation in performance influenced by the supporting process is eliminated to attain a stable performance. A vibrating amplitude at the horn part acting against the powder is increased. An AC voltage is applied to the piezo-electric elements through the electrodes. The vibrator may generate a complex vibration of the primary extending or retracting vibration and a secondary flex vibration, a lower end of the horn part is rotationally vibrated at an elliptical orbit indicated. The elliptical orbit has an elongated diameter extending in a lateral direction. The vibrator is made such that the inserting end of the shaft having the upper end flange part fixed thereto supports a section of the complex vibration of the vibrator. The powder fed from the resilient tube is promoted in a leftward direction as viewed in the figure under an elliptical motion of the bottom surface of the hole.
    • 实现了优选用于输送小流量粉末的超声波振动器。 泄漏的振动能量减少以提高装置的效率。 消除了由支持过程影响的性能变化,以获得稳定的性能。 喇叭部分的作用在粉末上的振动振幅增加。 AC电压通过电极施加到压电元件。 振动器可能产生主要的伸缩振动和二次弯曲振动的复振动,喇叭部分的下端以指示的椭圆轨道旋转振动。 椭圆轨道具有沿横向方向延伸的细长直径。 振动器被制成使得具有固定其上端凸缘部分的轴的插入端支撑振动器的复合振动的一部分。 从弹性管供给的粉末在孔的底面的椭圆形运动下沿图中所示向左方向被促进。