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    • 4. 发明授权
    • Direct injection type fuel injection device and fuel injection control device for internal combustion engine
    • 直喷式燃油喷射装置和内燃机燃油喷射控制装置
    • US07278393B2
    • 2007-10-09
    • US10747452
    • 2003-12-30
    • Masaya HayakawaKazuhiro Yoneshige
    • Masaya HayakawaKazuhiro Yoneshige
    • F02M43/00F02B3/00
    • F02B23/104F02B17/005F02B2023/103F02B2075/125F02D41/3005F02D2041/3088Y02T10/123Y02T10/125
    • A fuel injection device is provided with a fuel injection valve for injecting fuel into a combustion chamber and an air injection valve for the injection of air into the combustion chamber. One fuel injection orifice which opens into the combustion chamber is provided correspondingly to the fuel injection valve and plural air injection orifices which open into the combustion chamber are provided correspondingly to the air injection valve. A design is made so that fuel and air injected from the fuel injection orifice and the air injection orifices come into collision with each other at a collision point. The shape, size and direction of the fuel injection orifice are specified. Likewise, the number, shape, size and direction of the air injection orifice, as well as its arrangement relative to the fuel injection orifice, are specified. A design is made so that the size of a fuel spray and that of air jets at the collision point become equal to each other. A fuel injection control device is provided with various sensors for detecting an operating condition of an engine and an electronic control unit (ECU) for controlling the fuel injection valve and the air injection valve each independently. For controlling a spray penetration distance, a spray particle diameter and a spray shape of the fuel injected from the fuel injection orifice, the ECU, on the basis of the detected operating condition of the engine, controls the fuel injection valve and also controls at least one of timing and period of air injection performed by the air injection valve.
    • 燃料喷射装置设置有用于将燃料喷射到燃烧室中的燃料喷射阀和用于将空气喷射到燃烧室中的空气喷射阀。 与燃料喷射阀相对设置有一个通向燃烧室的燃料喷射孔,并且相应于空气喷射阀设置有多个进入燃烧室的空气喷射孔。 进行设计,使得从燃料喷射孔和空气喷射孔喷射的燃料和空气在碰撞点彼此碰撞。 规定了燃油喷射孔的形状,尺寸和方向。 同样,指定了空气喷射孔的数量,形状,尺寸和方向以及其相对于燃料喷射孔的布置。 进行设计,使得在碰撞点处的燃料喷雾和空气喷射的尺寸变得彼此相等。 燃料喷射控制装置设置有用于检测发动机的操作状态的各种传感器和用于独立地控制燃料喷射阀和空气喷射阀的电子控制单元(ECU)。 为了控制喷射穿透距离,基于检测到的发动机的运行状况,从燃料喷射孔(ECU)喷射的燃料的喷雾粒径和喷射形状控制燃料喷射阀,并且还至少控制 空气喷射阀执行空气喷射的时间和周期之一。
    • 7. 发明授权
    • D.C. solenoid
    • 直流电磁阀
    • US5128826A
    • 1992-07-07
    • US450076
    • 1989-12-13
    • Kazuhiro Yoneshige
    • Kazuhiro Yoneshige
    • H01F7/18H01H47/04
    • H01F7/18H01H47/04
    • In a d.c. solenoid in which a thermistor having a positive temperature coefficient is connected in series with a main coil, a subcoil is connected in parallel with the series connection of the main coil and the thermistor, so that a large magnetic force can be produced at the solenoid energization starting time, and generation of heat from the thermistor can be suppressed to prevent burn-out of the main coil due to continuous current supply. Both the main coil and the subcoil, when energized alone, are capable of actuating the solenoid. The d.c. solenoid is applied to a valve in a vaporized fuel absorption system.
    • 在d.c. 螺线管,其中具有正温度系数的热敏电阻与主线圈串联连接,子线圈与主线圈和热敏电阻的串联连接并联,使得在螺线管通电时可产生大的磁力 开始时间,并且可以抑制来自热敏电阻的热量的产生,以防止由于连续供电而导致的主线圈的烧坏。 主线圈和次线圈在单独通电时都能够致动螺线管。 直径 螺线管被施加到汽化燃料吸收系统中的阀。
    • 9. 发明授权
    • Fuel injection control devices for internal combustion engines
    • 内燃机燃油喷射控制装置
    • US06920861B2
    • 2005-07-26
    • US10846540
    • 2004-05-17
    • Masaya HayakawaKazuhiro Yoneshige
    • Masaya HayakawaKazuhiro Yoneshige
    • F02D41/02F02D41/34F02M51/06F02M53/02F02M53/06F02M61/14F02M61/18F02M67/02F02M67/12F02B17/00F02B23/00
    • F02M53/06F02M51/0671F02M67/02F02M67/12
    • A fuel injection device includes a fuel injection valve for injecting fuel through a fuel injection orifice opening into a combustion chamber, an air injection valve for injecting air through an air injection orifice opening into the combustion chamber, sensors for detecting an operating condition of an engine, and an electronic control unit (ECU) for controlling the fuel injection valve and the air injection valve. Orientations of the air injection orifice and the fuel injection orifice are determined to make an air jet collide with a fuel spray. The ECU controls the fuel injection valve based on the operating condition detected by the sensors to control spray velocity, spray particle diameter, spray angle, etc. of the fuel to be injected through the fuel injection orifice, and at least one of an air injection timing and an air injection period of air injection to be performed by the air injection valve.
    • 燃料喷射装置包括:燃料喷射阀,用于通过燃料喷射孔向燃烧室喷射燃料;空气喷射阀,用于通过通向燃烧室的空气喷射孔喷射空气;用于检测发动机运转状态的传感器 ,以及用于控制燃料喷射阀和空气喷射阀的电子控制单元(ECU)。 空气喷射孔和燃料喷射孔的定向被确定为使空气喷射与燃料喷雾相撞。 ECU基于由传感器检测的操作条件来控制燃料喷射阀,以控制要通过燃料喷射孔喷射的燃料的喷射速度,喷雾粒径,喷雾角等,以及空气喷射 定时和空气喷射阀的空气喷射期间进行。
    • 10. 发明授权
    • Driving circuitry for electromagnetic fuel injection valve
    • 电磁燃油喷射阀驱动电路
    • US06712048B2
    • 2004-03-30
    • US10152131
    • 2002-05-21
    • Tsuneaki AokiAtsushi OkadaKazuhiro Yoneshige
    • Tsuneaki AokiAtsushi OkadaKazuhiro Yoneshige
    • F02M5100
    • F02D41/40F02D41/20F02D41/38F02D2041/2003F02D2041/2006F02D2041/2013F02D2041/2051F02D2041/2058F02D2041/2075F02D2200/0602Y02T10/44
    • Driving circuitry for an electromagnetic fuel injection valve in which the holding current value is made variable to obtain a minimum necessary holding force from the holding current according to the fuel pressure includes a solenoid for driving the fuel injection valve, a capacitor charged by a high-voltage charge control part, a switch circuit for on-off controlling a high-voltage current supplied from the capacitor to the solenoid in response to an injection command signal, and a holding current supply circuit for supplying a holding current from the power supply to the solenoid. When the holding current is supplied, a comparator circuit compares a voltage obtained by converting the value of electric current flowing through the solenoid by a resistor for detection and a voltage corresponding to a fuel pressure sensor signal, and the value of the holding current is varied according to an output signal from the comparator circuit.
    • 用于根据燃料压力使保持电流值变化以从保持电流获得最小必要保持力的电磁燃料喷射阀的驱动电路包括用于驱动燃料喷射阀的螺线管, 电压充电控制部分,用于响应于注入命令信号而从电容器向螺线管提供的高压电流的开关控制开关电路,以及保持电流供应电路,用于将电源从电源提供给 螺线管 当提供保持电流时,比较器电路将通过将通过螺线管的电流值转换为通过用于检测的电阻器的电压和对应于燃料压力传感器信号的电压获得的电压进行比较,并且保持电流的值变化 根据比较器电路的输出信号。