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    • 2. 发明申请
    • PURGE METHOD OF CANISTER IN FFV, AND PURGE MECHANISM OF CANISTER IN FFV USING THE METHOD
    • 使用方法对FFV中的胃肠灌洗方法,
    • US20140058648A1
    • 2014-02-27
    • US14006152
    • 2011-05-10
    • Takahiro TsukagoshiKouji MoritaKazuhisa Matsuda
    • Takahiro TsukagoshiKouji MoritaKazuhisa Matsuda
    • F02M25/08
    • F02M25/08F02D13/0234F02D19/084F02D41/0025F02M25/0854F02M25/089Y02T10/18Y02T10/36
    • In an FFV (flexible fuel vehicle) on which an internal-combustion engine using alcohol blended fuel in mounted, the remaining amount of fuel vapor presumed to remain in a canister in accordance with a usual purge processing is presumed based on an alcohol concentration in the alcohol blended fuel. According to this remaining amount, the size of the tank side channel which is a channel in a canister near the connection section with a connection pathway (tank line) with a fuel tank is adjusted by a canister throttle control means, and/or, the timing of opening and closing of an intake valve is changed by a variable valve timing mechanism. Thereby, the desorption rate (the amount of desorption) of fuel vapor from adsorption material in a canister is adjusted, and the concentration of the fuel included in purge gas is adjusted. As a result, even when the change of the remaining amount of the fuel vapor adsorbed by the adsorption material in the canister and/or the uneven concentration distribution of an alcohol component within the canister occur, the accuracy of an air/fuel ratio control in the FFV can be raised, and the discharge of a toxic substance can be suppressed effectively.
    • 在其中安装有使用醇混合燃料的内燃机的FFV(柔性燃料车辆)中,根据通常的清洗处理推定残留在罐中的燃料蒸汽的剩余量是基于在 酒精混合燃料。 根据该剩余量,通过具有燃料箱的连接路径(油罐管线)的连接部附近的罐中的槽的槽侧槽的尺寸由罐节流控制装置调节,和/或 通过可变气门正时机构改变进气门的打开和关闭的时间。 由此,调节来自罐内的吸附材料的燃料蒸气的解吸速度(解吸量),调节吹扫气体中所含的燃料浓度。 结果,即使当罐内的吸附材料吸附的燃料蒸汽的剩余量的变化和/或罐内的醇成分的不均匀浓度分布发生时,也能够实现空气/燃料比控制的精度 可以提高FFV,能够有效地抑制有毒物质的排出。
    • 4. 发明授权
    • Purge method of canister in FFV, and purge mechanism of canister in FFV using the method
    • 使用FFV中罐的吹扫方法和FFV中罐的吹扫机理
    • US09206770B2
    • 2015-12-08
    • US14006152
    • 2011-05-10
    • Takahiro TsukagoshiKouji MoritaKazuhisa Matsuda
    • Takahiro TsukagoshiKouji MoritaKazuhisa Matsuda
    • F02M25/08F02D13/02F02D19/08F02D41/00
    • F02M25/08F02D13/0234F02D19/084F02D41/0025F02M25/0854F02M25/089Y02T10/18Y02T10/36
    • In an FFV (flexible fuel vehicle) on which an internal-combustion engine using alcohol blended fuel in mounted, the remaining amount of fuel vapor presumed to remain in a canister in accordance with a usual purge processing is presumed based on an alcohol concentration in the alcohol blended fuel. According to this remaining amount, the size of the tank side channel which is a channel in a canister near the connection section with a connection pathway (tank line) with a fuel tank is adjusted by a canister throttle control means, and/or, the timing of opening and closing of an intake valve is changed by a variable valve timing mechanism. Thereby, the desorption rate (the amount of desorption) of fuel vapor from adsorption material in a canister is adjusted, and the concentration of the fuel included in purge gas is adjusted. As a result, even when the change of the remaining amount of the fuel vapor adsorbed by the adsorption material in the canister and/or the uneven concentration distribution of an alcohol component within the canister occur, the accuracy of an air/fuel ratio control in the FFV can be raised, and the discharge of a toxic substance can be suppressed effectively.
    • 在其中安装有使用醇混合燃料的内燃机的FFV(柔性燃料车辆)中,根据通常的清洗处理推定残留在罐中的燃料蒸汽的剩余量是基于在 酒精混合燃料。 根据该剩余量,通过具有燃料箱的连接路径(油罐管线)的连接部附近的罐中的槽的槽侧槽的尺寸由罐节流控制装置调节,和/或 通过可变气门正时机构改变进气门的打开和关闭的时间。 由此,调节来自罐内的吸附材料的燃料蒸气的解吸速度(解吸量),调节吹扫气体中所含的燃料浓度。 结果,即使当罐内的吸附材料吸附的燃料蒸汽的剩余量的变化和/或罐内的醇成分的不均匀浓度分布发生时,也能够实现空气/燃料比控制的精度 可以提高FFV,能够有效地抑制有毒物质的排出。
    • 9. 发明申请
    • CONTROL DEVICE FOR INTERNAL COMBUSTION ENGINE
    • 内燃机控制装置
    • US20140318501A1
    • 2014-10-30
    • US14363167
    • 2011-12-08
    • Shinichi MitaniEiji MuraseTakahiro TsukagoshiKazuhisa Matsuda
    • Shinichi MitaniEiji MuraseTakahiro TsukagoshiKazuhisa Matsuda
    • F02D41/30
    • F02D41/30F02D19/061F02D19/0689F02D19/0692F02D19/084F02D19/087F02D41/0025F02D41/008F02D41/047F02D41/3094F02D2200/0611Y02T10/36
    • An objective of the present invention is to stabilize the fuel injection amount for each cylinder and to execute fuel injection control accurately in a single-pressure-feed dual-injection type alcohol fuel injection system. An engine includes two injection valves and and a single-pressure-feed dual-injection type fuel supply system. The fuel supply system is configured such that fuel is injected sequentially in two cylinders during the pressure-feed-interval period from the execution of one fuel pressure-feed operation to the execution of the next fuel pressure-feed operation. If the alcohol concentration in the fuel is higher than a predetermined determination value γ at a startup operation time, an ECU executes only a cylinder injection for the first of the two cylinders described above, and executes both an intake passage injection and a cylinder injection for the second cylinder. Thus, even if the fuel pressure decreases due to the fuel injection for the first cylinder, the required fuel injection amount can be reserved for the second cylinder.
    • 本发明的目的是稳定每个气缸的燃料喷射量,并且在单压进料双注射型酒精燃料喷射系统中精确地执行燃料喷射控制。 发动机包括两个喷射阀和一个单进料双注射型燃料供应系统。 燃料供给系统被构造成使得在从执行一个燃料加压操作到执行下一次燃料加压操作的压力进给间隔期间,将燃料依次注入两个气缸中。 如果燃料中的酒精浓度高于启动操作时间的预定判定值γ,则ECU仅执行上述两个气缸中的第一个气缸的气缸喷射,并且执行进气通道喷射和气缸喷射 第二缸。 因此,即使燃料压力由于第一气缸的燃料喷射而降低,也可以为第二气缸保留所需的燃料喷射量。