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    • 1. 发明申请
    • Air cleaner
    • 空气净化器
    • US20050217632A1
    • 2005-10-06
    • US11083082
    • 2005-03-18
    • Takashi ImanishiTomonori OyamadaYoshiyuki Akao
    • Takashi ImanishiTomonori OyamadaYoshiyuki Akao
    • F02M35/10F02D35/00F02M35/02F02M35/024F02M35/04F02M69/48
    • F02M35/021F02M35/024Y02T10/146
    • The outlet duct extending outward from the air cleaner case is also extended inward into the air cleaner case with the same inner diameter such that the length of the part extending into the air cleaner is 10% to 25% of the axial length of the air cleaner element. By this, the distance from the opening of the outlet duct in the air cleaner case to the air flow sensor located in a downstream zone can be increased in an automobile engine, turbulence in the intake air flow can be considerably weakened at the air flow sensor, and air flow measurement not fluctuating widely can be obtained with an air flow measuring device having the same calibration program even when an air cleaner element of different type, i.e. of single type or double type, is used in an air cleaner case of the same design.
    • 从空气滤清器壳体向外延伸的出口管道也向内延伸到具有相同内径的空气滤清器壳体中,使得延伸进空气滤清器的部件的长度为空气滤清器的轴向长度的10%至25% 元件。 由此,在汽车发动机中可以增加从空气滤清器壳体中的出口导管的开口到位于下游区域的空气流量传感器的距离,在空气流量传感器中可以显着地减弱进气流中的湍流 并且即使在具有相同校准程序的空气净化器壳体中使用不同类型的空气滤清器元件,即单一或双重类型的空气滤清器元件,也可以使用具有相同校准程序的空气流量测量装置来广泛地进行空气流量测量 设计。
    • 2. 发明授权
    • Air cleaner
    • 空气净化器
    • US07140344B2
    • 2006-11-28
    • US11083082
    • 2005-03-18
    • Takashi ImanishiTomonori OyamadaYoshiyuki Akao
    • Takashi ImanishiTomonori OyamadaYoshiyuki Akao
    • G01F1/68
    • F02M35/021F02M35/024Y02T10/146
    • The outlet duct extending outward from the air cleaner case is also extended inward into the air cleaner case with the same inner diameter such that the length of the part extending into the air cleaner is 10% to 25% of the axial length of the air cleaner element. By this, the distance from the opening of the outlet duct in the air cleaner case to the air flow sensor located in a downstream zone can be increased in an automobile engine, turbulence in the intake air flow can be considerably weakened at the air flow sensor, and air flow measurement not fluctuating widely can be obtained with an air flow measuring device having the same calibration program even when an air cleaner element of different type, i.e. of single type or double type, is used in an air cleaner case of the same design.
    • 从空气滤清器壳体向外延伸的出口管道也向内延伸到具有相同内径的空气滤清器壳体中,使得延伸进空气滤清器的部件的长度为空气滤清器的轴向长度的10%至25% 元件。 由此,在汽车发动机中可以增加从空气滤清器壳体中的出口导管的开口到位于下游区域的空气流量传感器的距离,在空气流量传感器中可以显着地减弱进气流中的湍流 并且即使在具有相同校准程序的空气净化器壳体中使用不同类型的空气滤清器元件,即单一或双重类型的空气滤清器元件,也可以使用具有相同校准程序的空气流量测量装置来广泛地进行空气流量测量 设计。
    • 3. 发明授权
    • Failure detection apparatus for an internal combustion engine
    • 内燃机故障检测装置
    • US06842690B2
    • 2005-01-11
    • US10611874
    • 2003-07-03
    • Yoshiyuki AkaoSusumu Kohketsu
    • Yoshiyuki AkaoSusumu Kohketsu
    • F02D41/00F02D41/18F02D41/22F02D45/00F02M25/07G06F19/00G06G7/70
    • F02D41/0065F02D41/18F02D41/222F02D2041/0017F02M26/49Y02T10/47
    • A failure detection apparatus for an internal combustion engine includes failure detecting means (S22-S30) for detecting abnormality of fresh air quantity detecting means (air flow sensor) based on the result of comparison between a fresh air quantity detected by the fresh air quantity detecting means (air flow sensor) and a reference value for the fresh air quantity set by fresh air quantity reference value setting means (S20), and an EGR device (EGR passage, EGR valve, target opening setting means, EGR valve control means). The fresh air quantity reference value setting means sets the reference value (S16) in accordance with not only the operating state (engine speed Ne, fuel injection quantity Qf, etc.) of the engine but also a target EGR valve opening set by target opening setting means (S12, S14).
    • 用于内燃机的故障检测装置包括用于根据新鲜空气量检测检测到的新鲜空气量的比较结果来检测新鲜空气量检测装置(空气流量传感器)的异常的故障检测装置(S22-S30) (空气流量传感器)和由新鲜空气量基准值设定单元(S20)设定的新鲜空气量的参考值,以及EGR单元(EGR通路,EGR阀,目标开度设定单元,EGR阀控制单元)。 新鲜空气量基准值设定单元不仅根据发动机的运转状态(发动机转速Ne,燃料喷射量Qf等)设定基准值(S16),而且根据目标开度设定的目标EGR阀开度 设定装置(S12,S14)。
    • 4. 发明授权
    • Recirculating exhaust gas cooling device
    • 循环排气冷却装置
    • US6161528A
    • 2000-12-19
    • US182282
    • 1998-10-29
    • Yoshiyuki AkaoNorio NakazawaHiroshi Ogita
    • Yoshiyuki AkaoNorio NakazawaHiroshi Ogita
    • F02M25/07F28D19/04
    • F28D19/041F02M26/31F02M26/40
    • A recirculating exhaust gas cooling device is provided for cooling exhaust gas of a vehicle engine while the exhaust gas is recirculating through an EGR system designed to lower NOx emission levels. The cooling device includes a housing in which an exhaust gas recirculation passage and a cooling fluid passages are located next to each other, to extend in parallel with each other, and a heat-exchange core member rotatably provided in the housing and defining a multiplicity of passages that extend in substantially parallel with a rotational axis of the core member, and a rotating mechanism that rotates the core member. The multiple passages of the core member communicate with both of the exhaust gas recirculation passage and the cooling fluid passage. With the core member being rotated, EGR gas passing through the exhaust gas recirculation passage is cooled by a part of the passages of the core member that has been cooled by a cooling fluid passing through the cooling fluid passage.
    • 提供一种再循环废气冷却装置,用于冷却车辆发动机的废气,同时废气通过设计成降低NOx排放水平的EGR系统再循环。 冷却装置包括壳体,废气再循环通道和冷却流体通道彼此相邻放置,彼此平行地延伸;以及热交换芯部件,其可旋转地设置在壳体中并限定多个 与芯构件的旋转轴线基本平行地延伸的通路,以及使该芯构件旋转的旋转机构。 芯构件的多个通道与废气再循环通道和冷却流体通道两者连通。 在芯件旋转的情况下,通过排气再循环通道的EGR气体被已经被冷却流体冷却的冷却流体冷却的芯部件的一部分通道冷却。
    • 5. 发明授权
    • Fluid valve assembly
    • 流体阀组件
    • US06997169B2
    • 2006-02-14
    • US10937744
    • 2004-09-09
    • Yoshiyuki AkaoShigeru Matsuo
    • Yoshiyuki AkaoShigeru Matsuo
    • F02B47/08
    • F16K31/0655F02M26/54F02M26/55F02M26/67F02M26/74F16K31/0665F16K41/12
    • To protect a drive unit in a fluid valve assembly from impurities over a long term by preventing entrance of such impurities to the drive unit, a seal structure the sealing performance of which is hardly reduced is adopted around a moving part of the fluid valve assembly. The fluid valve assembly is provided with a valve member displaceably arranged in a flow passage through which a fluid is allowed to pass, a drive unit arranged outside the flow passage, a connecting member extending through a bore formed in a wall of the flow passage and connected at its end thereof to the valve member and at its opposite end to the drive unit, and a seal member arranged in gas- or water-tight relations with the wall of the flow passage and the connecting member and made of a flexible material such that the seal member does not interfere with a displacement of the valve member when the valve member is driven by the drive unit.
    • 为了通过防止这种杂质进入到驱动单元来长期保护流体阀组件中的驱动单元免于杂质,在流体阀组件的运动部分周围采用密封结构几乎不降低的密封结构。 流体阀组件设置有可移动地布置在允许流体通过的流动通道中的阀构件,布置在流动通道外侧的驱动单元,延伸穿过形成在流动通道的壁中的孔的连接构件,以及 在其端部处连接到阀构件并且在其相对端连接到驱动单元,以及密封构件,其与流动通道的壁和连接构件以气密或不透水的关系布置,并且由柔性材料制成 当阀构件被驱动单元驱动时,密封构件不干扰阀构件的位移。
    • 6. 发明授权
    • Failure detection apparatus for an internal combustion engine
    • 内燃机故障检测装置
    • US06993908B2
    • 2006-02-07
    • US10655057
    • 2003-09-04
    • Yoshiyuki AkaoSusumu Kohketsu
    • Yoshiyuki AkaoSusumu Kohketsu
    • F02D23/00F02D45/00F02B33/44F02M25/07
    • F02D41/222F02B37/24F02D41/0007F02D41/18F02M26/05F02M26/49Y02T10/40
    • A failure detection apparatus for an internal combustion engine includes failure detecting means (S22–S30) for detecting abnormality of fresh air quantity detecting means (air flow sensor) based on the result of comparison between a fresh air quantity detected by the fresh air quantity detecting means (air flow sensor) and a fresh air quantity reference value set by fresh air quantity reference value setting means (S20), and a supercharger equipped with variable nozzles/vanes. The fresh air quantity reference value setting means sets the reference value (S16) in accordance with not only the operating state (engine speed Ne, fuel injection quantity Qf, etc.) of the engine but also a target vane opening set for the variable nozzles/vanes of the supercharger by target vane opening setting means (S12, S14).
    • 用于内燃机的故障检测装置包括基于由新鲜空气检测到的新鲜空气量的比较结果来检测新鲜空气量检测装置(空气流量传感器)的异常的故障检测装置(S 22 -S 30) 数量检测装置(空气流量传感器)和由新鲜空气量参考值设定装置(S 20)设定的新鲜空气量参考值,以及配备有可变喷嘴/叶片的增压器。 新鲜空气量基准值设定单元不仅根据运转状态(发动机转速N,E,燃料喷射量Q<>>,< 等等),而且通过目标叶片开度设定装置(S12,S14)设置用于增压器的可变喷嘴/叶片的目标叶片开度。
    • 7. 发明授权
    • Failure detection apparatus for an internal combustion engine
    • 内燃机故障检测装置
    • US06962145B2
    • 2005-11-08
    • US10655578
    • 2004-06-04
    • Yoshiyuki AkaoSusumu Kohketsu
    • Yoshiyuki AkaoSusumu Kohketsu
    • F01N13/08F02D9/02F02D9/04F02D41/00F02D41/04F02D41/18F02D41/22F02D43/00F02D45/00F02M25/07
    • F02D41/0052F02D41/18F02D41/222Y02T10/47
    • A failure detection apparatus for an internal combustion engine includes failure detecting means (S22-S30) for detecting abnormality of fresh air quantity detecting means (air flow sensor) based on the result of comparison between a fresh air quantity detected by the fresh air quantity detecting means (air flow sensor) and a fresh air quantity reference value set by fresh air quantity reference value setting means (S20), and exhaust flow rate adjusting means. The fresh air quantity reference value setting means sets the reference value (S16) in accordance with not only the operating state (engine speed Ne, fuel injection quantity Qf, etc.) of the engine but also a target adjustment amount (target throttle valve opening) set for the exhaust flow rate adjusting means by target adjustment setting means (S12, S14).
    • 用于内燃机的故障检测装置包括基于由新鲜空气检测到的新鲜空气量的比较结果来检测新鲜空气量检测装置(空气流量传感器)的异常的故障检测装置(S 22 -S 30) 数量检测装置(空气流量传感器)和由新鲜空气量参考值设定装置(S 20)设定的新鲜空气量参考值和排气流量调节装置。 新鲜空气量基准值设定单元不仅根据运转状态(发动机转速N,E,燃料喷射量Q<>>,< 等等),还包括通过目标调节设定装置设定的排气流量调节装置的目标调节量(目标节流阀开度)(S12,S14)。
    • 8. 发明申请
    • Fluid valve assembly
    • 流体阀组件
    • US20050098164A1
    • 2005-05-12
    • US10937744
    • 2004-09-09
    • Yoshiyuki AkaoShigeru Matsuo
    • Yoshiyuki AkaoShigeru Matsuo
    • F02M25/07F16K31/06F16K41/12F16K31/44
    • F16K31/0655F02M26/54F02M26/55F02M26/67F02M26/74F16K31/0665F16K41/12
    • To protect a drive unit in a fluid valve assembly from impurities over a long term by preventing entrance of such impurities to the drive unit, a seal structure the sealing performance of which is hardly reduced is adopted around a moving part of the fluid valve assembly. The fluid valve assembly is provided with a valve member displaceably arranged in a flow passage through which a fluid is allowed to pass, a drive unit arranged outside the flow passage, a connecting member extending through a bore formed in a wall of the flow passage and connected at its end thereof to the valve member and at its opposite end to the drive unit, and a seal member arranged in gas- or water-tight relations with the wall of the flow passage and the connecting member and made of a flexible material such that the seal member does not interfere with a displacement of the valve member when the valve member is driven by the drive unit.
    • 为了通过防止这种杂质进入到驱动单元来长期保护流体阀组件中的驱动单元免于杂质,在流体阀组件的运动部分周围采用密封结构几乎不降低的密封结构。 流体阀组件设置有可移动地布置在允许流体通过的流动通道中的阀构件,布置在流动通道外侧的驱动单元,延伸穿过形成在流动通道的壁中的孔的连接构件,以及 在其端部处连接到阀构件并且在其相对端连接到驱动单元,以及密封构件,其与流动通道的壁和连接构件以气密或不透水的关系布置,并且由柔性材料制成 当阀构件被驱动单元驱动时,密封构件不干扰阀构件的位移。
    • 9. 发明授权
    • EGR control unit and EGR control method
    • EGR控制单元和EGR控制方法
    • US06708676B2
    • 2004-03-23
    • US10233555
    • 2002-09-04
    • Yoshiyuki AkaoSusumu Kohketsu
    • Yoshiyuki AkaoSusumu Kohketsu
    • F02M2507
    • F02D41/0072F02D2041/0067F02D2200/0414Y02T10/47
    • The present invention relates to an EGR control unit and EGR control method for controlling an EGR adjusting apparatus, and it is an object of the invention to calculate an EGR rate at a low cost and to control an operation of the EGR apparatus with high accuracy. The EGR control unit is made up of temperature detecting devices detect in-passage temperature at least two of an intake passage, an atmospheric air introduction passage located on the upstream side of the intake passage and communicated with the atmosphere and an EGR passage, an actual EGR rate calculating device for calculating a rate of an exhaust gas to an intake gas in an internal combustion engine on the basis of information on temperatures detected by the temperature detecting devices, and an EGR controller for controlling the EGR adjusting device through the use of the actual EGR rate calculated by the actual EGR rate calculating device.
    • 本发明涉及一种用于控制EGR调节装置的EGR控制单元和EGR控制方法,其目的是以低成本计算EGR率并且以高精度控制EGR装置的操作。 EGR控制单元由温度检测装置构成,检测进气通路,位于进气通路的上游侧的大气引入通路和大气连通的EGR通路中的至少两个EGR通路, EGR率计算装置,用于根据由温度检测装置检测到的温度的信息计算内燃机中的进气量的排气速率;以及EGR控制器,用于通过使用所述EGR调节装置来控制EGR调节装置 由实际EGR率计算装置计算的实际EGR率。