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    • 1. 发明授权
    • Exhaust system
    • 排气系统
    • US07748213B2
    • 2010-07-06
    • US11633644
    • 2006-12-05
    • Suki IKenichi SatoKimiyoshi Nishizawa
    • Suki IKenichi SatoKimiyoshi Nishizawa
    • F01N3/00F02M25/06
    • F01N13/011F01N3/08F01N3/2053F01N11/007F01N13/10F01N2410/00F01N2410/06F01N2410/10F01N2560/025F01N2560/14F02M26/15F02M26/35F02M26/42Y02T10/47
    • An exhaust gas passageway of an internal combustion engine is basically provided with a main exhaust passageway, a bypass exhaust passageway, a bypass catalytic converter provided in the bypass exhaust passageway, a bypass control valve, an upstream air-fuel ratio sensor and a downstream air-fuel ratio sensor. The bypass exhaust passageway bypasses a portion of the main exhaust passageway between an upstream junction and a downstream junction. The bypass control valve opens or closes a portion of the main exhaust passageway. The upstream air-fuel ratio sensor is disposed upstream of the bypass catalytic converter to sense air-fuel ratio of an exhaust gas flowing into the bypass catalytic converter. The downstream air-fuel ratio sensor is disposed downstream of the bypass catalytic converter to sense air-fuel ratio of the exhaust gas flowing out of the bypass catalytic converter.
    • 内燃机的废气通路基本上设置有主排气通路,旁通排气通路,旁通排气通路中设置的旁通催化转化器,旁通控制阀,上游空燃比传感器和下游空气 - 燃料比传感器。 旁通排气通道在上游接头和下游接头之间绕过主排气通道的一部分。 旁通控制阀打开或关闭主排气通道的一部分。 上游空燃比传感器设置在旁通催化转化器的上游,以检测流入旁通催化转化器的废气的空燃比。 下游空燃比传感器设置在旁通催化转化器的下游,以检测从旁通催化转化器流出的废气的空燃比。
    • 6. 发明申请
    • Internal combustion engine air intake structure
    • 内燃机进气结构
    • US20060048738A1
    • 2006-03-09
    • US11214781
    • 2005-08-31
    • Hiroshi IsajiKouichi MoriShunichi MitsuishiKimiyoshi Nishizawa
    • Hiroshi IsajiKouichi MoriShunichi MitsuishiKimiyoshi Nishizawa
    • F02D9/02
    • F02F1/4235F02B31/06F02D9/103F02F1/4242Y02T10/146
    • An air intake structure is provided with an air intake control valve disposed in the air intake passage. The air intake control valve has a valve element pivotally mounted at one end adjacent to a passage wall of the air intake passage. The air intake control valve is configured to control a gas flow based on the rotational position of the valve element. At least one horizontal partitioning plate extends along the flow direction of an intake air. The horizontal partitioning plate can be stationary or moveable with the valve element. Optionally, the valve element has a swirl-producing notch and a vertical partitioning plate extends substantially perpendicular to the horizontal partitioning plate from a position corresponding to a vertical side edge of the swirl-producing notch when the air intake control valve is fully closed. The vertical partitioning plate can be stationary or moveable with the valve element.
    • 进气结构设置有设置在进气通道中的进气控制阀。 进气控制阀具有枢转地安装在与进气通道的通道壁相邻的一端处的阀元件。 进气控制阀构造成基于阀元件的旋转位置来控制气流。 至少一个水平分隔板沿进气的流动方向延伸。 水平分隔板可以与阀元件固定或移动。 可选地,当进气控制阀完全关闭时,阀元件具有涡流产生槽口,垂直分隔板从与涡流产生槽口的垂直侧边缘相对应的位置大致垂直于水平分隔板延伸。 垂直分隔板可以静止或与阀元件一起移动。
    • 7. 发明授权
    • Exhaust manifold for four-cylinder engine
    • 四缸发动机排气歧管
    • US06962049B2
    • 2005-11-08
    • US10379681
    • 2003-03-06
    • Masaaki AshidaKimiyoshi Nishizawa
    • Masaaki AshidaKimiyoshi Nishizawa
    • F01N13/10F01N3/28F01N13/08F01N13/18F02B27/04F02D13/02F01N7/10
    • F02B27/04F01N3/28F01N13/08F01N13/10Y02T10/146
    • In an exhaust manifold of a four-cylinder engine four cylinders of which line up in order of cylinder #1, cylinder #2, cylinder #3 and cylinder #4, temperature rise performance of a manifold catalyst improves by shortening a total length of the exhaust manifold while preventing exhaust gas interference between the cylinders. Therefore, an exhaust manifold branch of cylinder #1 and an exhaust manifold branch of cylinder #4 in outward sides of the engine that are not fired in succession are made convergent with its convergence angle θ1 being equal to or below 20 degrees to form a first convergent exhaust manifold branch and an exhaust manifold branch of cylinder #2 and an exhaust manifold branch of cylinder #3 between the cylinder #1 and cylinder #4 that are not fired in succession are made convergent at a minimum distance having a laterally projected shape to form a second convergent exhaust manifold branch. The first and the second convergent exhaust manifold branches are thereafter convergent at a convergence angle θ3 from 0 degrees to 20 degrees.
    • 在四缸发动机的排气歧管中,按气缸#1,气缸#2,气缸#3和气缸#4的顺序排列的四个气缸,通过缩短总气瓶的总长度来改善歧管催化剂的升温性能 排气歧管,同时防止气缸之间的废气干扰。 因此,使发动机的外侧的气缸#1的排气歧管分支和发动机的外侧的气缸#4的排气歧管分支不连续点火,会聚到会聚角θ1等于或低于20度,形成 第一收敛排气歧管分支和气缸#2的排气歧管分支和气缸#1的气缸#1的排气歧管分支在气缸#1和气缸#4之间不连续点火,使其以具有横向投影形状的最小距离会聚 以形成第二收敛排气歧管分支。 此后,第一和第二收敛排气歧管分支在会聚角θ3处从0度收敛到20度。
    • 8. 发明授权
    • Catalyst temperature control device and method of internal combustion engine
    • 催化剂内燃机温度控制装置及方法
    • US06341487B1
    • 2002-01-29
    • US09537515
    • 2000-03-29
    • Hideaki TakahashiKimiyoshi Nishizawa
    • Hideaki TakahashiKimiyoshi Nishizawa
    • F01N300
    • F01N3/0842F01N3/0885F01N2430/06F01N2570/04F02B2075/125F02D41/024F02D41/028F02D41/3023F02D41/402F02D2200/0806F02D2200/0818Y02T10/123Y02T10/26
    • A catalyst (9) is disposed in an exhaust passage (8) of an internal combustion engine (1) for trapping nitrogen oxides in the exhaust from a fuel mixture of a lean air-fuel ratio and reducing trapped nitrogen oxides in the exhaust from a fuel mixture of an air-fuel ratio other than the lean air-fuel ratio. The catalyst (9) also traps sulfur oxides in the exhaust when the catalyst temperature is less than a predetermined temperature, and discharges the trapped sulfur oxides when the catalyst temperature rises above the predetermined temperature. A microprocessor (10) calculates for example the sulfur oxide stored amount of the catalyst (9) based on engine running conditions, and determines that sulfur oxide discharge condition is satisfied when the sulfur oxide stored amount exceeds a predetermined amount. When the discharge condition is satisfied, the microprocessor (10) controls the fuel injection amount and fuel injection timing of the fuel injector (6) so as to generate a stratified air-fuel mixture in the combustion chamber (3). The stratified air-fuel mixture comprises a first layer surrounding the spark plug (7) and a second layer situated outside the first layer. The first layer comprises an atomized air-fuel mixture of a rich air-fuel ratio within an ignitable range. The second layer is leaner than the first layer.
    • 催化剂(9)设置在内燃机(1)的排气通道(8)中,用于从废空气的燃料混合物捕获排气中的氮氧化物,并从排气中的氮气中还原捕集的氮氧化物 燃料混合物之间的空燃比而不是稀空燃比。 当催化剂温度低于预定温度时,催化剂(9)还捕集排气中的硫氧化物,并且当催化剂温度升高到预定温度以上时,将被捕获的硫氧化物排出。 微处理器(10)基于发动机运转条件计算催化剂(9)的硫氧化物储存量,并且当硫氧化物储存量超过预定量时,确定满足硫氧化物排放条件。 当满足排放条件时,微处理器(10)控制燃料喷射器(6)的燃料喷射量和燃料喷射正时,从而在燃烧室(3)中产生分层的空气 - 燃料混合物。 分层空气 - 燃料混合物包括围绕火花塞(7)的第一层和位于第一层外部的第二层。 第一层包括在可燃范围内的富空燃比的雾化空气 - 燃料混合物。 第二层比第一层更薄。
    • 9. 发明授权
    • Exhaust emission control catalyst apparatus in internal combustion engine
    • 内燃机废气排放控制催化剂装置
    • US06296813B1
    • 2001-10-02
    • US09195715
    • 1998-11-19
    • Hitoshi IshiiKimiyoshi Nishizawa
    • Hitoshi IshiiKimiyoshi Nishizawa
    • B01D5388
    • F01N3/0835F01N3/0814F01N13/0097F01N2250/12F01N2570/12Y02T10/22
    • An inner surface of a cell 12 of a honeycomb carrier 11 except a downstream end of the inner surface in the exhaust direction is coated with a HC (hydrocarbon) adsorption material 13. The inner surface of the cell 12 coated with the HC adsorption material 13 is coated with a three way catalytic converter layer 14. A portion X located upstream side of the exhaust flow and having the three way catalytic converter layer 14 on the HC adsorption material 13, and a three way catalytic converter layer portion Y located downstream side of the exhaust flow are formed on an inner surface of the cell 12 of the honeycomb carrier 11. With this feature, the HC repeats elimination, re-adsorption, elimination, re-adsorption, . . . from the portion of the HC adsorption catalyst 10 upstream of the exhaust flow, finally reaches the downstream end of the portion X including the three way catalytic converter layer 14 on the HC adsorption material 13. Since the downstream end of this portion X is provided with the three way catalytic converter layer portion Y, the HC is converted by the three way catalytic converter layer 14 of this portion Y.
    • 蜂窝状载体11的除了排气方向的内表面的下游端的内表面涂覆有HC(烃)吸附材料13.涂覆有HC吸附材料13的电池12的内表面 涂覆有三元催化转化器层14.位于排气流的上游侧的部分X和在HC吸附材料13上具有三元催化转化器层14,并且位于下游侧的三元催化转化器层部分Y 在蜂窝载体11的电池12的内表面上形成排气。由此,HC重复排除,再吸附,消除,再吸附。 。 。 从排气流上游的HC吸附催化剂10的部分最终到达包含HC吸附材料13上的三元催化转化器层14的部分X的下游端。由于该部分X的下游端设有 三元催化转化器层部分Y,HC由该部分Y的三元催化转化器层14转化。
    • 10. 发明授权
    • Deterioration determination apparatus for exhaust emission control
device of internal combustion engine
    • 内燃机废气排放控制装置的劣化判定装置
    • US6145304A
    • 2000-11-14
    • US220382
    • 1998-12-24
    • Hideaki TakahashiKimiyoshi Nishizawa
    • Hideaki TakahashiKimiyoshi Nishizawa
    • F01N3/08F01N3/18F01N3/20F01N3/24F01N11/00F01N13/02F02D41/14F01N3/00
    • F01N3/0835F01N11/007F01N13/009F01N3/0871F01N2550/03Y02T10/20Y02T10/47
    • The disclosed deterioration determination apparatus for an exhaust emission control device used for an internal combustion engine is intended for the exhaust emission control device comprising the first catalyst, arranged in the exhaust passage of the engine, for conducting a catalytic action with respect to exhaust gas passed through the exhaust passage and the second catalyst, arranged in the downstream of the first catalyst in the exhaust passage, for conducting a catalytic action with respect to the exhaust gas passed through the exhaust passage. The deterioration determination apparatus includes the first sensor, arranged between the first catalyst and second catalyst, for detecting information about the air-fuel ratio of the exhaust gas passed through the exhaust passage; the second sensor, arranged in the downstream of the second catalyst, for detecting information about the air-fuel ratio of the exhaust gas passed through the exhaust passage; and a control unit. The control unit measures the amplitude of the air-fuel ratio of the exhaust gas from the information detected by the first sensor, while feedback controlling an air-fuel ratio of mixture gas supplied to the engine based on the information detected by the second sensor, and determines whether or not the second catalyst deteriorates based on the measured amplitude of the air-fuel ratio.
    • 所公开的用于内燃机的废气排放控制装置的劣化确定装置旨在用于包括布置在发动机的排气通道中的用于对通过的废气进行催化作用的第一催化剂的废气排放控制装置 通过排气通道和第二催化剂,布置在排气通道中的第一催化剂的下游,用于相对于通过排气通道的排气进行催化作用。 劣化判定装置包括:第一传感器,配置在第一催化剂和第二催化剂之间,用于检测通过排气通路的废气的空燃比的信息; 布置在第二催化剂下游的第二传感器,用于检测通过排气通道的废气的空燃比的信息; 和控制单元。 控制单元根据由第一传感器检测到的信息来测量排气的空燃比的幅度,同时基于由第二传感器检测到的信息反馈控制供给到发动机的混合气体的空燃比, 并且基于所测量的空燃比的幅度来判定第二催化剂是否劣化。