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    • 1. 发明授权
    • Fuel vapor purging system
    • 燃油蒸气净化系统
    • US5398660A
    • 1995-03-21
    • US71010
    • 1993-06-02
    • Nobuhiko KoyamaKazuto MaedaYuzi IshiguroSeiko AbeToshihiko IgashiraYasuyuki SakakibaraShinichiro Kamohara
    • Nobuhiko KoyamaKazuto MaedaYuzi IshiguroSeiko AbeToshihiko IgashiraYasuyuki SakakibaraShinichiro Kamohara
    • F02M25/08
    • F02M25/0854
    • A fuel vapor purging system includes a container in which a set of divided chambers are formed by partition walls. Absorbent is disposed in the divided chambers. The divided chambers are sequentially connected to form a zigzag passage. Fuel vapor can enter the container from a fuel tank via a vapor line connecting the fuel tank and the container. In the container, an end of the vapor line faces the divided chamber which occupies an end of the set of the divided chambers. In the container, the fuel vapor is absorbed by the absorbent. Air can escape from the container via an opening in the container. The fuel vapor can be separated from the absorbent. The separated fuel vapor can be drawn into a suitable drawing device such as an engine air induction device via a purge line connecting the container and the drawing device. Fresh air can flow into the container via an air inlet provided on the container. Among the divided chambers, at least the divided chamber which occupies the end of the set of the divided chambers has a cross-sectional area equal to or smaller than 40 cm.sup.2.
    • 燃料蒸气吹扫系统包括容器,其中一组分隔室由分隔壁形成。 吸收剂设置在分隔的室中。 分开的室依次连接形成之字形通道。 燃料蒸汽可以通过连接燃料箱和容器的蒸汽管线从燃料箱进入容器。 在容器中,蒸汽管线的一端面对分隔的室,该分隔室占据了分隔室的一端的一端。 在容器中,燃料蒸气被吸收剂吸收。 空气可以通过容器中的开口从容器逸出。 燃料蒸气可以与吸收剂分离。 分离出的燃料蒸汽可以通过连接容器和抽拉装置的清除管线被吸入合适的绘图装置,例如发动机空气感应装置。 新鲜空气可以通过设置在容器上的空气入口流入容器。 在分隔室中,至少分隔室的占据分隔室的一端的分隔室的截面积等于或小于40cm 2。
    • 5. 发明授权
    • Evaporated fuel adsorbing canister preventing diffusion of fuel
therethrough
    • 蒸发燃料吸附罐防止燃料通过其扩散
    • US5743943A
    • 1998-04-28
    • US677370
    • 1996-07-05
    • Kazuto MaedaNobuhiko KoyamaNaoya Kato
    • Kazuto MaedaNobuhiko KoyamaNaoya Kato
    • B01D53/04
    • B01D53/0415B01D2253/102B01D2257/702B01D2259/4145B01D2259/4516B01D2259/4566B01D53/0446
    • A canister which can control the diffusion of evaporated fuel to surely prevent the evaporated fuel from blowing through into the atmosphere has a main chamber having therein a first adsorbent layer for adsorbing evaporated fuel and including an evaporated fuel lead-in port and a purge port, a subchamber having therein a second adsorbent layer for adsorbing evaporated fuel and including an atmospheric air lead-in port, and an air chamber communicating with the main chamber and the subchamber are provided in a casing of a canister. The air chamber is divided into three parts: a first chamber at the side of the main chamber, a second chamber at the side of the subchamber and a third chamber between the first and second chambers. A nonlinear communication passage is formed inside of the third chamber by dividing the third chamber with a partition wall having its both ends opened to the first chamber and the second chamber respectively. Since the communication passage can be sufficiently long, a canister with both diffusion prevention and low pressure loss can be obtained.
    • 能够控制蒸发燃料扩散的罐能确实地防止蒸发的燃料吹入大气中,其主室具有用于吸附蒸发的燃料的第一吸附剂层,并且包括蒸发的燃料引入口和净化口, 其中具有用于吸附蒸发燃料的第二吸附剂层和包括大气引入口的小室,以及与主室和子室连通的空气室设置在罐的壳体中。 空气室分为三部分:在主室一侧的第一室,在子室一侧的第二室和在第一和第二室之间的第三室。 通过将第三室分隔成两端分别敞开的第一室和第二室的分隔壁,在第三室内形成非线性连通通道。 由于连通通道可以足够长,所以可以获得具有防扩散和低压力损失的罐。
    • 9. 发明申请
    • Exhaust gas recirculation device
    • 废气再循环装置
    • US20070017491A1
    • 2007-01-25
    • US11485987
    • 2006-07-14
    • Kazuto Maeda
    • Kazuto Maeda
    • F02M25/07F02B47/08
    • F02M26/48F02M26/19F02M26/21F02M26/47F02M26/54F02M26/70F02M26/72
    • An electric motor is placed on an upstream side of an exhaust gas recirculation passage of a housing in a direction that is parallel to an intake air flow direction. A first heat release part on a motor housing part of the housing is placed on an upstream side of an exhaust suction aperture in a direction of an intake air flow. A heat release of the electric motor is promoted by direct contact between a new intake air with much lower temperature than an EGR gas and the first heat release part of the motor housing part. Therefore, on the upstream side of the exhaust suction aperture in the direction of the intake air flow, the electric motor can be cooled by the new intake air. By utilizing the intake air suctioned into an inlet port of an engine, the electric motor and the like can be efficiently cooled.
    • 电动机沿着与进气流动方向平行的方向设置在壳体的废气再循环通道的上游侧。 在壳体的电动机容纳部分上的第一放热部分沿吸气流的方向放置在排气吸入孔的上游侧。 通过与EGR气体相比温度低得多的新的进气和电动机容纳部的第一放热部之间的直接接触来促进电动机的放热。 因此,在排气吸入孔的进气方向的上游侧,能够通过新的进气来冷却电动马达。 通过利用吸入发动机的入口的进气,可以有效地冷却电动机等。
    • 10. 发明授权
    • Evaporative fuel treatment device
    • 蒸发燃料处理装置
    • US5613477A
    • 1997-03-25
    • US642422
    • 1996-05-03
    • Kazuto Maeda
    • Kazuto Maeda
    • F02M25/08F02M33/04
    • F02M25/0836
    • According to the present invention, an evaporative fuel absorbing chamber absorbingly treating evaporative fuel, a second atmospheric chamber communicating with the evaporative fuel absorbing chamber, and a first atmospheric chamber separated from the second atmospheric chamber with a partition wall are formed in a case. An upper cover for forming the upper wall of the first atmospheric chamber has a cylindrical convex portion extending inside the first atmospheric chamber. When the upper cover is fixed after inserting the bottom end of an eletromagnetic valve into a communicating hole of the partition wall, the top end of the electromagnetic valve is fastened to the cylindrical convex portion. Thus, the electromagnetic valve is prevented from being clattered, and air leakage from between the communicating hole and the electromagnetic valve can be reduced. An air passage from the electromagnetic valve to the evaporative fuel absorbing chamber is formed in the canister, so that the evaporative fuel can be prevented from leaking from the gas passage.
    • 根据本发明,在壳体中形成有吸收处理蒸发燃料的蒸发燃料吸收室,与蒸发燃料吸收室连通的第二大气室和与第二大气室分隔开的第一大气室。 用于形成第一大气室的上壁的上盖具有在第一大气室内延伸的圆筒形凸部。 当将电磁阀的底端插入分隔壁的连通孔中时,上盖固定,电磁阀的顶端紧固在圆柱形凸部上。 因此,防止电磁阀被破坏,并且可以减少从连通孔和电磁阀之间的空气泄漏。 在该罐中形成从电磁阀到蒸发燃料吸收室的空气通道,从而可以防止蒸发燃料从气体通道泄漏。