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    • 1. 发明授权
    • Arrangement of disposition of canister in vehicle
    • 车辆配置布置
    • US5702125A
    • 1997-12-30
    • US517335
    • 1995-08-21
    • Takeaki NakajimaKazumi Yamazaki
    • Takeaki NakajimaKazumi Yamazaki
    • B60K15/077B60K15/035B60K15/063F01N13/00F01N99/00F02M25/08B60K15/07
    • B60K15/03504B60K15/063F02M2025/0881
    • A rear panel is provided in rear of a connecting wall rising upwardly from a rear end of a front floor panel, and a fuel tank supported within a subframe is disposed beneath a lower surface of the rear floor panel. A gas fume absorbing canister and a muffler are juxtaposed in a lateral direction of a vehicle body in a space which is surrounded by a rear surface of a middle cross-member secured to a rear surface of the connecting wall, a front surface of the fuel tank and the lower surface of the rear floor panel. Thus, it is possible to shorten a purge passage connected from the canister to an engine, to protect the canister from collision against a stepping stone or the like, to insure the volume of a trunk room and to enhance the purging efficiency of the canister utilizing a heat of the muffler by reasonably disposing the canister at a rear portion of the vehicle body.
    • 后面板设置在从前地板面板的后端向上升起的连接壁的后部,并且支撑在副框架内的燃料箱设置在后底板的下表面的下方。 气体烟雾吸收罐和消声器在车体的横向方向上并列在由固定到连接壁的后表面的中间横梁的后表面围绕的空间中,燃料的前表面 油箱和后底板的下表面。 因此,可以将从罐连接的吹扫通道缩短到发动机,以保护罐不会与踏脚石等碰撞,以确保行李箱的体积,并且利用该方式提高罐的净化效率 消声器的热量通过在车体的后部合理设置罐。
    • 2. 发明授权
    • Evaporative fuel-processing system for internal combustion engines
    • 内燃机蒸发燃料处理系统
    • US5474048A
    • 1995-12-12
    • US362940
    • 1994-12-23
    • Kazumi YamazakiTeruo WakashiroKouichi HidanoTakeshi HaraTakeaki NakajimaTomoyuki Kawakami
    • Kazumi YamazakiTeruo WakashiroKouichi HidanoTakeshi HaraTakeaki NakajimaTomoyuki Kawakami
    • B60K15/077F02M25/08F02M37/00
    • F02M25/0872F02M25/089Y10T137/86324
    • An evaporative fuel-processing system for an internal combustion engine includes a canister accommodating an adsorbent therein, for adsorbing evaporative fuel generated in a fuel tank of the engine, and a charging passage connecting between the canister and the fuel tank. A shutter valve is arranged in a fuel supply pipe of the fuel tank in the vicinity of an inlet end thereof, for isolating the interior of the fuel supply pipe from the atmosphere, and the shutter valve is disposed to be opened by the tip of a refueling gun when the latter is inserted into the fuel supply pipe. A pressure-intake port section is arranged in the fuel supply pipe at a side of the shutter valve closer to the main body of the fuel tank, for taking in pressure within the fuel supply pipe. A diaphragm valve is arranged in the charging passage, which has a casing, a diaphragm defining the interior of the casing into a first chamber and a second chamber, a valve element displaceable together with the diaphragm, an evaporative fuel outlet disposed to be opened and closed by the valve element, and a spring urging the valve element in a direction of closing the evaporative fuel outlet. The first chamber communicates with the pressure-intake port section, and the second chamber communicates with the interior of the fuel tank.
    • 用于内燃机的蒸发燃料处理系统包括容纳吸附剂的罐,用于吸收在发动机的燃料箱中产生的蒸发燃料,以及连接在罐和燃料箱之间的充电通道。 在燃料箱的燃料供给管的入口端附近设置有闸阀,用于将燃料供给管的内部与大气隔离,并且将闸阀设置成由 当燃料枪插入燃料供应管时,加油枪。 压力吸入口部分布置在燃料供给管的靠近燃料箱主体的闸门阀侧,用于承受燃料供给管内的压力。 隔膜阀布置在充气通道中,该充气通道具有壳体,将壳体内部限定为第一腔室和第二腔室的隔膜,可与隔膜一起移位的阀元件,布置成打开的蒸发燃料出口, 由阀元件关闭,弹簧沿关闭蒸发燃料出口的方向推动阀元件。 第一室与进气口部连通,第二室与燃料箱的内部连通。
    • 3. 发明授权
    • Evaporative fuel processing device
    • 蒸发燃料处理装置
    • US5813434A
    • 1998-09-29
    • US729918
    • 1996-10-11
    • Masaaki HoriuchiTakeaki NakajimaKazumi Yamazaki
    • Masaaki HoriuchiTakeaki NakajimaKazumi Yamazaki
    • F02M25/08B60K15/035F02M37/00F16K24/04
    • B60K15/03519B60K2015/03576Y10T137/3099Y10T137/86324
    • An on-off valve 30 is mounted in an intermediate portion of a first evaporative fuel conduit 24 for passing an evaporative fuel within a fuel tank 21 to a canister C. The on-off valve 30 is opened when refueling. A float valve 28 is mounted at a lower end of the first evaporative fuel conduit 24 and closed by rising of the liquid level in the fuel tank 21. A two-way valve 40 and a second float valve 29 are mounted in an intermediate portion and a lower end of a second evaporative fuel conduit 25 which permits the fuel tank 21 and the canister C to be put into communication with each other during non-refueling. By putting the first and second evaporative fuel conduits 24 and 25 into communication with each other by a communication passage 27, the internal pressure in a portion 24a of the first evaporative fuel conduit 24, between the on-off valve 30 and the second float valve 28, is equalized to the internal pressure in the fuel tank 21, thereby preventing the first float valve 28 from being stuck in a closed position.
    • 开关阀30安装在第一蒸发燃料管道24的中间部分中,用于将燃料箱21内的蒸发燃料通到罐C上。加油时,开关阀30打开。 浮子阀28安装在第一蒸发燃料导管24的下端,并通过燃料箱21中的液位升高而关闭。二通阀40和第二浮阀29安装在中间部分 第二蒸发燃料管道25的下端,其允许燃料箱21和罐C在非加油期间彼此连通。 通过使第一和第二蒸发燃料管道24和25通过连通通道27彼此连通,第一蒸发燃料管道24的部分24a中的内部压力在开关阀30和第二浮阀之间 28相等于燃料箱21中的内部压力,从而防止第一浮阀28卡在关闭位置。
    • 4. 发明授权
    • Evaporative emission control system for internal combustion engines
    • 内燃机蒸发排放控制系统
    • US5579742A
    • 1996-12-03
    • US579356
    • 1995-12-27
    • Kazumi YamazakiMasaaki HoriuchiTakeaki NakajimaKoichi HidanoTakeshi Hara
    • Kazumi YamazakiMasaaki HoriuchiTakeaki NakajimaKoichi HidanoTakeshi Hara
    • B60K15/077B60K15/035B60K15/04F02M25/08F02M37/00F02M33/02
    • B60K15/03504B60K15/03519B60K2015/03576
    • An evaporative emission control system for an internal combustion engine comprises a canister for adsorbing evaporative fuel generated in the fuel tank, and a first evaporative fuel passage extending between the canister and the tank main body of the fuel tank. A differential pressure-operated valve is arranged across the first evaporative fuel passage, which has a positive pressure chamber communicating through the first evaporative fuel passage with the interior of the tank main body of the fuel tank, and a back pressure chamber. The differential pressure-operated valve opens and closes the first evaporative fuel passage in response to a difference in pressure between the positive pressure chamber and the back pressure chamber. A pressure-introducing passage extends between the back pressure chamber and the inlet end portion of a filler pipe extending from the interior of the main body of the fuel tank, and a second evaporative fuel passage extends between the interior of the tank main body of the fuel tank and one of the back pressure chamber and the pressure-introducing passage. A check valve limits the amount of evaporative fuel flowing through the second evaporative fuel passage.
    • 用于内燃机的蒸发排放控制系统包括用于吸收在燃料箱中产生的蒸发燃料的罐和在罐和燃料箱的罐主体之间延伸的第一蒸发燃料通道。 在第一蒸发燃料通路的两侧配置有差压式阀,其具有通过第一蒸发燃料通路与燃料箱的箱主体的内部连通的正压室和背压室。 差压式操作阀响应于正压室和背压室之间的压力差而打开和关闭第一蒸发燃料通道。 压力导入通道在背压室与从燃料箱主体内部延伸的加注管的入口端部分之间延伸,第二蒸发燃料通道在罐体主体的内部延伸 燃料箱和背压室和压力导入通道中的一个。 止回阀限制流过第二蒸发燃料通道的蒸发燃料的量。
    • 5. 发明授权
    • Canister
    • US5632808A
    • 1997-05-27
    • US622834
    • 1996-03-27
    • Takeshi HaraKazumi YamazakiTeruo WakashiroTakeaki NakajimaShoichi Hokazono
    • Takeshi HaraKazumi YamazakiTeruo WakashiroTakeaki NakajimaShoichi Hokazono
    • F02M25/08B01D53/04
    • B01D53/0415B01D2253/102B01D2257/702B01D2258/01B01D2259/40086B01D2259/4516B01D2259/4566
    • A canister includes a partition wall which extends toward the lid member with one end thereof connected to the end wall and opposite sides are connected to an inner surface of the casing body. First and second adsorbent layers, formed by an adsorbent, are retained between first and second filters and a third filter, respectively. The first and second filters are fixedly disposed on opposite sides of the partition wall to define first and second chambers between the first and second filters and the end wall, respectively. The third filter is placed and carried on an inner surface of a support plate which is fitted in the casing body and which has a large number of communication bores. The support plate and a lid member are biased by a spring in a direction to compress the first and second adsorbent layers. An inclination inhibiting portion is provided on at least one of the casing body and the partition wall on the opposite side from the third chamber with respect to the third filter and the support plate at a distance from the third filter which substantially corresponds to a distance between the third filter and the partition wall. Thus, it is possible to prevent a reduction in adsorbing efficiency by preventing the third filter and support plate from inclining.
    • 一个罐子包括一个分隔壁,该分隔壁朝着盖子部件延伸,其一端连接在端壁上,相对的两侧连接到壳体的内表面。 由吸附剂形成的第一和第二吸附剂层分别保持在第一和第二过滤器和第三过滤器之间。 第一和第二过滤器固定地设置在分隔壁的相对侧上,以分别在第一和第二过滤器和端壁之间限定第一和第二室。 第三过滤器被放置并承载在安装在壳体中并具有大量连通孔的支撑板的内表面上。 支撑板和盖构件被弹簧沿着压缩第一和第二吸附剂层的方向偏置。 相对于第三过滤器和与第三过滤器相距一定距离的与第三室相反一侧的壳体主体和分隔壁中的至少一个设置有倾斜抑制部分,其基本上对应于第三过滤器之间的距离 第三个过滤器和分隔壁。 因此,可以防止第三过滤器和支撑板倾斜来防止吸附效率的降低。
    • 10. 发明授权
    • Wave absorbing structure for fuel tank
    • 燃油箱吸波结构
    • US08365942B2
    • 2013-02-05
    • US12628530
    • 2009-12-01
    • Takeaki NakajimaDaisuke Nohara
    • Takeaki NakajimaDaisuke Nohara
    • B60P3/24B65D88/12
    • B60K15/077B60K2015/0775Y10T137/86212
    • A wave absorbing member including a cage-shaped container housing a sponge that imparts resistance to the passing of fuel is arranged inside a tank body. Therefore, an impact by collision of the fuel can be absorbed, noise caused by undulation of the fuel can be reduced, and violent undulation of a fuel level can be effectively suppressed by the wave absorbing member. The wave absorbing member is supported by a pipe that is arranged inside the tank body and passes through a through hole formed in the container. A movement restricting member is provided on the pipe to limit movement of the wave absorbing member along the pipe. Therefore, the wave absorbing member is reliably positioned along the pipe and within the tank body with a simple structure.
    • 包括容纳海绵的笼状容器的波浪吸收构件设置在罐体内部,该海绵对赋予燃料通过抵抗力。 因此,可以吸收燃料的碰撞的影响,可以降低由燃料起伏引起的噪声,并且能够有效地抑制燃料液位的剧烈波动。 波浪吸收构件由布置在罐体内部并穿过形成在容器中的通孔的管道支撑。 在管道上设有移动限制件,以限制吸波件沿着管道的移动。 因此,波形吸收构件以简单的结构可靠地沿管道和罐体内定位。