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    • 4. 发明公开
    • Canister for evaporated fuel processing system with a monolithically formed block of activated carbon and a method of manufacturing thereof
    • 收集燃料蒸气处理系统用活性炭及其制备方法的一个单片制备的块
    • EP1788230A1
    • 2007-05-23
    • EP05025302.0
    • 2005-11-19
    • Delphi Technologies, Inc.
    • Zuchara, Pawel
    • F02M25/08
    • F02M25/0854
    • The invention relates to a canister for evaporated fuel processing system, having a number of adsorbing chambers, wherein the last chamber 10 is connected with an atmospheric port 7 and comprises a monolithically formed block 12 of activated carbon. The block 12 is surrounded, at least from its atmospheric port 7 side by plastic, advantageously polyurethane, covering 13. Preferably, the block 12 is distanced from the atmospheric port 7 side of the last adsorbing chamber 10, defining an improved purge zone 15. The invention also relates to a method of manufacturing such a canister, where, after positioning the block of activated carbon inside the last adsorbing chamber, a covering surrounding the block is formed by injecting plastic, preferably polyurethane foam, into a space between the outer casing of the block and the inner casing of the chamber.
    • 本发明涉及用于蒸发燃料处理系统中的罐,具有多个吸附室,worin负载室10在大气压端口7连接,并且包括活性炭的整体形成的块12。 块12被包围,至少从由塑料,有利地它的聚氨酯大气端口7一侧,覆盖13优选地,该块12从吸附负载室10的大气端口7一侧隔开在限定改进的净化区第十五 因此,本发明涉及一种制造方法寻求罐,其中,定位所述吸附负载腔室内部的活性炭的块之后,围绕该块中的覆盖物由注射塑料,优选聚氨酯泡沫进入外壳之间的空间形成 块和所述室的内套管。
    • 6. 发明公开
    • Canister with overmolded filter
    • Kanister mit umgossenem过滤器
    • EP2071172A1
    • 2009-06-17
    • EP07123157.5
    • 2007-12-13
    • Delphi Technologies, Inc.
    • Kalina, AndrzejZuchara, PawelGadek, Michal
    • F02M25/08B60K15/035B01D53/04B01D46/00B60R11/00
    • F02D15/02B01D53/0415B01D2253/102B01D2253/342B01D2257/702B01D2259/4516
    • An evaporative emission storage canister (24) having a main chamber containing activated carbon for adsorbing evaporative fuel emissions, and having an additional chamber containing an elongated monolith element (34) for adsorbing carbon particles, wherein the main chamber is in communication with the fuel tank and with the additional chamber, wherein the additional chamber is in communication with an on-board diagnostic device through a canister outlet (28), wherein the outlet end of the monolith element (34) is equipped with an annular seal (42) comprising sealing lips (46) which bears against an inside portion of the additional chamber keeping the monolith element (34) in place, and wherein a filter (50) is arranged between the outlet end of the monolith element (34) and the canister outlet (28), characterized in that the filter (50) is overmolded with the seal (42) and in that the filter (50) closes the outlet end of the monolith element (34).
    • 一种蒸发排放储存罐(24),其具有包含用于吸附蒸发燃料排放物的活性炭的主室,并且具有包含用于吸附碳颗粒的细长单块元件(34)的附加室,其中所述主室与所述燃料箱连通 以及附加室,其中所述附加室通过罐出口(28)与车载诊断装置连通,其中所述整体元件(34)的出口端配备有环形密封件(42),所述环形密封件(42)包括密封 (46),其支撑在保持整料元件(34)就位的附加室的内部,并且其中过滤器(50)布置在整料元件(34)的出口端和罐出口(28)之间 ),其特征在于,过滤器(50)用密封件(42)包覆成型,并且过滤器(50)封闭整料元件(34)的出口端。
    • 7. 发明公开
    • Monolithhaltevorrichtung
    • EP1843034A1
    • 2007-10-10
    • EP06270037.2
    • 2006-04-03
    • Delphi Technologies, Inc.
    • Ziolkowski, JaroslawZuchara, Pawel
    • F02M25/08B01D53/04
    • F02M25/0854
    • The invention relates to a monolith retainer (33) for a fuel canister. The retainer (33) has a head portion (34) for retaining a monolith (30) within a chamber (31) of the fuel canister and a plurality of resiliently biased leg members (38) which extend from the head portion (34) along a length of the monolith (30) being retained. The legs (38) are resiliently biased toward the inner wall of the chamber (31) such that, when the monolith (30) resides within the chamber (31), contact feet (42) of the resiliently biased leg members (38) abut against the monolith. A support ridge (37) is also provided for preventing the monolith from travelling too far into the canister (31).
    • 本发明涉及一种用于燃料罐的整料保持器(33)。 保持器(33)具有头部(34),用于将整料(30)保持在燃料罐的腔室(31)内,以及多个弹性偏压的腿部构件(38),其从头部(34)沿着 整料(30)的长度被保持。 腿部38朝向腔室31的内壁弹性偏压,使得当整体体30位于腔室31内时,弹性偏置腿部构件38的接触脚部42抵靠 反对整体。 还提供了支撑脊(37),用于防止整料进入罐(31)太远。
    • 8. 发明公开
    • Canister of an evaporated fuel processing system
    • Sammelbehälterfürein Kraftstoffdampfsystem
    • EP1496239A2
    • 2005-01-12
    • EP04460022.9
    • 2004-06-03
    • Delphi Technologies, Inc.
    • Zuchara, Pawel
    • F02M25/08
    • B01D53/0415B01D53/0446B01D2253/102B01D2257/702B01D2258/01B01D2259/40009B01D2259/4516B01D2259/4566F02M25/0854
    • The invention relates to a canister (1) of an evaporated fuel processing system having a housing (2), inside of which a number of serially connected adsorbing chambers (4, 5) is placed, where the first adsorbing chamber is connected to a fuel tank (19) and to an intake pipe (20) of an internal combustion engine and the last, outlet adsorbing chamber (5) comprises an atmospheric port, where inside the outlet adsorbing chamber (5) across a vapours flow path at least one perforated plate (21) is placed.
      To meet the emission standards and to ensure the proper canister behaviour during tank (19) refuelling, the perforated plate (14, 21) comprises at least one vapour channel (26) with a valve (27a), inserted inside the outlet adsorbing chamber for a distance (h) less or equal to the thickness (H) of adsorbent layer behind the perforated plate (21), wherein the valve remains closed when no flow of evaporated fuel through the perforated plate(21) occurs. In a preferred embodiment of the canister, the valve in the vapour channel (26) is a pressure controlled direct action valve that opens when the flow restriction of adsorbent layer at the lowest distance (h) of the vapour channel (26) insertion exceeds the valve opening pressure.
    • 本发明涉及一种具有壳体(2)的蒸发燃料处理系统的罐(1),其中放置有多个串联的吸附室(4,5),其中第一吸附室连接到燃料 罐(19)和内燃机的进气管(20),最后的出口吸附室(5)包括一个大气口,其中出口吸附室(5)的内部穿过蒸汽流动路径,至少一个穿孔 放置板(21)。 为了满足排放标准并确保罐(19)加油期间适当的罐行为,多孔板(14,21)包括至少一个具有阀(27a)的蒸气通道(26),插入出口吸附室内 距离(h)小于或等于多孔板(21)后面的吸附剂层的厚度(H)的距离(h),其中当没有蒸发燃料通过多孔板(21)的流动发生时,阀保持关闭。 在罐的优选实施例中,蒸汽通道(26)中的阀是压力控制的直接作用阀,其在蒸汽通道(26)插入的最低距离(h)处的吸附剂层的流量限制超过 开阀压力。