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    • 3. 发明授权
    • Vapor fuel control apparatus
    • 蒸气燃料控制装置
    • US3971406A
    • 1976-07-27
    • US517611
    • 1974-10-24
    • Masami InadaShuji Okumura
    • Masami InadaShuji Okumura
    • F02M25/08B60K15/035F16K17/26
    • F16K17/26B60K15/03519B60K2015/03296Y10T137/7775
    • A vapor fuel control apparatus adapted to be connected between a gasoline tank and a filter-supporting canister of a fuel supply system to an engine, comprising a main body, first valve means movably disposed within the main body and forming a first valve member therewith, second valve means movably disposed within the first valve means and forming a second valve member therewith, first spring means interposed between the main body and the first valve means urging said first valve means to move in one direction, and second spring means interposed between the first valve means and the second valve means urging said second valve means to move in the opposite direction, and both of first and second spring means holding the closing states of the first and second valve means at respective preset values.
    • 一种蒸汽燃料控制装置,适于连接在汽油箱和燃料供应系统的过滤器支撑罐之间,发动机包括主体,可移动地设置在主体内并与其形成第一阀构件的第一阀装置, 第二阀装置,可移动地设置在第一阀装置内并与其形成第二阀构件;第一弹簧装置,其插入在主体和第一阀装置之间,以推动所述第一阀装置沿一个方向移动;第二弹簧装置, 阀装置和第二阀装置促使所述第二阀装置沿相反方向移动,并且第一和第二弹簧装置两者均保持第一和第二阀装置的关闭状态各自的预设值。
    • 4. 发明授权
    • Multiple throttle level orifice apparatus
    • 多节流水平孔装置
    • US4328832A
    • 1982-05-11
    • US64605
    • 1979-08-07
    • Masami InadaKazuhiko KitamuraShuji OkumuraTakao NonoyamaRiichi Tsuji
    • Masami InadaKazuhiko KitamuraShuji OkumuraTakao NonoyamaRiichi Tsuji
    • F16K11/074F02P5/10F02P5/14F16K3/32F16L55/00F16K5/14F16K5/10
    • F02P5/14F16K3/32Y10T137/86815
    • An orifice apparatus is provided which couples a vacuum advancer of a distributor associated with an engine for a vehicle with a carburetor of the engine. The orifice apparatus includes a body having an upper and a lower opening between which an isolation wall is formed in which a plurality of orifices are circumferentially spaced apart at an equal angular interval. A plurality of orifice members are disposed below the isolation wall and each has an orifice of a different diameter formed therein which is located below one of the plurality of orifices. A rotary plate is disposed above the isolation wall and is secured to a regulating member in the form of a rotatable shaft. A seal member is bonded to the lower surface of the rotary plate, which is formed with a passage port which can be brought into alignment with one of the plurality of orifices formed in the isolation wall. The rotary plate is urged by a single coiled spring toward the isolation wall so that the seal member is pressed to provide a hermetic seal between the rotary plate and the upper surface of the isolation wall. The seal member is formed with a plurality of openings, each corresponding to one of the plurality of orifices in the isolation wall and having a greater dimension than the corresponding orifice. These openings are circumferentially spaced apart at an equal angular interval. The regulating member is driven for rotation to move the passage port of the rotary plate from a position in which it is substantially aligned with one of the plurality of orifices formed in the isolation wall to another position in which it is aligned with another orifice, whereby the particular orifice which provides a communication between chambers formed in the body of orifice apparatus above and below the isolation wall is changed, thus changing the throttle level of the fluid path which joins the chambers.
    • 提供一种孔口装置,其将与车辆的发动机相关联的分配器的真空推进器与发动机的化油器联接。 孔口装置包括具有上开口和下开口的主体,在该主体之间形成有隔离壁,多个孔以相等的角度周向间隔开。 多个孔口构件设置在隔离壁下方,并且每个具有形成在其中的不同直径的孔口,其位于多个孔口中的一个孔下方。 旋转板设置在隔离壁上方并且以可旋转轴的形式固定到调节构件。 密封构件结合到旋转板的下表面,其形成有可以与形成在隔离壁中的多个孔中的一个孔对准的通道口。 旋转板被单个螺旋弹簧推向隔离壁,使得密封构件被按压以在旋转板和隔离壁的上表面之间提供气密密封。 密封构件形成有多个开口,每个开口对应于隔离壁中的多个孔中的一个,并且具有比相应的孔更大的尺寸。 这些开口以相等的角度间隔周向隔开。 驱动调节构件旋转以使旋转板的通道从基本上与隔离壁中形成的多个孔中的一个基本上对准的位置移动到与另一个孔对准的另一位置,由此 改变了在隔离壁上方和下方形成在孔口装置的主体中的室之间的连通的特定孔口,从而改变连接室的流体路径的节流水平。
    • 5. 发明申请
    • FOAMABLE COMPOSITION FOR POLYURETHANE FOAM AND POLYURETHANE FOAM
    • 聚氨酯泡沫和聚氨酯泡沫的可泡沫组合物
    • US20110201705A1
    • 2011-08-18
    • US13096394
    • 2011-04-28
    • Shuji Okumura
    • Shuji Okumura
    • C08J9/08C08G18/54C08G18/32
    • C08G18/4027C08G18/5021C08G18/5027C08G18/5033C08G18/542C08G18/546C08G2101/00C08G2101/0008C08G2101/0025
    • A foamable composition for polyurethane foam is provided which advantageously improves heat insulating properties, a long-term stability, and a dimensional stability, of a polyurethane foam that is produced by using carbon dioxide as a blowing agent. Further, a polyurethane foam which has excellent heat insulating properties is provided by foaming and curing the foamable composition for polyurethane. In the production of the polyurethane foam in which carbon dioxide is used in the foaming, a polyol component is used which includes a phenolic resin polyol that is obtained by adding at least one alkylene oxide to a phenolic novolak resin, and an aromatic amine polyol that is obtained by adding at least one alkylene oxide to an aromatic diamine such that the total amount thereof is 60% or more by mass, based on the total polyol component.
    • 提供了用于聚氨酯泡沫的可发泡组合物,其有利地改善了通过使用二氧化碳作为发泡剂制备的聚氨酯泡沫体的隔热性能,长期稳定性和尺寸稳定性。 此外,通过发泡和固化用于聚氨酯的可发泡组合物来提供具有优异绝热性的聚氨酯泡沫。 在发泡中使用二氧化碳的聚氨酯泡沫体的制造中,使用多元醇成分,该多元醇成分包括通过在酚醛清漆树脂中添加至少一种烯化氧而获得的酚醛树脂多元醇,和芳香族胺多元醇 是通过向芳族二胺中添加至少一种烯化氧使得其总量相对于总多元醇成分为60质量%以上而获得的。