SWIVEL JOINT FOR FAUCET
    1.
    发明申请
    SWIVEL JOINT FOR FAUCET 有权
    旋转接头

    公开(公告)号:US20080277927A1

    公开(公告)日:2008-11-13

    申请号:US12099493

    申请日:2008-04-08

    Abstract: A faucet having a swivel joint for adjusting the position of an outlet of the faucet. A flow coupler is fixed to a first faucet tube and a sleeve is removably and pivotally linked to the flow coupler by a fastener. A second faucet tube is then removably linked to the sleeve allowing the second faucet tube and sleeve to pivot about the flow coupler to adjust the outlet of the faucet.

    Abstract translation: 具有用于调节水龙头出口位置的旋转接头的水龙头。 流动联接器被固定到第一水龙头管,并且套筒通过紧固件可拆卸地枢转地连接到流动联接器。 然后第二水龙头管可拆卸地连接到套筒,允许第二水龙头管和套筒围绕流动联接器枢转以调节水龙头的出口。

    Swivel joint for faucet
    2.
    发明授权
    Swivel joint for faucet 有权
    水龙头旋转接头

    公开(公告)号:US08061386B2

    公开(公告)日:2011-11-22

    申请号:US12099493

    申请日:2008-04-08

    Abstract: A faucet having a swivel joint for adjusting the position of an outlet of the faucet. A flow coupler is fixed to a first faucet tube and a sleeve is removably and pivotally linked to the flow coupler by a fastener. A second faucet tube is then removably linked to the sleeve allowing the second faucet tube and sleeve to pivot about the flow coupler to adjust the outlet of the faucet.

    Abstract translation: 具有用于调节水龙头出口位置的旋转接头的水龙头。 流动联接器被固定到第一水龙头管,并且套筒通过紧固件可拆卸地枢转地连接到流动联接器。 然后第二水龙头管可拆卸地连接到套筒,允许第二水龙头管和套筒围绕流动联接器枢转以调节水龙头的出口。

    Isolated conduit system
    5.
    发明授权
    Isolated conduit system 失效
    隔离导管系统

    公开(公告)号:US5865473A

    公开(公告)日:1999-02-02

    申请号:US785118

    申请日:1997-01-21

    CPC classification number: F16L25/023 E03C1/04 Y10T137/87684 Y10T137/9464

    Abstract: In a water flow system, a non-metallic liner 50 is placed within at least a portion of a passage 48 of a supporting metallic end body 38 to preclude contact between any water flowing through the system and the passage of the end body. The liner 50 includes a flared section 60 at a first end 54 thereof which engages a bevelled surface 49 of the end body 38 and is held there in sealing fashion by a cone washer 82 and a nut 84 threadedly coupled to the end body. At a location near a second end 56 of the liner 50, the liner is formed with a first stepped shoulder 62 which facilitates location of the liner within the passage 48 of the end body 38 at the second end of the liner. A second stepped shoulder 64 is formed on the liner 50 which provides a location for an O-ring 72 which engages an adjacent portion of the passage 48 of the end body to form a seal thereby. With seals formed at the first and second ends 54 and 56 of the liner 50, any water passing through the liner will not contact the passage 48 of the end body 38.

    Abstract translation: 在水流系统中,非金属衬垫50被放置在支撑金属端本体38的通道48的至少一部分内,以阻止流过系统的任何水和端体的通道之间的接触。 衬套50在其第一端54处包括扩口部分60,其接合端部主体38的倾斜表面49,并且通过锥形垫圈82和螺纹连接到端部主体的螺母84以密封方式保持在其上。 在靠近衬套50的第二端56的位置处,衬套形成有第一阶梯式肩部62,其有利于衬套在衬套的第二端处在端体38的通道48内的位置。 第二阶梯肩部64形成在衬垫50上,其提供用于O形环72的位置,O形环72与端体的通道48的相邻部分接合以形成密封。 在衬套50的第一端部54和第二端部56形成有密封件的情况下,通过衬套的任何水都不会接触端部主体38的通道48。

    Fluid flow system vacuum breaker
    6.
    发明授权
    Fluid flow system vacuum breaker 失效
    流体系统真空断路器

    公开(公告)号:US5329957A

    公开(公告)日:1994-07-19

    申请号:US996486

    申请日:1992-12-15

    Abstract: A fluid flow system (20) includes fluid inlet conduits for supplying fluid through a fluid flow path (86) as formed by a manifold (74) and a module (76). The fluid is directed through fluid flow path (86) to a flexible conduit (54) and to a fluid dispensing wand (36) whereat the fluid can be selectively dispensed in a stream or a spray. A linking passageway (102) is formed by manifold (74) and module (76) to couple selectively the pressure of a pressurized environment, such as atmospheric pressure, to fluid flow path (86). An umbrella valve (104) is located in linking passageway (102) and is responsive to the development of a negative pressure at the fluid supply and thereafter couples the pressure of the pressurized environment to fluid flow path (86). This action neutralizes the effects of the negative pressure and precludes the reverse flow of fluid within fluid flow system (20).

    Abstract translation: 流体流动系统(20)包括用于通过由歧管(74)和模块(76)形成的流体流动路径(86)供应流体的流体入口导管。 流体被引导通过流体流动路径(86)到柔性管道(54)和流体分配棒(36),在该流体分配棒(36)中,流体可以以流或喷雾方式选择性地分配。 连接通道(102)由歧管(74)和模块(76)形成,以将加压环境(例如大气压)的压力选择性地耦合到流体流动路径(86)。 伞形阀(104)位于连接通道(102)中并且响应于在流体供应处形成负压并且然后将加压环境的压力耦合到流体流动路径(86)。 该作用中和了负压的作用,排除了流体流动系统(20)内流体的反向流动。

    Continuous laminating system
    7.
    发明授权
    Continuous laminating system 失效
    连续层压系统

    公开(公告)号:US4268345A

    公开(公告)日:1981-05-19

    申请号:US86153

    申请日:1979-10-18

    Abstract: A continuous laminating system is disclosed wherein a pair of rotating laminating rollers are provided which form a laminating nip through which a product to be laminated together with sheets of laminating film are fed and pressed. A pair of rearwardly positioned pull rollers pull the laminating film through the laminating rollers together with the product. Adjacent each laminating roller a shoe-type heating member is provided which has a concave surface adjacent the respective laminating roller and a convex heating surface positioned so that the laminating film from each of the supply rollers slides over the heating surface and is heated prior to entry into the laminating nip. A Teflon-coated fiberglass layer is provided at least over portions of the convex heating surface over which the laminating film slides. Problems of scratching of the laminating film and squealing during processing are solved according to the invention.

    Abstract translation: 公开了一种连续层压系统,其中提供了一对旋转层压辊,其形成层压辊隙,通过该层压辊隙将与层压膜片层压在一起的产品被进给和挤压。 一对向后定位的拉辊将层压膜与产品一起拉过层压辊。 相邻的每个层压辊设置有与相应的层压辊相邻的凹表面的凸缘式加热构件和设置为使得来自每个供给辊的层压膜在加热表面上滑动并在进入之前加热的鞋型加热构件 进入层压辊隙。 特氟隆涂覆的玻璃纤维层设置在叠层膜滑动的凸形加热表面的至少一部分上。 根据本发明解决了层压膜的划伤和加工过程中的尖叫的问题。

    Universal hub for a fluid dispenser

    公开(公告)号:US07766189B2

    公开(公告)日:2010-08-03

    申请号:US11674952

    申请日:2007-02-14

    CPC classification number: A47K5/1202 A47K5/1217 A47K2005/1218

    Abstract: A removable and replaceable dispensing head for a fluid dispenser system adapted to deliver the fluid to a user includes a hollow shank extending on an axis. A shank hub is attached to the hollow shank, and an aperture aligned with the hollow portion of the shank extends through the shank hub. A first fixed body is removably attached to the shank hub, the first fixed body and shank hub each having corresponding first attachment means arrayed in a predetermined pattern. A fluid conveyance path is provided through the hollow shank, first fixed body and shank hub. A second fixed body is provided having a second attachment means arrayed in the same predetermined pattern, the second attachment means corresponding to the first attachment means in the shank hub enabling removable attachment of the second fixed body to the shank hub upon removal of the first fixed body from the shank hub. A sensor attached to either the fixed body, or to a hub spacer connected to the shank hub, automatically detects the presence of a user and activates the fluid dispensing system.

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