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    • 81. 发明申请
    • Flow Control Device and Process
    • 流量控制装置和流程
    • US20160347516A1
    • 2016-12-01
    • US14766050
    • 2015-04-08
    • Jason HattonAndrew BrunnerAndrew Smith
    • Jason HattonAndrew BrunnerAndrew Smith
    • B65D47/20
    • B65D47/2031B65D47/2025B65D47/2037B65D47/44
    • A flow control device (20) and process are provided for controlling the flow of a pressurized fluid substance from a supply system (22). The device (20) includes a housing (30/40) that defines an orifice (84) for communicating between the supply system (22) that has an outlet end defining a discharge opening (57). The device 20 further includes a valve (140) having a flexible, resilient valve head (160) that has confronting, openable portions (186) movable from a closed configuration to an open configuration when the valve head (160) is subjected to a pressure differential acting across the valve head (160). The valve (140) is located across the housing outlet end discharge opening (57) so that the valve (140) and the housing (30/40) together define an expansion chamber (198) between the orifice (84) and the valve (140).
    • 提供流量控制装置(20)和工艺,用于控制来自供应系统(22)的加压流体物质的流动。 设备(20)包括限定用于在具有限定出口(57)的出口端的供应系统(22)之间连通的孔口(84)的壳体(30/40)。 装置20还包括具有柔性弹性阀头(160)的阀(140),当阀头(160)受到压力时,该阀(140)具有可从闭合构型移动到打开构型的相对的可打开部分(186) 作用在阀头(160)上的差速器。 阀(140)位于壳体出口端排出口(57)两侧,使得阀(140)和壳体(30/40)一起限定了在孔口(84)和阀门(84)之间的膨胀室(198) 140)。
    • 82. 发明授权
    • Product dispensing head for a container and associated dispensing device
    • 用于容器和相关分配装置的产品分配头
    • US09415903B2
    • 2016-08-16
    • US14238618
    • 2012-08-13
    • Nicolas Albisetti
    • Nicolas Albisetti
    • B65D35/36B65D47/20B65D47/42A45D19/02
    • B65D35/36A45D19/02B65D47/2037B65D47/42
    • The head (16) includes an application wall (30) having a central axis (A-A′), in which the application wall (30) defines at least one product dispensing orifice (82A), off-centered with respect to the central axis (A-A′), It includes a removable cap, mobile between a position for closing each dispensing orifice (82A) and a product dispensing position, the removable cap (32) comprising a bearing element (106B) on the application wall (30). The dispensing orifice (82A) remains clear when the bearing element is applied on the application wall (30), When the cap (32) occupies its closing position, each dispensing orifice (82A) is placed facing an intermediate closed region (154) of a bearing element (106B), located between a first exterior contact region (152A) of the bearing element (106B) with the application wall (30) and a second interior contact region (152B) of the bearing element (106B) with the application wall (30).
    • 头部(16)包括具有中心轴线(AA')的施加壁(30),其中施加壁(30)限定了至少一个相对于中心轴线偏心的产品分配孔口(82A) AA'),其包括可拆卸盖,可移动在用于封闭每个分配孔(82A)的位置和产品分配位置之间,所述可移除盖(32)包括在施加壁(30)上的支承元件(106B)。 当轴承元件被施加在施加壁(30)上时,分配孔口(82A)保持清洁。当盖子(32)占据其关闭位置时,每个分配孔口(82A)被放置成面向中间闭合区域 位于轴承元件(106B)的第一外部接触区域(152A)与施加壁(30)之间的轴承元件(106B)和轴承元件(106B)的第二内部接触区域(152B)与应用 墙(30)。
    • 83. 发明申请
    • BOTTLE CAPS WITH MULTI-POSITION VALVES
    • 具有多位置阀的瓶子
    • US20160150898A1
    • 2016-06-02
    • US14956195
    • 2015-12-01
    • Matt Hoskins
    • Matt Hoskins
    • A47G19/22B65D47/20
    • A47G19/2266B65D47/2018B65D47/2037
    • Disclosed are embodiments of bottle caps that comprise a rigid body configured to be secured to an opening of a bottle, a multi-position valve coupled to the body for regulating fluid flow through the cap, and a lid coupled to the body that can cover the valve. The cap can be adjustable between at least a closed position, a selectively open position, and a fully open position. In the closed position, the lid covers the multi-position valve and fluid flow through the multi-position valve is prevented. In the selectively open position, the lid is uncovered from the multi-position valve and the multi-position valve is operable to open to allow fluid flow when a flexible portion of the multi-position valve is squeezed by a user. In the fully open position, the lid is uncovered from the multi-position valve and fluid can flow freely through the multi-position valve.
    • 公开了一种瓶盖的实施例,其包括构造成固定到瓶的开口的刚性体,耦合到主体的多位置阀,用于调节通过帽的流体流动;以及盖子,其联接到主体, 阀。 盖可以在至少一个关闭位置,一个选择性打开位置和一个完全打开位置之间调节。 在关闭位置时,盖子覆盖多位置阀,并且防止了通过多位置阀的流体流动。 在选择性打开位置,盖被从多位置阀盖开始,并且当多用阀的柔性部分被使用者挤压时,多位置阀可操作地打开以允许流体流动。 在完全打开的位置,盖子从多位置阀盖开始,液体可以自由地流过多位置阀门。
    • 84. 发明授权
    • Drink bottle and cap assembly
    • 喝瓶和盖组件
    • US09079205B2
    • 2015-07-14
    • US14020680
    • 2013-09-06
    • Matt Hoskins
    • Matt Hoskins
    • B05B11/04B65B3/00B65D23/10B65D47/20B65D51/16A47G19/22
    • B05B11/047A47G19/2266B65B3/00B65D23/106B65D47/2037B65D51/1644B65D2547/066
    • Disclosed are embodiments of a squeezable drink bottle and a cap assembly therefor. The cap assembly can comprise a rigid cap body configured to be secured to a liquid container, a spout comprising a resiliently flexible tube extending through a passageway in the cap body, and a shut-off trigger slidably mounted in the cap body and adjustable between an open position and a closed position relative to the cap body, wherein when the trigger is in the open position, the tube is open to allow liquid to flow through the spout, and when the trigger is in the closed position, the tube is closed to block liquid flow through the spout. The cap assembly can also include a mouthpiece valve that remains sealed until the bottle is squeezed to pressurize a lumen within the mouthpiece and squirt fluid out of the spout or the mouthpiece is pinched to open the seal.
    • 公开了可挤压饮料瓶及其盖组件的实施例。 帽组件可以包括构造成固定到液体容器的刚性帽体,包括延伸穿过帽体中的通道的弹性柔性管的喷口,以及可滑动地安装在盖主体中的可切换触发器, 打开位置和相对于盖体的关闭位置,其中当触发器处于打开位置时,管是敞开的,以允许液体流过喷口,并且当触发器处于关闭位置时,管封闭 阻止液体流过喷口。 盖组件还可以包括接口阀,其保持密封,直到瓶子被挤压以对口腔内的内腔加压并且将流体从喷嘴中喷出或者吹嘴被打开以打开密封件。
    • 86. 发明授权
    • Dispensing fluids from containers using self closing valve, typically duckbill type valve
    • 使用自动关闭阀(通常为鸭嘴型阀)从容器中分配液体
    • US08469240B2
    • 2013-06-25
    • US11575787
    • 2005-10-11
    • Craig John Wellman
    • Craig John Wellman
    • B65D35/38
    • F16K15/147B65D35/38B65D47/2037
    • A dispenser for dispensing a fluid from a container T having an inlet for mounting to the container so as to receive therethrough the fluid, and an outlet which is adapted to open to release fluid therefrom when a predetermined pressure is applied to the fluid in the dispenser at the outlet, and to close to retain fluid in the dispenser at a pressure less than the predetermined pressure. A wall of resilient material at the outlet has one or more panels of elastomeric material provided therein, each panel being deformable to enable the adjacent resilient material to flex at the predetermined pressure and thus enable the outlet to open.
    • 一种用于从容器T分配流体的分配器,其具有用于安装到容器的入口以便容纳流体;以及出口,当将预定压力施加到分配器中的流体时,该出口适于打开以释放流体 在出口处,并且以小于预定压力的压力关闭以在分配器中保持流体。 在出口处的弹性材料壁具有设置在其中的一个或多个弹性体材料面板,每个面板是可变形的,以使相邻的弹性材料能够以预定压力弯曲,从而使出口能够打开。
    • 88. 发明授权
    • Packaging and applicator device for a composition
    • 用于组合物的包装和涂抹器装置
    • US08007191B2
    • 2011-08-30
    • US11398655
    • 2006-04-06
    • Jean-Louis Gueret
    • Jean-Louis Gueret
    • A46B11/00
    • A45D40/268A45D34/04A46B9/021A46B2200/1053A46B2200/106B65D47/2037B65D47/242
    • A packaging and/or applicator device may include: a first element including an axis and at least one slot extending almost perpendicularly to the axis, and a second element that is engaged, at least in part, inside the first element, and that is capable of turning relative to the first element about the axis. The second element may also be capable of being axially displaced in the first element. The second element may include at least one lug that is engaged in the slot and that is visible from an outside of the device. The slot and the lug may be configured in such a manner that displacement of the lug in the slot while the first and second elements are turning relative to each other causes the two elements to be displaced axially relative to each other.
    • 包装和/或施加器装置可以包括:第一元件,其包括轴线和至少一个几乎垂直于轴线延伸的狭槽,以及第二元件,其至少部分地接合在第一元件内部,并且能够 相对于围绕轴线的第一元件转动。 第二元件也可能能够在第一元件中轴向移位。 第二元件可以包括至少一个接合在槽中并且从设备的外部可见的凸耳。 狭槽和凸耳可以以这样的方式构造,即当第一和第二元件相对于彼此转动时,凸耳在槽中的移位导致两个元件相对于彼此轴向移位。