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    • 6. 发明授权
    • Refillable devices for dispensing fluids
    • 用于分配流体的可再填充装置
    • US08857738B2
    • 2014-10-14
    • US12450383
    • 2008-03-26
    • Jeremy F. KnopowJeffrey L. CrullLawrence J. FenskeCunjiang Cheng
    • Jeremy F. KnopowJeffrey L. CrullLawrence J. FenskeCunjiang Cheng
    • A62C31/00A62C5/02B05B7/26B05B7/30B67D7/28B67D7/06B05B11/00B65D83/68B65D83/14B05B7/24
    • B05B11/0037B05B7/2416B05B7/2421B05B7/2443B05B7/2472B05B11/0038B05B11/0054B05B11/0056B05B11/3011B65D83/68B65D83/75
    • A device (10) for selectively dispensing ones of multiple fluids, preferably cleaning agents, is disclosed. The device includes a reservoir (50) and a container assembly (100) that can include at least one container body (105, 110, 112, 114, 116). The reservoir (50) houses a diluent “D,” for example, water, and each container body houses a concentrate “C,” for example, a concentrated form of a cleaning agent. Each container body has an outlet assembly (200) with a nozzle (260), so that container assemblies (100) with multiple container bodies correspondingly include multiple nozzles (260). The diluent “D” and concentrates “C” are kept separate from each other, whereby ho end use product is stored in the device (10). Rather, end use product is mixed on demand during dispensation, as part of the, dispensing act. Namely, diluent “D” is pumped through an outlet assembly (200), drawing concentrate “C” thereinto which mixes into the end use product while exiting the device (10).
    • 公开了一种用于选择性地分配多种流体,优选清洁剂中的一种的装置(10)。 该装置包括可包括至少一个容器主体(105,110,112,114,116)的容器(50)和容器组件(100)。 储存器(50)容纳稀释剂“D”,例如水,并且每个容器主体容纳浓缩物“C”,例如浓缩形式的清洁剂。 每个容器主体具有带有喷嘴(260)的出口组件(200),使得具有多个容器体的容器组件(100)相应地包括多个喷嘴(260)。 稀释剂“D”和浓缩物“C”保持彼此分离,由此将终端使用产品储存在装置(10)中。 相反,最终用途产品在分配期间是按需分配的,作为分配行为的一部分。 也就是说,稀释剂“D”被泵送通过出口组件(200),其中抽出浓缩物“C”,其在离开设备(10)时混合到最终用途产品中。
    • 7. 发明申请
    • REFILLABLE DEVICES FOR DISPENSING FLUIDS
    • 用于分配流体的可重装置
    • US20100090027A1
    • 2010-04-15
    • US12450383
    • 2008-03-26
    • Jeremy F. KnopowJeffery L. CrullLawrence J. FenskeCunjiang Cheng
    • Jeremy F. KnopowJeffery L. CrullLawrence J. FenskeCunjiang Cheng
    • A62C13/62
    • B05B11/0037B05B7/2416B05B7/2421B05B7/2443B05B7/2472B05B11/0038B05B11/0054B05B11/0056B05B11/3011B65D83/68B65D83/75
    • A device (10) for selectively dispensing ones of multiple fluids, preferably cleaning agents, is disclosed. The device includes a reservoir (50) and a container assembly (100) that can include at least one container body (105, 110, 112, 114, 116). The reservoir (50) houses a diluent “D,” for example, water, and each container body houses a concentrate “C,” for example, a concentrated form of a cleaning agent. Each container body has an outlet assembly (200) with a nozzle (260), so that container assemblies (100) with multiple container bodies correspondingly include multiple nozzles (260). The diluent “D” and concentrates “C” are kept separate from each other, whereby ho end use product is stored in the device (10). Rather, end use product is mixed on demand during dispensation, as part of the, dispensing act. Namely, diluent “D” is pumped through an outlet assembly (200), drawing concentrate “C” thereinto which mixes into the end use product while exiting the device (10).
    • 公开了一种用于选择性地分配多种流体,优选清洁剂中的一种的装置(10)。 该装置包括可包括至少一个容器主体(105,110,112,114,116)的容器(50)和容器组件(100)。 储存器(50)容纳稀释剂“D”,例如水,并且每个容器主体容纳浓缩物“C”,例如浓缩形式的清洁剂。 每个容器主体具有带有喷嘴(260)的出口组件(200),使得具有多个容器体的容器组件(100)相应地包括多个喷嘴(260)。 稀释剂“D”和浓缩物“C”保持彼此分离,由此将终端使用产品储存在装置(10)中。 相反,最终用途产品在分配期间是按需分配的,作为分配行为的一部分。 也就是说,稀释剂“D”被泵送通过出口组件(200),其中抽出浓缩物“C”,其在离开设备(10)时混合到最终用途产品中。
    • 10. 发明授权
    • Handheld portable devices for touchless particulate matter removal
    • 手持便携式设备,用于无尘颗粒物质去除
    • US08661608B2
    • 2014-03-04
    • US12170203
    • 2008-07-09
    • Jeremy F. KnopowSteven Merrill HarringtonAndrew L. Banka
    • Jeremy F. KnopowSteven Merrill HarringtonAndrew L. Banka
    • A47L5/24A47L5/14
    • A47L9/0072A47L5/14A47L5/24A47L7/04A47L9/06A47L9/0686A47L9/08B08B5/02B08B15/04
    • Handheld portable devices for dislodging and capturing particulate matter that has accumulated on various surfaces or structures are provided. The devices create opposing airflows that can intimately interface with each other during use. A vacuum airflow is drawn into the device, defining a vacuum affected zone upon the surface being cleaned. A high pressure airflow is emitted that penetrates through or passes adjacent to the opposing vacuum airflow and contacts the surface being cleaned, dislodging particulate matter therefrom. The high pressure airflow can be emitted from multiple nozzles as a series of airflow bursts that discretely contact the surface being cleaned. The configuration of each nozzle, as well as the overall arrangement and positions of all the nozzles together, are selected to impart the desired particulate matter dislodging characteristics to the device.
    • 提供了用于移除和捕获积聚在各种表面或结构上的颗粒物质的手持式便携式装置。 这些装置在使用过程中产生相互紧密接触的相对气流。 真空气流被吸入装置中,在清洁表面上限定真空影响区域。 发射高压气流,其穿透相邻的真空气流或相邻的真空气流通过,并与待清洁的表面接触,从其中排出颗粒物质。 高压气流可以从多个喷嘴发射,作为一系列与待清洁的表面离散接触的气流爆裂。 选择每个喷嘴的构造,以及所有喷嘴的总体布置和位置在一起,以赋予装置所需的颗粒物质移动特性。