WO2021115140A1 - 一种便于定量倒取的容器 - Google Patents

一种便于定量倒取的容器 Download PDF

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Publication number
WO2021115140A1
WO2021115140A1 PCT/CN2020/132246 CN2020132246W WO2021115140A1 WO 2021115140 A1 WO2021115140 A1 WO 2021115140A1 CN 2020132246 W CN2020132246 W CN 2020132246W WO 2021115140 A1 WO2021115140 A1 WO 2021115140A1
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Prior art keywords
cavity
container
quantitative
liquid
container body
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PCT/CN2020/132246
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English (en)
French (fr)
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李红彪
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李红彪
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Application filed by 李红彪 filed Critical 李红彪
Publication of WO2021115140A1 publication Critical patent/WO2021115140A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D25/00Details of other kinds or types of rigid or semi-rigid containers
    • B65D25/38Devices for discharging contents
    • B65D25/52Devices for discharging successive articles or portions of contents

Definitions

  • the invention relates to a packaging container, in particular to a container that is convenient for quantitative pouring.
  • Packaging containers are designed for all walks of life to protect goods. They are convenient to store and use, facilitate transportation, promote sales, prevent environmental pollution and prevent safety accidents. Different industries and different products need to adopt corresponding technical specifications according to certain technical specifications. Packaging container. Among them, the existing quantitative pouring container bottle has a relatively complex structure, which makes the manufacturing cost high, and has the defect that the quantitative pouring operation is complicated and inconvenient for people to use; and now there are many container and bottle accessories, resulting in a large storage space. , Insufficient space, etc.
  • the present invention is proposed by research and development aimed at the defects existing in the prior art.
  • the technical problem to be solved by the present invention is to provide a container that is convenient for quantitative pouring.
  • the liquid storage cavity and the quantitative cavity are connected or isolated; when the liquid storage cavity and the quantitative cavity are connected , The liquid in the liquid storage cavity flows into the dosing cavity, and when the required amount is reached, the liquid inlet control structure is controlled to close, so that the liquid storage cavity and the dosing cavity are isolated from each other, so that the liquid in the dosing cavity flows out of the liquid outlet; and the liquid storage cavity
  • Both the quantitative cavity and the quantitative cavity are formed by the internal cavity of the container body, or the quantitative cavity is connected to the side of the liquid storage cavity; therefore, it has the characteristics of reasonable design, simple structure, convenient use and small space occupation, and also has the function of quantitative pour .
  • the present invention provides a container that is convenient for quantitative pouring, which includes an open container body 1 and a positioning cavity shell 100 connected to the lower side of the container body 1, and a liquid storage cavity is formed in the inner cavity of the container body 1 10.
  • the opening of the container body 1 is movably connected with an upper cover 11, a support seat 12 is provided under the container body 1, and a receiving container 2 forming a quantitative cavity 20 is movably provided in the positioning cavity shell 100.
  • the receiving container 2 is provided with a liquid outlet nozzle 21, and a liquid inlet control structure 30 for controlling the communication or isolation between the liquid storage cavity 10 and the quantitative cavity 20 is provided between the liquid storage cavity 10 and the quantitative cavity 20.
  • the above-mentioned container for convenient quantitative pouring is characterized in that the liquid inlet control structure 30 includes a static liquid inlet 301 provided on the side wall of the container body 1 and a static liquid inlet 301 provided on the side wall of the container 2 and used for The moving liquid inlet 302 is aligned and communicated with the static liquid inlet 301 or is plugged in a staggered position.
  • a container convenient for quantitative pouring as described above is characterized in that a container window 22 is provided on the side wall of the receiving container 2; the liquid inlet control structure 30 includes a liquid outlet sleeve 303 communicating with the liquid storage cavity 10 And the valve plug 304 arranged on the receiving container 2, the liquid outlet end of the liquid outlet sleeve 303 penetrates the container window 22 and is used in cooperation with the valve plug 304.
  • the container that is convenient for quantitative pouring as described above is characterized in that the receiving container 2 is formed by a hollow receiving sleeve 23 with upper and lower openings and a positioning cavity shell 100.
  • the lower opening and positioning of the receiving sleeve 23 are
  • the cavity shell 100 is sleeved, and a liquid outlet 21 is formed on the opening of the receiving sleeve 23.
  • a container that is convenient for quantitative pouring is characterized in that the side wall of the receiving container 2 or the receiving sleeve 23 is provided with a positioning snap ring 24 opposite to the edge of the opening of the cavity shell 100.
  • the present invention also provides a container that is convenient for quantitative pouring, which includes an open container body 1 and a receiving container 2 connected to the lower side of the container body 1.
  • the inner cavity of the container body 1 is formed with a liquid storage cavity 10, and the container
  • the opening of the body 1 is connected with an upper cover 11, a support seat 12 is provided under the container body 1, an inner cavity of the receiving container 2 is formed with a quantitative cavity 20, and a liquid outlet 21 is provided on the receiving container 2, so
  • a liquid inlet control structure 30 for controlling the communication or isolation between the liquid storage cavity 10 and the quantitative cavity 20 is provided between the liquid storage cavity 10 and the quantitative cavity 20.
  • the container for easy quantitative pouring as described above is characterized in that the liquid inlet control structure 30 includes a hole sleeve 305 arranged between the liquid storage cavity 10 and the dosing cavity 20 and communicates with the liquid storage cavity 10 and the dosing cavity 20, and The upper end of the valve column 306 is connected with the upper cover 11, the lower part of the valve column 306 abuts or is inserted into the hole sleeve 305 and blocks the hole sleeve 305.
  • the above-mentioned container that is convenient for quantitative pouring is characterized in that a hollow valve rod 306 is movably provided in the liquid storage cavity 10 or the quantitative cavity 20; the liquid inlet control structure 30 includes the liquid storage cavity 10 and The liquid inlet A307 of the liquid storage chamber 10 and the quantitative cavity 20 and the liquid inlet B308 provided on the valve rod 306 are connected between the quantitative cavities 20.
  • a container that is convenient for quantitative pouring is characterized in that the liquid storage cavity 10 and the quantitative cavity 20 are formed by separating the inner cavity of the container body 1 by the partition 13.
  • the container that is convenient for quantitative pouring as described above is characterized in that the opening of the container body 1 and the upper cover 11 are connected by a buckle or a snap connection or a threaded connection.
  • the container of the present invention which is convenient for quantitative pouring has the following advantages:
  • the present invention connects or isolates the liquid storage cavity with the quantitative cavity by acting on the opening and closing of the liquid inlet control structure; when the liquid storage cavity is connected to the quantitative cavity, the liquid in the liquid storage cavity flows into the quantitative cavity to achieve the desired
  • the liquid inlet control structure is closed, so that the liquid storage cavity and the dosing cavity are isolated from each other, so that the liquid in the dosing cavity flows out of the liquid outlet; and the liquid storage cavity and the dosing cavity are formed by the internal cavity of the container body, or the dosing cavity It is connected to the side of the liquid storage cavity; for this reason, it has the characteristics of reasonable design, simple structure, convenient use and small space occupation. At the same time, it also has the function of quantitative pour.
  • the liquid storage cavity and the dosing cavity are formed by the inner cavity of the container body, or the dosing cavity is connected to the side of the liquid storage cavity.
  • Figure 1 is one of the cross-sectional views of the first embodiment of the present invention.
  • Figure 2 is the second cross-sectional view of the first embodiment of the present invention.
  • Figure 3 is a cross-sectional view of the second embodiment of the present invention.
  • Figure 4 is a perspective view of a third embodiment of the present invention.
  • Figure 5 is one of the cross-sectional views of the third embodiment of the present invention.
  • Figure 6 is the second cross-sectional view of the third embodiment of the present invention.
  • Figure 7 is one of the cross-sectional views of the fourth embodiment of the present invention.
  • Figure 8 is the second cross-sectional view of the fourth embodiment of the present invention.
  • Figure 9 is one of the cross-sectional views of the fifth embodiment of the present invention.
  • Figure 10 is the second cross-sectional view of the fifth embodiment of the present invention.
  • Figure 11 is one of the cross-sectional views of the sixth embodiment of the present invention.
  • Figure 12 is the second cross-sectional view of the sixth embodiment of the present invention.
  • Figure 13 is one of the cross-sectional views of the seventh embodiment of the present invention.
  • Fig. 14 is the second cross-sectional view of the seventh embodiment of the present invention.
  • the container of the present invention is convenient for quantitative pouring. It includes an open container body 1 and a positioning cavity shell 100 connected to the lower side of the container body 1.
  • the inner cavity of the container body 1 is formed with a liquid storage In the cavity 10, the opening of the container body 1 is movably connected with an upper cover 11, a support seat 12 is provided under the container body 1, and a receiving container 2 forming a quantitative cavity 20 is movably provided in the positioning cavity shell 100,
  • the receiving container 2 is provided with a liquid outlet nozzle 21, and a liquid inlet control structure 30 for controlling the communication or isolation between the liquid storage cavity 10 and the quantitative cavity 20 is provided between the liquid storage cavity 10 and the quantitative cavity 20.
  • the liquid inlet control structure is closed to isolate the liquid storage chamber and the dosing chamber from each other to ensure the tightness of the liquid storage chamber before or after use, thereby prolonging the use period and safety of the liquid in the liquid storage chamber;
  • the user acts to open the liquid inlet control structure so that the liquid filled in the liquid storage cavity flows into the quantitative cavity.
  • the liquid inlet control structure opens and closes, so that the liquid in the liquid storage cavity is opened and closed. Stop flowing into the dosing cavity, and then the liquid in the dosing cavity is poured out from the liquid outlet. For this reason, it has the characteristics of reasonable design, simple structure, convenient use and small space occupation. At the same time, it also has the function of quantitative pouring.
  • the liquid inlet control structure 30 includes a static liquid inlet 301 arranged on the side wall of the container body 1 and a static liquid inlet 301 arranged on the container 2
  • the moving liquid inlet 302 on the side wall and used to align and communicate with the static liquid inlet 301 or to be blocked by a dislocation.
  • the user acts to rotate the receiving container relative to the container body, so that the movable liquid inlet and the static liquid inlet are aligned and connected, so that the liquid in the liquid storage cavity flows into the quantitative cavity.
  • the receiving container rotates relative to the container body, so that the movable liquid inlet and the static liquid inlet can be blocked in a dislocation, so that the liquid storage cavity and the quantitative cavity are isolated from each other, and then the liquid in the quantitative cavity is poured out from the liquid outlet. For this reason, it has the characteristics of reasonable design, simple structure, convenient use and small space occupation. At the same time, it also has the function of quantitative reversing.
  • a container window 22 is provided on the side wall of the receiving container 2; the liquid intake control structure 30 includes communication with the liquid storage chamber 10
  • the liquid outlet sleeve 303 and the valve plug 304 provided on the container 2 the liquid outlet end of the liquid outlet sleeve 303 penetrates the container window 22 and is used in cooperation with the valve plug 304.
  • the user acts to rotate the receiving container relative to the container body to separate the valve plug from the liquid outlet end of the liquid outlet sleeve, so that the liquid in the liquid storage cavity flows into the quantitative cavity.
  • the receiving container rotates relative to the container body, so that the valve plug and the liquid end of the liquid outlet sleeve can be aligned and sealed, so that the liquid storage cavity and the quantitative cavity are relatively isolated, and then the liquid in the quantitative cavity is poured out from the liquid outlet. For this reason, it has the characteristics of reasonable design, simple structure, convenient use and small space occupation. At the same time, it also has the function of quantitative reversing.
  • the receiving container 2 is formed by a hollow receiving sleeve 23 with upper and lower openings and a positioning cavity shell 100.
  • the lower opening of the receiving sleeve 23 is sleeved with the positioning cavity shell 100.
  • the opening on the receiving sleeve 23 forms a liquid outlet 21.
  • the outlet sleeve and the valve plug are accurately aligned and sealed, and at the same time to ensure that the container can rotate smoothly, so
  • the side wall of the receiving container 2 or the receiving sleeve 23 is provided with a positioning snap ring 24 opposite to the edge of the opening of the cavity shell 100.
  • the opening of the container body 1 and the upper cover 11 are connected by buckling, snapping, or threading.
  • the container of the present invention is convenient for quantitative pouring. It includes an open container body 1 and a receiving container 2 connected to the lower side of the container body 1.
  • the inner cavity of the container body 1 is formed with a liquid storage In the cavity 10, the container body 1 is connected with an upper cover 11, a support seat 12 is provided under the container body 1, an inner cavity of the container 2 is formed with a quantitative cavity 20, and the container 2 is provided with
  • the liquid outlet nozzle 21 is provided with a liquid inlet control structure 30 between the liquid storage cavity 10 and the dosing cavity 20 for controlling the communication or isolation between the liquid storage cavity 10 and the dosing cavity 20.
  • the liquid inlet control structure is closed to isolate the liquid storage chamber and the dosing chamber from each other to ensure the tightness of the liquid storage chamber before or after use, thereby prolonging the use period and safety of the liquid in the liquid storage chamber;
  • the user acts to open the liquid inlet control structure so that the liquid filled in the liquid storage cavity flows into the quantitative cavity.
  • the liquid inlet control structure opens and closes, so that the liquid in the liquid storage cavity is opened and closed. Stop flowing into the dosing cavity, and then the liquid in the dosing cavity is poured out from the liquid outlet. For this reason, it has the characteristics of reasonable design, simple structure, convenient use and small space occupation. At the same time, it also has the function of quantitative pouring.
  • the liquid inlet control structure 30 includes the liquid inlet control structure 30 which is arranged between the liquid storage cavity 10 and the quantitative cavity 20 and communicates with the liquid reservoir 10 and the quantitative cavity.
  • the upper end of the valve column 306 is connected to the upper cover 11, and the lower part of the valve column 306 abuts or is inserted into the orifice sleeve 305 and blocks the orifice sleeve 305.
  • the user acts on the upper cover to move upwards relative to the container body, which can separate the valve column from the orifice sleeve, so that the liquid in the liquid storage cavity flows from the orifice sleeve into the quantitative cavity.
  • the user acts on the upper cover
  • the downward movement relative to the container body can block the lower part of the valve column, so that the liquid storage cavity and the quantitative cavity are isolated from each other, and then the liquid in the quantitative cavity is poured out from the liquid outlet. For this reason, it has a reasonable design and a simple structure. , Convenient to use and occupy small space, at the same time, it also has the function of quantitative reversing.
  • a hollow valve rod 306 is movably provided in the liquid storage cavity 10 or the quantitative cavity 20;
  • the liquid inlet control structure 30 includes a device The liquid inlet A307 and the liquid inlet B308 provided on the valve rod 306 between the liquid storage chamber 10 and the quantitative chamber 20 and communicate with the liquid storage chamber 10 and the quantitative chamber 20.
  • the user acts on the valve lever to rotate relative to the container body, so that the liquid inlet B308 and the liquid inlet A307 are aligned and communicated, so that the liquid in the liquid storage cavity flows into the quantitative cavity.
  • the user acts on the valve
  • the rod 306 rotates relative to the container body, so that the liquid inlet B308 and the liquid inlet A307 can be blocked by a misalignment, so that the liquid storage cavity and the quantitative cavity are isolated from each other, and then the liquid in the quantitative cavity is poured out from the liquid outlet.
  • the design is reasonable, the structure is simple, the use is convenient and the space is small. At the same time, it also has the function of quantitative reversing.
  • liquid inlet B308 there are at least one liquid inlet B308 on the valve rod 306, one liquid inlet B308 is used to communicate with the liquid storage chamber, and the other liquid inlet B308 is used to connect with the liquid inlet A307 is aligned and connected or blocked by dislocation.
  • the upper cover 11 is connected with the valve rod 306.
  • the liquid storage cavity 10 and the quantitative cavity 20 are formed by separating the inner cavity of the container body 1 by a partition 13.
  • the liquid inlet A307 is provided on the partition 13.
  • the opening of the container body 1 and the upper cover 11 are connected by buckling, snapping, or threading.
  • the quantitative cavity 20 is provided with an identification scale, which is not shown in the figure.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Containers And Packaging Bodies Having A Special Means To Remove Contents (AREA)
  • Table Devices Or Equipment (AREA)
  • Closures For Containers (AREA)

Abstract

一种便于定量倒取的容器,包括开口的容器本体(1)和连接在容器本体下侧的定位腔壳(100),所述容器本体内腔形成有储液腔(10),所述容器本体开口活动地连接有上盖(11),所述容器本体下方设有支撑座(12),所述定位腔壳内活动地设有形成定量腔(20)的盛接容器(2),所述盛接容器上设有出液嘴(21),所述储液腔与定量腔之间设有用于控制储液腔与定量腔连通或隔绝的进液控制结构(30);在使用时,使用者作用进液控制结构开启,而使得填装在储液腔内的液体流入定量腔内,达到所需用量时,作用进液控制结构开闭,而使得储液腔的液体停止流入定量腔内,之后定量腔的液体从出液嘴倒出,该便于定量倒取的容器具有设计合理,结构简洁、使用便捷和占用空间小的特点,同时,还具有定量倒取的功能。

Description

一种便于定量倒取的容器 【技术领域】
本发明涉及包装容器,尤其是一种便于定量倒取的容器。
【背景技术】
包装容器设计各行各业,以用于保护商品,具有方便储存及使用,利于运输,促进销售,防止环境污染和预防安全事故等作用,不同行业及不同的产品需要按一定技术规范而采用相应的包装容器。其中现有的定量倒取容器瓶子中,由于其结构较为复杂,使得制造成本较高,以及存在定量倒取操作复杂而不方便人们使用的缺陷;而且现在容器瓶子配件繁多,造成摆放空间大、占用空间多等不足。
本发明即针对现有技术所存在的缺陷进行研发而提出。
【发明内容】
本发明要解决的技术问题是提供一种便于定量倒取的容器,通过作用进液控制结构的开启与关闭,而使得储液腔与定量腔连通或隔绝;当储液腔与定量腔连通时,储液腔的液体流入定量腔内,达到所需用量时,控制进液控制结构关闭,而使得储液腔与定量腔相互隔绝,从而定量腔的液体从出液嘴流出;并且储液腔和定量腔均由容器本体内腔形成,或者定量腔连接在储液腔一侧;为此,具有设计合理,结构简洁、使用便捷和占用空间小的特点,同时,还具有定量倒取的功能。
为解决上述技术问题,本发明提供一种便于定量倒取的容器,包括开口的容器本体1和连接在容器本体1下侧的定位腔壳100,所述 容器本体1内腔形成有储液腔10,所述容器本体1开口活动地连接有上盖11,所述容器本体1下方设有支撑座12,所述定位腔壳100内活动地设有形成定量腔20的盛接容器2,所述盛接容器2上设有出液嘴21,所述储液腔10与定量腔20之间设有用于控制储液腔10与定量腔20连通或隔绝的进液控制结构30。
如上所述一种便于定量倒取的容器,其特征在于所述进液控制结构30包括设在容器本体1侧壁上的静进液口301和设在盛接容器2侧壁上且用于与静进液口301对齐连通或错位封堵的动进液口302。
如上所述一种便于定量倒取的容器,其特征在于所述盛接容器2侧壁上设有容器窗口22;所述进液控制结构30包括与储液腔10连通的出液套管303和设在盛接容器2上的阀门塞304,所述出液套管303出液端贯穿容器窗口22而与阀门塞304配合使用。
如上所述一种便于定量倒取的容器,其特征在于所述盛接容器2由上下开口且中空的盛接套管23和定位腔壳100形成,所述盛接套管23下开口与定位腔壳100套接,所述盛接套管23上开口形成出液嘴21。
如上所述一种便于定量倒取的容器,其特征在于所述盛接容器2或盛接套管23的侧壁上设有相对定位腔壳100开口边缘的定位卡环24。
本发明还提供一种便于定量倒取的容器,包括开口的容器本体1和连接在容器本体1下侧的盛接容器2,所述容器本体1内腔形成有储液腔10,所述容器本体1开口连接有上盖11,所述容器本体1下 方设有支撑座12,所述盛接容器2内腔形成有定量腔20,所述盛接容器2上设有出液嘴21,所述储液腔10与定量腔20之间设有用于控制储液腔10与定量腔20连通或隔绝的进液控制结构30。
如上所述一种便于定量倒取的容器,其特征在于所述进液控制结构30包括设在储液腔10与定量腔20之间且连通储液腔10与定量腔20的孔套305和阀门柱306,所述阀门柱306上端与上盖11连接,所述阀门柱306下部抵触或插入孔套305且封堵住孔套305。
如上所述一种便于定量倒取的容器,其特征在于所述储液腔10或定量腔20内活动设有中空的阀门杆306;所述进液控制结构30包括设在储液腔10与定量腔20之间且连通储液腔10与定量腔20的进液口A307和设在阀门杆306上的进液口B308。
如上所述一种便于定量倒取的容器,其特征在于所述储液腔10与定量腔20由容器本体1内腔通过隔板13分隔形成。
如上所述一种便于定量倒取的容器,其特征在于所述容器本体1开口与上盖11之间通过扣接或卡接或螺纹连接。
与现有技术相比较,本发明一种便于定量倒取的容器,具有如下优点:
1、本发明通过作用进液控制结构的开启与关闭,而使得储液腔与定量腔连通或隔绝;当储液腔与定量腔连通时,储液腔的液体流入定量腔内,达到所需用量时,控制进液控制结构关闭,而使得储液腔与定量腔相互隔绝,从而定量腔的液体从出液嘴流出;并且储液腔和定量腔均由容器本体内腔形成,或者定量腔连接在储液腔一侧;为此, 具有设计合理,结构简洁、使用便捷和占用空间小的特点,同时,还具有定量倒取的功能。
2、为了减少容器配件的摆放空间及提高整体美观度,让使用者使用便捷,所述储液腔和定量腔均由容器本体内腔形成,或者定量腔连接在储液腔一侧【附图说明】
下面结合附图对本发明的具体实施方式作进一步详细说明,其中:
图1为本发明中第一个实施例的剖视图之一;
图2为本发明中第一个实施例的剖视图之二;
图3为本发明中第二个实施例的剖视图;
图4为本发明中第三个实施例的立体图;
图5为本发明中第三个实施例的剖视图之一;
图6为本发明中第三个实施例的剖视图之二;
图7为本发明中第四个实施例的剖视图之一;
图8为本发明中第四个实施例的剖视图之二;
图9为本发明中第五个实施例的剖视图之一;
图10为本发明中第五个实施例的剖视图之二;
图11为本发明中第六个实施例的剖视图之一;
图12为本发明中第六个实施例的剖视图之二;
图13为本发明中第七个实施例的剖视图之一;
图14为本发明中第七个实施例的剖视图之二。
【具体实施方式】
下面结合附图1-14发明的实施方式作详细说明。
如图1-6所示,本发明一种便于定量倒取的容器,包括开口的容器本体1和连接在容器本体1下侧的定位腔壳100,所述容器本体1内腔形成有储液腔10,所述容器本体1开口活动地连接有上盖11,所述容器本体1下方设有支撑座12,所述定位腔壳100内活动地设有形成定量腔20的盛接容器2,所述盛接容器2上设有出液嘴21,所述储液腔10与定量腔20之间设有用于控制储液腔10与定量腔20连通或隔绝的进液控制结构30。初始时,进液控制结构关闭而使得储液腔与定量腔相互隔绝,以保证在使用前或使用结束后,储液腔的密封性,从而延长储液腔内液体的使用周期和使用安全;在使用时,使用者作用进液控制结构开启,而使得填装在储液腔内的液体流入定量腔内,达到所需用量时,作用进液控制结构开闭,而使得储液腔的液体停止流入定量腔内,之后定量腔的液体从出液嘴倒出,为此,具有设计合理,结构简洁、使用便捷和占用空间小的特点,同时,还具有定量倒取的功能。
如图1-3所示,根据设计需求和提供多种进液控制结构方式,所述进液控制结构30包括设在容器本体1侧壁上的静进液口301和设在盛接容器2侧壁上且用于与静进液口301对齐连通或错位封堵的动进液口302。在使用时,使用者作用盛接容器相对容器本体转动,可使动进液口与静进液口对齐连通,而使得储液腔的液体流入定量腔内,达到所需用量时,使用者继续作用盛接容器相对容器本体转动,可使动进液口与静进液口错位封堵住,而使得储液腔与定量腔相互隔 绝,之后定量腔的液体从出液嘴倒出。为此,具有设计合理,结构简洁、使用便捷和占用空间小的特点,同时,还具有定量倒取的功能。
如图4-6所示,根据设计需求和提供多种进液控制结构方式,所述盛接容器2侧壁上设有容器窗口22;所述进液控制结构30包括与储液腔10连通的出液套管303和设在盛接容器2上的阀门塞304,所述出液套管303出液端贯穿容器窗口22而与阀门塞304配合使用。在使用时,使用者作用盛接容器相对容器本体转动,可使阀门塞与出液套管出液端分离,而使得储液腔的液体流入定量腔内,达所需用量时,使用者继续作用盛接容器相对容器本体转动,可使阀门塞与出液套管出液端对齐封堵住,而使得储液腔与定量腔相对隔绝,之后定量腔的液体从出液嘴倒出。为此,具有设计合理,结构简洁、使用便捷和占用空间小的特点,同时,还具有定量倒取的功能。
如图3所示,根据设计需求,所述盛接容器2由上下开口且中空的盛接套管23和定位腔壳100形成,所述盛接套管23下开口与定位腔壳100套接,所述盛接套管23上开口形成出液嘴21。
如图1-6所示,为了使得动进液口和静进液口之间准确对齐连通、出液套管和阀门塞之间准确对齐封堵住,同时保证盛接容器能够转动顺畅,所述盛接容器2或盛接套管23的侧壁上设有相对定位腔壳100开口边缘的定位卡环24。
如图1-6所示,为了提供多种连接方式和满足使用者的不同需求,所述容器本体1开口与上盖11之间通过扣接或卡接或螺纹连接。
如图7-14所示,本发明一种便于定量倒取的容器,包括开口的 容器本体1和连接在容器本体1下侧的盛接容器2,所述容器本体1内腔形成有储液腔10,所述容器本体1开口连接有上盖11,所述容器本体1下方设有支撑座12,所述盛接容器2内腔形成有定量腔20,所述盛接容器2上设有出液嘴21,所述储液腔10与定量腔20之间设有用于控制储液腔10与定量腔20连通或隔绝的进液控制结构30。初始时,进液控制结构关闭而使得储液腔与定量腔相互隔绝,以保证在使用前或使用结束后,储液腔的密封性,从而延长储液腔内液体的使用周期和使用安全;在使用时,使用者作用进液控制结构开启,而使得填装在储液腔内的液体流入定量腔内,达到所需用量时,作用进液控制结构开闭,而使得储液腔的液体停止流入定量腔内,之后定量腔的液体从出液嘴倒出,为此,具有设计合理,结构简洁、使用便捷和占用空间小的特点,同时,还具有定量倒取的功能。
如图7、8所示,根据设计需求和提供多种进液控制结构方式,所述进液控制结构30包括设在储液腔10与定量腔20之间且连通储液腔10与定量腔20的孔套305和阀门柱306,所述阀门柱306上端与上盖11连接,所述阀门柱306下部抵触或插入孔套305且封堵住孔套305。在使用时,使用者作用上盖相对容器本体向上运动,可使阀门柱与孔套分离,而使得储液腔的液体从孔套流入定量腔内,达所需用量时,使用者作用上盖相对容器本体向下运动,可使阀门柱下部封堵住孔套,而使得储液腔与定量腔相互隔绝,之后定量腔的液体从出液嘴倒出,为此,具有设计合理,结构简洁、使用便捷和占用空间小的特点,同时,还具有定量倒取的功能。
如图9-14所示,根据设计需求和提供多种进液控制结构方式,所述储液腔10或定量腔20内活动设有中空的阀门杆306;所述进液控制结构30包括设在储液腔10与定量腔20之间且连通储液腔10与定量腔20的进液口A307和设在阀门杆306上的进液口B308。在使用时,使用者作用阀门杆相对容器本体转动,可使进液口B308与进液口A307对齐连通,而使得储液腔的液体流入定量腔内,达所需用量时,使用者作用阀门杆306相对容器本体转动,可使进液口B308与进液口A307错位封堵住,而使得储液腔与定量腔相互隔绝,之后定量腔的液体从出液嘴倒出,为此,具有设计合理,结构简洁、使用便捷和占用空间小的特点,同时,还具有定量倒取的功能。
如图9-14所示,所述阀门杆306上的进液口B308的数量至少连个,一个进液口B308用于与储液腔连通,另一个进液口B308用于与进液口A307对齐连通或错位封堵住。
为了使用便捷,上盖11与阀门杆306连接。
如图11、12所示,根据设计需求,所述储液腔10与定量腔20由容器本体1内腔通过隔板13分隔形成。
如图11、12所示,所述进液口A307设在隔板13上。
如图7-14所示,为了提供多种连接方式和满足使用者的不同需求,所述容器本体1开口与上盖11之间通过扣接或卡接或螺纹连接。
为了便于定量倒取和便于使用者查看,所述定量腔20上设有标识刻度图中未表现出来。

Claims (10)

  1. 一种便于定量倒取的容器,其特征在于包括开口的容器本体(1)和连接在容器本体(1)下侧的定位腔壳(100),所述容器本体(1)内腔形成有储液腔(10),所述容器本体(1)开口活动地连接有上盖(11),所述容器本体(1)下方设有支撑座(12),所述定位腔壳(100)内活动地设有形成定量腔(20)的盛接容器(2),所述盛接容器(2)上设有出液嘴(21),所述储液腔(10)与定量腔(20)之间设有用于控制储液腔(10)与定量腔(20)连通或隔绝的进液控制结构(30)。
  2. 根据权利要求1所述一种便于定量倒取的容器,其特征在于所述进液控制结构(30)包括设在容器本体(1)侧壁上的静进液口(301)和设在盛接容器(2)侧壁上且用于与静进液口(301)对齐连通或错位封堵的动进液口(302)。
  3. 根据权利要求1所述一种便于定量倒取的容器,其特征在于所述盛接容器(2)侧壁上设有容器窗口(22);所述进液控制结构(30)包括与储液腔(10)连通的出液套管(303)和设在盛接容器(2)上的阀门塞(304),所述出液套管(303)出液端贯穿容器窗口(22)而与阀门塞(304)配合使用。
  4. 根据权利要求1-3任一项所述一种便于定量倒取的容器,其特征在于所述盛接容器(2)由上下开口且中空的盛接套管(23)和定位腔壳(100)形成,所述盛接套管(23)下开口与定位腔壳(100)套接,所述盛接套管(23)上开口形成出液嘴(21)。
  5. 根据权利要求4所述一种便于定量倒取的容器,其特征在于所述 盛接容器(2)或盛接套管(23)的侧壁上设有相对定位腔壳(100)开口边缘的定位卡环(24)。
  6. 一种便于定量倒取的容器,其特征在于包括开口的容器本体(1)和连接在容器本体(1)下侧的盛接容器(2),所述容器本体(1)内腔形成有储液腔(10),所述容器本体(1)开口连接有上盖(11),所述容器本体(1)下方设有支撑座(12),所述盛接容器(2)内腔形成有定量腔(20),所述盛接容器(2)上设有出液嘴(21),所述储液腔(10)与定量腔(20)之间设有用于控制储液腔(10)与定量腔(20)连通或隔绝的进液控制结构(30)。
  7. 根据权利要求6所述一种便于定量倒取的容器,其特征在于所述进液控制结构(30)包括设在储液腔(10)与定量腔(20)之间且连通储液腔(10)与定量腔(20)的孔套(305)和阀门柱(306),所述阀门柱(306)上端与上盖(11)连接,所述阀门柱(306)下部抵触或插入孔套(305)且封堵住孔套(305)。
  8. 根据权利要求6所述一种便于定量倒取的容器,其特征在于所述储液腔(10)或定量腔(20)内活动设有中空的阀门杆(306);所述进液控制结构(30)包括设在储液腔(10)与定量腔(20)之间且连通储液腔(10)与定量腔(20)的进液口A(307)和设在阀门杆(306)上的进液口B(308)。
  9. 根据权利要求6-8任一项所述一种便于定量倒取的容器,其特征在于所述储液腔(10)与定量腔(20)由容器本体(1)内腔通过隔板(13)分隔形成。
  10. 根据权利要求6所述一种便于定量倒取的容器,其特征在于所述容器本体(1)开口与上盖(11)之间通过扣接或卡接或螺纹连接。
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