WO2020147707A1 - 一种新型的倒转定量容器 - Google Patents

一种新型的倒转定量容器 Download PDF

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Publication number
WO2020147707A1
WO2020147707A1 PCT/CN2020/071946 CN2020071946W WO2020147707A1 WO 2020147707 A1 WO2020147707 A1 WO 2020147707A1 CN 2020071946 W CN2020071946 W CN 2020071946W WO 2020147707 A1 WO2020147707 A1 WO 2020147707A1
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WO
WIPO (PCT)
Prior art keywords
liquid storage
container body
storage cylinder
cover
mouth
Prior art date
Application number
PCT/CN2020/071946
Other languages
English (en)
French (fr)
Inventor
李红彪
Original Assignee
中山市华宝勒生活用品实业有限公司
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Filing date
Publication date
Application filed by 中山市华宝勒生活用品实业有限公司 filed Critical 中山市华宝勒生活用品实业有限公司
Publication of WO2020147707A1 publication Critical patent/WO2020147707A1/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
    • B65D25/02Internal fittings
    • 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
    • B65D41/00Caps, e.g. crown caps or crown seals, i.e. members having parts arranged for engagement with the external periphery of a neck or wall defining a pouring opening or discharge aperture; Protective cap-like covers for closure members, e.g. decorative covers of metal foil or paper
    • B65D41/02Caps or cap-like covers without lines of weakness, tearing strips, tags, or like opening or removal devices
    • B65D41/04Threaded or like caps or cap-like covers secured by rotation
    • 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
    • B65D53/00Sealing or packing elements; Sealings formed by liquid or plastics material
    • B65D53/04Discs
    • 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
    • B65D83/00Containers or packages with special means for dispensing contents

Definitions

  • the invention relates to a packaging container, in particular to a new type of inverted quantitative container.
  • Packaging containers are designed for various industries 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. Packaging container. Among them, the existing quantitative pouring container has a relatively complicated structure, which makes the manufacturing cost high, and has the defects that the quantitative pouring operation is complicated and not convenient for people to use.
  • the present invention is proposed in view of the defects existing in the prior art.
  • the technical problem to be solved by the present invention is to provide a new type of inverted quantitative container.
  • the container body When in use, the container body is inverted so that the substance in the internal cavity of the container body can enter the liquid storage cavity accordingly, and the user can perform quantitative according to the needs of use, namely When the substance entering the liquid storage cavity meets the requirements, the container body is erected again, and then the cover is opened, and the quantitative substance in the liquid storage cavity can be poured out.
  • the present invention has a reasonable design and a structure Concise and convenient to use.
  • a novel inverted quantitative container of the present invention includes a container body 1 and a cover 2.
  • the cover 2 is detachably connected to the mouth of the container body 1, and the inner cavity of the container body 1 is provided with an upper end
  • the inner ring 22 inserted into the mouth of the liquid storage cylinder 34 is formed downwardly in the cover 2 and a liquid inlet 221 is provided on the side of the inner ring 22.
  • the inner ring 22 presses the liquid inlet valve 35 to make the guide hole 32 communicate with the liquid inlet 221, thereby connecting the liquid storage cavity 3 with the inner cavity of the container body 1.
  • the liquid inlet valve 35 is an elastically deformable structure.
  • the cover 2 When the cover 2 is connected to the mouth of the container body 1, the lower edge of the inner ring 22 presses the liquid inlet valve 35.
  • the elastic deformation makes the guide hole 32 communicate with the liquid inlet 221, and when the cover 2 is separated from the mouth of the container body 1, the liquid inlet valve 35 automatically restores its shape to block the guide hole 32.
  • one end of the liquid inlet valve 35 extending into the liquid storage cavity 3 is provided with a guiding inclined surface, and the liquid inlet valve 35 is located at one end of the inner cavity of the container body 1 and is elastically connected to the side surface of the liquid storage cylinder 34
  • the cap 2 When the cap 2 is connected to the mouth of the container body 1, the lower edge of the inner ring 22 presses the liquid inlet valve 35 to exit the guide hole 32 so that the guide hole is aligned and communicated with the liquid inlet 221. 2
  • the inlet valve 35 is automatically inserted into the guide hole 32 to block it.
  • the liquid storage cylinder 34 is connected with a pipe 31 for communicating the liquid storage cavity 3 and the inner cavity of the container body 1, and the upper end of the pipe 31 extends upward, and the lower end of the pipe 31 extends downward Close to the bottom of the inner cavity of the container body 1, the side wall of the liquid storage cylinder 34 is provided with scale marks.
  • the present invention also provides a new type of inverted quantitative container, comprising a container body 1 and a cover 2.
  • the cover 2 is detachably connected to the mouth of the container body 1, and the inner cavity of the container body 1 is provided with a liquid storage with an upper end opening.
  • the liquid storage tube 34 is formed with a liquid storage cavity 3, the upper end of the liquid storage tube 34 is provided with a guide hole 32, the upper end of the liquid storage tube 34 is provided with a buckle 341 in the circumferential direction, and the cover 2
  • a hook 21 is formed along the circumferential direction and extending downward to cooperate with the buckle 341. When the cover 2 is screwed into the mouth of the container body 1, the hook 21 hooks the buckle 341 and moves the liquid storage cylinder 34 down.
  • the guide hole 32 communicates the liquid storage cavity 3 with the inner cavity of the container body 1; and when the cover 2 is screwed out of the mouth of the container body 1, the cover 2 moves upward, and the hook 21 carries the liquid storage cylinder 34 upward,
  • the guide hole 32 is blocked by the side wall of the inner cavity of the container body 1; or the upper end surface of the liquid storage cylinder 34 is provided with a hook 21 along the circumferential direction, and the cover 2 is formed with a hook 21 along the circumferential direction and extending downward. 21.
  • the mating buckle 34 when the cover 2 is screwed into the mouth of the container body 1, the buckle 341 hooks the hook 21 to move the liquid storage cylinder 34 down, so that the guide hole 32 connects the liquid storage cavity 3 and the container body 1
  • the inner cavity is connected; and when the cover 2 is screwed out of the mouth of the container body 1, the cover 2 moves up, the buckle 341 moves up the liquid storage cylinder 34, and the guide hole 32 is blocked by the side wall of the inner cavity of the container body 1 live.
  • the upper end surface of the liquid storage cylinder 34 is provided with a hook 21 along the circumferential direction, and a buckle 341 that cooperates with the hook 21 is formed in the cover 2 along the circumferential direction and extends downward.
  • the buckle 341 hooks the hook 21 to move the liquid reservoir 34 down, so that the guide hole 32 communicates the liquid reservoir 3 with the inner cavity of the container body 1; and when the cover 2 is screwed out of the container body 1 At this time, the cover 2 moves up, the buckle 341 moves up the liquid storage cylinder 34, and the guide hole 32 is blocked by the side wall of the inner cavity of the container body 1.
  • the upper outside of the liquid storage cylinder 34 is provided with a sealing ring 33 for sealingly fitting with the inner surface of the mouth of the container body 1 along the circumferential direction.
  • the upper outside of the liquid storage cylinder 34 is provided with a limit stop ring 342 located on the lower side of the sealing ring 33 along the circumferential direction.
  • the upper mouth of the liquid storage cylinder 34 is sealed with a tearable sealing sheet 344,
  • the bottom of the liquid storage cylinder 34 is open and a chassis 345 is detachably connected to it.
  • the liquid storage cylinder 34 is connected with a pipe 31 for communicating the liquid storage cavity 3 and the inner cavity of the container body 1, and the upper end of the pipe 31 extends upward, and the lower end of the pipe 31 extends downward Close to the bottom of the inner cavity of the container body 1, the side wall of the liquid storage cylinder 34 is provided with scale marks.
  • the present invention also provides an inverted quantitative container, comprising a container body 1 and a cover 2.
  • the cover 2 is detachably connected to the mouth of the container body 1, and the inner cavity of the container body 1 is provided with a liquid storage cylinder 34 with an upper end opening.
  • a liquid storage cavity 3 is formed in the liquid storage cylinder 34, a guide hole 32 is provided on the upper side of the liquid storage cylinder 34, an inner ring 22 is formed in the cover 2 extending downward, and the upper end of the liquid storage cylinder 34
  • the inner ring 22 When the cover 2 is screwed into the mouth of the container body 1, the inner ring 22 is connected to the upper end of the liquid storage cylinder 34 through the threads 222, and the liquid storage cylinder 34 moves downward, so that The guide hole 32 connects the liquid storage cavity 3 with the inner cavity of the container body 1; and when the cover 2 is screwed out of the mouth of the container body 1, the cover 2 moves upward, and the inner ring 22 is connected to the upper end of the liquid storage cylinder 34 through the thread 222 The liquid storage cylinder 34 moves upward, so that the guide hole 32 is blocked by the side wall of the inner cavity of the container body 1.
  • the threads 222 are respectively provided on the outer surface of the upper end of the liquid storage cylinder 34 and the inner surface of the inner ring 22.
  • the upper outside of the liquid storage cylinder 34 is provided with a sealing ring 33 for sealingly fitting with the inner surface of the mouth of the container body 1 along the circumferential direction.
  • the upper outside of the liquid storage cylinder 34 is provided with a limit stop ring 342 located on the lower side of the sealing ring 33 along the circumferential direction.
  • the liquid storage cylinder 34 is connected with a pipe 31 for communicating the liquid storage cavity 3 and the inner cavity of the container body 1, and the upper end of the pipe 31 extends upward, and the lower end of the pipe 31 extends downward Close to the bottom of the inner cavity of the container body 1, the side wall of the liquid storage cylinder 34 is provided with scale marks.
  • the present invention also provides an inverted quantitative container, comprising a container body 1 and a cover 2, the cover 2 is detachably connected to the mouth of the container body 1, and the inner cavity of the container body 1 is provided with a liquid storage cylinder 34 with an open upper end ,
  • the liquid storage cylinder 34 is formed with a liquid storage cavity 3, the upper end of the liquid storage cylinder 34 is provided with a notch 321 that can be elastically deformed and opened, and the cover 2 extends downward to form a top pressure tab 23.
  • the lower end of the pressing tab 23 presses the notch 321 on the upper end of the liquid storage cylinder 34, so that the notch 321 is opened to connect the liquid storage cavity 3 and the container body 1
  • the inner cavity is connected; and when the cap 2 is screwed out of the mouth of the container body 1, the notch 321 is automatically closed to separate the liquid storage cavity 3 from the inner cavity of the container body 1.
  • a guide hole 32 is provided on the upper side of the liquid storage cylinder 34 and located below the notch 321.
  • the notches 321 are arranged in a circumferential direction and are paired in pairs, and the lower end of the pressing protrusion 23 presses the area between the two notches 321 of the same group.
  • the present invention further provides an inverted quantitative container, comprising a container body 1 and a cover 2, the cover 2 is detachably connected to the mouth of the container body 1, and the inner cavity of the container body 1 is clamped with a liquid storage cylinder 34 with an open upper end.
  • the liquid storage cylinder 34 is formed with a liquid storage cavity 3
  • the upper side of the liquid storage cylinder 34 is provided with a notch 321 that can be elastically deformed and opened, and the cover 2 extends downward to form a top pressure tab 23.
  • the lower end of the pressing tab 23 presses the liquid storage cylinder 34 downward and elastically stretches, so that the notch 321 is opened to connect the liquid storage cavity 3 and the container body 1 The inner cavity is connected; and when the cover 2 is screwed out of the mouth of the container body 1, the notch 321 is automatically closed to separate the liquid storage cavity 3 from the inner cavity of the container body 1.
  • the inner surface of the upper end of the liquid storage cylinder 34 and the lower side of the notch 321 is provided with an inner convex structure 231 for pressing the lower end of the pressing protrusion 23.
  • the present invention further provides an inverted quantitative container, comprising a container body 1 and a cover 2.
  • the cover 2 is detachably connected to the mouth of the container body 1, and the inner cavity of the container body 1 is provided with a liquid storage cylinder 34 with an open upper end.
  • a liquid storage cavity 3 is formed in the liquid storage cylinder 34, a guide hole 32 is provided on the upper side of the liquid storage cylinder 34, and a nest 36 is clamped in the upper opening of the liquid storage cylinder 34.
  • the side is provided with a notch 321 that can be elastically deformed and opened.
  • the cover 2 extends downward to form a top pressure tab 23.
  • the bottom end of the top pressure tab 23 is The top pressure nest 36 is stretched and deformed downward, so that the notch 321 is opened and aligned with the guide hole 32, thereby connecting the liquid storage cavity 3 with the inner cavity of the container body 1; and when the cover 2 is screwed out of the mouth of the container body 1 When the time, the notch 321 is automatically closed, and the side wall of the nest 36 blocks the guide hole 32 to separate the liquid storage cavity 3 from the inner cavity of the container body 1.
  • the inner side of the nest 36 and the lower side of the notch 321 is provided with an inner convex structure 231 for pressing the lower end of the pressing protruding piece 23.
  • the pressing tab 23 and the notch 321 are mutually staggered in the circumferential direction.
  • the present invention further provides an inverted quantitative container, comprising a container body 1 and a cover 2.
  • the cover 2 is detachably connected to the mouth of the container body 1, and the inner cavity of the container body 1 is provided with a liquid storage cylinder 34 with an open upper end.
  • a liquid storage cavity 3 is formed in the liquid storage cylinder 34, a guide hole 32 is provided on the upper side of the liquid storage cylinder 34, and a nest 36 that can be elastically deformed and stretched is clamped in the upper opening of the liquid storage cylinder 34.
  • the side of the nest 36 is provided with a guide hole 32, the cover 2 extends downward to form a top pressure tab 23, when the cover 2 is screwed into the mouth of the container body 1, the bottom end of the top pressure tab 23 is topped
  • the pressing nest 36 is stretched and deformed downward, so that the guide hole 32 on the side of the nest 36 is aligned with the guide hole 32 on the upper side of the liquid storage cylinder 34, thereby connecting the liquid storage cavity 3 with the inner cavity of the container body 1; 2
  • the nest 36 elastically restores its deformation so that the guide hole 32 on the side of the nest 36 and the guide hole 32 on the upper side of the liquid storage cylinder 34 are staggered and sealed to block the liquid storage cavity 3 and the container.
  • the inner cavity of the body 1 is separated.
  • the inner surface of the nest 36 is provided with an inner convex structure 231 for pressing the lower end of the pressing protrusion 23.
  • the pressing The tab 23 and the guide hole 32 are offset from each other in the circumferential direction.
  • the side of the nest 36 is provided with a notch 321 that can be elastically deformed and opened.
  • a new type of inverted quantitative container of the present invention has the following advantages: 1.
  • the side or upper end of the liquid storage chamber is provided with a slit that opens by elastic deformation. Initially, the top of the cover The pressing protruding piece will correspondingly act on the slit to make it elastically open, and the liquid storage cavity is connected with the internal cavity of the container body. Therefore, when the container body is upside down, the substance in the container body can enter the storage through the guide hole or the opened slit.
  • the user can also quantify according to the needs of use, that is, when the material in the liquid storage cavity meets the needs, stand the container body upright, open the cover, and the notch will automatically reset and the guide hole will be blocked accordingly.
  • the material in the liquid storage cavity can be poured out. Therefore, it has the characteristics of reasonable design, simple structure, convenient use and low manufacturing cost.
  • a catheter is arranged in the liquid storage cavity, and air can be conducted during use, so that the substance entering the liquid storage cavity is smooth and fast.
  • a removable bottom cover is provided at the bottom of the liquid storage chamber, that is, when the liquid storage chamber is separated from the container body, the bottom cover can be opened to quickly put the liquid in the liquid storage chamber The substance inside is poured out.
  • a tearable sealing sheet is set in the upper opening of the liquid storage cylinder. Before use, the cover needs to be opened. Now the sealing sheet is torn and removed, and then the cover is turned back.
  • Figure 1 is a cross-sectional view of a first specific embodiment of the present invention
  • Figure 2 is one of the cross-sectional views of the second specific embodiment of the present invention.
  • Figure 3 is the second cross-sectional view of the second specific embodiment of the present invention.
  • Figure 4 is a cross-sectional view of a third specific embodiment of the present invention.
  • Figure 5 is a cross-sectional view of a fourth specific embodiment of the present invention.
  • Fig. 6 is one of the cross-sectional views of the fifth specific embodiment of the present invention.
  • Figure 8 is a cross-sectional view of a sixth specific embodiment of the present invention.
  • Figure 9 is a cross-sectional view of a seventh specific embodiment of the present invention.
  • Figure 10 is a cross-sectional view of an eighth specific embodiment of the present invention.
  • Figure 11 is a cross-sectional view of a ninth specific embodiment of the present invention.
  • Figure 12 is a cross-sectional view of a tenth specific embodiment of the present invention.
  • Figure 13 is a cross-sectional view of an eleventh specific embodiment of the present invention.
  • Figure 14 is a cross-sectional view of a twelfth specific embodiment of the present invention.
  • Figure 17 is a cross-sectional view of a fifteenth specific embodiment of the present invention.
  • Figure 18 is a cross-sectional view of a sixteenth specific embodiment of the present invention.
  • Figure 19 is a cross-sectional view of a seventeenth specific embodiment of the present invention.
  • Figure 21 is a cross-sectional view of a nineteenth specific embodiment of the present invention.
  • Figure 22 is one of the cross-sectional views of the twentieth specific embodiment of the present invention.
  • Figure 23 is the second cross-sectional view of the twentieth specific embodiment of the present invention.
  • Figure 24 is a cross-sectional view of a twenty-first specific embodiment of the present invention.
  • Figure 25 is a cross-sectional view of a twenty-second specific embodiment of the present invention.
  • Figure 26 is a cross-sectional view of the twenty-third specific embodiment of the present invention.
  • Figure 27 is a cross-sectional view of a twenty-fourth specific embodiment of the present invention.
  • a novel inverted quantitative container of the present invention includes a container body 1 and a cover 2.
  • the cover 2 is detachably connected to the mouth of the container body 1, and the inner cavity of the container body 1
  • There is a liquid storage cylinder 34 with an open upper end a liquid storage cavity 3 is formed in the liquid storage cylinder 34, a guide hole 32 is provided on the upper side of the liquid storage cylinder 34, and a guide hole 32 is provided in the guide hole 32.
  • Sealing the liquid inlet valve 35, the cover 2 extends downward to form an inner ring 22 inserted into the mouth of the liquid storage cylinder 34, and the side of the inner ring 22 is provided with a liquid inlet 221.
  • the inner ring 22 presses the liquid inlet valve 35 so that the guide hole 32 communicates with the liquid inlet 221, thereby connecting the liquid storage cavity 3 with the inner cavity of the container body 1.
  • the cover is screwed into the mouth of the container body, the liquid inlet valve 35 is pressed, the guide hole 32 is opened, and the liquid storage cavity is connected with the inner cavity of the container body.
  • the container body is inverted, and the substance in the container body is It can be entered into the liquid storage cavity accordingly, and scale marks can be arranged on the side wall of the liquid storage cylinder as required to facilitate the user to quantify.
  • the container body When the substance entered into the liquid storage cavity meets the requirements, the container body is erected, the lid is opened, the liquid inlet valve blocks the guide hole under the action of elastic force, and then people can remove the substance in the liquid storage cavity Pour out, so it has the characteristics of convenient use, and the structure design is simple and reasonable.
  • the liquid inlet valve 35 is an elastically deformable structure.
  • the cover 2 When the cover 2 is connected to the mouth of the container body 1, the lower edge of the inner ring 22 presses the liquid inlet valve 35 to produce elasticity.
  • the deformation causes the guide hole 32 to communicate with the liquid inlet 221, and when the cover 2 is separated from the mouth of the container body 1, the liquid inlet valve 35 automatically restores its shape to block the guide hole 32.
  • the inlet valve 35 is provided with a guiding slope at one end of the liquid reservoir 3, and the inlet valve 35 is located at the inner cavity of the container body 1, and is elastically connected to the side of the liquid reservoir 34
  • the cover 2 is connected to the mouth of the container body 1
  • the lower edge of the inner ring 22 presses the liquid inlet valve 35 to exit the guide hole 32 so that the guide hole and the liquid inlet 221 are aligned and communicated.
  • the inlet valve 35 is automatically inserted into the guide hole 32 to block it.
  • the liquid storage cylinder 34 is connected with a conduit 31 for communicating the liquid storage cavity 3 and the inner cavity of the container body 1, and the upper end of the conduit 31 Extending upward, the lower end of the pipe 31 extends downward to be close to the bottom of the inner cavity of the container body 1.
  • the present invention also provides a new type of inverted quantitative container, comprising a container body 1 and a cover 2.
  • the cover 2 is detachably connected to the mouth of the container body 1, and the container body 1
  • the cavity is provided with a liquid storage cylinder 34 with an open upper end, a liquid storage cavity 3 is formed in the liquid storage cylinder 34, and a guide hole 32 is provided on the upper side of the liquid storage cylinder 34, as shown in FIGS. 5-7.
  • the upper end surface of the liquid cylinder 34 is provided with a buckle 341 along the circumferential direction, and a hook 21 that cooperates with the buckle 341 is formed in the cover 2 along the circumferential direction and extends downward.
  • the hook 21 hooks the buckle 341 to move the liquid storage cylinder 34 down, so that the guide hole 32 communicates the liquid storage cavity 3 with the inner cavity of the container body 1; and when the cap 2 is screwed out of the mouth of the container body 1, the cap is closed 2 Move up, the hook 21 moves up with the liquid storage tube 34, and the guide hole 32 is blocked by the side wall of the inner cavity of the container body 1; as shown in Figure 9, the upper end of the liquid storage tube 34 is provided with a card along the circumferential direction.
  • a hook 21 is formed in the cover 2 along the circumferential direction and extending downwards to form a buckle 341 that cooperates with the hook 21.
  • the buckle 341 hooks the hook 21 Move the liquid storage cylinder 34 down so that the guide hole 32 connects the liquid storage cavity 3 with the inner cavity of the container body 1; and when the cover 2 is screwed out of the mouth of the container body 1, the cover 2 moves up, and the buckle 341 carries The liquid storage cylinder 34 moves upward, and the guide hole 32 is blocked by the side wall of the inner cavity of the container body 1.
  • the cap In the initial state, the cap is screwed into the mouth of the container body, the liquid storage cylinder 34 is moved down, the guide hole 32 is opened, and the liquid storage cavity is connected with the inner cavity of the container body.
  • the container body is inverted, and the substance in the container body is It can be entered into the liquid storage cavity accordingly, and scale marks can be arranged on the side wall of the liquid storage cylinder as required to facilitate the user to quantify.
  • scale marks can be arranged on the side wall of the liquid storage cylinder as required to facilitate the user to quantify.
  • a sealing ring 33 is provided in the circumferential direction on the upper outside of the liquid storage cylinder 34, that is, when the liquid storage cylinder is moved up, the sealing ring can prevent the storage When the substance in the liquid cavity, the liquid storage cylinder and the mouth of the container body 1 seep out and affect the use effect.
  • the upper outside of the liquid storage cylinder 34 is provided with a limit stop ring 342 located on the lower side of the sealing ring 33 along the circumferential direction.
  • the upper mouth of the liquid storage cylinder 34 is sealed with a tearable sealing sheet 344, which has an anti-counterfeiting effect. Before use, the sealing sheet needs to be opened and removed, and then screwed back to the cover.
  • the bottom of the liquid storage cylinder 34 is open and is detachably connected to a chassis 345. After standing upright again, take out the liquid storage cylinder, disassemble the base plate and pour out the contents of the liquid storage cylinder.
  • the liquid storage cylinder 34 is connected with a conduit 31 for communicating the liquid storage cavity 3 and the inner cavity of the container body 1, and the upper end of the conduit 31 Extending upward, the lower end of the pipe 31 extends downward to be close to the bottom of the inner cavity of the container body 1.
  • the present invention also provides an inverted quantitative container, comprising a container body 1 and a cover 2.
  • the cover 2 is detachably connected to the mouth of the container body 1, and the inner cavity of the container body 1
  • the upper end of the liquid storage cylinder 34 and the inner ring 22 are provided with a thread 222 that cooperates with each other.
  • the inner ring 22 When the cover 2 is screwed into the mouth of the container body 1, the inner ring 22 is connected to the upper end of the liquid storage cylinder 34 through the threads 222.
  • the liquid storage cylinder 34 moves down so that the guide hole 32 communicates the liquid storage cavity 3 with the inner cavity of the container body 1; and when the cover 2 is screwed out of the mouth of the container body 1, the cover 2 moves upward, and the inner ring 22 passes through the thread 222 Connecting with the upper end of the liquid storage cylinder 34 moves the liquid storage cylinder 34 upward so that the guide hole 32 is blocked by the side wall of the inner cavity of the container body 1.
  • the cap In the initial state, the cap is screwed into the mouth of the container body, the upper end of the liquid storage cylinder 34 and the inner ring 22 are screwed and moved down, the guide hole 32 is opened, and then the liquid storage cavity is connected with the inner cavity of the container body, and the container is inverted
  • the main body and the substance in the container body can correspondingly enter the liquid storage cavity, and scale marks can be provided on the side wall of the liquid storage cylinder according to needs, so that the user can quantify.
  • the threads 222 are respectively provided on the outer surface of the upper end of the liquid storage cylinder 34 and the inner surface of the inner ring 22.
  • a sealing ring 33 is provided on the outer side of the upper part of the liquid storage cylinder 34 along the circumferential direction.
  • a limit stop ring 342 located on the lower side of the sealing ring 33 is provided on the outer side of the upper part of the liquid storage cylinder 34 along the circumferential direction.
  • the liquid storage cylinder 34 is connected with a conduit 31 for communicating the liquid storage cavity 3 and the inner cavity of the container body 1, and the upper end of the conduit 31 Extending upward, the lower end of the pipe 31 extends downward to be close to the bottom of the inner cavity of the container body 1.
  • the present invention also provides an inverted quantitative container, comprising a container body 1 and a cover 2.
  • the cover 2 is detachably connected to the mouth of the container body 1, and the inner cavity of the container body 1
  • the upper end of the liquid storage cylinder 34 is provided with a slit 321 that can be elastically deformed and opened.
  • the cover 2 faces inward A top pressure protrusion 23 is formed downwardly.
  • the lower end of the top pressure protrusion 23 presses the cut 321 on the upper end of the liquid storage cylinder 34, so that the cut 321 is opened and opened.
  • the liquid storage cavity 3 is connected with the inner cavity of the container body 1; and when the cover 2 is screwed out of the mouth of the container body 1, the notch 321 is automatically closed to separate the liquid storage cavity 3 from the inner cavity of the container body 1.
  • the cap is screwed into the mouth of the container body, and the notch 321 on the upper end of the liquid storage cylinder 34 is pressed by the lower end of the pressing protrusion 23 to stretch and expand downward, thereby connecting the liquid storage cavity and the inner cavity of the container body.
  • the container body is inverted, and the substance in the container body can enter the liquid storage cavity accordingly. If necessary, a scale mark can be provided on the side wall of the liquid storage cylinder for the user to quantify.
  • the container body is erected, the lid is unscrewed, the slit is elastically reset and closed, and then people can pour out the substance in the liquid storage cavity.
  • a guide hole 32 is provided on the side of the upper end of the liquid storage cylinder 34 and located below the cut 321.
  • the scribe notches 321 are arranged in the circumferential direction and are arranged in pairs in pairs, and the lower end of the top pressure tab 23 presses the same group of two scribe notches 321 The area between.
  • the present invention further provides an inverted quantitative container, including a container body 1 and a cover 2.
  • the cover 2 is detachably connected to the mouth of the container body 1, and the inner cavity of the container body 1 is clamped.
  • a liquid storage cylinder 34 with an open upper end is provided.
  • a liquid storage cavity 3 is formed in the liquid storage cylinder 34.
  • the upper side of the liquid storage cylinder 34 is provided with an elastically deformable and expandable scratch Port 321, the cover 2 is formed with a top pressure tab 23 extending downwards.
  • the cap In the initial state, the cap is screwed into the mouth of the container body, and the lower end of the pressing tab 23 presses the liquid storage tube 34 downward and elastically stretches, and the notch 321 on the side of the liquid storage tube 34 is stretched and opened, thereby communicating
  • the liquid storage cavity and the internal cavity of the container body are inverted, and the substance in the container body can enter the liquid storage cavity accordingly.
  • a scale mark can be provided on the side wall of the liquid storage cylinder for the user to quantify.
  • the inner surface of the upper end of the liquid storage cylinder 34 and the lower side of the notch 321 is provided with an inner convex structure 231 for pressing the lower end of the pressing protrusion 23.
  • the pressing tab 23 and the notch 321 are mutually staggered in the circumferential direction.
  • the present invention further provides an inverted quantitative container, including a container body 1 and a cover 2.
  • the cover 2 is detachably connected to the mouth of the container body 1, and the inner cavity of the container body 1
  • a sleeve 36, the side of the nest 36 is provided with a notch 321 that can be elastically deformed and opened, and the cover 2 extends downward to form a top pressure tab 23.
  • the cover In the initial state, the cover is screwed into the mouth of the container body, and the lower end of the pressing tab 23 presses the nest 36 downward to deform, and the cut 321 on the side of the nest is stretched and opened, and is connected to the liquid storage cavity.
  • the guide holes on the side are aligned to connect the liquid storage cavity with the internal cavity of the container body.
  • the substance in the container body can enter the liquid storage cavity accordingly.
  • a scale mark can be set on the side wall of the liquid storage cylinder as required. So that users can quantify.
  • the container body When the substance entered into the liquid storage cavity meets the requirements, the container body is erected, the lid is unscrewed, the slit is elastically reset and closed, and the guide hole on the side of the liquid storage cavity is blocked by the nested side wall. Then, people can The substance in the reservoir is poured out.
  • the inner side of the nest 36 and the lower side of the notch 321 is provided with an inner convex structure 231 for pressing the lower end of the pressing protrusion 23.
  • the cover 2 is screwed into the container After the mouth of the main body 1, in order to improve the efficiency of liquid feeding and avoid interference, the pressing tab 23 and the notch 321 are mutually staggered in the circumferential direction.
  • the present invention further provides an inverted quantitative container, including a container body 1 and a cover 2.
  • the cover 2 is detachably connected to the mouth of the container body 1, and the inner cavity of the container body 1
  • An elastically deformable and stretchable nest 36 is clamped in the upper end of the opening 34.
  • the side of the nest 36 is provided with a guide hole 32.
  • the cover 2 extends downward to form a top pressure tab 23.
  • the lower end of the pressing protruding piece 23 stretches and deforms the pressing nest 36 downward, so that the guide hole 32 on the side of the nest 36 is aligned with the guide hole 32 on the upper side of the liquid storage cylinder 34, and the The liquid storage cavity 3 is in communication with the inner cavity of the container body 1; and when the cover 2 is screwed out of the mouth of the container body 1, the nest 36 elastically restores its deformation so that the guide hole 32 on the side of the nest 36 and the upper end side of the liquid tank 34
  • the guide holes 32 are staggered and sealed to separate the liquid storage cavity 3 from the inner cavity of the container body 1.
  • the cover In the initial state, the cover is screwed into the mouth of the container body, and the lower end of the pressing tab 23 presses the nest 36 downward to deform, and the nest is stretched downward to make the guide hole on the side of the nest and the liquid storage
  • the guide holes on the upper side of the cylinder 34 are aligned to connect the liquid storage cavity with the internal cavity of the container body.
  • the substance in the container body can enter the liquid storage cavity accordingly.
  • Scale mark for users to quantify.
  • the guide holes on the side of the liquid storage chamber and the guide holes on the side of the nest are staggered and blocked. Live, then, people can pour out the substance in the reservoir.
  • the inner surface of the nest 36 is provided with an inner convex structure 231 for pressing the lower end of the pressing protrusion 23.
  • the pressing convex The sheet 23 and the guide hole 32 are offset from each other in the circumferential direction.
  • the side of the nest 36 is provided with a notch 321 that can be elastically deformed and opened.
  • the present invention can be used to quantify a variety of substances. After the container body is inverted, except for liquids that can enter the liquid storage cavity, powder, slurry, paste, etc., can enter the liquid storage cavity for quantification as long as the container body is shaken.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Closures For Containers (AREA)

Abstract

一种新型的倒转式定量容器,封盖(2)连接于容器本体(1)口部,容器本体内腔设有上端开口的储液筒(34),储液筒内形成有储液腔(3),储液筒上端侧面设有导孔(32),导孔内设有可将导孔封堵住的进液阀门(35),封盖内向下延伸形成有插入储液筒口部的内环(22),内环侧面设有进液口(221),当封盖连接在容器本体口部时,内环则顶压进液阀门而使得导孔与进液口连通,进而将储液腔与容器本体内腔连通;使用时,倒立容器本体,则可使得容器本体内腔的物质相应进入储液腔内,使用者可以根据使用需要进行定量,即当进入储液腔内的物质满足所需时,则再把容器本体正立,接下来打开封盖,即可将储液腔内的定量物质倒出来,为此,具有结构简洁、使用便捷的特点。

Description

一种新型的倒转定量容器 【技术领域】
本发明涉及包装容器,尤其是一种新型的倒转定量容器。
【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。
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新型的倒转定量容器,使用时,倒立容器本体,则可使得容器本体内腔的物质相应进入储液腔内,使用者可以根据使用需要进行定量,即当进入储液腔内的物质满足所需时,则再把容器本体正立,接下来打开封盖,即可将储液腔内的定量物质倒出来,为此,本发明具有设计合理,结构简洁、使用便捷的特点。
为解决上述技术问题,本发明一种新型的倒转定量容器,包括容器本体1和封盖2,所述封盖2可拆卸连接于容器本体1口部,所述容器本体1内腔设有上端开口的储液筒34,所述储液筒34内形成有储液腔3,所述储液筒34上端侧面设有导孔32,所述导孔32内设有可将导孔32封堵住的进液阀门35,所述封盖2内向下延伸形成有插入储液筒34口部的内环22,所述内环22侧面设有进液口221,当封盖2连接在容器本体1口部时,内环22则顶压进液阀门35而使得导孔32与进液口221连通,进而将储液腔3与容器本体1内腔连通。
如上所述一种倒转定量容器,所述进液阀门35为可弹性形变的结构,当封盖2连接在容器本体1口部时,所述内环22下侧边缘顶压进液阀门35产生弹性形变而使得导孔32与进液口221连通,且当封盖2脱离容器本体1口部时,进液阀门35自动恢复形状而将导孔32堵住。
如上所述一种倒转定量容器,所述进液阀门35伸入储液腔3一端设有导向斜面,且所述进液阀门35位于容器本体1内腔一端则弹性连接在储液筒34 侧面上,当封盖2连接在容器本体1口部时,所述内环22下侧边缘则顶压进液阀门35退出导孔32而使得导孔与进液口221对齐连通,且当封盖2脱离容器本体1口部时,进液阀门35自动插入导孔32内而将其堵住。
如上所述一种倒转定量容器,所述储液筒34连接有用于连通储液腔3和容器本体1内腔的导管31,且所述导管31上端向上延伸,所述导管31下端向下延伸而接近于容器本体1内腔底部,所述储液筒34侧壁设有刻度标识。
本发明又提供一种新型的倒转定量容器,包括容器本体1和封盖2,所述封盖2可拆卸连接于容器本体1口部,所述容器本体1内腔设有上端开口的储液筒34,所述储液筒34内形成有储液腔3,所述储液筒34上端侧面设有导孔32,所述储液筒34上端面沿周向设有卡扣341,所述封盖2内沿周向且向下延伸形成有与卡扣341配合的卡钩21,当封盖2旋进容器本体1口部后,卡钩21则勾住卡扣341将储液筒34下移,使得导孔32将储液腔3与容器本体1内腔连通;且当封盖2旋出容器本体1口部时,封盖2上移,卡钩21带着储液筒34上移,导孔32则被容器本体1内腔侧壁封堵住;或所述储液筒34上端面沿周向设有卡钩21,所述封盖2内沿周向且向下延伸形成有与卡钩21配合的卡扣341,当封盖2旋进容器本体1口部后,卡扣341则勾住卡钩21将储液筒34下移,使得导孔32将储液腔3与容器本体1内腔连通;且当封盖2旋出容器本体1口部时,封盖2上移,卡扣341带着储液筒34上移,导孔32则被容器本体1内腔侧壁封堵住。
或者所述储液筒34上端面沿周向设有卡钩21,所述封盖2内沿周向且向下延伸形成有与卡钩21配合的卡扣341,当封盖2旋进容器本体1口部后,卡扣341则勾住卡钩21将储液筒34下移,使得导孔32将储液腔3与容器本体1内腔连通;且当封盖2旋出容器本体1口部时,封盖2上移,卡扣341带着储液筒34上移,导孔32则被容器本体1内腔侧壁封堵住。
如上所述一种倒转定量容器,所述储液筒34上部外侧沿周向设有用于与容器本体1口部内侧面密封配合的密封环33。
如上所述一种倒转定量容器,所述储液筒34上部外侧沿周向设有位于密封环33下侧的限位挡环342。
如上所述一种倒转定量容器,所述储液筒34上部口部密封连接有可撕裂 的密封片344,
如上所述一种倒转定量容器,所述储液筒34底部开口且可拆卸连接有底盘345。
如上所述一种倒转定量容器,所述储液筒34连接有用于连通储液腔3和容器本体1内腔的导管31,且所述导管31上端向上延伸,所述导管31下端向下延伸而接近于容器本体1内腔底部,所述储液筒34侧壁设有刻度标识。
本发明又提供一种倒转定量容器,包括容器本体1和封盖2,所述封盖2可拆卸连接于容器本体1口部,所述容器本体1内腔设有上端开口的储液筒34,所述储液筒34内形成有储液腔3,所述储液筒34上端侧面设有导孔32,所述封盖2内向下延伸形成有内环22,所述储液筒34上端与内环22之间设有相互配合连接的螺纹222,当封盖2旋进容器本体1口部后,内环22通过螺纹222与储液筒34上端连接而储液筒34下移,使得导孔32将储液腔3与容器本体1内腔连通;且当封盖2旋出容器本体1口部时,封盖2上移,内环22通过螺纹222与储液筒34上端连接将储液筒34上移,使得导孔32则被容器本体1内腔侧壁封堵住。
如上所述一种倒转定量容器,所述螺纹222分别设在储液筒34上端外侧面和内环22内侧面上。
如上所述一种倒转定量容器,所述储液筒34上部外侧沿周向设有用于与容器本体1口部内侧面密封配合的密封环33。
如上所述一种倒转定量容器,所述储液筒34上部外侧沿周向设有位于密封环33下侧的限位挡环342。
如上所述一种倒转定量容器,所述储液筒34连接有用于连通储液腔3和容器本体1内腔的导管31,且所述导管31上端向上延伸,所述导管31下端向下延伸而接近于容器本体1内腔底部,所述储液筒34侧壁设有刻度标识。
本发明还提供一种倒转定量容器,包括容器本体1和封盖2,所述封盖2可拆卸连接于容器本体1口部,所述容器本体1内腔设有上端开口的储液筒34,所述储液筒34内形成有储液腔3,所述储液筒34上端面设有可弹性形变而张开的划口321,所述封盖2内向下延伸形成有顶压凸片23,当封盖2旋进容器本体1口部后,顶压凸片23下端则顶压储液筒34上端面的划口321,使得划口321张开而将储液腔3与容器本体1内腔连通;且当封盖2旋出容器本体1口部时, 划口321自动闭合而将储液腔3与容器本体1内腔隔开。
如上所述一种倒转定量容器,所述储液筒34上端侧面且位于划口321下方设有导孔32。
如上所述一种倒转定量容器,所述划口321沿周向设置,且两两一组,所述顶压凸片23下端则顶压同一组两划口321之间的区域。
本发明再提供一种倒转定量容器,包括容器本体1和封盖2,所述封盖2可拆卸连接于容器本体1口部,所述容器本体1内腔卡设上端开口的储液筒34,所述储液筒34内形成有储液腔3,所述储液筒34上端侧面设有可弹性形变而张开的划口321,所述封盖2内向下延伸形成有顶压凸片23,当封盖2旋进容器本体1口部后,顶压凸片23下端则顶压储液筒34向下弹性拉伸,使得划口321张开而将储液腔3与容器本体1内腔连通;且当封盖2旋出容器本体1口部时,划口321自动闭合而将储液腔3与容器本体1内腔隔开。
如上所述一种倒转定量容器,所述储液筒34上端内侧面且位于划口321下侧设有供顶压凸片23下端顶压的内凸结构231,当封盖2旋进容器本体1口部后,所述顶压凸片23与划口321沿周向相互错开。
本发明再提供一种倒转定量容器,包括容器本体1和封盖2,所述封盖2可拆卸连接于容器本体1口部,所述容器本体1内腔设有上端开口的储液筒34,所述储液筒34内形成有储液腔3,所述储液筒34上端侧面设有导孔32,所述储液筒34上端开口内卡设有嵌套36,所述嵌套36侧面设有可弹性形变而张开的划口321,所述封盖2内向下延伸形成有顶压凸片23,当封盖2旋进容器本体1口部后,顶压凸片23下端则顶压嵌套36向下拉伸形变,使得划口321张开并与导孔32对齐,进而将储液腔3与容器本体1内腔连通;且当封盖2旋出容器本体1口部时,划口321自动闭合,嵌套36侧壁则将导孔32封堵住而将储液腔3与容器本体1内腔隔开。
如上所述一种倒转定量容器,所述嵌套36内侧面且位于划口321下侧设有供顶压凸片23下端顶压的内凸结构231,当封盖2旋进容器本体1口部后,所述顶压凸片23与划口321沿周向相互错开。
本发明再提供一种倒转定量容器,包括容器本体1和封盖2,所述封盖2可拆卸连接于容器本体1口部,所述容器本体1内腔设有上端开口的储液筒34, 所述储液筒34内形成有储液腔3,所述储液筒34上端侧面设有导孔32,所述储液筒34上端开口内卡设有可弹性形变拉伸的嵌套36,所述嵌套36侧面设有导孔32,所述封盖2内向下延伸形成有顶压凸片23,当封盖2旋进容器本体1口部后,顶压凸片23下端则顶压嵌套36向下拉伸形变,使得嵌套36侧面的导孔32与储液筒34上端侧面的导孔32对齐,进而将储液腔3与容器本体1内腔连通;且当封盖2旋出容器本体1口部时,嵌套36弹性恢复其形变使得嵌套36侧面的导孔32与储液筒34上端侧面的导孔32相互错开封堵住而将储液腔3与容器本体1内腔隔开。
如上所述一种倒转定量容器,所述嵌套36内侧面设有供顶压凸片23下端顶压的内凸结构231,当封盖2旋进容器本体1口部后,所述顶压凸片23与导孔32沿周向相互错开。
如上所述一种倒转定量容器,所述嵌套36侧面设有可弹性形变而张开的划口321。
与现有技术相比较,本发明一种新型的倒转定量容器,具有如下优点:1、将储液腔侧面或上端面设有开弹性形变而张开的划口,初始时,封盖的顶压凸片则相应作用划口而使之弹性张开,储液腔与容器本体内腔连通,故当容器本体倒立时,容器本体内的物质则可以通过导孔或张开的划口进入储液腔内,使用者也可以根据使用需求进行定量,即当储液腔内的物质满足所需时,正立容器本体,打开封盖,划口则自动复位不可,导孔也相应被封堵住,最后可将储液腔内的物质倒出,为此,具有设计合理,结构简洁,使用便捷和制造成本较低的特点。
2、在储液腔内设置有导管,使用时,可进行导气,使得进入储液腔内的物质顺畅快速。
3、为便于将储液腔内的物质倒出,在储液腔的底部设有可拆卸底盖,即当储液腔与容器本体分离后,打开底盖则可快速地将位于储液腔内的物质倒出。
4、为了防伪,在储液筒上端开口设置可撕裂的密封片,使用前,需要打开封盖,现将该密封片撕裂去除,再旋回封盖。
【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为本发明的第一种具体实施例的剖视图;
图2为本发明的第二种具体实施例的剖视图之一;
图3为本发明的第二种具体实施例的剖视图之二;
图4为本发明的第三种具体实施例的剖视图;
图5为本发明的第四种具体实施例的剖视图;
图6为本发明的第五种具体实施例的剖视图之一;
图7为本发明的第五种具体实施例的剖视图之二;
图8为本发明的第六种具体实施例的剖视图;
图9为本发明的第七种具体实施例的剖视图;
图10为本发明的第八种具体实施例的剖视图;
图11为本发明的第九种具体实施例的剖视图;
图12为本发明的第十种具体实施例的剖视图;
图13为本发明的第十一种具体实施例的剖视图;
图14为本发明的第十二种具体实施例的剖视图;
图15为本发明的第十三种具体实施例的剖视图;
图16为本发明的第十四种具体实施例的剖视图;
图17为本发明的第十五种具体实施例的剖视图;
图18为本发明的第十六种具体实施例的剖视图;
图19为本发明的第十七种具体实施例的剖视图;
图20为本发明的第十八种具体实施例的剖视图;
图21为本发明的第十九种具体实施例的剖视图;
图22为本发明的第二十种具体实施例的剖视图之一;
图23为本发明的第二十种具体实施例的剖视图之二;
图24为本发明的第二十一种具体实施例的剖视图;
图25为本发明的第二十二种具体实施例的剖视图;
图26为本发明的第二十三种具体实施例的剖视图;
图27为本发明的第二十四种具体实施例的剖视图;
[根据细则91更正 25.02.2020]
[根据细则91更正 25.02.2020] 
[根据细则91更正 25.02.2020] 
[根据细则91更正 25.02.2020] 
[根据细则91更正 25.02.2020] 
[根据细则91更正 25.02.2020] 
[根据细则91更正 25.02.2020] 
[根据细则91更正 25.02.2020] 
[根据细则91更正 25.02.2020] 
[根据细则91更正 25.02.2020] 
【具体实施方式】
下面结合附图对本发明的实施方式作详细说明。
如图1-4所示,本发明一种新型的倒转定量容器,包括容器本体1和封盖2,所述封盖2可拆卸连接于容器本体1口部,所述容器本体1内腔设有上端开口的储液筒34,所述储液筒34内形成有储液腔3,所述储液筒34上端侧面设有导孔32,所述导孔32内设有可将导孔32封堵住的进液阀门35,所述封盖2内向下延伸形成有插入储液筒34口部的内环22,所述内环22侧面设有进液口221,当封盖2连接在容器本体1口部时,内环22则顶压进液阀门35而使得导孔32与进液口221连通,进而将储液腔3与容器本体1内腔连通。初始状态时,封盖旋入容器本体口部,进液阀门35则被顶压,导孔32则被打开,进而连通储液腔与容器本体内腔,倒立容器本体,容器本体内的物质则可相应进入储液腔内,根据需要可在储液筒侧壁上设置有刻度标识,以便使用者进行定量。当所进入储液腔内的物质满足所需时,正立容器本体,打开封盖,进液阀门在弹性力的作用下而将导孔封堵住,接着,人们可将储液腔内的物质倒出,因此具有使用便捷的特点,且结构设计简洁合理。
如图1-2所示,所述进液阀门35为可弹性形变的结构,当封盖2连接在容器本体1口部时,所述内环22下侧边缘顶压进液阀门35产生弹性形变而使得导孔32与进液口221连通,且当封盖2脱离容器本体1口部时,进液阀门35自动恢复形状而将导孔32堵住。
如图3-4所示,所述进液阀门35伸入储液腔3一端设有导向斜面,且所述进液阀门35位于容器本体1内腔一端则弹性连接在储液筒34侧面上,当封盖2连接在容器本体1口部时,所述内环22下侧边缘则顶压进液阀门35退出导孔 32而使得导孔与进液口221对齐连通,且当封盖2脱离容器本体1口部时,进液阀门35自动插入导孔32内而将其堵住。
为了使得倒立过程中容器本体内腔的物质能顺畅地进入储液腔内,所述储液筒34连接有用于连通储液腔3和容器本体1内腔的导管31,且所述导管31上端向上延伸,所述导管31下端向下延伸而接近于容器本体1内腔底部。
如图5-9所示,本发明又提供一种新型的倒转定量容器,包括容器本体1和封盖2,所述封盖2可拆卸连接于容器本体1口部,所述容器本体1内腔设有上端开口的储液筒34,所述储液筒34内形成有储液腔3,所述储液筒34上端侧面设有导孔32,如图5-7所示,所述储液筒34上端面沿周向设有卡扣341,所述封盖2内沿周向且向下延伸形成有与卡扣341配合的卡钩21,当封盖2旋进容器本体1口部后,卡钩21则勾住卡扣341将储液筒34下移,使得导孔32将储液腔3与容器本体1内腔连通;且当封盖2旋出容器本体1口部时,封盖2上移,卡钩21带着储液筒34上移,导孔32则被容器本体1内腔侧壁封堵住;如图9所示,所述储液筒34上端面沿周向设有卡钩21,所述封盖2内沿周向且向下延伸形成有与卡钩21配合的卡扣341,当封盖2旋进容器本体1口部后,卡扣341则勾住卡钩21将储液筒34下移,使得导孔32将储液腔3与容器本体1内腔连通;且当封盖2旋出容器本体1口部时,封盖2上移,卡扣341带着储液筒34上移,导孔32则被容器本体1内腔侧壁封堵住。
初始状态时,封盖旋入容器本体口部,储液筒34则被下移,导孔32则被打开,进而连通储液腔与容器本体内腔,倒立容器本体,容器本体内的物质则可相应进入储液腔内,根据需要可在储液筒侧壁上设置有刻度标识,以便使用者进行定量。当所进入储液腔内的物质满足所需时,正立容器本体,打开封盖,在卡扣与卡钩的作用下而将储液筒上移,导孔则被容器本体内腔侧壁封堵住,接着,人们可将储液腔内的物质倒出,因此具有使用便捷的特点,且结构设计简洁合理。
为了使得储液筒与容器本体1口部内侧面密封配合,在所述储液筒34上部外侧沿周向设有的密封环33,即当储液筒上移时,通过密封环即可避免倒取储液腔内的物质时,储液筒与容器本体1口部之间渗出而影响使用效果。
为了对储液筒上移进行限位,所述储液筒34上部外侧沿周向设有位于密封环33下侧的限位挡环342。
如图8所示,所述储液筒34上部口部密封连接有可撕裂的密封片344,具有防伪作用,使用前需代开封盖将密封片撕裂去除,再旋回封盖。
如图8所示,所述储液筒34底部开口且可拆卸连接有底盘345。当倒立再正立后,将储液筒取出,拆开底盘即可将储液筒内的物质倒出。
为了使得倒立过程中容器本体内腔的物质能顺畅地进入储液腔内,所述储液筒34连接有用于连通储液腔3和容器本体1内腔的导管31,且所述导管31上端向上延伸,所述导管31下端向下延伸而接近于容器本体1内腔底部。
如图10-13所示,本发明又提供一种倒转定量容器,包括容器本体1和封盖2,所述封盖2可拆卸连接于容器本体1口部,所述容器本体1内腔设有上端开口的储液筒34,所述储液筒34内形成有储液腔3,所述储液筒34上端侧面设有导孔32,所述封盖2内向下延伸形成有内环22,所述储液筒34上端与内环22之间设有相互配合连接的螺纹222,当封盖2旋进容器本体1口部后,内环22通过螺纹222与储液筒34上端连接而储液筒34下移,使得导孔32将储液腔3与容器本体1内腔连通;且当封盖2旋出容器本体1口部时,封盖2上移,内环22通过螺纹222与储液筒34上端连接将储液筒34上移,使得导孔32则被容器本体1内腔侧壁封堵住。初始状态时,封盖旋入容器本体口部,储液筒34上端与内环22通过螺纹连接且被下移,导孔32则被打开,进而连通储液腔与容器本体内腔,倒立容器本体,容器本体内的物质则可相应进入储液腔内,根据需要可在储液筒侧壁上设置有刻度标识,以便使用者进行定量。当所进入储液腔内的物质满足所需时,正立容器本体,旋开封盖,储液筒则被封盖的内环带动向上移动,使得导孔则被容器本体内腔侧壁封堵住,接着,人们可将储液腔内的物质倒出。
本实施例中,所述螺纹222分别设在储液筒34上端外侧面和内环22内侧面上。
为了使得储液筒上端与容器本体1口部内侧面密封配合,在所述储液筒34上部外侧沿周向设有用于的密封环33。
为了当储液筒上移时进行限位,所述储液筒34上部外侧沿周向设有位于密封环33下侧的限位挡环342。
为了使得倒立过程中容器本体内腔的物质能顺畅地进入储液腔内,所述 储液筒34连接有用于连通储液腔3和容器本体1内腔的导管31,且所述导管31上端向上延伸,所述导管31下端向下延伸而接近于容器本体1内腔底部。
如图14-17所示,本发明还提供一种倒转定量容器,包括容器本体1和封盖2,所述封盖2可拆卸连接于容器本体1口部,所述容器本体1内腔设有上端开口的储液筒34,所述储液筒34内形成有储液腔3,所述储液筒34上端面设有可弹性形变而张开的划口321,所述封盖2内向下延伸形成有顶压凸片23,当封盖2旋进容器本体1口部后,顶压凸片23下端则顶压储液筒34上端面的划口321,使得划口321张开而将储液腔3与容器本体1内腔连通;且当封盖2旋出容器本体1口部时,划口321自动闭合而将储液腔3与容器本体1内腔隔开。初始状态时,封盖旋入容器本体口部,储液筒34上端面的划口321被顶压凸片23下端顶压而向下拉伸张开,进而连通储液腔与容器本体内腔,倒立容器本体,容器本体内的物质则可相应进入储液腔内,根据需要可在储液筒侧壁上设置有刻度标识,以便使用者进行定量。当所进入储液腔内的物质满足所需时,正立容器本体,旋开封盖,划口弹性复位闭合,接着,人们可将储液腔内的物质倒出。
为了便于储液腔进液,如图16所示,所述储液筒34上端侧面且位于划口321下方设有导孔32。
为了使得划口被顶压张开较大,提供进液效率,所述划口321沿周向设置,且两两一组,所述顶压凸片23下端则顶压同一组两划口321之间的区域。
如图18-21所示,本发明再提供一种倒转定量容器,包括容器本体1和封盖2,所述封盖2可拆卸连接于容器本体1口部,所述容器本体1内腔卡设上端开口的储液筒34,所述储液筒34内形成有储液腔3,如图20和图21所示,所述储液筒34上端侧面设有可弹性形变而张开的划口321,所述封盖2内向下延伸形成有顶压凸片23,当封盖2旋进容器本体1口部后,如图18所示,顶压凸片23下端则顶压储液筒34向下弹性拉伸,使得划口321张开而将储液腔3与容器本体1内腔连通;且当封盖2旋出容器本体1口部时,如图19所示,划口321自动闭合而将储液腔3与容器本体1内腔隔开。初始状态时,封盖旋入容器本体口部,顶压凸片23下端则顶压储液筒34向下弹性拉伸,储液筒34侧面的划口321被拉伸而张开,进而连通储液腔与容器本体内腔,倒立容器本体,容器本体内的物质则可相应进入储液腔内,根据需要可在储液筒侧壁上设置有刻度标识, 以便使用者进行定量。当所进入储液腔内的物质满足所需时,正立容器本体,旋开封盖,划口弹性复位闭合,接着,人们可将储液腔内的物质倒出。
如图18和21所示,所述储液筒34上端内侧面且位于划口321下侧设有供顶压凸片23下端顶压的内凸结构231,当封盖2旋进容器本体1口部后,为了进液顺畅,所述顶压凸片23与划口321沿周向相互错开。
如图26-27所示,本发明再提供一种倒转定量容器,包括容器本体1和封盖2,所述封盖2可拆卸连接于容器本体1口部,所述容器本体1内腔设有上端开口的储液筒34,所述储液筒34内形成有储液腔3,所述储液筒34上端侧面设有导孔32,所述储液筒34上端开口内卡设有嵌套36,所述嵌套36侧面设有可弹性形变而张开的划口321,所述封盖2内向下延伸形成有顶压凸片23,当封盖2旋进容器本体1口部后,顶压凸片23下端则顶压嵌套36向下拉伸形变,使得划口321张开并与导孔32对齐,进而将储液腔3与容器本体1内腔连通;且当封盖2旋出容器本体1口部时,划口321自动闭合,嵌套36侧壁则将导孔32封堵住而将储液腔3与容器本体1内腔隔开。初始状态时,封盖旋入容器本体口部,顶压凸片23下端则顶压嵌套36向下拉伸形变,嵌套侧面的划口321被拉伸而张开,并与储液腔侧面的导孔对齐,进而连通储液腔与容器本体内腔,倒立容器本体,容器本体内的物质则可相应进入储液腔内,根据需要可在储液筒侧壁上设置有刻度标识,以便使用者进行定量。当所进入储液腔内的物质满足所需时,正立容器本体,旋开封盖,划口弹性复位闭合,储液腔侧面的导孔则被嵌套侧壁封堵住,接着,人们可将储液腔内的物质倒出。
为了便于顶压嵌套向下拉伸形变,所述嵌套36内侧面且位于划口321下侧设有供顶压凸片23下端顶压的内凸结构231,当封盖2旋进容器本体1口部后,为了提高进液效率而避免干涉,所述顶压凸片23与划口321沿周向相互错开。
如图22-25所示,本发明再提供一种倒转定量容器,包括容器本体1和封盖2,所述封盖2可拆卸连接于容器本体1口部,所述容器本体1内腔设有上端开口的储液筒34,所述储液筒34内形成有储液腔3,所述储液筒34上端侧面设有导孔32,如图23-25所示,所述储液筒34上端开口内卡设有可弹性形变拉伸的嵌套36,所述嵌套36侧面设有导孔32,所述封盖2内向下延伸形成有顶压凸 片23,当封盖2旋进容器本体1口部后,顶压凸片23下端则顶压嵌套36向下拉伸形变,使得嵌套36侧面的导孔32与储液筒34上端侧面的导孔32对齐,进而将储液腔3与容器本体1内腔连通;且当封盖2旋出容器本体1口部时,嵌套36弹性恢复其形变使得嵌套36侧面的导孔32与储液筒34上端侧面的导孔32相互错开封堵住而将储液腔3与容器本体1内腔隔开。初始状态时,封盖旋入容器本体口部,顶压凸片23下端则顶压嵌套36向下拉伸形变,嵌套则被向下拉伸而使得嵌套侧面的导孔与储液筒34上端侧面的导孔对齐,进而连通储液腔与容器本体内腔,倒立容器本体,容器本体内的物质则可相应进入储液腔内,根据需要可在储液筒侧壁上设置有刻度标识,以便使用者进行定量。当所进入储液腔内的物质满足所需时,正立容器本体,旋开封盖,嵌套则弹性恢复其形状,储液腔侧面的导孔与嵌套侧面的导孔则相互错开而封堵住,接着,人们可将储液腔内的物质倒出。
如图24-25所示,所述嵌套36内侧面设有供顶压凸片23下端顶压的内凸结构231,当封盖2旋进容器本体1口部后,所述顶压凸片23与导孔32沿周向相互错开。
为进一步是的嵌套便于拉伸形变,所述嵌套36侧面设有可弹性形变而张开的划口321。
综上,本发明可以用来定量多种物质,将容器本体倒立后除了液体可以进入储液腔内外,粉体,浆体,糊体等,只要摇动容器本体都能进入储液腔来定量。

Claims (25)

  1. 一种新型的倒转定量容器,其特征在于包括容器本体(1)和封盖(2),所述封盖(2)可拆卸连接于容器本体(1)口部,所述容器本体(1)内腔设有上端开口的储液筒(34),所述储液筒(34)内形成有储液腔(3),所述储液筒(34)上端侧面设有导孔(32),所述导孔(32)内设有可将导孔(32)封堵住的进液阀门(35),所述封盖(2)内向下延伸形成有插入储液筒(34)口部的内环(22),所述内环(22)侧面设有进液口(221),当封盖(2)连接在容器本体(1)口部时,内环(22)则顶压进液阀门(35)而使得导孔(32)与进液口(221)连通,进而将储液腔(3)与容器本体(1)内腔连通。
  2. 根据权利要求1所述一种新型的倒转定量容器,其特征在于所述进液阀门(35)为可弹性形变的结构,当封盖(2)连接在容器本体(1)口部时,所述内环(22)下侧边缘顶压进液阀门(35)产生弹性形变而使得导孔(32)与进液口(221)连通,且当封盖(2)脱离容器本体(1)口部时,进液阀门(35)自动恢复形状而将导孔(32)堵住。
  3. 根据权利要求1所述一种新型的倒转定量容器,其特征在于所述进液阀门(35)伸入储液腔(3)一端设有导向斜面,且所述进液阀门(35)位于容器本体(1)内腔一端则弹性连接在储液筒(34)侧面上,当封盖(2)连接在容器本体(1)口部时,所述内环(22)下侧边缘则顶压进液阀门(35)退出导孔(32)而使得导孔与进液口(221)对齐连通,且当封盖(2)脱离容器本体(1)口部时,进液阀门(35)自动插入导孔(32)内而将其堵住。
  4. 根据权利要求1-3任一项所述一种新型的倒转定量容器,其特征在于所述储液筒(34)连接有用于连通储液腔(3)和容器本体(1)内腔的导管(31),且所述导管(31)上端向上延伸,所述导管(31)下端向下延伸而接近于容器本体(1)内腔底部,所述储液筒(34)侧壁设有刻度标识。
  5. 一种新型的倒转定量容器,其特征在于包括容器本体(1)和封盖(2),所述封盖(2)可拆卸连接于容器本体(1)口部,所述容器本体(1)内腔设有上端开口的储液筒(34),所述储液筒(34)内形成有储液腔(3),所述储液筒(34)上端侧面设有导孔(32),所述储液筒(34)上端面沿周向设有卡扣(341),所述封盖(2)内沿周向且向下延伸形成有与卡扣(341)配合的卡钩(21),当封盖(2)旋进容器本体(1)口部后,卡钩(21)则勾住卡扣(341)将储液筒(34) 下移,使得导孔(32)将储液腔(3)与容器本体(1)内腔连通;且当封盖(2)旋出容器本体(1)口部时,封盖(2)上移,卡钩(21)带着储液筒(34)上移,导孔(32)则被容器本体(1)内腔侧壁封堵住;或所述储液筒(34)上端面沿周向设有卡钩(21),所述封盖(2)内沿周向且向下延伸形成有与卡钩(21)配合的卡扣(341),当封盖(2)旋进容器本体(1)口部后,卡扣(341)则勾住卡钩(21)将储液筒(34)下移,使得导孔(32)将储液腔(3)与容器本体(1)内腔连通;且当封盖(2)旋出容器本体(1)口部时,封盖(2)上移,卡扣(341)带着储液筒(34)上移,导孔(32)则被容器本体(1)内腔侧壁封堵住。
  6. 根据权利要求5所述一种新型的倒转定量容器,其特征在于所述储液筒(34)上部外侧沿周向设有用于与容器本体(1)口部内侧面密封配合的密封环(33)。
  7. 根据权利要求6所述一种新型的倒转定量容器,其特征在于所述储液筒(34)上部外侧沿周向设有位于密封环(33)下侧的限位挡环(342)。
  8. 根据权利要求5所述一种新型的倒转定量容器,其特征在于所述储液筒(34)上部口部密封连接有可撕裂的密封片(344)。
  9. 根据权利要求5所述一种新型的倒转定量容器,其特征在于所述储液筒(34)底部开口且可拆卸连接有底盘(345)。
  10. 根据权利要求5-9任一项所述一种新型的倒转定量容器,其特征在于所述储液筒(34)连接有用于连通储液腔(3)和容器本体(1)内腔的导管(31),且所述导管(31)上端向上延伸,所述导管(31)下端向下延伸而接近于容器本体(1)内腔底部,所述储液筒(34)侧壁设有刻度标识。
  11. 一种新型的倒转定量容器,其特征在于包括容器本体(1)和封盖(2),所述封盖(2)可拆卸连接于容器本体(1)口部,所述容器本体(1)内腔设有上端开口的储液筒(34),所述储液筒(34)内形成有储液腔(3),所述储液筒(34)上端侧面设有导孔(32),所述封盖(2)内向下延伸形成有内环(22),所述储液筒(34)上端与内环(22)之间设有相互配合连接的螺纹(222),当封盖(2)旋进容器本体(1)口部后,内环(22)通过螺纹(222)与储液筒(34)上端连接而储液筒(34)下移,使得导孔(32)将储液腔(3)与容器本体(1)内腔连通;且当封盖(2)旋出容器本体(1)口部时,封盖(2)上移,内环(22)通过螺纹(222)与储液筒(34)上端连接将储液筒(34)上移,使得导孔(32) 则被容器本体(1)内腔侧壁封堵住。
  12. 根据权利要求11所述一种新型的倒转定量容器,其特征在于所述螺纹(222)分别设在储液筒(34)上端外侧面和内环(22)内侧面上。
  13. 根据权利要求11或12所述一种新型的倒转定量容器,其特征在于所述储液筒(34)上部外侧沿周向设有用于与容器本体(1)口部内侧面密封配合的密封环(33)。
  14. 根据权利要求13所述一种新型的倒转定量容器,其特征在于所述储液筒(34)上部外侧沿周向设有位于密封环(33)下侧的限位挡环(342)。
  15. 根据权利要求11、12或14任一项所述一种新型的倒转定量容器,其特征在于所述储液筒(34)连接有用于连通储液腔(3)和容器本体(1)内腔的导管(31),且所述导管(31)上端向上延伸,所述导管(31)下端向下延伸而接近于容器本体(1)内腔底部,所述储液筒(34)侧壁设有刻度标识。
  16. 一种新型的倒转定量容器,其特征在于包括容器本体(1)和封盖(2),所述封盖(2)可拆卸连接于容器本体(1)口部,所述容器本体(1)内腔设有上端开口的储液筒(34),所述储液筒(34)内形成有储液腔(3),所述储液筒(34)上端面设有可弹性形变而张开的划口(321),所述封盖(2)内向下延伸形成有顶压凸片(23),当封盖(2)旋进容器本体(1)口部后,顶压凸片(23)下端则顶压储液筒(34)上端面的划口(321),使得划口(321)张开而将储液腔(3)与容器本体(1)内腔连通;且当封盖(2)旋出容器本体(1)口部时,划口(321)自动闭合而将储液腔(3)与容器本体(1)内腔隔开。
  17. 根据权利要求16所述一种新型的倒转定量容器,其特征在于所述储液筒(34)上端侧面且位于划口(321)下方设有导孔(32)。
  18. 根据权利要求16或17所述一种新型的倒转定量容器,其特征在于所述划口(321)沿周向设置,且两两一组,所述顶压凸片(23)下端则顶压同一组两划口(321)之间的区域。
  19. 一种新型的倒转定量容器,其特征在于包括容器本体(1)和封盖(2),所述封盖(2)可拆卸连接于容器本体(1)口部,所述容器本体(1)内腔卡设上端开口的储液筒(34),所述储液筒(34)内形成有储液腔(3),所述储液筒(34)上端侧面设有可弹性形变而张开的划口(321),所述封盖(2)内向下延伸形成 有顶压凸片(23),当封盖(2)旋进容器本体(1)口部后,顶压凸片(23)下端则顶压储液筒(34)向下弹性拉伸,使得划口(321)张开而将储液腔(3)与容器本体(1)内腔连通;且当封盖(2)旋出容器本体(1)口部时,划口(321)自动闭合而将储液腔(3)与容器本体(1)内腔隔开。
  20. 根据权利要求19所述一种新型的倒转定量容器,其特征在于所述储液筒(34)上端内侧面且位于划口(321)下侧设有供顶压凸片(23)下端顶压的内凸结构(231),当封盖(2)旋进容器本体(1)口部后,所述顶压凸片(23)与划口(321)沿周向相互错开。
  21. 一种新型的倒转定量容器,其特征在于包括容器本体(1)和封盖(2),所述封盖(2)可拆卸连接于容器本体(1)口部,所述容器本体(1)内腔设有上端开口的储液筒(34),所述储液筒(34)内形成有储液腔(3),所述储液筒(34)上端侧面设有导孔(32),所述储液筒(34)上端开口内卡设有嵌套(36),所述嵌套(36)侧面设有可弹性形变而张开的划口(321),所述封盖(2)内向下延伸形成有顶压凸片(23),当封盖(2)旋进容器本体(1)口部后,顶压凸片(23)下端则顶压嵌套(36)向下拉伸形变,使得划口(321)张开并与导孔(32)对齐,进而将储液腔(3)与容器本体(1)内腔连通;且当封盖(2)旋出容器本体(1)口部时,划口(321)自动闭合,嵌套(36)侧壁则将导孔(32)封堵住而将储液腔(3)与容器本体(1)内腔隔开。
  22. 根据权利要求21所述一种新型的倒转定量容器,其特征在于所述嵌套(36)内侧面且位于划口(321)下侧设有供顶压凸片(23)下端顶压的内凸结构(231),当封盖(2)旋进容器本体(1)口部后,所述顶压凸片(23)与划口(321)沿周向相互错开。
  23. 一种新型的倒转定量容器,其特征在于包括容器本体(1)和封盖(2),所述封盖(2)可拆卸连接于容器本体(1)口部,所述容器本体(1)内腔设有上端开口的储液筒(34),所述储液筒(34)内形成有储液腔(3),所述储液筒(34)上端侧面设有导孔(32),所述储液筒(34)上端开口内卡设有可弹性形变拉伸的嵌套(36),所述嵌套(36)侧面设有导孔(32),所述封盖(2)内向下延伸形成有顶压凸片(23),当封盖(2)旋进容器本体(1)口部后,顶压凸片(23)下端则顶压嵌套(36)向下拉伸形变,使得嵌套(36)侧面的导孔(32)与储液 筒(34)上端侧面的导孔(32)对齐,进而将储液腔(3)与容器本体(1)内腔连通;且当封盖(2)旋出容器本体(1)口部时,嵌套(36)弹性恢复其形变使得嵌套(36)侧面的导孔(32)与储液筒(34)上端侧面的导孔(32)相互错开封堵住而将储液腔(3)与容器本体(1)内腔隔开。
  24. 根据权利要求23所述一种新型的倒转定量容器,其特征在于所述嵌套(36)内侧面设有供顶压凸片(23)下端顶压的内凸结构(231),当封盖(2)旋进容器本体(1)口部后,所述顶压凸片(23)与导孔(32)沿周向相互错开。
  25. 根据权利要求23或24所述一种新型的倒转定量容器,其特征在于所述嵌套(36)侧面设有可弹性形变而张开的划口(321)。
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CN110395476A (zh) * 2019-01-15 2019-11-01 中山市华宝勒生活用品实业有限公司 一种新型的倒转定量容器
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