CN210192348U - Multi-bin mixing bottle - Google Patents
Multi-bin mixing bottle Download PDFInfo
- Publication number
- CN210192348U CN210192348U CN201921006351.8U CN201921006351U CN210192348U CN 210192348 U CN210192348 U CN 210192348U CN 201921006351 U CN201921006351 U CN 201921006351U CN 210192348 U CN210192348 U CN 210192348U
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- Prior art keywords
- bottle
- guiding
- bottle body
- liquid
- pipe
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- Expired - Fee Related
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- 239000007788 liquid Substances 0.000 claims abstract description 100
- 238000005192 partition Methods 0.000 claims description 22
- 239000000463 material Substances 0.000 claims description 19
- 239000011521 glass Substances 0.000 claims description 2
- 238000007599 discharging Methods 0.000 abstract description 4
- 230000006698 induction Effects 0.000 description 12
- 238000010586 diagram Methods 0.000 description 3
- 239000000203 mixture Substances 0.000 description 3
- 239000012780 transparent material Substances 0.000 description 3
- 230000000007 visual effect Effects 0.000 description 3
- 239000012530 fluid Substances 0.000 description 2
- 239000006210 lotion Substances 0.000 description 1
- 230000008092 positive effect Effects 0.000 description 1
- 239000002453 shampoo Substances 0.000 description 1
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- Containers And Packaging Bodies Having A Special Means To Remove Contents (AREA)
- Package Specialized In Special Use (AREA)
Abstract
The utility model discloses a multi-bin mixing bottle, which comprises a bottle body, a bottle cap and a pressing component, wherein a separator is arranged in the bottle body to separate the inner cavity of the bottle body into at least two independent cavities, the pressing component comprises a pressing part, a pump head, a liquid outlet pipe and a liquid guiding part, the liquid guiding part is a multi-way pipe fitting and comprises a guiding pipe and a plurality of guiding pipes, the guiding pipe is connected with the lower end of a pump core, the number of the guiding pipes is equal to that of the cavities and is correspondingly inserted into the cavities, when the pressing part is pressed downwards, the pump head simultaneously sucks out the liquid in each cavity through each guiding pipe of the liquid guiding part, each liquid is converged in the guiding pipe of the liquid guiding part and reaches a nozzle through the liquid outlet pipe, the discharging is simultaneously realized after multiple liquids are mixed, the discharging is simultaneously carried out after the liquids in the independent cavities are mixed by a single pump head, the space required by a single pump head is small, the appearance, is convenient to carry, and has more pump heads and low cost.
Description
Technical Field
The utility model belongs to liquid container design field especially relates to a many storehouses material mixing bottle.
Background
The container for containing liquid has various structural forms, and the pressing bottle which flows out liquid in a pressing mode can be widely used due to the advantages that the pressing bottle is convenient and quick to take materials, the volume number of the taken materials can be accurately controlled, hands are not dirty, and the like. Such as in the field of holding liquids or fluids such as shampoos, hand lotions, skin care products, and the like.
Most of pressing bottles in the current market are provided with one material body corresponding to one bottle, and a small number of double-bin pressing bottles are also provided, wherein the double-bin pressing bottles refer to pressing bottles capable of containing various liquids or fluids at the same time, but the existing double-bin pressing bottles all adopt double pump heads to discharge two material bodies together, and the material bodies are respectively sprayed out from different pressure nozzle openings; due to the two pump heads mounted on one bottle, this design suffers from several problems: firstly, the cost is high; secondly, the appearance is large; thirdly, the operation is carried out; the bodies cannot be mixed.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a many storehouses material mixing bottle, with low costs, the appearance is little, conveniently carries, and the material body can the mixing discharge.
In order to solve the above problem, the technical scheme of the utility model is that:
a multi-bin blender jar comprising:
the bottle comprises a bottle body, wherein a partition part is arranged in the bottle body to divide an inner cavity of the bottle body into at least two independent cavities, each cavity is communicated with a bottle opening of the bottle body, and the at least two cavities are used for containing different types of materials;
the bottle cap is buckled on the bottle opening of the bottle body;
a pressing assembly, comprising:
the pressing part is arranged at the upper end of the bottle cap, and a nozzle is arranged on the pressing part;
the pump head is positioned at the middle end of the bottle cap and comprises a pump core capable of moving up and down, and the upper end of the pump core is connected with the lower end of the pressing part;
the liquid outlet pipe is connected with the nozzle and extends into the pump core;
the liquid guiding part is a multi-way pipe fitting and comprises a guiding pipe and a plurality of guiding pipes, the guiding pipe is connected with the lower end of the pump core, and the number of the guiding pipes is equal to that of the cavities and correspondingly inserted into the cavities.
Preferably, the inner cavity of the bottle body is divided into two independent cavities by the partition piece, and the liquid guide part is a three-way pipe and comprises a guide pipe, a first guide pipe and a second guide pipe.
Preferably, the partition is a horizontal partition plate, and divides the inner cavity of the bottle body into two independent upper cavities and lower cavities.
Preferably, the separator is a vertical partition plate, and divides the inner cavity of the bottle body into two independent left and right cavities.
Preferably, the isolating piece is a sealed cavity body positioned in the bottle body, and divides the inner cavity of the bottle body into two independent inner cavity bodies and an outer cavity body.
Preferably, the bottle is a plastic or glass bottle.
The utility model discloses owing to adopt above technical scheme, make it compare with prior art and have following advantage and positive effect:
1) the utility model provides a multi-bin mixing bottle, which comprises a bottle body, a bottle cap and a pressing component, wherein a partition part is arranged in the bottle body to divide the inner cavity of the bottle body into at least two independent cavities, the pressing component comprises a pressing part, a pump head, a liquid outlet pipe and a liquid guiding part, the liquid guiding part is a multi-way pipe fitting and comprises a guiding pipe and a plurality of guiding pipes, the guiding pipe is connected with the lower end of a pump core, the number of the guiding pipes is equal to that of the cavities and is correspondingly inserted into the cavities, when the pressing part is pressed downwards, the pump head simultaneously sucks out the liquid in each cavity through each guiding pipe of the liquid guiding part, each liquid is converged in the guiding pipe of the liquid guiding part and reaches a nozzle through the liquid outlet pipe, the discharging of a plurality of liquids is realized simultaneously after being mixed, the discharging is simultaneously carried out after the liquids in the independent cavities are mixed by a single pump head, the required space, the size of the container is greatly reduced, the carrying is convenient, and more pump heads have low cost.
Drawings
FIG. 1 is a schematic diagram of a first embodiment of a multi-bin blender jar;
FIG. 2 is a schematic diagram of a second embodiment of a multi-bin blender jar;
fig. 3 is a schematic diagram of a third embodiment of a multi-bin blender jar.
Description of reference numerals:
1: a bottle body; 11: an upper cavity; 12: a lower cavity; 13: an inner cavity; 14: an outer cavity; 15: a left cavity; 16: a right cavity; 2: a bottle cap; 3: a pressing assembly; 31: a pressing part; 311: a nozzle; 32: a pump head; 321: a pump core; 33: a liquid guide part; 331: a delivery pipe; 332: a first introduction tube; 333: a second inlet tube.
Detailed Description
The following provides a further detailed description of the multi-bin mixing bottle according to the present invention with reference to the accompanying drawings and specific embodiments. The advantages and features of the present invention will become more fully apparent from the following description and appended claims.
Example one
Referring to fig. 1, fig. 1 is a schematic view of a first scheme of a multi-bin mixing bottle, and the embodiment provides a multi-bin mixing bottle, which comprises a bottle body 1, wherein a partition is arranged in the bottle body 1 to divide an inner cavity of the bottle body 1 into at least two independent cavities, each cavity is communicated with a bottle opening of the bottle body 1, and each cavity is used for containing different types of liquid; the bottle cap 2 is buckled on the bottle mouth of the bottle body 1; the pressing component 3 comprises a pressing part 31, a pump head 32, a liquid outlet pipe and a liquid guiding part 33, the pressing part 31 is arranged at the upper end of the bottle cap 2, a nozzle 311 is arranged on the pressing part 31, the pump head 32 is positioned at the middle end of the bottle cap 2 and comprises a pump core 321 capable of moving up and down, the upper end of the pump core 321 is connected with the lower end of the pressing part 31, the liquid outlet pipe (not shown in the figure and positioned inside the pressing part 31 and the pump core 321) is connected with the nozzle 311 and extends into the pump core 321, the liquid guiding part 33 is a multi-way pipe fitting, the liquid guiding part 33 comprises a liquid guiding pipe 331 and a plurality of guiding pipes, the liquid guiding pipe 331 is connected with the lower end of the pump core 321, and the number of the guiding pipes is equal.
The bottle body 1 is provided with a partition in the bottle body 1 to divide an inner cavity of the bottle body 1 into at least two independent cavities, each cavity is communicated with a bottle opening of the bottle body 1 and is used for containing different types of materials, in the embodiment, the partition is a horizontal partition which divides the inner cavity of the bottle body 1 into two independent upper cavities 11 and lower cavities 12, and the bottle body is made of transparent materials and can give a stronger visual sense to a user.
The bottle cap 2 is buckled on the bottle mouth of the bottle body 1, and the bottle cap 2 and the bottle body 1 can be movably connected or fixedly connected through threads, which is not limited here.
The pressing component 3 comprises a pressing part 31, a pump head 32, a liquid outlet pipe 33 and a liquid guiding part 33, the pressing part 31 is arranged at the upper end of the bottle cap 2, a nozzle 311 is arranged on the pressing part 31, the pump head 32 is positioned at the middle end of the bottle cap 2 and comprises a pump core 321 capable of moving up and down, the upper end of the pump core 321 is connected with the lower end of the pressing part 31, the liquid outlet pipe (not shown in the figure and positioned inside the pressing part 31 and the pump core 321) is connected with the nozzle 311 and extends into the pump core 321, the liquid guiding part 33 is a multi-way pipe, the liquid guiding part 33 comprises a guiding pipe 331 and a plurality of guiding pipes, the guiding pipe 331 is connected with the lower end of the pump core 321, and the number of the guiding pipes is equal to that of. The utility model discloses in, liquid guide 33 is a tee bend pipe fitting, including contact tube 331, first induction pipe 332 and second induction pipe 333, contact tube 331 links to each other with the inlet of pump core 321 below, first induction pipe 332 inserts in cavity 11, second induction pipe 342 inserts down in cavity 12, when pressing the splenium 31 under the pressure, pump core 321 pushes down, two kinds of material body aspirations simultaneously in cavity 11 and cavity 12 down will be gone up to pump head 32, two kinds of material bodies converge and mix in contact tube 331, it is inside to get into drain pipe 33 through pump core 321, and reach nozzle 311 department ejection of compact.
The embodiment provides a multi-bin mixing bottle, which comprises a bottle body 1, a bottle 2 cover and a pressing component 3, wherein a partition is arranged in the bottle body 1 to divide an inner cavity of the bottle body 1 into at least two independent cavities, the pressing component 3 comprises a pressing part 31, a pump head 32, a liquid outlet pipe 33 and a liquid guiding part 33, the liquid guiding part 33 is a multi-way pipe, and comprises a guiding pipe 331 and a plurality of guiding pipes, the guiding pipe 331 is connected with the lower end of a pump core 321, the number of the guiding pipes is equal to that of the cavities and is correspondingly inserted into the cavities, when the pressing part 31 is pressed downwards, the pump head 32 sucks out liquid in each cavity through each guiding pipe of the liquid guiding part 33 at the same time, each liquid is converged in the guiding pipe 331 of the liquid guiding part 33 and reaches the nozzle 311 through the liquid outlet pipe 33, and discharges at the same time at the same nozzle 311 after multiple liquids are mixed, the utility model adopts the mode that the liquids in the independent cavities are mixed, the single pump head requires small space, the size of the container is greatly reduced, the carrying is convenient, and more pump heads have low cost.
Example two
Referring to fig. 2, fig. 2 is a schematic view of a second scheme of a multi-bin mixing bottle, and the embodiment provides a multi-bin mixing bottle, which comprises a bottle body 1, wherein a partition is arranged in the bottle body 1 to divide an inner cavity of the bottle body 1 into at least two independent cavities, each cavity is communicated with a bottle opening of the bottle body 1, and each cavity is used for containing different types of liquid; the bottle cap 2 is buckled on the bottle mouth of the bottle body 1; the pressing component 3 comprises a pressing part 31, a pump head 32, a liquid outlet pipe 33 and a liquid guiding part 33, the pressing part 31 is arranged at the upper end of the bottle cap 2, a nozzle 311 is arranged on the pressing part 31, the pump head 32 is positioned at the middle end of the bottle cap 2 and comprises a pump core 321 capable of moving up and down, the upper end of the pump core 321 is connected with the lower end of the pressing part 31, the liquid outlet pipe (not shown in the figure and positioned inside the pressing part 31 and the pump core 321) is connected with the nozzle 311 and extends into the pump core 321, the liquid guiding part 33 is a multi-way pipe, the liquid guiding part 33 comprises a guiding pipe 331 and a plurality of guiding pipes, the guiding pipe 331 is connected with the lower end of the pump core 321, and the number of the guiding pipes is equal to that of.
The bottle body 1 is provided with a partition part in the bottle body 1 to divide an inner cavity of the bottle body 1 into at least two independent cavities, each cavity is communicated with a bottle opening of the bottle body 1 and is used for containing different types of materials, in the embodiment, the partition part is a sealed cavity positioned in the bottle body 1 to divide the inner cavity of the bottle body 1 into two independent inner cavities 13 and outer cavities 14, and the bottle body is made of transparent materials and can give a user a strong visual sense.
The bottle cap 2 is buckled on the bottle mouth of the bottle body 1, and the bottle cap 2 and the bottle body 1 can be movably connected or fixedly connected through threads, which is not limited here.
The pressing component 3 comprises a pressing part 31, a pump head 32, a liquid outlet pipe 33 and a liquid guiding part 33, the pressing part 31 is arranged at the upper end of the bottle cap 2, a nozzle 311 is arranged on the pressing part 31, the pump head 32 is positioned at the middle end of the bottle cap 2 and comprises a pump core 321 capable of moving up and down, the upper end of the pump core 321 is connected with the lower end of the pressing part 31, the liquid outlet pipe (not shown in the figure and positioned inside the pressing part 31 and the pump core 321) is connected with the nozzle 311 and extends into the pump core 321, the liquid guiding part 33 is a multi-way pipe, the liquid guiding part 33 comprises a guiding pipe 331 and a plurality of guiding pipes, the guiding pipe 331 is connected with the lower end of the pump core 321, and the number of the guiding pipes is equal to that of. The utility model discloses in, liquid guide 33 is a tee bend pipe fitting, including contact tube 331, first induction pipe 332 and second induction pipe 333, contact tube 331 links to each other with the inlet of pump core 321 below, first induction pipe 332 inserts in interior cavity 13, second induction pipe 342 inserts in outer cavity 14, when pressing the splenium 31 under the pressure, pump core 321 pushes down, two kinds of materials simultaneous suction in pump head 32 will interior cavity 13 and outer cavity 14, two kinds of materials converge and mix in contact tube 331, it is inside to get into drain pipe 33 through pump core 321, and reach the ejection of compact of nozzle 311 department.
The embodiment provides a multi-bin mixing bottle, which comprises a bottle body 1, a bottle 2 cover and a pressing component 3, wherein a partition is arranged in the bottle body 1 to divide an inner cavity of the bottle body 1 into at least two independent cavities, the pressing component 3 comprises a pressing part 31, a pump head 32, a liquid outlet pipe 33 and a liquid guiding part 33, the liquid guiding part 33 is a multi-way pipe, and comprises a guiding pipe 331 and a plurality of guiding pipes, the guiding pipe 331 is connected with the lower end of a pump core 321, the number of the guiding pipes is equal to that of the cavities and is correspondingly inserted into the cavities, when the pressing part 31 is pressed downwards, the pump head 32 sucks out liquid in each cavity through each guiding pipe of the liquid guiding part 33 at the same time, each liquid is converged in the guiding pipe 331 of the liquid guiding part 33 and reaches the nozzle 311 through the liquid outlet pipe 33, and discharges at the same time at the same nozzle 311 after multiple liquids are mixed, the utility model adopts the mode that the liquids in the independent cavities are mixed, the single pump head requires small space, the size of the container is greatly reduced, the carrying is convenient, and more pump heads have low cost.
EXAMPLE III
Referring to fig. 3, fig. 3 is a schematic view of a third scheme of a multi-bin mixing bottle, and this embodiment provides a multi-bin mixing bottle, which includes a bottle body 1, a partition is arranged in the bottle body 1 to divide an inner cavity of the bottle body 1 into at least two independent cavities, each cavity is communicated with a bottle opening of the bottle body 1, and each cavity is used for containing different types of liquid; the bottle cap 2 is buckled on the bottle mouth of the bottle body 1; the pressing component 3 comprises a pressing part 31, a pump head 32, a liquid outlet pipe 33 and a liquid guiding part 33, the pressing part 31 is arranged at the upper end of the bottle cap 2, a nozzle 311 is arranged on the pressing part 31, the pump head 32 is positioned at the middle end of the bottle cap 2 and comprises a pump core 321 capable of moving up and down, the upper end of the pump core 321 is connected with the lower end of the pressing part 31, the liquid outlet pipe (not shown in the figure and positioned inside the pressing part 31 and the pump core 321) is connected with the nozzle 311 and extends into the pump core 321, the liquid guiding part 33 is a multi-way pipe, the liquid guiding part 33 comprises a guiding pipe 331 and a plurality of guiding pipes, the guiding pipe 331 is connected with the lower end of the pump core 321, and the number of the guiding pipes is equal to that of.
The bottle body 1 is provided with a partition part in the bottle body 1 to separate the inner cavity of the bottle body 1 into at least two independent cavities, each cavity is communicated with the bottle mouth of the bottle body 1 and is used for containing different types of materials, in the embodiment, the partition part is a vertical partition plate to separate the inner cavity of the bottle body 1 into a left cavity 15 and a right cavity 16 which are independent from each other. The bottle body 1 is made of transparent material, so that the user can have strong visual sense.
The bottle cap 2 is buckled on the bottle mouth of the bottle body 1, and the bottle cap 2 and the bottle body 1 can be movably connected or fixedly connected through threads, which is not limited here.
The pressing component 3 comprises a pressing part 31, a pump head 32, a liquid outlet pipe 33 and a liquid guiding part 33, the pressing part 31 is arranged at the upper end of the bottle cap 2, a nozzle 311 is arranged on the pressing part 31, the pump head 32 is positioned at the middle end of the bottle cap 2 and comprises a pump core 321 capable of moving up and down, the upper end of the pump core 321 is connected with the lower end of the pressing part 31, the liquid outlet pipe (not shown in the figure and positioned inside the pressing part 31 and the pump core 321) is connected with the nozzle 311 and extends into the pump core 321, the liquid guiding part 33 is a multi-way pipe, the liquid guiding part 33 comprises a guiding pipe 331 and a plurality of guiding pipes, the guiding pipe 331 is connected with the lower end of the pump core 321, and the number of the guiding pipes is equal to that of. The utility model discloses in, liquid guide 33 is a tee bend pipe fitting, including contact tube 331, first induction pipe 332 and second induction pipe 333, contact tube 331 links to each other with the inlet of pump core 321 below, first induction pipe 332 inserts in left cavity 15, second induction pipe 342 inserts in right cavity 16, when pressing the splenium 31 under the pressure, pump core 321 pushes down, two kinds of materials simultaneous suction in pump head 32 with left cavity 15 and right cavity 16, two kinds of materials converge and mix in contact tube 331, it is inside to see through pump core 321 entering drain pipe 33, and reach the ejection of compact of nozzle 311 department.
The embodiment provides a multi-bin mixing bottle, which comprises a bottle body 1, a bottle 2 cover and a pressing component 3, wherein a partition is arranged in the bottle body 1 to divide an inner cavity of the bottle body 1 into at least two independent cavities, the pressing component 3 comprises a pressing part 31, a pump head 32, a liquid outlet pipe 33 and a liquid guiding part 33, the liquid guiding part 33 is a multi-way pipe, and comprises a guiding pipe 331 and a plurality of guiding pipes, the guiding pipe 331 is connected with the lower end of a pump core 321, the number of the guiding pipes is equal to that of the cavities and is correspondingly inserted into the cavities, when the pressing part 31 is pressed downwards, the pump head 32 sucks out liquid in each cavity through each guiding pipe of the liquid guiding part 33 at the same time, each liquid is converged in the guiding pipe 331 of the liquid guiding part 33 and reaches the nozzle 311 through the liquid outlet pipe 33, and discharges at the same time at the same nozzle 311 after multiple liquids are mixed, the utility model adopts the mode that the liquids in the independent cavities are mixed, the single pump head requires small space, the size of the container is greatly reduced, the carrying is convenient, and more pump heads have low cost.
The embodiments of the present invention have been described in detail with reference to the accompanying drawings, but the present invention is not limited to the above embodiments. Even if various changes are made to the present invention, the changes are still within the scope of the present invention if they fall within the scope of the claims and their equivalents.
Claims (6)
1. A multi-bin blender jar, comprising:
the bottle comprises a bottle body, wherein a partition part is arranged in the bottle body to divide an inner cavity of the bottle body into at least two independent cavities, each cavity is communicated with a bottle opening of the bottle body, and the at least two cavities are used for containing different types of materials;
the bottle cap is buckled on the bottle opening of the bottle body;
a pressing assembly, comprising:
the pressing part is arranged at the upper end of the bottle cap, and a nozzle is arranged on the pressing part;
the pump head is positioned at the middle end of the bottle cap and comprises a pump core capable of moving up and down, and the upper end of the pump core is connected with the lower end of the pressing part;
the liquid outlet pipe is connected with the nozzle and extends into the pump core;
the liquid guiding part is a multi-way pipe fitting and comprises a guiding pipe and a plurality of guiding pipes, the guiding pipe is connected with the lower end of the pump core, and the number of the guiding pipes is equal to that of the cavities and correspondingly inserted into the cavities.
2. The multi-bin mixer bottle of claim 1 wherein the divider divides the interior cavity of the bottle into two separate chambers, and the liquid conducting portion is a tee fitting comprising a delivery tube, a first inlet tube, and a second inlet tube.
3. The multi-bin mixing flask of claim 2, wherein the divider is a horizontal divider that divides the interior chamber of the flask into two separate upper and lower chambers.
4. The multi-bin mixing flask of claim 2, wherein the divider is a vertical partition dividing the interior chamber of the flask into two separate left and right chambers.
5. The multi-bin mixing bottle of claim 2, wherein the divider is a sealed chamber located within the bottle body, dividing the interior chamber of the bottle body into two separate interior and exterior chambers.
6. The multi-bin blender jar of claim 1 wherein the jar is a plastic or glass jar.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921006351.8U CN210192348U (en) | 2019-07-01 | 2019-07-01 | Multi-bin mixing bottle |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921006351.8U CN210192348U (en) | 2019-07-01 | 2019-07-01 | Multi-bin mixing bottle |
Publications (1)
Publication Number | Publication Date |
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CN210192348U true CN210192348U (en) | 2020-03-27 |
Family
ID=69869762
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201921006351.8U Expired - Fee Related CN210192348U (en) | 2019-07-01 | 2019-07-01 | Multi-bin mixing bottle |
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CN (1) | CN210192348U (en) |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111547388A (en) * | 2020-04-26 | 2020-08-18 | 浙江伟飒塑业有限公司 | Liquid suction structure and container with same |
CN111547387A (en) * | 2020-04-26 | 2020-08-18 | 浙江伟飒塑业有限公司 | Spray bottle |
WO2022213250A1 (en) * | 2021-04-06 | 2022-10-13 | L'oreal | Device for storing and dispensing at least two cosmetic products and related method |
-
2019
- 2019-07-01 CN CN201921006351.8U patent/CN210192348U/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111547388A (en) * | 2020-04-26 | 2020-08-18 | 浙江伟飒塑业有限公司 | Liquid suction structure and container with same |
CN111547387A (en) * | 2020-04-26 | 2020-08-18 | 浙江伟飒塑业有限公司 | Spray bottle |
WO2022213250A1 (en) * | 2021-04-06 | 2022-10-13 | L'oreal | Device for storing and dispensing at least two cosmetic products and related method |
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CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20200327 |
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CF01 | Termination of patent right due to non-payment of annual fee |