Multi-component mixing shaker

By designing the container and independent switch parts on the mixer, the existing mixer liquid leakage and cumbersome operation problems are solved, and the flexibility and user experience of the equipment are improved.

CN222907855UActive Publication Date: 2025-05-27WENZHOU SHENGMU TRADING CO LTD
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Patent Information

Application Number
CN202421660284.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-12
Publication Date
2025-05-27
Estimated Expiration
2034-07-12

AI Technical Summary

Technical Problem

The existing bartenders are prone to liquid leakage and complicated operation during the installation of the container for beverages, and the container cannot be replaced according to user preferences.

Method used

A multi-component mixer is designed, the container can be installed on a fixing rack, and an independent switch member is provided at the bottle port end of each container, so that the liquid flows out separately can be controlled.

Benefits of technology

The risk of liquid leakage is reduced through the front installation, simplified the installation and replacement of containers, and improved the flexibility and user experience of the bartender.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a multi-component mixing shaker, which comprises a base, a liquid storage frame and a distributor, the liquid storage frame is distributed above the base, the lower end of the liquid storage frame is connected with the base, a liquid cavity is arranged in the liquid storage frame, and a liquid outlet component is arranged on one side of the liquid storage frame, and the multi-component mixing shaker is characterized in that the distributor is arranged at the upper end of the liquid storage frame; the distributor comprises a fixing frame installed at the upper end of the liquid storage frame, a plurality of sets of installation holes are formed in the lower end face of the fixing frame, each set of installation holes is detachably connected with a set of containers, the containers are distributed between the fixing frame and the base, bottle openings of the containers face the fixing frame, and a pipeline system is arranged in the fixing frame and connected with the installation holes and the liquid cavity at the same time. The liquid cavity is connected with the liquid outlet component. According to the blender, the leakage risk is reduced, and the practicability of the blender is improved.
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Description

Technical Field

[0001] The utility model specifically relates to a multi-component mixing bartender. Background Art

[0002] A bartender is an efficient, convenient and cost-effective device, widely used in catering and entertainment venues, which can quickly provide a variety of beverage options.

[0003] For example, the European patent document with the publication number " EP3423381 B1" discloses a bartender for preparing single-serving mixed beverages. The bartender includes a base, a plurality of containers for holding beverages, a water container for holding water, an injection needle, a beverage receiver, a dispensing needle, a processor, etc. The mixing of beverages is mainly achieved through the processor to prepare suitable alcoholic beverages.

[0004] This bartender has the following defects:

[0005] Firstly, the containers for holding beverages must be placed upside down on the base. As can be clearly seen from the attached drawings of the specification of this published document, that is, the four containers numbered "104-1, 104-2, 104-3, 104-4", due to the beverages being inverted and the bottle mouths being at the bottom of the liquid, leakage is extremely likely to occur. Figure 1 Secondly, no switching valves are separately provided at the bottle mouths of each container. Only the valves in the internal circulation pipelines of the base are relied on to achieve the mixing of different liquids, and these valves are all controlled by the processor. It can be seen from this that the containers for holding beverages must be opened before being installed on the base so that the liquid can be sent into the circulation pipelines, and then the valves on each circulation pipeline are controlled by the processor for reasonable distribution. Such an operation is extremely cumbersome. When installing the containers, liquid will inevitably leak out. At the same time, once the containers are placed on the base, and when the liquid in the containers has not been completely consumed, the containers cannot be replaced according to people's preferences, greatly reducing the experience of this bartender.

[0006] Summary of the Utility Model

[0007] The technical problem to be solved by the utility model is to provide a multi-component mixing bartender aiming at the deficiencies of the above-mentioned prior art, which reduces the leakage risk and improves the practicability of the bartender.

[0008] To achieve the above object, the present utility model provides the following technical solutions: a multi-component mixing cocktail shaker, comprising a base, a liquid storage rack, and a dispenser. The liquid storage rack is distributed above the base and the lower end of the liquid storage rack is connected to the base. A liquid cavity is provided in the liquid storage rack. An outlet component is provided on one side of the liquid storage rack. It is characterized in that: the dispenser is installed at the upper end of the liquid storage rack; the dispenser includes a fixed rack installed at the upper end of the liquid storage rack. A plurality of groups of mounting holes are provided on the lower end surface of the fixed rack. Each group of mounting holes is detachably connected to a group of containers. The containers are distributed between the fixed rack and the base and the bottle mouths of the containers face the fixed rack. A pipeline system is provided in the fixed rack. The pipeline system is connected to a plurality of groups of mounting holes and the liquid cavity at the same time. The liquid cavity is connected to the outlet component.

[0009] With the above technical solutions, the cocktail shaker designed in this application allows the containers to be installed upright on the fixed rack, which is different from the traditional design that requires the containers to be placed upside down on the base. This upright placement helps prevent liquid leakage because the bottle mouths are no longer at the bottom of the liquid, thus reducing the leakage risk. In addition, the upright placement is more in line with the daily usage habits of users, making it more convenient to replace or inspect the containers. Further, since the containers are installed upright with the bottle mouths facing up, the risk of beverage contamination is reduced, especially in an open environment, and it is also convenient for daily cleaning and maintenance work.

[0010] The above multi-component mixing cocktail shaker can be further set as: a switch member is provided at the mounting hole. The switch member includes a guiding sleeve and a dial plate fixed to the outside of the guiding sleeve; a connecting shaft hole is provided inside the guiding sleeve. The upper end of the connecting shaft hole is in a closed state and the lower end is in an open state. An outlet pipe inserted into the connecting shaft hole is provided at the bottle mouth end of the container. A valve hole is provided on the side wall of the guiding sleeve. The central axis of the valve hole is perpendicular to the central axis of the connecting shaft hole. The pipeline system is connected to the guiding sleeve through the valve hole.

[0011] With the above technical solution, an independent switch is provided at the mouth end of each container, which can independently control the liquid outflow of each container without relying on the complex circulation pipeline system inside the base, and can more precisely control the distribution of different beverages. At the same time, users can easily replace or add containers without shutting down the main machine, greatly reducing the complexity of operation. There will be no leakage during the process of replacing containers, and there is no need to wait until the beverage in the container is finished, greatly improving the flexibility of the blender and significantly enhancing the personalized use experience of the device, meeting the needs of different users. The principle of the switch controlling on and off: When the dial is toggled upward, the guide sleeve drives the guide sleeve to move upward, and then the mouth of the container is opened. Then, through the control of the processor, the liquid in the container can be sucked into the liquid tank for mixing; when the dial is toggled downward, the guide sleeve drives the guide sleeve to move downward, and then the mouth of the container is blocked by the closed end of the connecting shaft hole, that is, the container is closed. The operation is convenient, improving the flexibility of the blender. Among them, the container can be connected to the fixing frame by a threaded connection method.

[0012] The above multi-component mixing blender can be further set as follows: The fixing frame is provided with sliding guide holes distributed on one side of the mounting hole and penetrating through the fixing frame. The dial passes through the sliding guide holes and the dial can move up and down in the sliding guide holes.

[0013] With the above technical solution, the sliding guide holes provide guidance for the up and down movement of the dial, making the movement route of the dial unique and making it more convenient for people to control the dial.

[0014] The above multi-component mixing blender can be further set as follows: The middle part of the dial is fixedly sleeved on the outer periphery of the guide sleeve. One end of the dial extends toward the sliding guide hole until it passes through the sliding guide hole. One end of the dial is also provided with several groups of convex ribs, and several groups of convex ribs are symmetrically distributed on the upper and lower end faces of the dial. The other end of the dial is provided with a rectangular through hole.

[0015] With the above technical solution, the convex ribs are designed to increase the friction force, further facilitating people to control the dial; the rectangular through hole is designed to reduce the mass of the dial while bringing balance to the dial to prevent the dial from swinging left and right.

[0016] The above multi-component mixing blender can be further set as follows: The pipeline system includes several groups of conduits. One end of each group of conduits is inserted into the valve hole and the other end is connected to the liquid cavity. A check valve is connected to each group of conduits. A receiving cavity for arranging the pipeline system is provided inside the fixing frame.

[0017] With the above technical solution, the processor controls the one-way valve to control the on-off of the conduit, that is, to select different beverages. How the processor and the one-way valve are linked has been described in the prior art, so it will not be further elaborated here. Furthermore, an additional accommodating cavity is provided to facilitate the installation of the pipeline system, and the wall pipeline system is externally placed, making the appearance of the cocktail shaker more concise and beautiful.

[0018] The above-mentioned multi-component cocktail mixer can be further configured as follows: the fixing frame includes a fixing seat and an upper cover plate distributed above the fixing seat, plug plates are provided on both sides of the upper cover plate, and two groups of plug plates are plugged into the two sides of the fixing seat.

[0019] With the above technical solution, the fixing frame is configured as a separate fixing base and an upper cover plate, which is convenient for installing components such as pipeline systems and processors. Furthermore, the plug-in connection method is adopted, making the assembly between the fixing base and the upper cover plate more convenient and quick.

[0020] The above-mentioned multi-component cocktail mixer can be further configured as follows: a processor is installed on the inner wall of the fixing seat, and the processor is connected to a power switch and a working switch.

[0021] With the above technical solution, the power switch is used to power on so that the processor can work; further, by setting the working switch, it is convenient for people to control the cocktail shaker to prepare drinks according to their own preferences. As for the specific control principle between the processor and the power switch and the working switch, this has been disclosed in the prior art, so it will not be further elaborated here.

[0022] The above-mentioned multi-component cocktail mixer can be further configured as follows: the base is provided with cup placement holes, and the cup placement holes are distributed below the liquid outlet component.

[0023] The above technical solution is adopted to facilitate the positioning of containers such as water cups and better align the liquid outlet components.

[0024] The above-mentioned multi-component cocktail mixer can be further configured as follows: the side wall of the liquid storage rack is provided with an embedding groove distributed on one side of the liquid tank, and the tank cover is clamped in the embedding groove.

[0025] By adopting the technical solution, people can clean the liquid tank conveniently by removing the tank cover.

[0026] The utility model is further described in detail below with reference to the accompanying drawings and embodiments. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 It is a schematic diagram of the overall structure of an embodiment of the utility model;

[0028] Figure 2 This is a schematic diagram of the connection between the switch and the container in an embodiment of the utility model;

[0029] Figure 3 Schematic diagram of the switch component according to an embodiment of the present utility model;

[0030] Figure 4 Schematic diagram of the pipeline system according to an embodiment of the present utility model;

[0031] Figure 5 Schematic diagram of the fixing bracket according to an embodiment of the present utility model.

[0032] Label annotation: base 1, cup placing hole 11; liquid storage rack 2, embedding groove 21, tank lid 22; dispenser 3, fixing bracket 31, sliding guide hole 311, accommodating cavity 312, fixing seat 313, upper cover plate 314, insertion plate 315, mounting hole 32, container 33, liquid outlet pipe 331; pipeline system 4, conduit 41, one-way valve 42; liquid outlet component 5; switch component 6, guiding sleeve 61, dial plate 62, rib 63, valve hole 64, rectangular through hole 65, connecting shaft hole 66; processor 7; power-on switch 8; working switch 9. Detailed implementation manners

[0033] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0034] Such as Figures 1 to 5The multi-component mixing cocktail shaker shown includes a base 1, a liquid storage rack 2, and a dispenser 3. The liquid storage rack is distributed above the base 1 and the lower end of the liquid storage rack 2 is connected to the base 1. A liquid cavity is provided inside the liquid storage rack 2. An outlet component 5 is provided on one side of the liquid storage rack 2. The dispenser 3 is installed at the upper end of the liquid storage rack 2. The dispenser 3 includes a fixing rack 31 installed at the upper end of the liquid storage rack 2. Multiple groups of mounting holes 32 are provided on the lower end surface of the fixing rack 31. Each group of mounting holes 32 is detachably connected to a group of containers 33. The containers 33 are distributed between the fixing rack 31 and the base 1 and the mouths of the containers 33 face the fixing rack 31. A pipeline system 4 is provided inside the fixing rack 31. The pipeline system 4 is connected to multiple groups of mounting holes 32 and the liquid cavity at the same time. The liquid cavity is connected to the outlet component 5. The cocktail shaker designed in this embodiment allows the containers 33 to be installed upright on the fixing rack 31, which is different from the traditional design that requires the containers 33 to be placed upside down on the base 1. This upright placement helps prevent liquid leakage because the mouth of the bottle is no longer at the bottom of the liquid, thus reducing the leakage risk. In addition, the upright placement is more in line with the daily use habits of users, making it more convenient to replace or check the containers 33. Further, since the containers 33 are installed upright with the mouths of the bottles facing up, the risk of the beverage being contaminated is reduced, especially in an open environment, and it is also convenient for daily cleaning and maintenance work.

[0035] A switch member 6 is provided at the installation hole 32. The switch member 6 includes a guiding sleeve 61 and a dial plate 62 fixed to the outside of the guiding sleeve 61. A connecting shaft hole 66 is provided inside the guiding sleeve 61. The upper end of the connecting shaft hole 66 is in a closed state and the lower end is in an open state. A liquid outlet pipe 331 inserted into the connecting shaft hole 66 is provided at the bottle mouth end of the container 33. A valve hole 64 is provided on the side wall of the guiding sleeve 61. The central axis of the valve hole 64 is perpendicular to the central axis of the connecting shaft hole 66. The pipeline system 4 is connected to the guiding sleeve 61 through the valve hole 64. By providing an independent switch member 6 at the bottle mouth end of each container 33, the liquid outflow of each container 33 can be controlled separately without relying on the complex circulation pipeline system 4 inside the base 1, and the distribution of different beverages can be controlled more precisely. At the same time, users can easily replace or add the container 33 without shutting down the main machine, greatly reducing the complexity of operation. There will be no leakage during the process of replacing the container 33, and there is no need to wait until the beverage in the container 33 is finished, greatly improving the flexibility of the blender, greatly enhancing the personalized use experience of the device, and meeting the needs of different users. The principle of the switch member 6 controlling on and off: When the dial plate 62 is toggled upward, the guiding sleeve 61 drives the guiding sleeve 61 to move upward. Thereafter, the bottle mouth of the container 33 is opened, and then through the control of the processor 7, the liquid in the container 33 can be sucked into the liquid tank for mixing; when the dial plate 62 is toggled downward, the guiding sleeve 61 drives the guiding sleeve 61 to move downward. Thereafter, the bottle mouth of the container 33 is blocked by the closed end of the connecting shaft hole 66, that is, the container 33 is closed. The operation is convenient and the flexibility of the blender is improved. Among them, the container 33 can be connected to the fixing frame 31 by a threaded connection method.

[0036] The fixing frame 31 is provided with sliding guiding holes 311 distributed on one side of the installation hole 32 and penetrating through the fixing frame 31. The dial plate 62 passes through the sliding guiding holes 311 and the dial plate 62 can move up and down in the sliding guiding holes 311. The sliding guiding holes 311 provide guidance for the up and down movement of the dial plate 62, making the movement route of the dial plate 62 unique and making it more convenient for people to control the dial plate 62.

[0037] The middle part of the dial plate 62 is fixedly sleeved on the outer periphery of the guiding sleeve 61. One end of the dial plate 62 extends toward the sliding guiding holes 311 until it passes through the sliding guiding holes 311. Multiple groups of convex ribs 63 are also provided at one end of the dial plate 62. The multiple groups of convex ribs 63 are symmetrically distributed on the upper end surface and the lower end surface of the dial plate 62. A rectangular through hole 65 is provided at the other end of the dial plate 62. By designing the convex ribs 63, the friction force is increased, further facilitating people to control the dial plate 62; by designing the rectangular through hole 65, while reducing the mass of the dial plate 62, balance is brought to the dial plate 62 to prevent the dial plate 62 from swinging left and right.

[0038] The pipeline system 4 includes multiple groups of conduits 41. One end of each group of conduits 41 is inserted into the valve hole 64, and the other end is connected to the liquid cavity. A group of one-way valves 42 are connected to each group of conduits 41. An accommodation cavity 312 for arranging the pipeline system 4 is provided in the fixing frame 31. The processor 7 controls the on-off of the conduit 41 by controlling the one-way valve 42, that is, to select different beverages. Among them, how the processor 7 and the one-way valve 42 are linked has been described in the prior art, so it will not be further elaborated here. Further, the accommodation cavity 312 is added to facilitate the installation of the pipeline system 4. The external placement of the pipeline system 4 makes the appearance of the blender more concise and beautiful.

[0039] The fixing frame 31 includes a fixing base 313 and an upper cover plate 314 distributed above the fixing base 313. Insertion plates 315 are provided on both sides of the upper cover plate 314, and the two groups of insertion plates 315 are inserted into both sides of the fixing base 313. The fixing frame 31 is set as a split fixing base 313 and upper cover plate 314, which is convenient for installing components such as the pipeline system 4 and the processor 7. Further, the insertion connection method of the insertion plates 315 makes the assembly between the fixing base 313 and the upper cover plate 314 more convenient and fast.

[0040] The processor 7 is installed on the inner wall of the fixing base 313, and the processor 7 is connected to a power-on switch 8 and a working switch 9. The power-on switch 8 is used for power-on so that the processor 7 can work. Further, by setting the working switch 9, it is convenient for people to control the blender to configure beverages according to their own preferences. As for the specific control principle between the processor 7, the power-on switch 8, and the working switch 9, this has been disclosed in the prior art, so it will not be further elaborated here.

[0041] A cup placement hole 11 is provided on the base 1, and the cup placement hole 11 is distributed below the liquid outlet component 5. It is convenient for positioning containers such as water cups 33 and better aligns with the liquid outlet component 5.

[0042] An embedding groove 21 distributed on one side of the liquid tank is provided on the side wall of the liquid storage rack 2, and a tank cover 22 is clamped in the embedding groove 21. By disassembling the tank cover 22, it is convenient for people to clean the liquid tank.

[0043] Working principle: According to actual needs, turn on the power-on switch 8, then selectively toggle the switch member 6 to open the required container 33, and then input the desired beverage through the processor 7. Then turn on the working switch 9, and then the pipeline system 4 sucks the required beverage into the liquid tank for mixing under the control of the processor 7. Then place the water cup at the cup placement hole 11, and the liquid outlet component 5 fills the mixed beverage into the cup.

Claims

1. A multi-component cocktail mixer, comprising a base, a liquid storage rack, and a distributor, wherein the liquid storage rack is distributed above the base and the lower end of the liquid storage rack is connected to the base, a liquid cavity is provided in the liquid storage rack, and a liquid outlet component is provided on one side of the liquid storage rack, characterized in that: The distributor is installed on the upper end of the liquid storage rack; the distributor includes a fixed rack installed on the upper end of the liquid storage rack, a plurality of groups of mounting holes are provided on the lower end surface of the fixed rack, each group of mounting holes is detachably connected to a group of containers, the containers are distributed between the fixed rack and the base and the bottle mouths of the containers face the fixed rack, a pipeline system is provided in the fixed rack, the pipeline system is connected to the plurality of groups of mounting holes and the liquid cavity at the same time, and the liquid cavity is connected to the liquid outlet component.

2. The multi-component cocktail mixer according to claim 1, characterized in that: A switch component is provided at the mounting hole, and the switch component includes a guide sleeve and a dial plate fixed to the outside of the guide sleeve; a connecting shaft hole is provided inside the guide sleeve, the upper end of the connecting shaft hole is in a closed state and the lower end is in an open state, a liquid outlet pipe inserted into the connecting shaft hole is provided at the bottle mouth end of the container, a valve hole is provided on the side wall of the guide sleeve, the central axis of the valve hole is perpendicular to the central axis of the connecting shaft hole, and the pipeline system is connected to the guide sleeve through the valve hole.

3. The multi-component cocktail mixer according to claim 2, characterized in that: The fixing frame is provided with sliding guide holes which are distributed on one side of the mounting hole and penetrate the fixing frame, and the shifting plate passes through the sliding guide holes and can move up and down in the sliding guide holes.

4. The multi-component cocktail mixer according to claim 3, characterized in that: The middle part of the shift plate is fixedly sleeved on the outer periphery of the guide sleeve, one end of the shift plate extends toward the sliding guide hole until it passes through the sliding guide hole, one end of the shift plate is also provided with a plurality of groups of convex ribs, and the plurality of groups of convex ribs are symmetrically distributed on the upper end surface and the lower end surface of the shift plate, and the other end of the shift plate is provided with a rectangular through hole.

5. The multi-component cocktail mixer according to claim 2, characterized in that: The pipeline system includes several groups of conduits, one end of each group of conduits is inserted into the valve hole and the other end is connected to the liquid cavity, and each group of conduits is connected to a group of one-way valves; the fixing frame is provided with a containing cavity for arranging the pipeline system.

6. The multi-component cocktail mixer according to claim 5, characterized in that: The fixing frame comprises a fixing seat and an upper cover plate distributed above the fixing seat, plug plates are arranged on both sides of the upper cover plate, and two groups of plug plates are plugged into the two sides of the fixing seat.

7. The multi-component cocktail mixer according to claim 6, characterized in that: A processor is installed on the inner wall of the fixing seat, and the processor is connected with a power switch and a working switch.

8. The multi-component cocktail mixer according to any one of claims 1 to 7, characterized in that: The base is provided with cup placing holes, and the cup placing holes are distributed below the liquid outlet component.

9. The multi-component cocktail mixer according to any one of claims 1 to 7, characterized in that: The side wall of the liquid storage rack is provided with an embedding groove distributed on one side of the liquid tank, and the tank cover is clamped in the embedding groove.

Citation Information

Patent Citations

  • Beverage machine and capsule for use with the beverage machine

    EP3423381B1