Cocktail mixing machine
By designing a cocktail mixer and using a liquid supply device and an electromagnetic flow sensor to control the flow, the problems of high labor intensity and inaccurate dosage in cocktail mixing are solved, and efficient and accurate cocktail mixing is achieved.
Patent Information
- Application Number
- CN202422605004.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-28
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-10-28
AI Technical Summary
In the prior art, the preparation of cocktails is labor-intensive, the amount of cocktails taken is imprecise, and the desired cocktail cannot be accurately prepared.
A cocktail mixer is designed, which includes a liquid supply device, a refrigerator, a pump body, a compressor, a liquid sensor and a liquid discharge device. The flow rate is controlled by an electromagnetic flow sensor, and the liquid flow is detected by a liquid sensor to achieve precise drink mixing.
It achieves efficient and accurate cocktail mixing, reduces manual operations, and improves cocktail mixing efficiency and accuracy.
Smart Images

Figure CN223373059U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cocktail mixers, in particular to a cocktail mixer. Background Art
[0002] Cocktails are made by mixing a variety of different drinks in different proportions, and some drinks need to be refrigerated. Currently, cocktails are usually made manually, selecting drinks one by one and mixing them in a certain proportion. However, this method is labor-intensive and the dosage is imprecise, making it impossible to accurately mix the desired cocktail. Utility Model Content
[0003] The purpose of the utility model is to provide a cocktail mixing machine to solve the problems mentioned in the background technology.
[0004] In order to achieve the above purpose, the present invention provides the following technical solutions:
[0005] A cocktail mixer comprises a chassis, a liquid supply device mounted on the chassis, a refrigerator, a pump body, a compressor, a liquid sensor, and a liquid discharge device. The liquid supply device is provided in a plurality of groups, each of which is connected to a first hose. The compressor is connected to the refrigerator to cool the refrigerator. The refrigerator is provided with an openable door on the front side. Several second hoses are suspended within the refrigerator. The number of detection interfaces of the liquid sensor and the number of pump bodies are equal to the sum of the number of first and second hoses. The detection interfaces include a liquid inlet detection interface and a liquid outlet detection interface. The first hose and the second hose are respectively connected to the liquid inlet detection interface of the liquid sensor. Each of the liquid outlet detection interfaces is connected to the pump body via a first connecting pipe. The pump body is connected to the liquid discharge device via a second connecting pipe. An electromagnetic flow sensor is provided on the pump body. The liquid discharge device is mounted above the chassis. A liquid receiving portion is provided on the chassis below the liquid outlet of the liquid discharge device. The liquid receiving portion is provided with a water leakage hole. A pull-out water receiving trough is installed on the chassis below the corresponding water leakage hole.
[0006] Further description of the present invention: the pump body adopts a peristaltic pump.
[0007] Further description of the present invention: The chassis is provided with a mounting platform; the liquid supply device is installed on the mounting platform; the liquid receiving and placement portion is provided on the mounting platform; a mounting boss is provided on the rear side of the chassis corresponding to the mounting platform; the rear part of the liquid outlet device is installed on the mounting boss; the pull-out water trough is provided below the mounting platform; and the refrigerator is provided below the pull-out water trough.
[0008] Further description of the present invention: ten groups of liquid supply devices are provided; and ten second hoses are provided.
[0009] Further description of the present invention: four liquid sensors are provided; each of the liquid sensors is provided with five groups of detection interfaces.
[0010] Further description of the present invention: a control panel is provided on the movable door.
[0011] Further description of the present invention, the liquid supply device includes a barrel assembly and a bottle stopper assembly; the barrel assembly includes an outer barrel, a bottom plate, a first sealing sleeve and a cover plate; the outer barrel is provided with a mounting groove opening upward; the bottom of the outer barrel is provided with a receiving groove; the bottom of the mounting groove is provided with an inner barrel protruding upward; the bottom plate is fixed in the receiving groove; a cylindrical interface that cooperates with the inner barrel is provided at a position corresponding to the inner barrel on the bottom plate; a water hole and a plurality of top blocks distributed around the outer circumference of the water hole are provided at the bottom of the cylindrical interface; the first sealing sleeve is mounted on the interface and abuts against the inner barrel; the cover plate is fixed to the bottom of the bottom plate; the bottle stopper assembly includes a bottle stopper body, a bottle mouth sealing sleeve, a second sealing sleeve, a rubber stopper and a spring; the bottle stopper body includes a mounting portion, a bottle body connecting portion and a drainage part; the mounting part cooperates with the mounting groove and is used to be inserted into the mounting groove; the bottle body connecting part is arranged at the middle position above the mounting part and is used to be inserted into the bottle mouth; the bottle body connecting part is provided with a water outlet and an air inlet; the bottle mouth sealing sleeve is arranged on the bottle body connecting part; the drainage part is arranged at the bottom of the bottle stopper main body and corresponds to the interface position of the cylinder; the drainage part is communicated with the water outlet; the second sealing sleeve is installed in the drainage part; a first convex ring is provided in the second sealing sleeve; the rubber plug can be movably connected to the second sealing sleeve up and down; a sealing ring is installed on the upper part of the rubber plug; the sealing ring is used to abut against the top of the first convex ring; the lower part of the rubber plug is provided with a plurality of water flow channel holes; the spring is installed between the sealing sleeve and the rubber plug and is used to touch the rubber plug and move downward.
[0012] Further description of the present invention: the installation groove is a "D"-shaped groove; the inner wall of the installation groove is provided with a plurality of vertically arranged convex strips.
[0013] Further description of the present invention: three top blocks are provided.
[0014] To further describe the present invention, the upper end surface of the first convex ring is a conical surface.
[0015] Further description of the present invention: a second convex ring is provided on the outer periphery of the bottom of the rubber plug; the spring is sleeved on the rubber plug and its two ends respectively contact the first convex ring and the second convex ring.
[0016] The beneficial effects of the utility model are:
[0017] In this design, room-temperature drinks are connected via a liquid supply device, while refrigerated drinks are placed in a refrigerator and connected via a first hose. After the quantity of each drink is set, the pump body extracts the room-temperature drink and the refrigerated drink one by one and discharges them through the liquid discharge device to obtain the required cocktail. During the operation of each pump body, an electromagnetic flow sensor is used to detect the flow rate, and the operation is stopped when the set flow rate is reached. At the same time, during the operation, the liquid sensor senses whether there is liquid passing through. If the pump body is working and the corresponding detection interface does not detect the passage of liquid, a signal is sent to remind the staff to replenish the drink. This setting is easy to use, efficient, and has precise control. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is the overall structural diagram of the utility model;
[0019] Figure 2 This is a diagram of the overall structure of the utility model with the movable door opened and the pull-out water trough drawn out;
[0020] Figure 3 It is a partial structural diagram of the utility model;
[0021] Figure 4 This is a structural diagram of the liquid sensor of the utility model;
[0022] Figure 5 It is a structural diagram of the liquid supply device of the utility model;
[0023] Figure 6 It is a top view structural diagram of the liquid supply device of the utility model;
[0024] Figure 7 yes Figure 6 Cross-sectional view of AA;
[0025] Figure 8 It is a structural diagram of the cylinder assembly of the utility model;
[0026] Figure 9 It is a structural diagram of the bottom plate of the utility model;
[0027] Figure 10 This is a structural diagram of the bottle stopper assembly of the utility model;
[0028] Figure 11 It is a structural diagram of the rubber plug of the utility model. DETAILED DESCRIPTION
[0029] The present invention will be further described below with reference to the accompanying drawings:
[0030] like Figure 1-10As shown, a cocktail mixer comprises a chassis 1 and a liquid supply device 2, a refrigerator 3, a pump body 4, a compressor 5, a liquid sensor 6 and a liquid outlet device 7 mounted on the chassis 1; the liquid supply device 2 is provided in a plurality of groups; each group of the liquid supply device 2 is connected to a first hose (not shown); the compressor 5 is connected to the refrigerator 3 to cool the refrigerator 3; the front side of the refrigerator 3 is provided with an openable movable door 31; a plurality of second hoses 32 are suspended in the refrigerator 3; the number of detection interfaces 61 of the liquid sensor 6 is as follows: The number of the pump body 4 is the same as the sum of the number of the first hose and the second hose 32; the detection interface 61 includes a liquid inlet detection interface 611 and a liquid outlet detection interface 612, and the liquid inlet detection interface 611 and the liquid outlet detection interface 612 are both metal parts, and the resistance value between the two interfaces is detected to determine whether liquid passes through; the first hose and the second hose 32 are respectively connected to the liquid inlet detection interface 611 of the liquid sensor 6 in a one-to-one correspondence; each of the liquid outlet detection interfaces 612 is respectively connected to the liquid inlet detection interface 611 of the liquid sensor 6 in a one-to-one correspondence through the first connecting pipe The pump body 4 is connected to the liquid discharge device 7 via a second connecting pipe. The pump body 4 is provided with an electromagnetic flow sensor. The liquid discharge device 7 is mounted above the chassis 1. Below the liquid outlet 71 of the chassis 1 corresponding to the liquid discharge device 7 is a liquid receiving portion 101. The liquid receiving portion 101 is provided with a leak hole. A pull-out water receiving trough 8 is installed below the leak hole in the chassis 1. Room-temperature beverages are connected via the liquid supply device 2, while refrigerated beverages are placed in the refrigerator 3 and connected via a first hose. The receiving container is placed in the liquid receiving portion 101. After the quantity of each beverage is set, the pump body 4 extracts the room-temperature beverage and the refrigerated beverage one by one and discharges them through the liquid discharge device 7 to obtain the desired cocktail. During operation, each pump body 4 uses an electromagnetic flow sensor to detect the flow rate and stops operation when the set flow rate is reached. At the same time, during operation, the liquid sensor 6 senses whether liquid is passing through. If the pump body 4 is operating and the corresponding detection interface 61 does not detect liquid passing, a signal is issued to remind the staff to refill the beverage. This configuration is convenient to use, highly efficient, and provides precise control.
[0031] The pump body 4 adopts a peristaltic pump, which has more precise control.
[0032] In this design, the chassis 1 is provided with a mounting platform 11; the liquid supply device 2 is installed on the mounting platform 11; the liquid receiving placement portion 101 is provided on the mounting platform 11; the rear side of the chassis 1 corresponding to the mounting platform 11 is provided with a mounting boss 12; the rear part of the liquid outlet device 7 is installed on the mounting boss 12; the pull-out water receiving trough 8 is provided below the mounting platform 11; the cold storage box 3 is provided below the pull-out water receiving trough 8, and the structural layout is reasonable and easy to operate.
[0033] Ten groups of the liquid supply devices 2 are provided; ten second hoses 32 are provided, which can be filled with a total of twenty types of beverages.
[0034] Four liquid sensors 6 are provided; each of the liquid sensors 6 is provided with five groups of detection interfaces 61 .
[0035] The movable door 31 is provided with a control panel 311, through which operations such as selecting drinks, choosing proportions, and starting are performed. The control panel 311 can also be separately provided on the chassis 1. This design is integrated on the movable door 31 for easy operation.
[0036] The liquid supply device 2 includes a barrel assembly 21 and a bottle stopper assembly 22; the barrel assembly 21 includes an outer barrel 211, a bottom plate 212, a first sealing sleeve 213 and a cover plate 214; a mounting groove 2111 with an upward opening is provided in the outer barrel 211; a receiving groove 2112 is provided at the bottom of the outer barrel 211; an inner barrel 2113 protruding upward is provided at the bottom of the mounting groove 2111; the bottom plate 212 is fixed in the receiving groove 2112; a cylindrical interface 2121 that cooperates with the inner barrel 2113 is provided at a position corresponding to the inner barrel 2113 on the bottom plate 212; a water hole 2121-1 and a plurality of top blocks 2121-2 distributed around the outer circumference of the water hole 2121-1 are provided at the bottom of the barrel interface 2121; the first sealing sleeve 213 is provided with a first sealing sleeve 213 and a cover plate 214; the first sealing sleeve 213 is provided with a first sealing sleeve 213 and a cover plate 214; the first sealing sleeve 213 is provided with a first sealing sleeve 213 and a cover plate 214; the first sealing sleeve 213 is provided with a first sealing sleeve 213 and a cover plate 214; the first sealing sleeve 213 is provided with a first sealing sleeve 213 and a first sealing sleeve ... A sealing sleeve 213 is sleeved on the interface and abuts against the inner cylinder 2113; the cover plate 214 is fixed to the bottom of the bottom plate 212; the first hose is connected to the bottom of the cylinder interface 2121; the bottle stopper assembly 22 includes a bottle stopper body 221, a bottle mouth sealing sleeve 222, a second sealing sleeve 223, a rubber plug 224 and a spring 225; the bottle stopper body 221 includes a mounting portion 2211, a bottle body connecting portion 2212 and a drainage portion 2213; the mounting portion 2211 cooperates with the mounting groove 2111 for being inserted into the mounting groove 2111; the bottle body connecting portion 2212 is arranged at the middle position above the mounting portion 2211 for being inserted into the bottle mouth; the bottle body connecting portion 2212 is provided with a water outlet 2212-1 and an air inlet Hole 2212-2; the bottle mouth sealing sleeve 222 is sleeved on the bottle body connecting portion 2212; the drainage portion 2213 is arranged at the bottom of the bottle stopper body 221 and corresponds to the position of the cylinder interface; the drainage portion 2213 is communicated with the water outlet hole 2212-1; the second sealing sleeve 223 is installed in the drainage portion 2213; the second sealing sleeve 223 is provided with a first convex ring 2231; the rubber plug 224 is movably connected to the second sealing sleeve 223; the upper part of the rubber plug 224 is provided with a sealing ring 2241; the sealing ring 2241 is used to abut against the top of the first convex ring 2231; the lower part of the rubber plug 224 is provided with a plurality of water flow channel holes 2242; the spring 225 is installed between the sealing sleeve and the rubber plug 22 4, is used to push the rubber plug 224 to move downward; first, take the bottle plug assembly 22 out of the barrel assembly 21 and point the bottle connecting part 2212 downward, insert the bottle plug assembly 22 into the bottle mouth of the beverage through the bottle connecting part 2212, and then turn the bottle plug assembly 22 180 degrees. At this time, the spring 225 presses the rubber plug 224, and the sealing ring 2241 of the rubber plug 224 presses on the first convex ring 2231. The beverage in the bottle is blocked by the rubber plug 224 and cannot flow out. The bottle plug assembly 22 is installed into the barrel assembly 21, and the top block 2121-2 pushes up the bottle plug, and the sealing ring 2241 is separated from the first convex ring 2231. The beverage can flow downward and be discharged downward through the water flow channel hole 2242. This arrangement is easy to install and can efficiently realize the installation and supply of beverages.
[0037] The installation slot 2111 is a "D"-shaped slot, which plays a fool-proof role and avoids incorrect installation position;
[0038] The inner wall of the mounting groove 2111 is provided with a plurality of vertically arranged ridges 2111-1, through which the ridges 2111-1 abut against the outer wall of the mounting portion 2211, leaving gap holes for gas to enter. External air can enter the interior of the mounting groove 2111 and then enter the beverage bottle through the air inlet hole 2212-2 to balance the air pressure.
[0039] In this design, three top blocks 2121 - 2 are provided.
[0040] The upper end surface of the first convex ring 2231 is a conical surface, and the sealing ring 2241 is pressed tightly against the conical surface, which improves the waterproof effect.
[0041] The bottom periphery of the rubber plug 224 is provided with a second protruding ring 2243 . The spring 225 is sleeved on the rubber plug 224 , with two ends thereof contacting the first protruding ring 2231 and the second protruding ring 2243 , respectively.
[0042] The above description does not limit the technical scope of the present invention. Any modifications, equivalent changes and modifications made to the above embodiments based on the technical essence of the present invention are still within the scope of the technical solution of the present invention.
Claims
1. A cocktail mixer, characterized by: The refrigerator comprises a chassis and a liquid supply device, a refrigerator, a pump body, a compressor, a liquid sensor and a liquid discharge device installed on the chassis; the liquid supply device is provided in several groups; each group of the liquid supply device is connected to a first hose; the compressor is connected to the refrigerator to cool the refrigerator; a movable door that can be opened is provided on the front side of the refrigerator; a plurality of second hoses are suspended in the refrigerator; the number of detection interfaces of the liquid sensor and the number of pump bodies are the same as the sum of the number of the first hoses and the second hoses; the detection interface comprises a liquid inlet detection interface and a liquid outlet detection interface; the first hose and the second hose are respectively connected to the liquid inlet detection interface of the liquid sensor in a one-to-one correspondence; each of the liquid outlet detection interfaces is respectively connected to the pump body in a one-to-one correspondence through a first connecting pipe; the pump body is connected to the liquid discharge device through a second connecting pipe; an electromagnetic flow sensor is provided on the pump body; the liquid discharge device is installed above the chassis; a liquid receiving portion is provided below the liquid outlet of the corresponding liquid discharge device on the chassis; a water leakage hole is provided on the liquid receiving portion; a pull-out water receiving trough is installed below the corresponding water leakage hole on the chassis.
2. A cocktail mixer according to claim 1, characterized in that: The pump body adopts a peristaltic pump.
3. The cocktail mixer according to claim 1, characterized in that: The chassis is provided with a mounting platform; the liquid supply device is installed on the mounting platform; the liquid receiving and placement portion is provided on the mounting platform; a mounting boss is provided on the rear side of the chassis corresponding to the mounting platform; the rear part of the liquid outlet device is installed on the mounting boss; the pull-out water trough is provided below the mounting platform; and the refrigerator is provided below the pull-out water trough.
4. The cocktail mixer according to claim 1, characterized in that: Ten groups of the liquid supply devices are provided; and ten second hoses are provided.
5. A cocktail mixer according to claim 4, characterized in that: Four liquid sensors are provided; each of the liquid sensors is provided with five groups of detection interfaces.
6. The cocktail mixer according to claim 1, characterized in that: A control panel is provided on the movable door.
7. The cocktail mixer according to claim 1, characterized in that: The liquid supply device comprises a cylinder assembly and a bottle stopper assembly; the cylinder assembly comprises an outer cylinder, a bottom plate, a first sealing sleeve and a cover plate; the outer cylinder is provided with a mounting groove opening upwards; the bottom of the outer cylinder is provided with a receiving groove; the bottom of the mounting groove is provided with an inner cylinder protruding upwards; the bottom plate is fixed in the receiving groove; a cylindrical interface that cooperates with the inner cylinder is provided at a position corresponding to the inner cylinder on the bottom plate; a water hole and a plurality of top blocks distributed around the outer circumference of the water hole are provided at the bottom of the cylindrical interface; the first sealing sleeve is mounted on the interface and abuts against the inner cylinder; the cover plate is fixed to the bottom of the bottom plate; the bottle stopper assembly comprises a bottle stopper body, a bottle mouth sealing sleeve, a second sealing sleeve, a rubber stopper and a spring; the bottle stopper body comprises a mounting portion, a bottle body connecting portion and a drainage portion; the mounting The part cooperates with the mounting groove and is used to be inserted into the mounting groove; the bottle body connecting part is arranged at the middle position above the mounting part and is used to be inserted into the bottle mouth; the bottle body connecting part is provided with a water outlet and an air inlet; the bottle mouth sealing sleeve is arranged on the bottle body connecting part; the drainage part is arranged at the bottom of the bottle plug main body and corresponds to the interface position of the cylinder; the drainage part is communicated with the water outlet; the second sealing sleeve is installed in the drainage part; a first convex ring is provided in the second sealing sleeve; the rubber plug can be movably connected to the second sealing sleeve up and down; a sealing ring is installed on the upper part of the rubber plug; the sealing ring is used to abut against the top of the first convex ring; the lower part of the rubber plug is provided with a plurality of water flow channel holes; the spring is installed between the sealing sleeve and the rubber plug and is used to touch the rubber plug and move downward.
8. The cocktail mixer according to claim 7, characterized in that: The mounting groove is a "D"-shaped groove; the inner wall of the mounting groove is provided with a plurality of vertically arranged convex strips.
9. The cocktail mixer according to claim 7, characterized in that: The upper end surface of the first convex ring is a conical surface.
10. The cocktail mixer according to claim 7, characterized in that: A second convex ring is provided on the outer periphery of the bottom of the rubber plug; the spring is sleeved on the rubber plug and has two ends that respectively contact the first convex ring and the second convex ring.