Beverage combination machine with purification function

By integrating a beverage-making chamber and a water purification chamber into the beverage machine, it offers the option of direct drinking water and bottled water. It uses a composite filter cartridge for multi-stage filtration, which solves the problem that existing technologies cannot meet the diverse water source needs of users, and realizes the miniaturization and high-efficiency purification of the equipment.

CN224539971UActive Publication Date: 2026-07-24ZHEJIANG AIDEWO ELECTRONIC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG AIDEWO ELECTRONIC TECH CO LTD
Filing Date
2025-06-30
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

Existing beverage machines can only provide purified water, which cannot meet users' demand for bottled water. Furthermore, multi-stage filtration equipment takes up a lot of space and cannot be rationally arranged.

Method used

Design a beverage combination machine with purification function, integrating a beverage making chamber and a water purification chamber, providing options for direct drinking water and bottled water, and using composite filter elements including a pre-filter, a reverse osmosis filter, and a post-filter to achieve multi-stage filtration and simplify the structure.

Benefits of technology

It integrates water purification and beverage making functions, meets users' different water source needs, saves space, improves water quality safety and taste, and simplifies maintenance.

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Abstract

The utility model discloses a beverage combination integrated machine with purification function, including the organism, the beverage making chamber and the water purification chamber are shaped in the organism, be equipped with beverage making subassembly in the beverage making chamber, be equipped with the baffle in the water purification chamber, the baffle one side is equipped with the filter component, and the other side is used for accommodating the barrelled water source, the beverage making subassembly is connected with the barrelled water supply pipe and the direct drinking water supply pipe, the direct drinking water supply pipe with filter component intercommunication, the barrelled water supply pipe with barrelled water source intercommunication, the filter component includes the composite filter core, raw water water pump, raw water inlet pipe, and raw water is filtered through the composite filter core, and exports pure water to beverage making subassembly through the direct drinking water supply pipe, the utility model discloses provide the direct drinking water and the barrelled water two kinds of water source selection after purification for the user, satisfy the different needs of user, save the space.
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Description

Technical Field

[0001] This utility model relates to the field of beverage machine technology, and in particular to a beverage combination machine with purification function. Background Technology

[0002] A beverage machine is a device used to automatically or semi-automatically prepare various beverages, and is widely used in homes, offices, and commercial spaces. It can quickly prepare a variety of hot and cold drinks such as coffee, milk tea, juice, and sparkling water according to demand. It is easy to operate and highly efficient, not only improving the convenience of beverage preparation but also satisfying diverse taste preferences.

[0003] For example, Chinese Patent CN204502933 discloses a beverage preparation device, which includes a water filtration and purification treatment device, a beverage concentrate preparation device, a carbon dioxide storage tank, a refrigeration device, and a synthesis tank. The water filtration and purification treatment device performs four-stage filtration of tap water, and a sterilization device is added after filtration, enabling the purification and sterilization of beverage water in a single process.

[0004] However, the beverage mixing equipment mentioned above can only provide purified water. In practical applications, users may have different preferences for water sources. For example, some users prefer bottled mineral water or spring water. Moreover, the multi-stage filtration equipment occupies a lot of space, making the overall equipment bulky and unable to accommodate other water sources. Utility Model Content

[0005] The technical problem to be solved by this utility model is to provide a beverage combination machine with purification function, which provides users with two water source options: purified drinking water and bottled water, to meet different user needs and save space.

[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution: A beverage combination machine with purification function includes a body, in which a beverage-making chamber and a water purification chamber are formed. A beverage-making component is provided in the beverage-making chamber, and a partition is provided in the water purification chamber. A filter component is provided on one side of the partition, and a water source placement chamber for bottled water is formed on the other side. A bottled water supply pipe and a direct drinking water supply pipe are connected to the beverage-making component. The direct drinking water supply pipe is connected to the filter component, and the bottled water supply pipe is connected to a bottled water source. The filter component includes a composite... The filter element, the composite filter element includes a cover and a shell connected to the cover. The shell contains, in sequence, a pre-filter assembly, a reverse osmosis filter assembly, and a post-filter assembly. The cover has a raw water inlet and a purified water outlet. The raw water inlet is connected to a raw water inlet pipe, and the purified water outlet is connected to a direct drinking water supply pipe. By adopting the above technical solution, users are provided with two water source options: purified direct drinking water and bottled water, meeting different user needs. Furthermore, integrating the pre-filter, reverse osmosis filter, and post-filter into a single composite filter element saves internal space and simplifies the structural layout.

[0007] A further feature of this invention is that the beverage-making component includes a water tank, a feed box, and a stirring cup. The feed box has a discharge port, and the stirring cup is located below the discharge port. The stirring cup is connected to the water tank. The machine body has a beverage outlet, and the stirring cup is connected to the beverage outlet. By adopting the above technical solution, water and beverage powder are fully stirred and blended, and the beverage is output through the beverage outlet. The beverage-making process is highly automated and easy to operate.

[0008] A further feature of this invention is that both the bottled water supply pipe and the direct drinking water supply pipe are connected to the water tank. By adopting the above technical solution, different water sources can be selected to enter the water tank according to needs, thereby improving the flexibility of water supply.

[0009] A further feature of this invention is that: an inner shell is provided inside the outer shell, and a raw water passage cavity is formed between the outer shell and the inner shell. The raw water passage cavity is connected to the raw water inlet. The pre-filter assembly is located below the inner shell, the reverse osmosis filter assembly is located inside the inner shell, and the post-filter assembly is located above the reverse osmosis filter assembly. By adopting the above technical solution, the raw water passes through multiple filter assemblies in sequence, effectively removing impurities, particulate matter, bacteria and other pollutants from the raw water, thereby improving water purification efficiency.

[0010] A further feature of this invention is that the pre-filter assembly includes a first water-separating seat and an activated carbon filter element disposed thereon. The activated carbon filter element has a PP cotton filter element on its outer layer, and the activated carbon filter element has a first water filtration channel in its center. The first water-separating seat has a first through hole, which communicates with the first water filtration channel. By adopting the above technical solution, large particulate impurities, odors, residual chlorine, etc., can be effectively filtered out, while protecting the subsequent filter element from clogging and improving the stability of the entire filtration system.

[0011] A further feature of this invention is that the reverse osmosis filter element assembly includes an RO membrane filter element, which is disposed above the first through hole. A water collection pipe is located at the center of the RO membrane filter element, and the RO membrane filter element is connected to the water collection pipe. A second water-separating seat is provided between the reverse osmosis filter element assembly and the post-filter element assembly. A second through hole is provided on the second water-separating seat, which is located above the RO membrane filter element and communicates with the interior of the RO membrane filter element. By adopting the above technical solution, the RO membrane filter element performs deep filtration of minute impurities and dissolved pollutants, while simultaneously collecting pure water efficiently through the water collection pipe, effectively separating pure water and wastewater, further enhancing the purification capacity.

[0012] A further feature of this invention is that: the second water-separating seat is provided with an upwardly extending water-blocking wall, and a water outlet seat is connected to the water-blocking wall. The water outlet seat is provided with a pure water outlet cavity, which is connected to a pure water outlet. A sewage cavity is formed between the inner shell and the water-blocking wall, and the sewage cavity is connected to the second through hole. By adopting the above technical solution, this invention achieves effective separation of pure water and wastewater by setting up the water-blocking wall and the water outlet seat, preventing cross-contamination and improving the hygiene of drinking water.

[0013] A further feature of this invention is that the post-filter assembly includes a sterilizing cotton filter element disposed within the water-blocking wall, and the sterilizing cotton filter element has a second water filtration channel that communicates with the pure water outlet chamber. By adopting the above technical solution, the pure water is further sterilized and purified, providing users with higher quality drinking water.

[0014] A further feature of this invention is that the cover is also provided with a sewage drain outlet, which is connected to the sewage chamber. By adopting the above technical solution, the concentrated water generated during the reverse osmosis process is discharged in a timely manner, effectively preventing wastewater from accumulating in the system and ensuring the normal operation of the system.

[0015] A further feature of this invention is that a sewage drain pipe is connected to the sewage drain outlet, and a sewage control valve is provided on the sewage drain pipe. By adopting the above technical solution, quantitative control of wastewater discharge is achieved, thereby improving the degree of automation.

[0016] In summary, this utility model has the following beneficial effects:

[0017] 1. This utility model realizes the integrated design of water purification and beverage making functions, simplifies the equipment structure, and improves the ease of use.

[0018] 2. This utility model provides users with two different water source options: pure drinking water and bottled water, to meet users' different drinking needs.

[0019] 3. This utility model effectively removes suspended impurities, bacteria, organic pollutants and heavy metals from water through a multi-stage filtration structure, thereby improving the safety and taste of the water.

[0020] 4. This utility model adopts an integrated composite filter element design, which integrates the pre-filter element, reverse osmosis filter element and post-sterilization filter element into the same housing, which not only saves space but also facilitates maintenance and replacement. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the structure of this utility model.

[0022] Figure 2 This is a cross-sectional view of the present invention.

[0023] Figure 3 This is a schematic diagram of the structure of the beverage-making component of this utility model.

[0024] Figure 4 This is a schematic diagram of the beverage-making component of this utility model from another angle.

[0025] Figure 5 This is a schematic diagram of the structure of the filter assembly of this utility model.

[0026] Figure 6 This is a schematic diagram of the composite filter element of this utility model.

[0027] Figure 7 This is a cross-sectional view of the composite filter element of this utility model.

[0028] In the diagram: 1. Main body; 11. Beverage-making chamber; 12. Purified water chamber; 13. Partition; 14. Beverage outlet; 15. Water source placement chamber; 2. Beverage-making assembly; 21. Water tank; 22. Feed box; 221. Discharge outlet; 23. Stirring cup; 3. Filter assembly; 31. Composite filter element; 311. Cover; 3111. Raw water inlet; 3112. Pure water outlet; 3113. Wastewater outlet; 312. Outer shell; 3121. Raw water passage chamber; 3122. Wastewater chamber; 313. Pre-filter assembly; 3131. Activated carbon filter element; 3132. PP cotton filter element; 3133. First water filtration channel; 3 14. Reverse osmosis filter element assembly; 3141. RO membrane filter element; 3142. Water collection pipe; 315. Post-filter element assembly; 3151. Sterilizing cotton filter element; 3152. Second water filtration channel; 316. Inner shell; 317. First water isolation seat; 3171. First through hole; 318. Second water isolation seat; 3181. Second through hole; 3182. Water baffle wall; 319. Water outlet seat; 3191. Pure water outlet chamber; 32. Raw water pump; 33. Raw water inlet pipe; 4. Bottled water supply pipe; 41. Bottled water pump; 5. Direct drinking water supply pipe; 51. Direct drinking water control valve; 6. Sewage drain pipe; 61. Sewage control valve. Detailed Implementation

[0029] The present invention will be further described below with reference to the accompanying drawings.

[0030] like Figures 1 to 7 As shown, this utility model discloses a beverage combination machine with purification function, including a body 1. The body 1 has a beverage making chamber 11 and a water purification chamber 12 formed inside. The beverage making chamber 11 is equipped with a beverage making component 2. The water purification chamber 12 is equipped with a partition 13. A filter component 3 is provided on one side of the partition 13 for deep purification of raw water. A water source placement chamber 15 for holding bottled water is provided on the other side of the partition 13. Bottled water supply pipe 4 and direct drinking water supply pipe 5 are both connected to a water tank 21 for conveying bottled water and filtered direct drinking water to the beverage making component 2 respectively. A bottled water pump 41 is provided on the bottled water supply pipe 4 to provide pumping power. A direct drinking water control valve 51 is provided on the direct drinking water supply pipe 5. The direct drinking water control valve 51 adopts a solenoid valve structure to facilitate the control of the direct drinking water supply and meet the user's preference for different water sources.

[0031] The filter assembly 3 includes a composite filter element 31, a raw water pump 32, and a raw water inlet pipe 33. The raw water pump 32 is installed on the raw water inlet pipe 33 to provide the power to pressurize the raw water to the composite filter element 31. The composite filter element 31 integrates multiple filter assemblies 3, including a pre-filter assembly 313, a reverse osmosis filter assembly 314, and a post-filter assembly 315, which are arranged sequentially inside the outer shell 312 of the composite filter element 31. The cover 311 of the composite filter element 31 is provided with a raw water inlet 3111 and a pure water outlet 3112, which are respectively connected to the raw water inlet pipe 33 and the direct drinking water supply pipe 5 to form a complete water circuit, so that the raw water is directly output to the beverage making assembly 2 after being purified by the composite filter element 31.

[0032] The beverage making component 2 consists of a water tank 21, a material box 22, and a mixing cup 23. The material box 22 is used to store powdered or concentrated liquid beverage ingredients, and its bottom is provided with a discharge port 221. The mixing cup 23 is located directly below the discharge port 221 and is used to receive the ingredients. A communication channel is provided between the water tank 21 and the mixing cup 23 for supplying water to the mixing cup 23. The water source can be bottled water or purified water, so as to fully mix with the beverage ingredients. The mixing cup 23 is further connected to the beverage outlet 14 on the machine body 1. The beverage after mixing can be directly output, which is convenient for users to take and improves the beverage making efficiency and user experience.

[0033] The composite filter element 31 has an inner shell 316 inside its outer shell 312. A raw water passage 3121 is formed between the outer shell 312 and the inner shell 316, allowing raw water to flow smoothly to the bottom. The raw water passage 3121 is connected to the raw water inlet 3111. The pre-filter assembly 313 is located below the inner shell 316 and performs primary filtration of large particles, sediment, etc. in the water. The reverse osmosis filter assembly 314 is located above it and installed inside the inner shell 316 for deep filtration of bacteria, heavy metals, etc. The post-filter assembly 315 is located at the top and is used to further improve the taste and safety of the water, ensuring that the output water meets drinking standards.

[0034] The pre-filter assembly 313 includes a first water-separating seat 317 and an activated carbon filter element 3131 installed thereon. The outer layer of the activated carbon filter element 3131 is covered with a PP cotton filter element 3132. The PP cotton is used to remove suspended particles, rust, etc. in the water, and the activated carbon is used to adsorb odors and some organic matter in the water. The activated carbon filter element 3131 has a first water filtration channel 3133 in the middle. The first water-separating seat 317 has a first through hole 3171. The first through hole 3171 is connected to the first water filtration channel 3133. The water after preliminary filtration enters the next stage filter element through the first through hole 3171.

[0035] The reverse osmosis filter element assembly 314 includes an RO membrane filter element 3141, which is located above the first through hole 3171 and is used to intercept dissolved solids, bacteria, heavy metals and other tiny particles to achieve deep water purification. The RO membrane filter element 3141 has a water collection pipe 3142 in the center, whose side wall is connected to the inside of the RO membrane filter element 3141 to receive the permeated pure water. A second water-separating seat 318 is provided between the reverse osmosis filter element assembly 314 and the post-filter element assembly 315 above it. The second water-separating seat 318 is provided with a second through hole 3181. The second through hole 3181 is located above the RO membrane filter element 3141. The concentrated water separated by the RO membrane is discharged through the second through hole 3181. The second water-separating seat 318 extends upward to provide a water-blocking wall 3182. The top of the water-blocking wall 3182 is connected to a water outlet seat 319. The water outlet seat 319 is provided with a pure water outlet chamber 3191. The pure water outlet chamber 3191 is connected to the pure water outlet 3112 on the cover 311. A sewage chamber 3122 is formed between the inner shell 316 and the water-blocking wall 3182, and is connected to the inside of the RO membrane filter element 3141 through the second through hole 3181.

[0036] The post-filter assembly 315 is located at the end of the water outlet path and includes a sterilizing cotton filter element 3151. The sterilizing cotton filter element 3151 has a second water filtration channel 3152 inside. After the filtered water enters the sterilizing cotton filter element 3151, it can be further sterilized and bacteriostatically treated to improve the safety level of the water outlet. The second water filtration channel 3152 is connected to the pure water outlet chamber 3191 to output the filtered water to the water outlet seat 319.

[0037] The cover 311 is also provided with a sewage drain outlet 3113, which is connected to the sewage chamber 3122. A sewage control valve 61 is provided on the sewage drain pipe 6. The sewage control valve 61 is used to regulate the wastewater discharge flow rate, realize the timely discharge of concentrated water, avoid accumulation leading to a decline in filter performance, and facilitate water-saving control and maintenance operations.

[0038] The working principle of this utility model is as follows: The discharge port 221 at the bottom of the material box 22 releases the beverage ingredients into the mixing cup 23, and the water tank 21 supplies water to the mixing cup 23, so that the water and beverage ingredients are mixed in the mixing cup 23. After the mixing is completed, the mixed beverage is output through the beverage outlet 14, completing the entire preparation process. During the process, the user can choose different water sources. If bottled water is selected, the bottled water source is pumped into the water tank 21 by the bottled water pump 41 through the bottled water supply pipe 4. If purified drinking water is selected, the raw water is first introduced into the machine body 1 through the raw water inlet pipe 33. After the raw water pump 32 is started, the raw water is pressurized and sent into the composite filter element 31 in the water purification chamber 12. The composite filter element 31 is sequentially arranged with a pre-filter element assembly 313, a reverse osmosis filter element assembly 314, and a post-filter element assembly. 315. Raw water flows into the bottom through the raw water passage 3121 formed between the outer shell 312 and the inner shell 316, and passes through each stage of filter cartridges in sequence. First, it passes through the activated carbon filter cartridge 3131 covered with PP cotton for preliminary filtration to remove suspended particles and odors. Then, it enters the RO membrane filter cartridge 3141 located above for deep purification of the water quality. Finally, it passes through the sterilization cotton filter cartridge 3151 located at the top for further purification of the water quality. The purified water after three stages of filtration is output from the pure water outlet 3112. At the same time, the concentrated water intercepted by the RO membrane flows into the sewage chamber 3122 through the second through hole 3181 of the second water separator 318 and is discharged from the sewage drain outlet 3113. The drainage process is regulated by the sewage control valve 61. The purified drinking water is delivered to the water tank 21 through the drinking water supply pipe 5.

[0039] The above description is only a preferred embodiment of the present utility model. Therefore, all equivalent changes or modifications made to the structure, features and principles described in the claims of the present utility model patent application are included in the scope of the present utility model patent application.

Claims

1. A beverage combination machine with purification function, comprising a body (1), wherein a beverage preparation chamber (11) and a water purification chamber (12) are formed within the body (1), characterized in that: The beverage making chamber (11) is provided with a beverage making component (2), and the water purification chamber (12) is provided with a partition (13). A filter component (3) is provided on one side of the partition (13), and the other side forms a water source placement chamber (15) for holding bottled water. The beverage making component (2) is connected to a bottled water supply pipe (4) and a direct drinking water supply pipe (5). The direct drinking water supply pipe (5) is connected to the filter component (3), and the bottled water supply pipe (4) is connected to the bottled water source. The filter assembly (3) includes a composite filter element (31), which includes a cover (311) and a housing (312) connected to the cover (311). The housing (312) contains a pre-filter assembly (313), a reverse osmosis filter assembly (314), and a post-filter assembly (315) in sequence. The cover (311) has a raw water inlet (3111) and a pure water outlet (3112), which is connected to a direct drinking water supply pipe (5).

2. The beverage combination machine with purification function according to claim 1, characterized in that: The beverage making component (2) includes a water tank (21), a material box (22), and a stirring cup (23). The material box (22) is provided with a discharge port (221). The stirring cup (23) is located below the discharge port (221) and is connected to the water tank (21). The body (1) is provided with a beverage outlet (14) and the stirring cup (23) is connected to the beverage outlet (14).

3. The beverage combination machine with purification function according to claim 2, characterized in that: Both the bottled water supply pipe (4) and the direct drinking water supply pipe (5) are connected to the water tank (21).

4. The beverage combination machine with purification function according to claim 1, characterized in that: The outer shell (312) is provided with an inner shell (316), and a raw water passage cavity (3121) is formed between the outer shell (312) and the inner shell (316). The raw water passage cavity (3121) is connected to the raw water inlet (3111). The pre-filter assembly (313) is located below the inner shell (316), the reverse osmosis filter assembly (314) is located inside the inner shell (316), and the post-filter assembly (315) is located above the reverse osmosis filter assembly (314).

5. A beverage combination machine with purification function according to claim 4, characterized in that: The pre-filter assembly (313) includes a first water-separating seat (317) and an activated carbon filter element (3131) disposed thereon. The activated carbon filter element (3131) has a PP cotton filter element (3132) on its outer layer. The activated carbon filter element (3131) has a first water filtration channel (3133) in its center. The first water-separating seat (317) has a first through hole (3171) that communicates with the first water filtration channel (3133).

6. A beverage combination machine with purification function according to claim 5, characterized in that: The reverse osmosis filter element assembly (314) includes an RO membrane filter element (3141), which is disposed above the first through hole (3171). A water collection pipe (3142) is provided at the center of the RO membrane filter element (3141), and the RO membrane filter element (3141) is connected to the water collection pipe (3142). A second water-separating seat (318) is provided between the reverse osmosis filter element assembly (314) and the post-filter element assembly (315). A second through hole (3181) is provided on the second water-separating seat (318), which is located above the RO membrane filter element (3141) and communicates with the interior of the RO membrane filter element (3141).

7. A beverage combination machine with purification function according to claim 6, characterized in that: The second water-blocking seat (318) is provided with an upwardly extending water-blocking wall (3182), and a water outlet seat (319) is connected to the water-blocking wall (3182). The water outlet seat (319) is provided with a pure water outlet cavity (3191), which is connected to a pure water outlet (3112). A sewage cavity (3122) is formed between the inner shell (316) and the water-blocking wall (3182), and the sewage cavity (3122) is connected to the second through hole (3181).

8. A beverage combination machine with purification function according to claim 7, characterized in that: The post-filter assembly (315) includes a sterilizing cotton filter element (3151) disposed in the water baffle (3182), and the sterilizing cotton filter element (3151) is provided with a second water filtration channel (3152), which is connected to the pure water outlet chamber (3191).

9. A beverage combination machine with purification function according to claim 7, characterized in that: The cover (311) is also provided with a sewage drain outlet (3113), which is connected to the sewage chamber (3122).

10. A beverage combination machine with purification function according to claim 9, characterized in that: The sewage outlet (3113) is connected to a sewage drain pipe (6), and the sewage drain pipe (6) is equipped with a sewage control valve (61).