A wet waste processor

By introducing hot air drying and activated carbon filtration into the wet waste disposal, the bacterial reproduction and odor dispersion caused by moisture retention in the wet waste disposal is solved, and rapid drying and odor control are achieved, improving the user experience.

CN111981784BActive Publication Date: 2025-07-22ZHONGSHAN XINGZHI ELECTRICAL APPLIANCE CO LTD
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Patent Information

Application Number
CN202010870509.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-08-26
Publication Date
2025-07-22
Estimated Expiration
2040-08-26

AI Technical Summary

Technical Problem

The existing wet garbage disposal is closed and the air is not circulated, causing moisture to retention and bacteria to reproduce, causing garbage to deteriorate and smell, and the odor spreads affects the environment.

Method used

A wet garbage disposaler is designed, including a shell, a carrier container, a ventilation duct and a hot blower device. The wet garbage is air-dried and dried by hot air, combined with the activated carbon filter component to circulate the air to form an internal air flow channel to reduce the dissipation of odor.

Benefits of technology

Rapidly reduce the moisture of wet garbage, reduce bacterial reproduction, reduce odor emission, improve user experience, facilitate daily processing, and reduce the impact on external air.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a wet garbage processor, which relates to the technical field of garbage disposal equipment. It solves the problem that common wet garbage is stacked in a garbage processor that is closed and has relatively uncirculated internal air. Therefore, a large amount of moisture will stay inside the garbage processor, and the moisture will continuously encourage the reproduction of bacteria in the garbage, causing the wet garbage to deteriorate and stink continuously. The key points of its technical solution include a housing, and inside the housing are provided a loading container for loading wet garbage, a ventilation duct, and a hot air blowing device for air-drying the wet garbage; one end of the ventilation duct is communicated with the loading container, and the other end is communicated with the hot air blowing device; the end of the hot air blowing device far from the ventilation duct is communicated with the loading container, so as to air-dry and dry the wet garbage in the loading container through hot air, which can facilitate the rapid reduction of the moisture in the wet garbage and reduce the impact of this solution on the external air during the drying process of the wet garbage.
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Description

Technical Field

[0001] The present invention relates to the technical field of garbage disposal equipment, and particularly relates to a wet garbage processor. Background Art

[0002] With the progress of society, the improvement of living standards and quality of life, the amount of domestic garbage generated in cities is increasing day by day. However, the classification and treatment of wet and dry domestic garbage have always been a major problem in the industry.

[0003] Existing wet garbage processors generally only carry out water separation treatment on wet garbage, and simply separate the water in wet garbage in the form of a filter screen. However, since wet garbage is stacked in a closed garbage processor with relatively uncirculated internal air, a large amount of water will stay inside the garbage processor, and the water will continuously promote the reproduction of bacteria in the garbage, causing the wet garbage to deteriorate and stink continuously. Summary of the Invention

[0004] The purpose of the present invention is to provide a wet garbage processor, which has the advantages of drying and baking the wet garbage in the loading container by hot air, facilitating the rapid reduction of the water content in the wet garbage, and reducing the impact on the external air during the drying process of the wet garbage in this solution.

[0005] The above technical purpose of the present invention is achieved through the following technical solutions: A wet garbage processor includes a housing, and a loading container for loading wet garbage, a ventilation duct, and a hot air blowing device for drying the wet garbage are provided inside the housing; one end of the ventilation duct is communicated with the loading container, and the other end is communicated with the hot air blowing device; the end of the hot air blowing device away from the ventilation duct is communicated with the loading container.

[0006] By adopting the above technical solutions, the loading container, the ventilation duct, and the hot air blowing device form a complete air flow channel. The hot air blowing device dries and bakes the wet garbage in the loading container by hot air, which can facilitate the rapid reduction of the water content in the wet garbage, so as to reduce the bacteria generated by the wet garbage due to excessive water, and then facilitate the reduction of the odor of the wet garbage. Moreover, the dried garbage is more convenient for users' daily disposal. Secondly, since this air flow channel is located inside the housing, the hot air inhaled and blown out by the hot air blowing device comes from inside the housing. Therefore, while realizing the drying treatment of wet garbage, the peculiar smell of the wet garbage itself will not be largely emitted outside following the flow of the air inside the housing, which is convenient for reducing the impact on the external air during the drying process of the wet garbage in this solution and making it more user-friendly.

[0007] A further arrangement of the present invention is that a filtering assembly for filtering the air inside the housing is provided inside the housing. The hot air blowing device includes a fan and a heating device. The heating device is arranged at the air outlet of the filtering assembly, and the fan is communicated with the filtering assembly.

[0008] By adopting the above technical solution, the heating device is a PTC heater. The fan generates wind force, and then hot air is sent out through the PTC. The filtering assembly is an activated carbon box, which is used to adsorb the odor generated by the wet garbage in the loading container. The fan continuously circulates the air inside the housing, so as to continuously filter the air inside the housing during the circulation process.

[0009] A further arrangement of the present invention is that the loading container includes a loading outer shell and a water filtering basket with a number of water leakage holes. A number of cushion blocks are provided at the bottom of the loading outer shell. The water filtering basket is movably arranged inside the loading outer shell, and the water filtering basket abuts against the cushion blocks.

[0010] By adopting the above technical solution, the number of cushion blocks is several. The cushion blocks can form a water storage inner cavity for receiving water inside the loading outer shell, so that the water on the wet garbage falls into the water storage inner cavity through the water filtering basket.

[0011] A further arrangement of the present invention is that a first opening matching the loading container is provided on the side of the loading container, and the loading container extends out or is received inside the housing along the direction of the first opening.

[0012] A further arrangement of the present invention is that a first extension part for prying the loading outer shell to rotate is provided at the bottom of the loading container. A second extension part adjacent to the first extension part is provided inside the housing. The first extension part is in contact connection with the second extension part, and the loading container rotates in the direction of the first opening with the contact point between the first extension part and the second extension part as the support point.

[0013] A further arrangement of the present invention is that a driving plate is inserted on the side of the loading container close to the first opening. A buckling part that can pass through and abut against the loading outer shell is provided on the driving plate, and the buckling part is buckled with the loading outer shell.

[0014] By adopting the above technical solution, the buckling part includes a first insertion block and a second insertion block. A hooking part that can abut against the loading outer shell is provided on the first insertion block. The second insertion block is an arc-shaped plate inclined towards the first insertion block. The first insertion block passes through the loading outer shell and then abuts against the inner wall of the loading outer shell. When the first insertion block and the second insertion block pass through the loading outer shell at the same time, the driving plate can be buckled with the loading outer shell. The driving plate is a pedal. Since the loading container uses the contact point between the first extension part and the second extension part as the support point, it is convenient for people to rotate the loading container in the direction of the first opening by stepping on the driving plate.

[0015] When a person steps on the driving plate, one side of the first extension part abuts against the second extension part, and the storage container rotates in the direction of the first opening with the contact point between the first extension part and the second extension part as the support point, so as to realize the extension of the storage container from the shell. Then, the user can directly put wet garbage into or take it out from it, which makes it more convenient for the user to use.

[0016] In a further setting of the present invention, a door is provided on the shell to cover the first opening. The door is movably magnetically adsorbed on the shell, and a sealing ring for blocking odor is provided along the contour line direction of the first opening.

[0017] By adopting the above technical solution, the door is movably fixed on the shell by the principle of magnet adsorption, which is convenient for the user to open or close the door, and the combination with the sealing ring makes the peculiar smell in the shell be retained in the shell as much as possible, so as to reduce the impact on the surrounding environmental air during the wet garbage treatment process.

[0018] In a further setting of the present invention, the shell includes an upper shell part and a lower shell part. The upper shell part is installed at the top of the lower shell part in a concave-convex fit manner; the hot air blowing device is arranged in the upper shell part; the ventilation duct and the storage container are arranged in the lower shell part.

[0019] By adopting the above technical solution, the upper shell part is used to place devices such as a hot air blowing device and a disinfection module, and the lower shell part is used to place wet garbage and a ventilation duct; since a large amount of stains are easily attached to the inner wall of the storage container by wet garbage, if devices such as a hot air blowing device and a disinfection module are placed together with the storage container at the same time, it is not convenient for the user to clean them by simple and direct methods such as water washing. Therefore, dividing the shell into two parts can greatly facilitate the subsequent daily maintenance of the user.

[0020] In a further setting of the present invention, a first concave hole is opened at the end of the lower shell part close to the upper shell part, a first convex block matching the first concave hole is provided on the upper shell part, and the first convex block is in concave-convex fit with a second concave hole; a second concave hole is opened on the ventilation duct, a second convex block matching the second concave hole is provided on the first convex block, and the second convex block is in concave-convex fit with the second concave hole.

[0021] In a further setting of the present invention, an annular protrusion is provided at the end of the lower shell part close to the upper shell part, an annular groove matching the annular protrusion is provided on the upper shell part, and the annular protrusion is installed in the annular groove in a concave-convex fit manner.

[0022] In a further setting of the present invention, a disinfection module for disinfecting wet garbage on the storage container is provided in the shell.

[0023] By adopting the above technical solution, when the first bump is installed on the first concave hole in a concave-convex fit manner, the second bump on the first bump is installed in the second concave hole in a concave-convex fit manner. At the same time, the annular groove of the upper shell part is also installed on the annular bump in a concave-convex fit manner. Through multiple simple but useful concave-convex fit structures, the upper shell part can be conveniently installed or disassembled on the lower shell part. This solution not only has a simple structure, is convenient for processing and production, but also can efficiently process wet garbage.

[0024] In summary, the present invention has the following beneficial effects:

[0025] 1. By using hot air to air-dry and dry the wet garbage in the load-bearing container, it is convenient to quickly reduce the moisture in the wet garbage;

[0026] 2. The peculiar smell of the wet garbage itself will not be largely emitted to the outside following the flow of the air inside the shell, which can reduce the impact of this solution on the external air during the drying process of the wet garbage;

[0027] 3. Continuously filter the air inside the closed shell in the form of wind circulation;

[0028] 4. The shell is divided into an upper shell and a lower shell, which can greatly facilitate the subsequent daily maintenance of users.

[0029] Generally speaking, in the present invention, by using hot air to air-dry and dry the wet garbage in the load-bearing container, it is convenient to quickly reduce the moisture in the wet garbage, and it can reduce the impact of this solution on the external air during the drying process of the wet garbage. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] Figure 1 is the structural schematic diagram of this embodiment;

[0031] Figure 2 is the semi-sectional structural schematic diagram of this embodiment;

[0032] Figure 3 is Figure 2 the enlarged view of part A in

[0033] Figure 4 is the exploded structural schematic diagram of this embodiment;

[0034] Figure 5 is the schematic diagram of the connection relationship between the drive plate and the buckle part in this embodiment;

[0035] Figure 6 is the schematic diagram of the connection relationship between the upper shell part and the disinfection module in this embodiment.

[0036] Reference numerals: 1, first opening; 2, disinfection module; 3, housing; 31, upper housing part; 32, lower housing part; 4, hot air blowing device; 41, fan; 42, heating device; 5, load container; 51, load outer shell; 52, water filtering basket; 6, first concave hole; 7, first convex block; 8, second concave hole; 9, second convex block; 11, ventilation duct; 12, filtering component; 13, cushion block; 14, first extension part; 15, second extension part; 16, driving plate; 17, buckling part; 171, first insertion block; 172, second insertion block; 18, cover door; 19, sealing ring; 20, annular protrusion; 21, annular groove. Detailed implementation manners

[0037] The present invention will be further described in detail below with reference to the accompanying drawings.

[0038] Embodiment: A wet waste processor, as Figures 1 to 4 shown, includes a housing 3. Inside the housing 3, there are provided a load container 5 for loading wet waste, a ventilation duct 11, and a hot air blowing device 4 for air-drying the wet waste. One end of the ventilation duct 11 is communicated with the load container 5 to form an air inlet passage. The other end of the ventilation duct 11 is communicated with the hot air blowing device 4. The end of the hot air blowing device 4 far from the ventilation duct 11 is communicated with the load container 5 to form an air outlet passage for sending air to the load container 5.

[0039] The load container 5, the ventilation duct 11, and the hot air blowing device 4 form a complete air flow channel. The hot air blowing device 4 air-dries and dries the wet waste in the load container 5 through hot air, which can facilitate the rapid reduction of the moisture in the wet waste, so as to reduce the bacteria generated by the wet waste due to more moisture, and further facilitate the reduction of the odor of the wet waste. Moreover, the dried waste is more convenient for the user's daily disposal. Secondly, since this air flow channel is located inside the housing 3, the hot air inhaled and blown out by the hot air blowing device 4 both comes from inside the housing 3. Therefore, while realizing the drying treatment of wet waste, the odor of the wet waste itself will not be largely emitted to the outside following the flow of the air inside the housing 3. Thus, it is convenient to reduce the influence on the external air during the drying treatment of wet waste, and the use is more user-friendly.

[0040] Inside the housing 3, there is provided a filtering component 12 for filtering the air inside the housing 3. The hot air blowing device 4 includes a fan 41 and a heating device 42. The heating device 42 is arranged at the air outlet of the filtering component 12, and the fan 41 is communicated with the filtering component 12. In this embodiment, the filtering component 12 is an activated carbon box for adsorbing odors.

[0041] The heating device 42 is a PTC heater. The blower 41 generates wind force, and then hot air is sent out through the PTC. The filtering component 12 is an activated carbon box, which is used to adsorb the odor generated by the wet garbage in the storage container 5. The blower 41 continuously circulates the air in the housing 3, so as to continuously filter the air in the housing 3 during the circulation process.

[0042] The storage container 5 includes a storage outer shell 51 and a water filtering basket 52 with a number of water leakage holes. A number of cushion blocks 13 are provided at the bottom of the storage outer shell 51. The water filtering basket 52 is movably arranged in the storage outer shell 51, and the water filtering basket 52 abuts against the cushion blocks 13.

[0043] The number of the cushion blocks 13 is several. The cushion blocks 13 can form a water storage inner cavity for receiving water in the storage outer shell 51, so that the water on the wet garbage can fall into the water storage inner cavity through the water filtering basket 52.

[0044] A first opening 1 matching the storage container 5 is formed on the side of the storage container 5, and the storage container 5 extends out or is received in the housing 3 along the direction of the first opening 1.

[0045] A first extension part 14 for prying the storage outer shell 51 to rotate is provided at the bottom of the storage container 5. A second extension part 15 adjacent to the first extension part 14 is provided in the housing 3. The first extension part 14 is in contact connection with the second extension part 15, and the storage container 5 rotates in the direction of the first opening 1 with the contact point between the first extension part 14 and the second extension part 15 as the support point.

[0046] A driving plate 16 is inserted on the side of the storage container 5 close to the first opening 1. A buckle part 17 that can pass through and abut against the storage outer shell 51 is provided on the driving plate 16. The buckle part 17 is buckled to the storage outer shell 51. The driving plate 16 is a foot pedal.

[0047] Such as Figure 4 And Figure 5As shown, the buckle part 17 includes a first insertion block 171 and a second insertion block 172. The first insertion block 171 is provided with a hooking part that can abut against the load-carrying outer shell 51. The second insertion block 172 is an arc-shaped plate inclined towards the first insertion block 171. After the first insertion block 171 passes through the load-carrying outer shell 51, it abuts against the inner wall of the load-carrying outer shell 51. When the first insertion block 171 and the second insertion block 172 pass through the load-carrying outer shell 51 at the same time, the driving plate 16 can be buckled to the load-carrying outer shell 51. The driving plate 16 is a pedal. Since the load-carrying container 5 uses the contact point between the first extension part 14 and the second extension part 15 as a support point, it is convenient for people to rotate the load-carrying container 5 towards the first opening 1 by stepping on the driving plate 16 with their feet. When a person steps on the driving plate 16, one side of the first extension part 14 abuts against the second extension part 15, and the load-carrying container 5 rotates towards the first opening 1 with the contact point between the first extension part 14 and the second extension part 15 as a support point, thereby realizing the extension of the load-carrying container 5 from the housing 3. Then, the user can directly put wet garbage in or take it out, which makes it more convenient for the user to use.

[0048] As Figures 1 to 4 shown, a shutter 18 that covers the first opening 1 is provided on the housing 3. The shutter 18 is movably magnetically adsorbed on the housing 3. A sealing ring 19 for blocking odors is provided along the contour line of the first opening 1.

[0049] The shutter 18 is movably fixed on the housing 3 by using the principle of magnet adsorption, which is convenient for the user to open or close the shutter 18, and the combination with the sealing ring 19 can keep the peculiar smell in the housing 3 as much as possible, so as to reduce the impact on the surrounding environmental air during the wet garbage treatment process.

[0050] The housing 3 includes an upper housing part 31 and a lower housing part 32. The upper housing part 31 is installed on the top of the lower housing part 32 in a concave-convex fit. The hot air blowing device 4 is arranged in the upper housing part 31. The ventilation duct 11 and the load-carrying container 5 are arranged in the lower housing part 32.

[0051] The upper housing part 31 is used to place devices such as the hot air blowing device 4 and the disinfection module, while the lower housing part 32 is used to place wet garbage and the ventilation duct 11. Since a large amount of stains are easily attached to the inner wall of the load-carrying container 5 by wet garbage, if the hot air blowing device 4, the disinfection module, etc. are placed together with the load-carrying container 5 at the same time, it is not convenient for the user to clean them by simple and direct methods such as water flushing. Therefore, dividing the housing 3 into two parts can greatly facilitate the subsequent daily maintenance of the user.

[0052] At the end of the lower housing part 32 close to the upper housing part 31, a first concave hole 6 is provided. On the upper housing part 31, a first convex block 7 matching the first concave hole 6 is provided. The first convex block 7 is in concave-convex fit with the second concave hole 8. A second concave hole 8 is provided on the ventilation duct 11. On the first convex block 7, a second convex block 9 matching the second concave hole 8 is provided. The second convex block 9 is in concave-convex fit with the second concave hole 8.

[0053] At the end of the lower housing part 32 close to the upper housing part 31, an annular protrusion 20 is provided. On the upper housing part 31, an annular groove 21 matching the annular protrusion 20 is provided. The annular protrusion 20 is installed in the annular groove 21 in concave-convex fit.

[0054] As Figure 6 shown, inside the housing 3, a disinfection module for disinfecting wet garbage on the load container 5 is provided. This disinfection module is an infrared disinfection module, but is not limited thereto, and other technical structures for sterilization and disinfection are also acceptable.

[0055] When the first convex block 7 is installed on the first concave hole 6 in concave-convex fit, the second convex block 9 on the first convex block 7 is installed in the second concave hole 8 in concave-convex fit. At the same time, the annular groove 21 of the upper housing part 31 is also installed on the annular convex block in concave-convex fit. Through multiple simple but useful concave-convex fit structures, the upper housing part 31 can be conveniently installed or disassembled on the lower housing part 32. This solution is not only simple in structure, convenient for processing and production, but also can efficiently process wet garbage.

[0056] This specific embodiment is only an interpretation of the present invention and is not a limitation thereof. After reading this specification, those skilled in the art can make modifications to this embodiment without creative contributions as needed, but as long as they are within the scope of the claims of the present invention, they are protected by the patent law.

Claims

1. A wet waste processor, comprising a housing (3), characterized in that, The shell (3) is provided with a loading container (5) for loading wet garbage, a ventilation duct (11), and a hot blowing device (4) for drying the wet garbage; one end of the ventilation duct (11) is connected to the loading container (5), and the other end is connected to the hot blowing device (4); the end of the hot blowing device (4) away from the ventilation duct (11) is connected to the loading container (5); the shell (3) is provided with a filter assembly (12) for filtering the air in the shell (3); a first opening (1) matching the loading container (5) is opened on the side of the loading container (5), and the loading container (5) is extended along the direction of the first opening (1) or is received in the shell (3).

2. The wet waste processor according to claim 1, characterized in that, The hot air blowing device (4) comprises a fan (41) and a heating device (42); the heating device (42) is arranged on the air outlet of the filter assembly (12); and the fan (41) is connected to the filter assembly (12).

3. A wet waste processor according to claim 1, characterized in that, The cargo container (5) comprises a cargo shell (51) and a water filter basket (52) with a plurality of water leakage holes, and a plurality of cushion blocks (13) are arranged at the bottom of the cargo shell (51); the water filter basket (52) is movably arranged in the cargo shell (51), and the water filter basket (52) abuts against the cushion blocks (13).

4. A wet waste processor according to claim 1, characterized in that, The bottom of the cargo container (5) is provided with a first extension portion (14) for levering the cargo housing (51) to rotate, and the shell (3) is provided with a second extension portion (15) arranged adjacent to the first extension portion (14). The first extension portion (14) and the second extension portion (15) are in contact with each other and connected, and the cargo container (5) rotates toward the first opening (1) with the contact point between the first extension portion (14) and the second extension portion (15) as a support point.

5. A wet waste processor according to claim 1, characterized in that, A driving plate (16) is inserted on the side of the cargo container (5) close to the first opening (1), and a buckle portion (17) is provided on the driving plate (16) that can pass through and abut against the cargo shell (51), and the buckle portion (17) is buckled and connected to the cargo shell (51).

6. The wet waste processor according to claim 1, characterized in that, The shell (3) is provided with a shutter (18) covering the first opening (1); the shutter (18) is movably magnetically adsorbed on the shell (3); and the first opening (1) is provided with a sealing ring (19) for blocking odors along its own contour line.

7. A wet waste processor according to claim 1, wherein The shell (3) comprises an upper shell portion (31) and a lower shell portion (32); the upper shell portion (31) is mounted on the top end of the lower shell portion (32) in a concave-convex manner; the hot air blowing device (4) is arranged in the upper shell portion (31); and the ventilation duct (11) and the cargo container (5) are arranged in the lower shell portion (32).

8. The wet waste processor according to claim 7, characterized in that, A first concave hole (6) is formed at an end of the lower housing part (32) close to the upper housing part (31). A first convex block (7) matching the first concave hole (6) is provided on the upper housing part (31). The first convex block (7) is in concave-convex fit with a second concave hole (8); a second concave hole (8) is formed in the ventilation duct (11). A second convex block (9) matching the second concave hole (8) is provided on the first convex block (7). The second convex block (9) is in concave-convex fit with the second concave hole (8).

9. The wet waste processor according to claim 1, characterized in that, A disinfection module (2) for disinfecting wet garbage on the load container (5) is provided in the housing (3).

Citation Information

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