Kitchen garbage disposer

By introducing a screw transfer system into the garbage disposer, the processed garbage in the garbage bin is automatically transferred to a storage device, solving the problem of frequent manual cleaning of the garbage bin in the existing technology and realizing the automation and convenience of garbage disposal.

CN223312166UActive Publication Date: 2025-09-09GUANGDONG XINBAO ELECTRICAL APPLIANCES HLDG CO LTD
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Patent Information

Application Number
CN202422477110.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-14
Publication Date
2025-09-09
Estimated Expiration
2034-10-14

AI Technical Summary

Technical Problem

Existing garbage disposals require frequent manual cleaning of the garbage bin after disposal, which is inconvenient to use and has no garbage transfer function.

Method used

A screw is used to transfer the processed garbage in the trash can to the storage device. The drive assembly drives the cutter disc assembly to rotate and crush the garbage, and the screw is used to transfer the processed garbage to the storage device to realize automated garbage disposal.

Benefits of technology

It realizes the automatic processing of garbage bins, reduces the frequency of manual cleaning, makes it more convenient to use and saves labor.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223312166U_ABST
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Abstract

The utility model relates to the technical field of garbage disposal, in particular to a kitchen garbage disposer which comprises a main machine, and the main machine is provided with a first driving assembly and a second driving assembly. The garbage can is detachably installed in the main machine, a cutter head assembly is arranged in the garbage can, and the cutter head assembly is driven by a first driving assembly to rotate; the storage device is detachably mounted on the main body; and the material conveying pipeline is connected with the garbage can and the storage device, a screw rod is arranged in the material conveying pipeline, the screw rod is driven by a second driving assembly to rotate, and the screw rod is used for transferring the garbage treated in the garbage can into the storage device to be stored. In the working process, the cutter head assembly is driven by the first driving assembly to rotate, and garbage in the garbage can is smashed; and then the driving assembly II drives the screw rod to rotate, and the treated garbage is transferred into the storage device through the material conveying pipeline, so that the garbage can can enter a new round of garbage treatment at any time, the garbage can does not need to be manually and frequently cleaned, and the use is more convenient.
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Description

Technical Field

[0001] The utility model relates to the technical field of garbage disposal, in particular to a kitchen waste disposer. Background Art

[0002] At present, garbage disposers on the market usually grind and crush garbage by stirring. For example, the utility model patent with announcement number CN215032265U discloses a garbage grinding device, which includes a body and a flip cover. A driving mechanism and a garbage can are provided in the body. A grinding mechanism is provided in the garbage can. The driving mechanism is connected to the grinding mechanism through a transmission mechanism. A detachable sealing cover is provided in the flip cover, and the sealing cover matches the top of the garbage can. This prior art can grind and crush the garbage in the garbage can by means of a grinding mechanism. However, this prior art still has structural deficiencies. It has no garbage transfer function, resulting in the garbage after treatment remaining in the garbage can. It is necessary to manually transfer and clean the garbage in the garbage can before entering a new round of garbage treatment. Frequent manual cleaning is required, which is time-consuming and labor-intensive, and inconvenient to use.

[0003] Therefore, the existing technology still needs to be improved and developed. Utility Model Content

[0004] In order to solve the problems of the prior art, the utility model provides a kitchen waste disposer, which transfers the processed garbage in the trash can into a storage device through a screw, so that the trash can can enter a new round of garbage disposal at any time, and does not require frequent manual cleaning of the trash can, saving labor and making it more convenient to use.

[0005] In order to achieve the above-mentioned purpose, the technical solution applied by the present utility model is as follows:

[0006] A kitchen waste disposer includes a main unit, the main unit being provided with a drive component 1 and a drive component 2; a trash can, the trash can being detachably mounted in the main unit, the trash can being provided with a cutter disc assembly, the cutter disc assembly being driven to rotate by the drive component 1; a storage device, the storage device being detachably mounted on the main unit; a material transfer pipe, the material transfer pipe connecting the trash can and the storage device, the material transfer pipe being provided with a screw, the screw being driven to rotate by the drive component 2, the screw being used to transfer the processed garbage in the trash can to the storage device for storage. With this arrangement, during operation, the cutter disc assembly is driven to rotate by the drive component 1 to shred the garbage in the trash can; the screw is then driven to rotate by the drive component 2 to transfer the processed garbage to the storage device via the material transfer pipe, so that the trash can can be ready for a new round of garbage processing at any time, and there is no need for manual cleaning of the trash can, which saves labor and is more convenient to use.

[0007] According to the above solution, the material transfer pipe is integrated with the trash can, and the material transfer pipe is vertically located on the outer wall of the trash can. The main unit is provided with interconnected mounting slots 1 and 2, with the trash can installed in mounting slot 1 and the material transfer pipe installed in mounting slot 2. This arrangement integrates the material transfer pipe with the trash can, with interconnected mounting slots 1 and 2 provided in the main unit, with the trash can installed in mounting slot 1 and the material transfer pipe installed in mounting slot 2, making installation and removal convenient. Furthermore, the design of mounting slot 2 can prevent the trash can from being misplaced and limit the position of the material transfer pipe.

[0008] According to the above solution, the trash can has a first feed port and a first discharge port at its upper and lower ends, and a second discharge port and a second feed port at its upper and lower ends. The second feed port is connected to the first discharge port, which is connected to the opening of the storage device. The screw is vertically mounted in the transfer pipe via a fixed base, with a seal provided between the screw and the fixed base. This arrangement enables upward discharge, resulting in a more efficient discharge. The screw is vertically mounted in the transfer pipe via the fixed base, reducing the overall size of the trash can and occupying less space. The seal prevents leakage.

[0009] According to the above solution, a movably mounted upper cover assembly is provided on the main unit, which is used to open or close the trash can's feed port. A first end of the upper cover assembly is hingedly connected to the main unit, and a latch assembly is provided between the second end of the upper cover assembly and the main unit. This arrangement prevents the trash from being thrown out during the shredding process and also prevents the odor of the trash from escaping.

[0010] According to the above solution, the first latching component includes a first latching slot provided on the upper cover component and a first latching buckle provided on the main unit, with the first latching buckle cooperating with the first latching slot. Of course, the positions of the first latching slot and the first latching buckle can also be interchanged, that is, the first latching slot can be provided on the main unit and the first latch can be provided on the upper cover component, and both can achieve the latching effect.

[0011] According to the above solution, the host is provided with a slot 1, the first end of the buckle 1 is slidably disposed within the slot 1, the second end of the buckle 1 extends out of the slot 1 and is configured to cooperate with the slot 1, and a return spring 1 is fixed between the first end of the buckle 1 and the slot 1; the host is provided with a button for driving the buckle 1 to retract. In actual application, the upper end surface of the buckle 1 is an inclined surface. When the upper cover assembly is closed, the upper cover assembly contacts the upper end surface of the buckle 1. Under the action of force, the upper cover assembly slides along the inclined surface and pushes the buckle 1 to retract, compressing the return spring 1. When the slot 1 and the buckle 1 correspond, the return spring 1 pushes the buckle 1 into the slot 1 and locks it. When the upper cover assembly is to be opened, the button is pressed to drive the buckle 1 to retract, thereby opening the upper cover assembly. Among them, there is also an inclined surface at the position where the buckle 1 contacts the button. When the button is pressed downward, the button slides along the inclined surface under the action of force and pushes the buckle 1 to retract. When the button is released, the rebound force of the reset spring 1 pushes the buckle 1 and the button to reset.

[0012] According to the above solution, the outer wall of the main unit is provided with a third mounting groove, and the storage device is installed in the third mounting groove. The inner wall of the third mounting groove is formed with a first curved surface, and the outer wall of the storage device adjacent to the first curved surface is formed with a second curved surface. The second curved surface and the first curved surface are arranged in coordination, and a second retaining assembly is provided between the storage device and the third mounting groove. This arrangement facilitates assembly and disassembly, and the design of the second curved surface and the first curved surface can prevent the storage device from being misassembled and limit the storage device.

[0013] According to the above solution, the first latching component includes a second latching slot provided on the storage device and a second latching buckle provided in the third mounting slot, with the second latching buckle cooperating with the second latching slot. Of course, the positions of the second latching slot and the second latching buckle can also be interchanged, that is, the second latching slot can be provided in the third mounting slot and the second latching buckle can be provided on the storage device, and both can achieve the latching effect.

[0014] According to the above solution, a second slot is provided within the third mounting slot, a first end of the second clip is slidably mounted within the second slot, a second end of the second clip extends out of the second slot and engages with the second slot, and a second return spring is fixed between the first end of the second clip and the second slot; the storage device is provided with a handle. In practical applications, the inner wall of the second slot and the outer wall of the second clip are designed with inclined or curved surfaces. This allows the second clip to slide into the second slot easily when the storage device is assembled, and to slide out of the second slot easily when the handle is held.

[0015] According to the above solution, the main unit is equipped with a heating component, which is positioned in correspondence with the trash can and is used to dry the trash in the trash can. This arrangement allows the heating component to dry the trash in the trash can into dry trash before transferring it to the storage device, thereby extending the storage period of the trash. In actual applications, the heating component can also cooperate with the air duct system to dry the trash in the trash can with hot air.

[0016] Beneficial effects of the utility model:

[0017] The utility model is configured such that, when working, the drive component 1 drives the cutter disc component to rotate, thereby crushing the garbage in the garbage bin; the drive component 2 then drives the screw to rotate, and the processed garbage is transferred to the storage device through the material transfer pipe, so that the garbage bin can enter a new round of garbage processing at any time, and there is no need for manual cleaning of the garbage bin frequently, which saves labor and is more convenient to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a three-dimensional diagram of the overall structure of the utility model;

[0019] Figure 2 This is an exploded view of the overall structure of the utility model;

[0020] Figure 3 This is an exploded view of the utility model trash can;

[0021] Figure 4 This is a cross-sectional view of the utility model trash can;

[0022] Figure 5 This is a cross-sectional view of the overall structure of the utility model;

[0023] Figure 6 This is a schematic diagram of the working process before garbage transfer of the utility model;

[0024] Figure 7 yes Figure 6 A magnified view of position A in the middle;

[0025] Figure 8 yes Figure 6 Enlarged view of position B in the middle;

[0026] Figure 9 This is a working diagram of the garbage transfer of the utility model;

[0027] Figure 10 It is a schematic diagram of the working of the utility model after garbage transfer.

[0028] In the picture:

[0029] 1. Upper cover assembly; 11. Card slot 1; 2. Trash can; 21. Cutter assembly; 22. Feed port 1; 23. Discharge port 1; 24. Transfer pipe; 25. Screw; 26. Seal; 27. Fixing seat; 28. Feed port 2; 29. ​​Discharge port 2; 3. Main unit; 31. Mounting slot 1; 32. Mounting slot 2; 33. Mounting slot 3; 34. Arc surface 1; 35. Buckle 1; 36. Return spring 1; 37. Button; 38. Buckle 2; 39. Return spring 2; 310. Slot 1; 311. Slot 2; 4. Storage device; 41. Handle; 42. Arc surface 2; 43. Card slot 2; 5. Drive assembly 1; 6. Heating assembly; 7. Drive assembly 2. DETAILED DESCRIPTION

[0030] The technical solution of the present utility model is described below with reference to the accompanying drawings and embodiments.

[0031] like Figures 1 to 10 As shown, the kitchen waste disposer described in the present invention includes a main unit 3, which is provided with a drive component 1 5 and a drive component 2 7; a trash can 2, which is detachably installed in the main unit 3, and a cutter disc assembly 21 is provided in the trash can 2, which is driven to rotate by the drive component 1 5; a storage device 4, which is detachably installed on the main unit 3; a material transfer pipe 24, which connects the trash can 2 and the storage device 4, and is provided with a screw 25 in the material transfer pipe 24, which is driven to rotate by the drive component 2 7, and the screw 25 is used to transfer the processed garbage in the trash can 2 to the storage device 4 for storage. With this arrangement, when working, the drive component 1 5 drives the cutter disc assembly 21 to rotate, and the garbage in the trash can 2 is crushed; then the drive component 2 7 drives the screw 25 to rotate, and the processed garbage is transferred to the storage device 4 through the material transfer pipe 24, so that the trash can 2 can enter a new round of garbage processing at any time, and there is no need for manual cleaning of the trash can frequently, which saves labor and is more convenient to use.

[0032] Specifically, the material transfer pipe 24 is integrally formed with the trash can 2, positioned vertically on the outer wall of the trash can 2. The main unit 3 is provided with interconnected mounting slots 1 31 and 2 32, with the trash can 2 mounted within the mounting slot 1 31 and the material transfer pipe 24 mounted within the mounting slot 2 32. This configuration integrates the material transfer pipe 24 with the trash can 2, with interconnected mounting slots 1 31 and 2 32 provided within the main unit 3. The trash can 2 is mounted within the mounting slot 1 31 and the material transfer pipe 24 is mounted within the mounting slot 2 32, making assembly and disassembly convenient. Furthermore, the design of the mounting slot 2 32 serves to prevent misalignment in the trash can 2 and to limit the position of the material transfer pipe 24.

[0033] Specifically, the trash can 2 is provided with a first feed port 22 and a first discharge port 23 at its upper and lower ends. A second discharge port 29 and a second feed port 28 are provided at its upper and lower ends. The second feed port 28 is connected to the first discharge port 23, and the second discharge port 29 is connected to the opening of the storage device 4. The screw 25 is vertically mounted within the transfer pipe 24 via a fixing base 27, with a seal 26 disposed between the screw 25 and the fixing base 27. This arrangement allows for an upward discharge method, resulting in a more efficient discharge. The screw 25 is vertically mounted within the transfer pipe 24 via the fixing base 27, reducing the overall size of the trash can 2 and occupying less space. The seal 26 prevents leakage. In practice, the spiral blades of the screw 25 engage the inner wall of the transfer pipe 24, preventing trash from falling during the upward discharge process.

[0034] Furthermore, the main unit 3 is provided with a movably mounted upper cover assembly 1, which is used to open or close the feed port 22 of the trash can 2. The first end of the upper cover assembly 1 is hinged to the main unit 3, and a latch assembly 1 is provided between the second end of the upper cover assembly 1 and the main unit 3. This arrangement prevents the trash from being thrown out during the shredding operation and also prevents the odor of the trash from escaping.

[0035] Specifically, the first latch assembly includes a slot 11 provided on the upper cover assembly 1 and a buckle 35 provided on the main unit 3. The buckle 35 cooperates with the slot 11. Of course, the positions of the slot 11 and the buckle 35 can also be interchanged, that is, the slot 11 can be provided on the main unit 3 and the buckle 35 can be provided on the upper cover assembly 1, and the latching effect can still be achieved.

[0036] Furthermore, the host 3 is provided with a slot 310, the first end of the clip 35 is slidably set in the slot 310, the second end of the clip 35 extends out of the slot 310 and is cooperated with the slot 11, and a return spring 36 is fixed between the first end of the clip 35 and the slot 310; the host 3 is provided with a button 37 for driving the clip 35 to retract. In actual application, the upper end surface of the buckle 35 is an inclined surface. When the upper cover assembly 1 is closed, the upper cover assembly 1 contacts the upper end surface of the buckle 35. Under the action of force, the upper cover assembly 1 slides along the inclined surface and pushes the buckle 35 to retract, compressing the return spring 36. When the slot 11 corresponds to the buckle 35, the buckle 35 is pushed into the slot 11 under the rebound force of the return spring 36 to be locked. When the upper cover assembly 1 is to be opened, the buckle 35 is driven to retract by pressing the button 37, and the upper cover assembly 1 can be opened. The position where the buckle 35 and the button 37 abut against each other also has an inclined surface. When the button 37 is pressed downward, the button 37 slides along the inclined surface under the action of force and pushes the buckle 35 to retract. When the button 37 is released, the buckle 35 and the button 37 are pushed to reset under the rebound force of the return spring 36.

[0037] Specifically, the outer wall of the main unit 3 is provided with a third mounting groove 33, within which the storage device 4 is mounted. The inner wall of the third mounting groove 33 is formed with a first curved surface 34, and the outer wall of the storage device 4 adjacent to the first curved surface 34 is formed with a second curved surface 42. The second curved surface 42 and the first curved surface 34 are arranged in coordination, with a second retaining assembly 2 provided between the storage device 4 and the third mounting groove 33. This arrangement facilitates assembly and disassembly, and the design of the second curved surface 42 and the first curved surface 34 ensures foolproof assembly and position control of the storage device 4.

[0038] Furthermore, the first latching assembly includes a second latching slot 43 provided on the storage device 4 and a second latching buckle 38 provided in the third mounting slot 33, with the second latching buckle 38 being provided in conjunction with the second latching slot 43. Of course, the positions of the second latching slot 43 and the second latching buckle 38 can also be interchanged, that is, the second latching slot 43 can be provided in the third mounting slot 33, and the second latching buckle 38 can be provided on the storage device 4, and both can achieve the latching effect.

[0039] Specifically, the third mounting slot 33 includes a second slot 311. The first end of the second clip 38 slides within the second slot 311. The second end of the second clip 38 extends out of the second slot 311 and engages with the second clip 43. A second return spring 39 is secured between the first end of the second clip 38 and the second slot 311. The storage device 4 includes a handle 41. In practical applications, the inner wall of the second slot 311 and the outer wall of the second clip 38 are inclined or curved. This allows the second clip 38 to slide into the second slot 311 when the handle 41 is held, and a push force is applied during assembly. During disassembly, the handle 41 is held, and a pull force is applied to facilitate the second clip 38 sliding out of the second slot 311.

[0040] Furthermore, the main unit 3 is provided with a heating assembly 6, which is positioned in correspondence with the trash can 2 and is used to dry the trash within the trash can 2. This arrangement allows the heating assembly 6 to dry the trash within the trash can 2 into dry trash before transferring it to the storage device 4, thereby extending the storage period of the trash. In actual applications, the heating assembly 6 can also cooperate with the air duct system to dry the trash within the trash can 2 with hot air.

[0041] The embodiments of the present invention are described above in conjunction with the accompanying drawings, but the present invention is not limited to the above-mentioned specific implementation methods. The above-mentioned specific implementation methods are merely illustrative and not restrictive. Under the guidance of the present invention, ordinary technicians in this field can also make many forms without departing from the scope of protection of the purpose of the present invention and the claims, all of which fall within the scope of protection of the present invention.

Claims

1. A kitchen waste disposer, characterized in that: include: A host (3), wherein the host (3) is provided with a first drive component (5) and a second drive component (7); A trash can (2), wherein the trash can (2) is detachably mounted in a main unit (3), a cutter head assembly (21) is provided in the trash can (2), and the cutter head assembly (21) is driven to rotate by a driving assembly (5); A storage device (4), wherein the storage device (4) is detachably mounted on the host (3); A material transfer pipe (24) is provided, wherein the material transfer pipe (24) connects the trash can (2) and the storage device (4). A screw (25) is provided in the material transfer pipe (24). The screw (25) is driven to rotate by a second drive assembly (7). The screw (25) is used to transfer the processed trash in the trash can (2) to the storage device (4) for storage.

2. A kitchen waste disposer according to claim 1, characterized in that: The material transfer pipe (24) is an integral structure with the trash can (2), and the material transfer pipe (24) is vertically located on the outer wall of the trash can (2). The host (3) is provided with a connecting mounting groove 1 (31) and a connecting mounting groove 2 (32). The trash can (2) is installed in the mounting groove 1 (31), and the material transfer pipe (24) is installed in the mounting groove 2 (32).

3. The kitchen waste disposer according to claim 2, characterized in that: The trash can (2) is provided with a first feed port (22) and a first discharge port (23) at the upper and lower ends, and the material transfer pipe (24) is provided with a second discharge port (29) and a second feed port (28) at the upper and lower ends, the second feed port (28) is connected to the first discharge port (23), and the second discharge port (29) is connected to the opening of the storage device (4); the screw (25) is vertically installed in the material transfer pipe (24) through a fixing seat (27), and a sealing member (26) is provided between the screw (25) and the fixing seat (27).

4. The kitchen waste disposer according to claim 2, characterized in that: The main unit (3) is provided with a movably mounted upper cover assembly (1), the upper cover assembly (1) being used to open or close a feed port (22) of the trash can (2), the first end of the upper cover assembly (1) being hinged to the main unit (3), and a latch assembly (1) being provided between the second end of the upper cover assembly (1) and the main unit (3).

5. The kitchen waste disposer according to claim 4, characterized in that: The first latch assembly comprises a first latch slot (11) provided on the upper cover assembly (1) and a first latch buckle (35) provided on the host (3), wherein the first latch buckle (35) is arranged in cooperation with the first latch slot (11).

6. The kitchen waste disposer according to claim 5, characterized in that: The host (3) is provided with a slot one (310), the first end of the buckle one (35) is slidably arranged in the slot one (310), the second end of the buckle one (35) extends out of the slot one (310) and is arranged in cooperation with the slot one (11), and a return spring one (36) is fixed between the first end of the buckle one (35) and the slot one (310); and the host (3) is provided with a button (37) for driving the buckle one (35) to retract.

7. The kitchen waste disposer according to claim 2, characterized in that: The host (3) is provided with a third installation groove (33) on its outer wall. The storage device (4) is installed in the third installation groove (33). The inner wall of the third installation groove (33) is formed with an arc surface (34). The outer wall of the storage device (4) close to the arc surface (34) is formed with a second arc surface (42). The second arc surface (42) and the first arc surface (34) are arranged in coordination. A second latching assembly is provided between the storage device (4) and the third installation groove (33).

8. The food waste disposer according to claim 7, characterized in that: The first latch assembly comprises a second latch slot (43) provided on the storage device (4) and a second buckle (38) provided in the third installation slot (33), wherein the second buckle (38) is arranged in conjunction with the second latch slot (43).

9. The food waste disposer according to claim 8, characterized in that: A second slot (311) is provided in the third installation slot (33), a first end of the second clip (38) is slidably provided in the second slot (311), a second end of the second clip (38) extends out of the second slot (311) and is matched with the second clip (43), a second return spring (39) is fixed between the first end of the second clip (38) and the second slot (311); and a handle (41) is provided on the storage device (4).

10. The kitchen waste disposer according to claim 2, characterized in that: A heating component (6) is provided in the host (3), and the heating component (6) is arranged corresponding to the trash can (2). The heating component (6) is used to dry the trash in the trash can (2).

Citation Information

Patent Citations

  • Household garbage grinding and disinfecting device

    CN215032265U