Garbage disposal device

By designing a rotatable rotating bin and mounting components, the problem of difficult-to-remove deposits on the inner wall of the waste disposal unit was solved, achieving efficient waste shredding and cleaning, improving user experience and extending the unit's lifespan.

CN118950662BActive Publication Date: 2026-01-27GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Application Number
CN202411041122.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2026-01-27
Estimated Expiration
2044-07-31

AI Technical Summary

Technical Problem

In existing waste treatment devices, household waste with high cellulose and starch content tends to adhere to the inner wall of the bin after drying, making it difficult to remove and affecting cleanliness and service life.

Method used

A waste disposal device is designed, comprising a fixed component, a rotating bin, and an installation component. The rotating bin is driven by a drive structure, and the installation component contacts the inner wall of the rotating bin to achieve waste crushing or cleaning. The installation component is detachable for easy user operation.

Benefits of technology

It improved the user experience, extended the service life of the waste disposal unit, ensured the cleanliness of the inner walls, and improved the maintainability of the unit.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of electrical equipment, and discloses a garbage treatment device, which comprises a fixing assembly, a rotating barrel body rotatably arranged on the fixing assembly, a first driving structure connected with the rotating barrel body and capable of driving the rotating barrel body to rotate, and a mounting assembly comprising a framework detachably connected with the fixing assembly and a mounting part detachably connected with the framework, wherein the mounting part is used for mounting a cutter or a cleaning piece, and the cleaning piece is adapted to be in contact with the inner wall of the rotating barrel body when the mounting part is used for mounting the cleaning piece. When the inner wall of the rotating barrel body needs to be cleaned, the mounting part is used for mounting the cleaning piece, the cleaning piece is caused to be in contact with the inner wall of the rotating barrel body, the first driving structure drives the rotating barrel body to rotate, the framework and the mounting part are kept stationary, the cleaning piece mounted on the mounting part is caused to move relative to the rotating barrel body, and thus garbage on the inner wall of the rotating barrel body can be cleaned away. The use experience of a user can be improved, and the service life of the garbage treatment device is prolonged.
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Description

Technical Field

[0001] This invention relates to the field of electrical equipment technology, and more specifically to waste treatment devices. Background Technology

[0002] Most waste disposal devices in related technologies employ a mixing and drying process to reduce volume and deodorize. However, some household waste with high cellulose and starch content becomes a sticky, large-surface-area dry residue after drying, adhering to the inner wall of the waste disposer's bin. This residue is difficult to remove easily, severely affecting the cleanliness of the waste disposer's interior, thus reducing the user experience and shortening the disposer's lifespan. Summary of the Invention

[0003] In view of this, the present invention provides a waste disposal device to solve the problem that waste easily adheres to the inner wall of the waste disposal bin in related technologies.

[0004] This invention provides a waste disposal device, comprising:

[0005] Fixed components;

[0006] The rotating barrel body is rotatably mounted on the fixed assembly;

[0007] The first driving structure is connected to the rotating barrel body and can drive the rotating barrel body to rotate.

[0008] The mounting assembly includes a frame detachably connected to the fixing assembly and a mounting part detachably connected to the frame. The mounting part is used to mount a knife or cleaning component, and when the cleaning component is mounted, the cleaning component is adapted to contact the inner wall of the rotating barrel.

[0009] Beneficial Effects: When the waste disposal device processes waste, the mounting section houses the blades, and the first drive structure drives the rotating drum to rotate. Since the mounting assembly is installed on the fixed assembly, the frame and mounting section remain stationary. The blades mounted on the mounting section move relative to the rotating drum, thus pulverizing the waste inside. When cleaning the inner wall of the rotating drum is required, the mounting section installs a cleaning component, which contacts the inner wall of the rotating drum. The first drive structure drives the rotating drum to rotate, while the frame and mounting section remain stationary. The cleaning component mounted on the mounting section moves relative to the rotating drum, thus removing the waste from the inner wall of the rotating drum. This improves the user experience and extends the service life of the waste disposal device.

[0010] In one optional embodiment, the frame includes two crossbeams arranged opposite each other, with a telescopic component between the two crossbeams. When the telescopic component retracts, the crossbeams separate from the fixed component; when the telescopic component extends, the crossbeams are engaged with the fixed component.

[0011] Beneficial effects: When the telescopic assembly retracts, the crossbeam separates from the fixed assembly, allowing the user to remove the entire mounting assembly from the fixed assembly. When the telescopic assembly extends, the crossbeam engages with the fixed assembly. During operation, both the frame and the fixed assembly remain stationary. The telescopic assembly facilitates the user's disassembly and installation of the mounting assembly.

[0012] In one optional embodiment, the telescopic assembly includes two telescopic rods symmetrically arranged and spaced apart, and a second drive structure capable of driving the telescopic rods to move. Each of the two telescopic rods has a first end that is close to each other and a second end that is opposite to each other. The second end of the telescopic rod is connected to the crossbeam.

[0013] Beneficial effects: The telescopic component includes two telescopic rods that are symmetrically arranged and spaced apart, as well as a second drive structure that can drive the telescopic rods to move. Users can operate the second drive structure to move the telescopic rods, which in turn drives the frame to move so that the frame can engage or disengage from the fixed component, making it easier for users to operate.

[0014] In one optional embodiment, the second drive structure includes a first button and a first elastic component, the first elastic component being able to keep the telescopic rod in an extended state, and when the first button is pressed, it is able to overcome the elastic force of the first elastic component and retract the telescopic rod.

[0015] Beneficial effects: When it is necessary to detach the entire mounting assembly from the fixed assembly, pressing the first button overcomes the elastic force of the first elastic component, causing the telescopic rod to retract. The entire mounting assembly can then be detached from the fixed assembly, facilitating user operation. Releasing the first button allows the first elastic component to extend the telescopic rod, thereby driving the frame to move and engage with the fixed assembly.

[0016] In one alternative implementation, the first resilient component includes:

[0017] Two first magnetic blocks are symmetrically arranged at intervals. The first button has an inclined surface. When the first button is pressed, the inclined surface abuts against the first magnetic block.

[0018] A second magnetic block is fixedly disposed at the first end of the telescopic rod, and a first elastic element is provided between the second magnetic block and the first magnetic block;

[0019] When the magnetic attraction between the first magnetic block and the second magnetic block is greater than the elastic force of the first elastic element, the telescopic rod retracts.

[0020] Beneficial effects: When the first button is pressed, the inclined surface of the first button abuts against the first magnetic block, causing the first magnetic block to move closer to the second magnetic block and compressing the first elastic element. When the magnetic attraction between the first and second magnetic blocks is greater than the elastic force of the first elastic element, the first magnetic block attracts the second magnetic block to move towards the first magnetic block, causing the telescopic rod to retract. The second end of the telescopic rod connects to the crossbeam of the frame, shortening the distance between the two crossbeams and allowing the crossbeams to move away from the fixed assembly. The entire mounting assembly can then be removed. When the first button is released, the elastic force of the first elastic element causes the second magnetic block to extend the telescopic rod.

[0021] In one alternative embodiment, the telescopic assembly further includes a housing in which the telescopic rod is slidably disposed.

[0022] Beneficial effect: The housing design can limit and guide the telescopic rod.

[0023] In one alternative embodiment, the angle between the mounting portion and the frame is adjustable.

[0024] Beneficial effects: Since the angle between the mounting part and the frame is adjustable, it can be ensured that when the mounting part is equipped with a cleaning component, the cleaning component is in contact with the inner wall of the rotating barrel.

[0025] In one alternative embodiment, the frame includes two symmetrically arranged vertical booms connected to the lower end of the crossbeam, and the two vertical booms are sandwiched inside the mounting portion.

[0026] Beneficial effect: The two vertical booms are clamped inside the mounting section, which ensures that the frame can retract under the action of the telescopic components.

[0027] In one optional embodiment, the mounting part has a first slot on the side facing the frame, and the frame has a corresponding mounting through hole. The mounting part and the frame are fixedly connected by a snap button, which passes through the mounting through hole and snaps into the first slot.

[0028] Beneficial effect: The latch passes through the mounting hole on the frame and snaps into the first slot, which can securely connect the mounting part to the frame.

[0029] In one alternative embodiment, the waste disposal device includes a third drive structure for driving the latch to engage or disengage from the first slot.

[0030] Beneficial effect: The user can operate the third drive structure to make the button engage or disengage from the first slot, which facilitates user operation.

[0031] In one optional implementation, the third drive structure includes:

[0032] Second button;

[0033] The worm gear is connected to the second button via a connecting rod;

[0034] The snap-fit ​​structure includes a worm gear portion that engages with a worm plate, and the snap-fit ​​structure is provided with a third magnetic block;

[0035] The button is provided with a fourth magnetic block. When the buckle structure is rotated so that the third magnetic block and the fourth magnetic block are opposite each other, the magnetic force of the third magnetic block and the fourth magnetic block causes the button to be engaged in the first slot.

[0036] Beneficial effects: When the user presses the second button, it moves the connecting rod and the worm gear, which in turn causes the latching structure to rotate. When the latching structure rotates to the point where the third and fourth magnetic blocks are opposite each other, the magnetic force of the third and fourth magnetic blocks causes the latch to engage in the first slot. The user operation is simple and convenient.

[0037] In one optional embodiment, a second elastic component is provided between the second button and the linkage, the second elastic component comprising:

[0038] The fifth magnetic block is connected to the lower end of the second button;

[0039] The sixth magnetic block is located at the top of the connecting rod;

[0040] A second elastic element is disposed between the fifth magnetic block and the sixth magnetic block;

[0041] When the second button is pressed, if the magnetic attraction between the sixth magnetic block and the fifth magnetic block is greater than the elastic force of the second elastic element, the connecting rod will drive the worm gear to move upward.

[0042] Beneficial effects: When the second button is pressed, it moves the fifth magnetic block downwards. This reduces the distance between the fifth and sixth magnetic blocks, decreasing the elastic force of the second elastic element and increasing the magnetic force between them. When the magnetic attraction between the sixth and fifth magnetic blocks exceeds the elastic force of the second elastic element, the connecting rod drives the worm gear upwards, which in turn rotates the latching structure. When the latching structure rotates until the third and fourth magnetic blocks are aligned, their magnetic force causes the latch to engage in the first slot. The user operation is simple and convenient. When the second button is released, the latching structure returns to its original position.

[0043] In one alternative embodiment, the first slot has multiple slots, and the mounting part tilts at different angles when the button engages with different slots.

[0044] Beneficial effect: By setting multiple slots in the first slot, the angle of inclination of the mounting part is different when the button is engaged with different slots, which makes it easy to adjust the angle of inclination of the mounting part.

[0045] In one alternative embodiment, the fixing component includes an outer barrel body, and the rotating barrel body is rotatably disposed within the outer barrel body.

[0046] Beneficial effects: The rotating drum body is rotatably installed inside the outer drum body, which can protect the rotating drum body and prevent users from touching the high-speed rotating drum body.

[0047] In one alternative embodiment, the fixing component further includes a bottom cover, the first drive structure is fixedly disposed on the bottom cover, and the drive shaft of the first drive structure passes through the bottom wall of the outer barrel and is connected to the rotating barrel.

[0048] Beneficial effect: The bottom cover facilitates the fixed installation of the first drive structure.

[0049] In one alternative embodiment, the fixing assembly further includes a fixing frame fixed inside the outer barrel, and the skeleton is detachably installed within the fixing frame.

[0050] Beneficial effect: The fixture facilitates the installation of the frame.

[0051] In one alternative embodiment, the rotating barrel is provided with a slot, and the fixing frame includes an insertion part that inserts into the slot, with a ball bearing between the insertion part and the slot.

[0052] Beneficial effect: By incorporating ball bearings between the insertion part and the slot, it is ensured that the rotating barrel can rotate relative to the fixed frame.

[0053] In one alternative embodiment, the mounting bracket is connected to a handle.

[0054] Beneficial effect: The handle makes it easy for users to remove the fixing bracket from the outer barrel.

[0055] In one alternative embodiment, the waste disposal device further includes a top cover that is detachably connected to the fixing component or the frame.

[0056] Beneficial effects: The top cover prevents waste from splashing out during operation of the waste disposal unit. Because the top cover is detachably connected to the mounting components or frame, removing the top cover allows the mounting components to be removed from the mounting components.

[0057] In one alternative embodiment, the top cover is provided with a water inlet, which communicates with the interior of the rotating barrel.

[0058] Beneficial effects: By setting a water inlet on the top cover, which is connected to the inside of the rotating drum, water can be supplied to the inside of the rotating drum through the water inlet, making it easier to clean the rotating drum. Attached Figure Description

[0059] To more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0060] Figure 1 This is a cross-sectional view of a waste treatment device according to an embodiment of the present invention;

[0061] Figure 2 This is an exploded view of a waste treatment device according to an embodiment of the present invention;

[0062] Figure 3 This is a cross-sectional view of the retractable component;

[0063] Figure 4 This is a schematic diagram of the button structure;

[0064] Figure 5 This is a partial structural diagram of the installation section;

[0065] Figure 6 This is the front sectional view of the installation section;

[0066] Figure 7 This is a top sectional view of the installation section;

[0067] Figure 8 This is a partial cross-sectional view of the third drive structure;

[0068] Figure 9 This is a schematic diagram showing the engagement of the worm gear and the snap-fit ​​structure.

[0069] Figure 10 This is a schematic diagram of part of the fixing frame and skeleton.

[0070] Explanation of reference numerals in the attached figures:

[0071] 1. Rotating barrel body; 2. First drive structure; 3. Frame; 301. Crossbeam; 302. Vertical boom; 3021. Mounting through hole; 4. Telescopic assembly; 401. Telescopic rod; 4011. First rod segment; 4012. Second rod segment; 402. First button; 403. First magnet; 404. Second magnet; 405. First elastic element; 406. Housing; 407. First mounting groove; 408. Second mounting groove; 5. Mounting part; 501. 6. Slot; 701. Button; 702. Fourth magnetic block; 703. Second button; 704. Snail plate; 705. Snap-fit ​​structure; 706. Third magnetic block; 707. Fifth magnetic block; 708. Sixth magnetic block; 709. Second elastic element; 7000. Connecting rod; 8. Outer barrel body; 9. Bottom cover; 10. Connecting bolt; 11. Fixing bracket; 12. Insertion part; 13. Ball bearing; 14. Handle; 15. Top cover; 16. Fixing bolt; 17. Water inlet. Detailed Implementation

[0072] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0073] Most waste disposal devices in related technologies employ a mixing and drying process to reduce volume and deodorize. However, some household waste with high cellulose and starch content becomes a sticky, large-surface-area dry residue after drying, adhering to the inner wall of the waste disposer's bin. This residue is difficult to remove easily, severely affecting the cleanliness of the waste disposer's interior, thus reducing the user experience and shortening the disposer's lifespan.

[0074] The following is combined with Figures 1 to 10 The following describes embodiments of the present invention.

[0075] According to an embodiment of the present invention, a waste disposal device is provided, including a fixing component, a rotating bin 1, a first drive component, and an installation component.

[0076] The fixed component remains stationary when the waste disposal device is in operation; the rotating bin 1 is rotatably mounted on the fixed component; the first drive structure 2 is connected to the rotating bin 1 and can drive the rotating bin 1 to rotate; the mounting component includes a frame 3 detachably connected to the fixed component and a mounting part 5 detachably connected to the frame 3. The mounting part 5 is used to mount a blade or cleaning component. When the cleaning component is mounted on the mounting part 5, the cleaning component is adapted to contact the inner wall of the rotating bin 1.

[0077] In this embodiment, when the waste disposal device processes waste, the mounting part 5 is equipped with blades, and the first drive structure 2 drives the rotating barrel 1 to rotate. Since the mounting assembly is installed on the fixed assembly, both the frame 3 and the mounting part 5 remain stationary. The blades mounted on the mounting part 5 move relative to the rotating barrel 1, thereby crushing the waste inside the rotating barrel 1. When it is necessary to clean the inner wall of the rotating barrel 1, the mounting part 5 is equipped with a cleaning component, which contacts the inner wall of the rotating barrel 1. The first drive structure 2 drives the rotating barrel 1 to rotate, while the frame 3 and the mounting part 5 remain stationary. The cleaning component mounted on the mounting part 5 moves relative to the rotating barrel 1, thereby cleaning the waste off the inner wall of the rotating barrel 1. This improves the user experience and extends the service life of the waste disposal device.

[0078] In one embodiment, such as Figure 2 As shown, the frame 3 includes two crossbeams 301 arranged opposite to each other, and a telescopic component 4 is provided between the two crossbeams 301. When the telescopic component 4 is retracted, the crossbeams 301 are separated from the fixed component. When the telescopic component 4 is extended, the crossbeams 301 are inserted into the fixed component.

[0079] In this embodiment, when the telescopic component 4 retracts, the crossbeam 301 separates from the fixed component, allowing the user to remove the entire installation component from the fixed component. When the telescopic component 4 extends, the crossbeam 301 engages with the fixed component. During operation of the waste disposal device, both the frame 3 and the fixed component remain stationary. The telescopic component 4 facilitates the user's disassembly and installation of the installation component.

[0080] In one embodiment, such as Figure 3 As shown, the telescopic assembly 4 includes two telescopic rods 401 that are symmetrically arranged and spaced apart, and a second driving structure that can drive the telescopic rods 401 to move. Each of the two telescopic rods 401 has a first end that is close to each other and a second end that is opposite to each other. The second end of the telescopic rod 401 is connected to the crossbeam 301.

[0081] In this embodiment, the telescopic component 4 includes two telescopic rods 401 that are symmetrically arranged and spaced apart, and a second drive structure that can drive the telescopic rods 401 to move. The user can operate the second drive structure to move the telescopic rods 401, thereby driving the frame 3 to move so that the frame 3 can be engaged or disengaged from the fixed component, which makes the operation more convenient for the user.

[0082] In one embodiment not shown in the figure, the telescopic component 4 may include a spring disposed between the two crossbeams 301. When the user needs to remove the entire mounting component from the fixed component, the user can manually press the crossbeams 301 towards the middle of the two crossbeams 301 to compress the spring, thereby separating the crossbeams 301 from the fixed component and allowing the entire mounting component to be removed from the fixed component. When the mounting component needs to be installed onto the fixed component, the user first manually presses the crossbeams 301 towards the middle of the two crossbeams 301 to compress the spring. After alignment, the user releases the pressure on the crossbeams 301, and the spring force causes the crossbeams 301 to lock into the fixed component.

[0083] In one specific embodiment, the fixing component is a fixing frame 11, which is a cylindrical structure. The fixing frame 11 has a fixing groove inside. When the telescopic component 4 extends, the two ends of the crossbeam 301 are engaged in the fixing groove of the fixing frame 11.

[0084] In one embodiment, the second drive structure includes a first button 402 and a first elastic component. The first elastic component enables the telescopic rod 401 to remain extended. When the first button 402 is pressed, it can overcome the elastic force of the first elastic component and retract the telescopic rod 401.

[0085] In this embodiment, when it is necessary to detach the entire mounting assembly from the fixed assembly, pressing the first button 402 overcomes the elastic force of the first elastic component, causing the telescopic rod 401 to retract. The entire mounting assembly can then be detached from the fixed assembly, facilitating user operation. When the first button 402 is released, the first elastic component allows the telescopic rod 401 to extend, thereby driving the frame 3 to move and engage with the fixed assembly.

[0086] In one embodiment not shown in the figure, the second drive structure may include a gear and a rack, with one gear meshing with two racks simultaneously. The two racks are arranged symmetrically about the axis of the gear. The racks are connected to the telescopic rod 401. The gear may be connected to a crank handle. The user rotates the crank handle to rotate the gear, thereby driving the two racks to move simultaneously, thus moving the telescopic rod 401.

[0087] In one embodiment, the first elastic component includes a first magnetic block 403 and a second magnetic block 404. Two first magnetic blocks 403 are symmetrically arranged at intervals. A first button 402 has an inclined surface; when the first button 402 is pressed, the inclined surface abuts against the first magnetic block 403. The second magnetic block 404 is fixedly disposed at the first end of the telescopic rod 401. A first elastic element 405 is provided between the second magnetic block 404 and the first magnetic block 403. When the magnetic attraction between the first magnetic block 403 and the second magnetic block 404 is greater than the elastic force of the first elastic element 405, the telescopic rod 401 retracts.

[0088] In this embodiment, when the first button 402 is pressed, the inclined surface of the first button 402 abuts against the first magnetic block 403, causing the first magnetic block 403 to move closer to the second magnetic block 404 and compress the first elastic member 405. When the magnetic attraction between the first magnetic block 403 and the second magnetic block 404 is greater than the elastic force of the first elastic member 405, the first magnetic block 403 attracts the second magnetic block 404 to move towards the first magnetic block 403, causing the telescopic rod 401 to retract. The second end of the telescopic rod 401 is connected to the crossbeam 301 of the frame 3, shortening the distance between the two crossbeams 301, thereby causing the crossbeam 301 to leave the fixed assembly, after which the entire mounting assembly can be removed. When the first button 402 is released, the elastic force of the first elastic member 405 causes the second magnetic block 404 to extend the telescopic rod 401.

[0089] Specifically in one embodiment, such as Figure 3 As shown, the telescopic rod 401 includes a first rod segment 4011 and a second rod segment 4012. The cross-sectional area of ​​the second rod segment 4012 is larger than that of the first rod segment 4011. The first magnetic block 403 is disposed at the end of the first rod segment 4011 away from the second rod segment 4012, which can increase the contact area with the crossbeam 301.

[0090] In one embodiment, the telescopic assembly 4 further includes a housing 406, in which the telescopic rod 401 is slidably disposed.

[0091] In this embodiment, the housing 406 can limit and guide the telescopic rod 401.

[0092] Specifically, the housing 406 has a top wall with a first mounting hole, and the first button 402 is disposed in the first mounting hole.

[0093] The first button 402 is provided with a first step portion. When the first button 402 is not pressed, the first step portion abuts against the lower surface of the top wall. At this time, the first magnetic block 403 can prevent the first button 402 from falling.

[0094] Specifically, the housing 406 is provided with a first mounting groove 407 and a second mounting groove 408, which can limit the movement of the first magnetic block 403 and the second magnetic block 404. The telescopic rod 401 passes through the second mounting groove 408, and the first elastic member 405 passes through the first mounting groove 407.

[0095] In one embodiment, the angle between the mounting part 5 and the frame 3 can be adjusted.

[0096] In this embodiment, since the angle between the mounting part 5 and the frame 3 is adjustable, it can be ensured that when the mounting part 5 is equipped with a cleaning component, the cleaning component contacts the inner wall of the rotating barrel 1.

[0097] In one embodiment, the frame 3 includes two symmetrically arranged vertical booms 302, which are connected to the lower end of the crossbeam 301 and are sandwiched inside the mounting part 5.

[0098] In this embodiment, two vertical booms 302 are clamped inside the mounting portion 5, thereby ensuring that the frame 3 can retract under the action of the telescopic assembly 4.

[0099] In one embodiment, the mounting part 5 is provided with a first slot 501 on the side facing the frame 3, and the frame 3 is provided with a corresponding mounting through hole 3021. The mounting part 5 and the frame 3 are fixedly connected by a snap button 6, which passes through the mounting through hole 3021 and is snapped into the first slot 501.

[0100] In this embodiment, the snap button 6 passes through the mounting through hole 3021 on the frame 3 and snaps into the first slot 501, so that the mounting part 5 can be securely connected to the frame 3.

[0101] In one specific embodiment, the length of the latch 6 can be greater than the length of the mounting through hole 3021 plus the depth of the first slot 501, thereby ensuring that the mounting part 5 does not separate from the frame 3 when the frame 3 can retract under the action of the telescopic component 4.

[0102] It should be noted that when the button 6 passes through the mounting through hole 3021 on the frame 3 and is engaged in the first slot 501, the button 6 and the mounting through hole 3021 are also fixedly connected to ensure that the mounting part 5 will not rotate relative to the frame 3.

[0103] In one embodiment, the waste disposal device includes a third drive structure for driving the latch 6 to engage or disengage from the first slot 501.

[0104] In this embodiment, the user can manipulate the third drive structure to engage or disengage the button 6 from the first slot 501, facilitating user operation.

[0105] In one embodiment, such as Figure 7 and Figure 9 The third drive structure includes a second button 701, a worm gear 702, and a latching structure 703. The worm gear 702 is connected to the second button 701 via a connecting rod 708; the latching structure 703 includes a worm portion that cooperates with the worm gear 702, and the latching structure 703 is provided with a third magnet 704; a fourth magnet 601 is provided outside the button 6. When the latching structure 703 rotates to the point where the third magnet 704 and the fourth magnet 601 are opposite each other, the magnetic force of the third magnet 704 and the fourth magnet 601 causes the button 6 to engage in the first slot 501.

[0106] In this embodiment, when the user presses the second button 701, it drives the connecting rod 708 and the worm gear 702 to move, which in turn drives the buckle structure 703 to rotate. When the buckle structure 703 rotates to the point where the third magnetic block 704 and the fourth magnetic block 601 are opposite each other, the magnetic force of the third magnetic block 704 and the fourth magnetic block 601 causes the button 6 to be engaged in the first slot 501. The user operation is simple and convenient.

[0107] It should be noted that the axial position of the latching structure 703 remains unchanged, and the latching structure 703 will not move up or down when the worm plate 702 moves up and down.

[0108] It is understandable that the structure of the worm gear 702 can be the structure after the turbine is deployed.

[0109] In an alternative embodiment, the third drive structure may be omitted, and the user may manually engage or disengage the button 6 from the first slot 501.

[0110] Specifically in one embodiment, such as Figure 3 and Figure 8 A second elastic component is provided between the second button 701 and the connecting rod 708. The second elastic component includes a fifth magnet 705, a sixth magnet 706, and a second elastic element 707. The fifth magnet 705 is connected to the lower end of the second button 701; the sixth magnet 706 is located at the top of the connecting rod 708; the second elastic element 707 is located between the fifth magnet 705 and the sixth magnet 706. When the second button 701 is pressed, if the magnetic attraction between the sixth magnet 706 and the fifth magnet 705 is greater than the elastic force of the second elastic element 707, the connecting rod 708 drives the worm gear to move upward.

[0111] In this embodiment, when the second button 701 is pressed, the button causes the fifth magnetic block 705 to move downwards. At this time, the distance between the fifth magnetic block 705 and the sixth magnetic block 706 decreases, the elastic force of the second elastic element 707 decreases, and the magnetic force between the fifth magnetic block 705 and the sixth magnetic block 706 increases. When the magnetic attraction between the sixth magnetic block 706 and the fifth magnetic block 705 is greater than the elastic force of the second elastic element 707, the connecting rod 708 causes the worm gear to move upwards, thereby causing the latching structure 703 to rotate. When the latching structure 703 rotates to the point where the third magnetic block 704 and the fourth magnetic block 601 are opposite each other, the magnetic force of the third magnetic block 704 and the fourth magnetic block 601 causes the latch 6 to engage with the first slot 501. The user operation is simple and convenient. When the second button 701 is released, the latching structure 703 rotates back.

[0112] In one embodiment, the first slot 501 has multiple slots, and the mounting part 5 tilts at different angles when the button 6 engages with different slots.

[0113] In this embodiment, by providing multiple slots in the first slot 501, the mounting part 5 tilts at different angles when the button 6 engages with different slots, which facilitates the adjustment of the tilt angle of the mounting part 5.

[0114] In one embodiment, the fixing component includes an outer barrel body 8, and a rotating barrel body 1 is rotatably disposed within the outer barrel body 8.

[0115] In this embodiment, the rotating barrel 1 is rotatably disposed inside the outer barrel 8, and the outer barrel 8 can protect the rotating barrel 1 and prevent the user's hand from touching the high-speed rotating barrel 1.

[0116] In one embodiment, the fixing component further includes a bottom cover 9, a first drive structure 2 is fixedly disposed on the bottom cover 9, and the drive shaft of the first drive structure 2 passes through the bottom wall of the outer barrel 8 and is connected to the rotating barrel 1.

[0117] In this embodiment, the bottom cover 9 facilitates the fixed installation of the first drive structure 2.

[0118] In one specific embodiment, the drive shaft of the first drive structure 2 is provided with a connecting bolt 10, which is inserted into the rotating barrel 1, so that the rotating barrel 1 can be removed from the outer barrel 8.

[0119] In one embodiment, the fixing component further includes a fixing frame 11, which is fixed inside the outer barrel 8, and the frame 3 is detachably installed inside the fixing frame 11.

[0120] In this embodiment, the mounting bracket 11 facilitates the installation of the frame 3.

[0121] Specifically, the top of the outer barrel 8 is at a higher height than the top of the rotating barrel 1, and the fixing bracket 11 is located at the top of the rotating barrel 1 and inside the outer barrel 8.

[0122] In one embodiment, the rotating barrel 1 is provided with a slot, and the fixing frame 11 includes an insertion part 1101 that is inserted into the slot, and a ball bearing 12 is provided between the insertion part 1101 and the slot.

[0123] In this embodiment, by providing ball bearings 12 between the insertion part 1101 and the slot, it can be ensured that the rotating barrel 1 can rotate relative to the fixed frame 11.

[0124] In one embodiment, the mounting bracket 11 is connected to a handle 13.

[0125] In this embodiment, the handle 13 is provided to facilitate the user to remove the fixing frame 11 from the outer barrel 8.

[0126] In one specific embodiment, the handle 13 is hinged to the fixing frame 11. When the fixing frame 11 needs to be removed from the outer barrel 8, the handle 13 is rotated so that the user can hold the handle 13. When the fixing frame 11 is installed inside the outer barrel 8, the handle 13 fits snugly against the fixing frame 11 without taking up space.

[0127] In one specific embodiment, a ball bearing 12 is provided between the insertion part 1101 of the fixing frame 11 and the slot of the rotating barrel 1, so that the fixing frame 11 and the rotating barrel 1 can be connected together, and the rotating barrel 1 can rotate relative to the fixing frame 11. When the fixing frame 11 is taken out by the handle 13, the rotating barrel 1 can be lifted out together, making it convenient to pour out the dirt inside the rotating barrel 1.

[0128] In one embodiment, the waste disposal device further includes a top cover 14, which is detachably connected to a fixing component or frame 3.

[0129] In this embodiment, the top cover 14 is designed to prevent waste from splashing out when the waste disposal device is in operation. Since the top cover 14 is detachably connected to the fixing component or frame 3, the mounting component can be removed from the fixing component after the top cover 14 is removed.

[0130] In one specific embodiment, the top cover 14 is provided with a fixing bolt 1401, which is inserted into the fixing frame 11 or the skeleton 3.

[0131] In one embodiment, the top cover 14 is provided with a water inlet 1402, which is connected to the interior of the rotating barrel 1.

[0132] In this embodiment, by providing a water inlet 1402 on the top cover 14, the water inlet 1402 is connected to the interior of the rotating barrel 1, and water can be supplied to the interior of the rotating barrel 1 through the water inlet 1402, which facilitates cleaning of the rotating barrel 1.

[0133] Specifically, when the rotating barrel 1 needs to be cleaned, the mounting part 5 is installed with the cleaning component. After adjusting the angle of the mounting part 5, the mounting part 5 is fixed to the frame 3. The frame 3 and the telescopic component 4 are fixed together in the fixing frame 11. Then, the fixing bolt 1401 of the top cover 14 is inserted into the fixing frame 11 or the frame 3. Water is introduced through the water inlet 1402 of the top cover 14. After the water level is appropriate, the water injection process is stopped. At this time, the first drive structure 2 works to drive the rotating barrel 1 to rotate. The cleaning component contacts the inner wall of the rotating barrel 1 to clean the rotating barrel 1. After cleaning, the top cover 14 is removed from the fixing component or the frame 3. The first button 402 is pressed to remove the mounting component from the fixing component. Then, the fixing frame 11 and the rotating barrel 1 are removed through the handle 13, and the dirt inside is poured out.

[0134] Although embodiments of the invention have been described in conjunction with the accompanying drawings, those skilled in the art can make various modifications and variations without departing from the spirit and scope of the invention, and such modifications and variations all fall within the scope defined by the appended claims.

Claims

1. A waste disposal device, characterized in that, include: Fixed components; The rotating barrel body (1) is rotatably mounted on the fixed assembly; The first driving structure (2) is connected to the rotating barrel (1) and can drive the rotating barrel (1) to rotate; The mounting assembly includes a frame (3) detachably connected to the fixing assembly and a mounting part (5) detachably connected to the frame (3). The mounting part (5) is used to mount a knife or cleaning component. When the cleaning component is mounted on the mounting part (5), the cleaning component is adapted to contact the inner wall of the rotating barrel (1). The mounting part (5) has a first slot (501) on the side facing the frame (3), and the frame (3) has a corresponding mounting through hole (3021). The mounting part (5) and the frame (3) are fixedly connected by a button (6). The button (6) passes through the mounting through hole (3021) and is engaged in the first slot (501). The waste disposal device includes a third driving structure. The third driving structure is used to drive the button (6) to engage or disengage from the first slot (501). The third driving structure includes: Second button (701); The worm gear (702) is connected to the second button (701) via a connecting rod (708); The snap-fit ​​structure (703) includes a worm gear portion that cooperates with the worm plate (702), and the snap-fit ​​structure (703) is provided with a third magnet (704). The button (6) is provided with a fourth magnetic block (601). When the buckle structure (703) is rotated to the point where the third magnetic block (704) is opposite to the fourth magnetic block (601), the magnetic force of the third magnetic block (704) and the fourth magnetic block (601) causes the button (6) to be snapped into the first slot (501). A second elastic component is provided between the second button (701) and the connecting rod (708), the second elastic component including: The fifth magnetic block (705) is connected to the lower end of the second button (701); The sixth magnetic block (706) is disposed at the top of the connecting rod (708); The second elastic element (707) is disposed between the fifth magnetic block (705) and the sixth magnetic block (706); When the second button (701) is pressed, when the magnetic attraction between the sixth magnetic block (706) and the fifth magnetic block (705) is greater than the elastic force of the second elastic element (707), the connecting rod (708) drives the worm gear to move upward.

2. The waste treatment device according to claim 1, characterized in that, The frame (3) includes two beams (301) arranged opposite to each other, and a telescopic component (4) is provided between the two beams (301). When the telescopic component (4) retracts, the beams (301) separate from the fixed component. When the telescopic component (4) extends, the beams (301) are inserted into the fixed component.

3. The waste treatment device according to claim 2, characterized in that, The telescopic assembly (4) includes two telescopic rods (401) arranged symmetrically and spaced apart, and a second driving structure capable of driving the telescopic rods (401) to move. The two telescopic rods (401) each have a first end that is close to each other and a second end that is opposite to each other. The second end of the telescopic rod (401) is connected to the crossbeam (301).

4. The waste treatment device according to claim 3, characterized in that, The second drive structure includes a first button (402) and a first elastic component. The first elastic component can keep the telescopic rod (401) in an extended state. When the first button (402) is pressed, it can overcome the elastic force of the first elastic component and retract the telescopic rod (401).

5. The waste treatment device according to claim 4, characterized in that, The first elastic component includes: Two first magnetic blocks (403) are symmetrically arranged at intervals. The first button (402) has a bevel. When the first button (402) is pressed, the bevel abuts against the first magnetic block (403). The second magnetic block (404) is fixedly disposed at the first end of the telescopic rod (401), and a first elastic element (405) is provided between the second magnetic block (404) and the first magnetic block (403). When the magnetic attraction between the first magnetic block (403) and the second magnetic block (404) is greater than the elastic force of the first elastic element (405), the telescopic rod (401) retracts.

6. The waste treatment apparatus according to any one of claims 3 to 5, characterized in that, The telescopic assembly (4) also includes a housing (406), in which the telescopic rod (401) is slidably disposed.

7. The waste treatment apparatus according to any one of claims 2 to 5, characterized in that, The angle between the mounting part (5) and the frame (3) can be adjusted.

8. The waste treatment apparatus according to any one of claims 2 to 5, characterized in that, The frame (3) includes two symmetrically arranged vertical booms (302), which are connected to the lower end of the crossbeam (301). The two vertical booms (302) are sandwiched inside the mounting part (5).

9. The waste treatment device according to claim 8, characterized in that, The first slot (501) has multiple slots, and the mounting part (5) tilts at different angles when the button (6) engages with different slots.

10. The waste disposal apparatus according to any one of claims 1 to 5 and 9, characterized in that, The fixing component includes an outer barrel (8), and the rotating barrel (1) is rotatably disposed inside the outer barrel (8).

11. The waste treatment device according to claim 10, characterized in that, The fixing component also includes a bottom cover (9), the first driving structure (2) is fixedly disposed on the bottom cover (9), and the driving shaft of the first driving structure (2) passes through the bottom wall of the outer barrel (8) and is connected to the rotating barrel (1).

12. The waste treatment device according to claim 10, characterized in that, The fixing component also includes a fixing frame (11), which is fixed inside the outer barrel body (8), and the frame (3) is detachably installed inside the fixing frame (11).

13. The waste treatment device according to claim 12, characterized in that, The rotating barrel (1) is provided with a slot, and the fixing frame (11) includes an insertion part (1101) that is inserted into the slot, and a ball bearing (12) is provided between the insertion part (1101) and the slot.

14. The waste treatment device according to claim 12, characterized in that, The fixing frame (11) is connected to a handle (13).

15. The waste treatment apparatus according to any one of claims 1 to 5, 9, and 11 to 14, characterized in that, The waste disposal device also includes a top cover (14), which is detachably connected to the fixing component or the frame (3).

16. The waste treatment device according to claim 15, characterized in that, The top cover (14) is provided with a water inlet (1402), which is connected to the interior of the rotating barrel (1).

Citation Information

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