Intelligent kitchen waste treatment equipment
The combined structure of the rotating crushing disc and the fixed grinding ring and the high-hardness centrifugal block design solves the problems of low efficiency in crushing hard objects and grease adhesion in the food waste disposer, achieves efficient crushing and convenient cleaning, and improves the reliability and convenience of the equipment.
Patent Information
- Application Number
- CN202510885953.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-30
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2045-06-30
AI Technical Summary
Existing household food waste disposers are inefficient and prone to getting stuck when processing hard garbage. Grease adhesion makes cleaning difficult, affecting ease of use.
It adopts a combined structure of a rotating crushing disc and a fixed grinding ring. The crushing disc is equipped with a crushing hammer and a stepped edge. Combined with high-hardness centrifugal blocks and magnetic blocks, efficient crushing is achieved by controlling the motor speed. The auxiliary water channel and sealing liquid disc are designed for cleaning.
It improves the efficiency of crushing hard objects, reduces jamming failures, reduces maintenance costs, and reduces grease residue through hot water cleaning, which improves the ease of use of the equipment.
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Figure CN120618599A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of garbage processing equipment, in particular to intelligent kitchen waste processing equipment. Background Art
[0002] Restaurant waste, also known as kitchen waste, refers to perishable organic waste generated by household activities, catering services, and food processing. This includes food scraps, fruit and vegetable peels, and expired food. Due to its high moisture content, high organic matter content, and perishability, this waste has become a persistent problem in modern urban governance. If not properly managed, this type of waste can trigger multiple environmental risks. The leachate produced by its decay not only carries pollutants such as heavy metals and pathogens, but also directly threatens soil and groundwater safety if it seeps into the ground. Once in water, it can trigger algal blooms due to eutrophication, damaging aquatic ecosystems.
[0003] In the existing technology, the treatment of food waste is mainly divided into two categories: household and enterprise types according to application scenarios and technical specifications. Among them, household food waste disposers are embedded appliances in modern kitchens and are usually installed under the sink in the home kitchen. When food residues need to be processed, the user only needs to start the food waste disposer and gradually pour the food waste into the sink. The food waste enters the disposer cavity along the sink and is violently hit by the rotating hammer in the cavity, thereby breaking up large pieces of garbage. The fragments are then thrown to the cavity wall under the action of centrifugal force, and rub and cut with the grinding ring fixed on the cavity wall. Finally, the food waste is crushed into fine particles and discharged into the sewer under the drive of water.
[0004] At present, when the crushing hammer of household food waste disposers processes food waste with higher hardness such as ribs and shells, the impact energy is locally absorbed rather than effectively diffused, resulting in the hard objects not being fully crushed in the first link and entering the grinding ring for further crushing. However, the hard objects that are not fully crushed exceed the designed crushing strength of the grinding ring, which ultimately leads to the food waste disposer not only being unable to effectively process them, but may also get stuck or even shut down. On the other hand, grease will condense and adhere to various tiny corners inside the food waste disposer, which forces users to clean it regularly, reducing the convenience of using the food waste disposer in a home environment and is not conducive to the promotion of food waste disposers.
[0005] In view of this, in order to overcome the above technical problems, the present invention proposes an intelligent food waste processing device. Summary of the Invention
[0006] In order to overcome the shortcomings of the existing technology, the present invention adopts a technical solution to solve the technical problems thereof: the intelligent kitchen waste processing device of the present invention includes a housing and a drive motor installed at the bottom of the housing, the mounting opening opened on the top of the housing is used for mounting and connecting with the sink opening, and further includes:
[0007] A rotating crushing disk, the rotating crushing disk is fixedly connected to the motor shaft of the driving motor, the rotating crushing disk comprises a crushing disk body, a plurality of crushing hammers are rotatably connected to the crushing disk body, and the crushing hammers have stepped crushing cutting edges on their surfaces;
[0008] A fixed grinding ring, the fixed grinding ring is fixedly connected to the inner wall of the housing, and the fixed grinding ring is provided with multiple groups of grinding holes;
[0009] Auxiliary water channel, the shell is provided with a water inlet above the rotating crushing disk, the auxiliary water channel installed in the water inlet is connected to the household water channel, and the on-off valve of the auxiliary water channel and the drive motor are connected to the same control system.
[0010] Preferably, the breaking hammer includes a rotating column rotatably connected to the breaking disc body and a breaking hammer body fixedly connected to the rotating column. The length of the breaking hammer body is greater than 1 / 2 of the radius of the breaking disc body. The breaking disc body is fixedly connected with a buffer cone within the rotation range of the corresponding breaking hammer.
[0011] Preferably, a centrifugal groove is opened in the middle section of the crushing hammer, and a centrifugal block is installed in the centrifugal groove in a sliding seal. The centrifugal block is made of a high-hardness metal material with a higher hardness than the crushing hammer, and the centrifugal block is connected to the inner wall of the centrifugal groove through an elastic mechanism.
[0012] Preferably, the speed of the driving motor includes a normal speed state and a high speed state under the control of the control system. When the driving motor is in the normal speed state, the outer surface of the centrifugal block is flush with the surface of the crushing hammer. Only when the driving motor is in the high speed state can the centrifugal block overcome the elastic force of the elastic mechanism and extend outward.
[0013] Preferably, when the centrifugal block extends outward to its maximum length, it forms another stepped structure with the lower and upper parts of the crushing hammer.
[0014] Preferably, magnetic blocks are embedded in the inner wall of the centrifugal groove near the outlet and the outer wall of the centrifugal block away from the outlet of the centrifugal groove. When the centrifugal block extends outward to its maximum length, the magnetic blocks on the inner wall of the centrifugal groove are attracted to the corresponding magnetic blocks on the centrifugal block.
[0015] Preferably, a number of inwardly extending grinding blocks are evenly and fixedly connected to the inner side of the fixed grinding ring in a circumferential direction. The connection position of the grinding blocks is higher than the hammer body height of the crushing hammer, and the height difference between the grinding blocks and the crushing hammer is less than 10 mm.
[0016] Preferably, the shell is provided with a water outlet below the rotating crushing disk, and the motor shaft of the drive motor is rotatably and sealingly connected to a liquid sealing disk located below the water outlet, and the liquid sealing disk is a truncated cone structure with a small upper portion and a large lower portion.
[0017] Preferably, the lower portion of the liquid sealing disk is fixedly connected to the extended end of the telescopic mechanism, the power end of the telescopic mechanism is fixedly connected in the housing, and the outer edge of the liquid sealing disk is slidably and sealingly connected to the inner wall of the housing.
[0018] Preferably, the power end of the telescopic mechanism, the on-off valve of the auxiliary water channel and the drive motor are connected to the same control system. Under the control of the control system, the drive motor also includes a cleaning state at a low speed. At this time, the telescopic mechanism of the liquid sealing plate is also started at the same time, pushing the liquid sealing plate to move up above the water outlet.
[0019] The beneficial effects of the present invention are as follows:
[0020] 1. When high-hardness food waste such as shells or bone joints is trapped between the crushing hammer and the fixed grinding ring, causing the equipment to stop, the control system switches the drive motor to high-speed rotation mode. In this state, the high-hardness metal centrifugal block in the centrifugal groove in the middle section of the crushing hammer overcomes the resistance of the elastic mechanism and moves outward along the centrifugal groove under the action of the sharply increased centrifugal force. Its outward stroke breaks through the contour of the crushing hammer body to form a protruding impact part, which significantly increases the mass moment of the impact end. The high-hardness material concentrates kinetic energy on the microscopic defects of the hard object at the moment of impact, and combined with the newly formed composite step structure, it forces the hard object to be successfully crushed in the shear-compression composite stress field.
[0021] 2. When the treatment is completed and the cavity needs to be cleaned, the drive motor switches to a low-speed cleaning state, the auxiliary water channel on-off valve is opened, and the telescopic mechanism pushes the sealing liquid disc to move above the water outlet. At this time, the hot water in the household water channel is injected from the water inlet along the auxiliary water channel. The water flow is affected by the rotation of the crushing disc to form a vortex turbulence, thereby peeling off the grease attached to the relevant mechanisms under the combined action of temperature and water flow impact, and then moves down again on the sealing liquid disc. After the water outlet is opened, the precipitated debris is carried away and flows out through the water outlet along the conical guide structure of the sealing liquid disc, thereby eliminating cleaning dead corners. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] The present invention will be further described below with reference to the accompanying drawings.
[0023] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0024] Figure 2 It is a three-dimensional structural cross-sectional view of the present invention;
[0025] Figure 3 is a perspective schematic diagram of the rotating crushing disk and related structures of the present invention;
[0026] Figure 4 It is a three-dimensional structural cross-sectional view of the crushing hammer and related structures of the present invention.
[0027] In the figure: 1. Shell; 2. Driving motor; 3. Mounting port; 4. Rotating crushing disc; 5. Motor shaft; 6. Crushing disc body; 7. Crushing hammer; 8. Fixed grinding ring; 9. Grinding hole; 10. Water inlet; 11. Auxiliary water channel; 12. Rotating column; 13. Crushing hammer body; 14. Buffer cone; 15. Centrifugal groove; 16. Centrifugal block; 17. Elastic mechanism; 18. Magnetic block; 19. Grinding block; 20. Water outlet; 21. Liquid sealing disc; 22. Telescopic mechanism. DETAILED DESCRIPTION
[0028] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention will be further described below in conjunction with the accompanying drawings and specific implementation methods.
[0029] like Figures 1 to 4 As shown, an embodiment of the present invention provides an intelligent kitchen waste processing device, comprising a housing 1, and a drive motor 2 installed at the bottom of the housing 1, a mounting opening 3 opened on the top of the housing 1 for mounting and connecting with a sink opening, and further comprising: A rotating crushing disk 4 is fixedly connected to the motor shaft 5 of the drive motor 2. The rotating crushing disk 4 includes a crushing disk body 6, and a plurality of crushing hammers 7 are rotatably connected to the crushing disk body 6. The crushing hammers 7 have stepped crushing edges on their surfaces. A fixed grinding ring 8, which is fixedly connected to the inner wall of the housing 1 and has multiple groups of grinding holes 9; Auxiliary water channel 11, the shell 1 is provided with a water inlet 10 above the rotating crushing disk 4, the auxiliary water channel 11 installed in the water inlet 10 is connected to the household water channel, and the on-off valve of the auxiliary water channel 11 and the drive motor 2 are connected to the same control system.
[0030] A rotating crushing disk 4 is fixedly connected to the motor shaft 5 of the drive motor 2. The rotating crushing disk 4 includes a crushing disk body 6, and a plurality of crushing hammers 7 are rotatably connected to the crushing disk body 6. The crushing hammers 7 have stepped crushing edges on their surfaces.
[0031] A fixed grinding ring 8, which is fixedly connected to the inner wall of the housing 1 and has multiple groups of grinding holes 9;
[0032] Auxiliary water channel 11, the shell 1 is provided with a water inlet 10 above the rotating crushing disk 4, the auxiliary water channel 11 installed in the water inlet 10 is connected to the household water channel, and the on-off valve of the auxiliary water channel 11 and the drive motor 2 are connected to the same control system.
[0033] As an embodiment of the present invention, the crushing hammer 7 includes a rotating column 12 rotatably connected to the crushing disc body 6 and a crushing hammer body 13 fixedly connected to the rotating column 12. The length of the crushing hammer body 13 is greater than 1 / 2 of the radius of the crushing disc body 6. The crushing disc body 6 is fixedly connected with a buffer cone 14 within the rotation range of the corresponding crushing hammer 7.
[0034] When the user is processing food waste, after turning on the start switch installed on the sink, he only needs to send the food waste into the shell 1 along the sink opening through the installation opening 3 of the shell 1. At this time, the rotating crushing disk 4 is driven by the motor shaft 5 of the drive motor 2 and is in a constant speed rotation state. When large pieces of food waste fall onto the rotating crushing disk 4, they are first sheared and crushed in multiple stages by the stepped crushing edges on the crushing hammer body 13, which is longer than 1 / 2 of the radius of the crushing disk body 6. In addition, the length advantage of the crushing hammer body 13 enables the rotation speed to be increased proportionally when using the same gear drive motor 2. Ultimately, the crushing effect of the crushing hammer 7 on hard objects in food waste such as bones is immediately improved, forcing them to be broken into small particles. The fragments then enter the fine grinding area between the crushing hammer 7 and the fixed grinding ring 8. The crushing hammer 7 presses the garbage fragments to the surface of the fixed grinding ring 8, and the grinding ring opened on the ring surface The edge of the grinding hole 9 cuts the material for a second time, making the food waste particles further refined, and finally passing through the gap between the rotating crushing disk 4 and the fixed grinding ring 8 to complete the processing of the food waste; in this process, the auxiliary water channel 11 is started synchronously with the drive motor 2. After the on-off valve of the auxiliary water channel 11 is opened, the water of the domestic water channel flows through the water inlet 10 to form a vortex flushing in the shell 1, thereby taking away the crushed food waste particles while also taking away some of the grease and debris remaining in the rotating crushing disk 4 and the fixed grinding ring 8 during the crushing and grinding of the food waste; during the grinding process, the water flow can also cool down to a certain extent and act as an impact buffer between the hard objects in the food waste and the crushing hammer 7 and other mechanisms, thereby improving the service life of the present application and facilitating sufficient crushing and grinding of the food waste put therein, thereby ensuring that the particle size of the food waste finally discharged meets the standard and meets the requirements of the municipal pipe network.
[0035] As an embodiment of the present invention, a centrifugal groove 15 is opened in the middle section of the crushing hammer 7, and a centrifugal block 16 is installed in the centrifugal groove 15 in a sliding seal. The centrifugal block 16 is made of a high-hardness metal material with a harderness higher than that of the crushing hammer 7. The centrifugal block 16 is connected to the inner wall of the centrifugal groove 15 through an elastic mechanism 17.
[0036] As an embodiment of the present invention, the rotational speed of the drive motor 2 includes a normal speed state and a high speed state under the control of the control system. When the drive motor 2 is in the normal speed state, the outer surface of the centrifugal block 16 is flush with the surface of the crushing hammer 7. Only when the drive motor 2 is in the high speed state can the centrifugal block 16 overcome the elastic force of the elastic mechanism 17 and extend outward.
[0037] As an embodiment of the present invention, when the centrifugal block 16 extends outward to its maximum length, it forms another stepped structure with the lower and upper parts of the crushing hammer 7 .
[0038] As an embodiment of the present invention, magnetic blocks 18 are embedded on the inner wall of the centrifugal groove 15 near the outlet and on the outer wall of the centrifugal block 16 away from the outlet of the centrifugal groove 15. When the centrifugal block 16 extends outward to its maximum length, the magnetic blocks 18 on the inner wall of the centrifugal groove 15 are attracted to the corresponding magnetic blocks 18 on the centrifugal block 16.
[0039] During operation, a centrifugal groove 15 is provided in the middle section of the crushing hammer 7, in which a high-hardness alloy centrifugal block 16 is installed in a sliding and sealed manner. When the driving motor 2 is in the normal speed state, the elastic mechanism 17 in the centrifugal groove 15 makes the surface of the centrifugal block 16 flush with the hammer body. When the input food waste is mainly soft, the cooperation between the rotating crushing disk 4 and the fixed grinding ring 8 driven at normal speed performs conventional crushing processing on it. When high-hardness food waste such as shells or bone joints is trapped between the crushing hammer 7 and the fixed grinding ring 8, causing the equipment to stop, the control system immediately triggers the instantaneous reversal of the driving motor 2 to make the hard objects escape from the bite area, and then switches the driving motor 2 to the high-speed rotation mode; in this state, the high-hardness metal centrifugal block 16 in the centrifugal groove 15 in the middle section of the crushing hammer 7 overcomes the resistance of the elastic mechanism 17 and moves outward along the centrifugal groove 15 under the action of the sharply increased centrifugal force, and its outward extension stroke breaks through the outline of the crushing hammer 7 body to form a protruding impact part. At the same time, the protruding part of the centrifugal block 16 and the original cutting edge of the crushing hammer 7 form a composite stepped structure; when the centrifugal block When 16 reaches the maximum extended position, the magnetic attraction component embedded in the inner wall of the centrifugal trough 15 outlet and the tail of the hard block produces a strong adsorption effect within the critical distance, instantly locking the hard block to form a rigid impact unit, and the extended centrifugal hard block 16 significantly increases the mass moment of the impact end. The high-hardness material concentrates the kinetic energy on the microscopic defects of the hard object at the moment of impact, and cooperates with the newly formed composite step structure to force the hard object to be successfully crushed in the shear-extrusion composite stress field; and when the food waste processing work is completed, the drive motor 2 stops, and the elastic mechanism 17 pulls the drive hard block back along the centrifugal trough 15; through the above-mentioned segmented intelligent continuous processing, the crushing efficiency of the high-hardness food waste in this application is greatly improved without significantly increasing the power load of the drive motor 2, and the maintenance cost caused by the jamming failure of the hard object is reduced.
[0040] As an embodiment of the present invention, a number of inwardly extending grinding blocks 19 are evenly and fixedly connected to the inner side of the fixed grinding ring 8 in the circumferential direction. The connection position of the grinding blocks 19 is higher than the hammer body height of the crushing hammer 7, and the height difference between the grinding blocks 19 and the crushing hammer 7 is less than 10 mm.
[0041] During operation, a high-position grinding block 19 is added to the circumference of the inner side of the fixed grinding ring 8 to form a three-dimensional shear network with the dynamic crushing hammer 7: when the driving motor 2 drives the crushing hammer 7 to rotate, the hammer body mainly performs horizontal centrifugal motion, and the grinding block 19, whose connection position is higher than the hammer body and the height difference is less than 10mm, is vertically suspended above the hammer trajectory; this height design makes the gap between the sweeping surface of the hammer blade and the bottom surface of the grinding block 19 form a progressive compression zone - after the food waste enters, the stepped blade of the crushing hammer 7 performs the initial crushing, and the fragments are thrown toward the fixed grinding ring 8 by centrifugal force. At this time, the slight height difference between the grinding block 19 and the crushing hammer 7 forces the fragments to encounter further crushing of the grinding block 19 during the rising process. In particular, when shell flake garbage enters upright, its edge is squeezed between the bottom surface of the grinding block 19 and the rotating upper surface of the hammer. The critical height difference of less than 10mm ensures that the flakes withstand sufficient bending moment and break.
[0042] As an embodiment of the present invention, the shell 1 is provided with a water outlet 20 below the rotating crushing disk 4, and the motor shaft 5 of the drive motor 2 is rotatably sealed and connected to a liquid sealing disk 21 located below the water outlet 20. The liquid sealing disk 21 is a truncated cone structure with a small upper part and a large lower part.
[0043] As an embodiment of the present invention, the bottom of the liquid sealing disk 21 is fixedly connected to the protruding end of the telescopic mechanism 22, the power end of the telescopic mechanism 22 is fixedly connected in the shell 1, and the outer edge of the liquid sealing disk 21 is slidingly and sealingly connected to the inner wall of the shell 1.
[0044] As an embodiment of the present invention, the power end of the telescopic mechanism 22 is connected to the same control system as the on-off valve of the auxiliary water channel 11 and the drive motor 2. Under the control of the control system, the drive motor 2 also includes a cleaning state at a low speed. At this time, the telescopic mechanism 22 of the liquid sealing disk 21 is also started at the same time, pushing the liquid sealing disk 21 to move up to above the water outlet 20.
[0045] During operation, when the equipment processes food waste, the driving motor 2 drives the rotating crushing disc 4 to rotate. At this time, the telescopic mechanism 22 is in a retracted state, and the truncated cone-shaped sealing disc 21 falls to the bottom of the water outlet 20 by its own weight. Its tapered outer wall with a small upper part and a large lower part forms a tight sliding seal with the inner wall of the shell 1, completely blocking the grinding sewage from seeping down the motor shaft 5; when the treatment is completed and the cavity needs to be cleaned, the driving motor 2 switches to a low-speed cleaning state, the on-off valve of the auxiliary water channel 11 is opened, and the telescopic mechanism 22 pushes the sealing disc 21 to move above the water outlet 20. At this time, the hot water in the household water channel is injected from the water inlet 10 along the auxiliary water channel 11, and the water flow is affected by the crushing disc 10. The rotation effect forms a vortex turbulence, which peels off the grease attached to the relevant mechanisms under the combined action of temperature and water flow impact, and moves down again in the sealing liquid plate 21. After the water outlet 20 is opened, the precipitated debris is carried away and flows out through the water outlet 20 along the conical guide structure of the sealing liquid plate 21, thereby eliminating cleaning dead corners. Through the above-mentioned targeted improvements to the current situation of high oil content in Chinese household kitchen waste, the effect of reducing oil residue in the equipment and extending the maintenance cycle of the household when using the equipment is achieved, alleviating the concerns of normal households in using this application, and helping to increase the willingness of Chinese families to use kitchen waste disposers, thereby facilitating the elimination of kitchen waste at the source.
[0046] It is worth noting that the elastic mechanism 17 and the telescopic mechanism 22 mentioned in this application are conventional mechanical structural components. For example, the elastic mechanism 17 can be as shown in the attached Figure 4 The spiral spring telescopic rod shown in the figure, the telescopic mechanism 22 can be as shown in the figure. Figure 2 The electric push rod shown can also be other common existing technologies, as long as it can achieve the functions to be achieved in the corresponding scenarios of this application.
[0047] The above shows and describes the basic principles, main features, and significant advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above specific embodiments. Without departing from the spirit and scope of the present invention, the present invention may be subject to various changes and improvements to adapt to different usage environments and customer needs. Such changes and improvements fall within the scope of protection of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.
Claims
1. An intelligent kitchen waste treatment device, comprising a housing (1), and a drive motor (2) mounted on the bottom of the housing (1), wherein a mounting opening (3) provided on the upper portion of the housing (1) is used for mounting and connecting with a water trough, and characterized in that: Also includes: A rotating crushing disk (4) is fixedly connected to a motor shaft (5) of a driving motor (2). The rotating crushing disk (4) includes a crushing disk body (6). A plurality of crushing hammers (7) are rotatably connected to the crushing disk body (6). The crushing hammers (7) are provided with stepped crushing cutting edges on their surfaces. A fixed grinding ring (8), the fixed grinding ring (8) is fixedly connected to the inner wall of the housing (1), and the fixed grinding ring (8) is provided with a plurality of grinding holes (9); Auxiliary water channel (11), the housing (1) is provided with a water inlet (10) above the rotating crushing disc (4), the auxiliary water channel (11) installed in the water inlet (10) is connected to the household water channel, and the on-off valve of the auxiliary water channel (11) and the drive motor (2) are connected to the same control system.
2. The intelligent kitchen waste processing equipment according to claim 1, characterized in that: The crushing hammer (7) comprises a rotating column (12) rotatably connected to the crushing disc (6) and a crushing hammer body (13) fixedly connected to the rotating column (12). The length of the crushing hammer body (13) is greater than 1 / 2 of the radius of the crushing disc (6). The crushing disc (6) is fixedly connected to a buffer cone (14) within the rotation range of the crushing hammer (7).
3. The intelligent kitchen waste processing equipment according to claim 1, characterized in that: A centrifugal groove (15) is provided in the middle section of the crushing hammer (7), and a centrifugal hard block (16) is installed in the centrifugal groove (15) in a sliding seal. The centrifugal hard block (16) is made of a high-hardness metal material with a higher hardness than the crushing hammer (7). The centrifugal hard block (16) is connected to the inner wall of the centrifugal groove (15) through an elastic mechanism (17).
4. The intelligent kitchen waste processing equipment according to claim 3, characterized in that: The rotational speed of the drive motor (2) includes a normal speed state and a high speed state under the control of a control system. When the drive motor (2) is in the normal speed state, the outer surface of the centrifugal block (16) is flush with the surface of the crushing hammer (7). Only when the drive motor (2) is in the high speed state can the centrifugal block (16) overcome the elastic force of the elastic mechanism (17) and extend outward.
5. The intelligent kitchen waste processing equipment according to claim 4 is characterized in that: When the centrifugal block (16) extends outward to its maximum length, it forms another stepped structure with the lower and upper parts of the crushing hammer (7).
6. The intelligent kitchen waste processing equipment according to claim 5, characterized in that: Magnetic blocks (18) are embedded in the inner wall of the centrifugal groove (15) near the outlet and in the outer wall of the centrifugal block (16) away from the outlet of the centrifugal groove (15). When the centrifugal block (16) extends outward to its maximum length, the magnetic blocks (18) on the inner wall of the centrifugal groove (15) attract the corresponding magnetic blocks (18) on the centrifugal block (16).
7. The intelligent kitchen waste processing equipment according to claim 1, characterized in that: The inner side of the fixed grinding ring (8) is also uniformly fixedly connected to a plurality of grinding blocks (19) extending inwards. The connection position of the grinding blocks (19) is higher than the height of the hammer body of the crushing hammer (7), and the height difference between the grinding blocks (19) and the crushing hammer (7) is less than 10 mm.
8. The intelligent kitchen waste processing equipment according to claim 1, characterized in that: The housing (1) is provided with a water outlet (20) below the rotating crushing disk (4), and the motor shaft (5) of the drive motor (2) is rotatably and sealingly connected to a liquid sealing disk (21) located below the water outlet (20). The liquid sealing disk (21) is a truncated cone-shaped structure that is smaller at the top and larger at the bottom.
9. The intelligent kitchen waste processing equipment according to claim 8, characterized in that: The lower portion of the liquid sealing disc (21) is fixedly connected to the extended end of the telescopic mechanism (22); the power end of the telescopic mechanism (22) is fixedly connected within the housing (1); and the outer edge of the liquid sealing disc (21) is slidably and sealingly connected to the inner wall of the housing (1).
10. The intelligent kitchen waste processing equipment according to claim 9, characterized in that: The power end of the telescopic mechanism (22), the on-off valve of the auxiliary waterway (11), and the drive motor (2) are connected to the same control system. The drive motor (2) also enters a cleaning state at a low speed under the control of the control system. At this time, the telescopic mechanism (22) of the sealing plate (21) is also started at the same time, pushing the sealing plate (21) to move upward to above the water outlet (20).
Citation Information
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