A garbage processor

By introducing heating components and fan blade components into the garbage disposaler, a hot air circulation is formed, and the problems of uneven heating and corruption in wet garbage are solved, and the efficient carbonization and anti-odor effect of garbage is achieved.

CN115532784BActive Publication Date: 2025-08-01FOSHAN SHUNDE AOGEWEI ELECTRIC APPLIANCE MFG CO LTD
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Patent Information

Application Number
CN202211375837.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-04
Publication Date
2025-08-01
Estimated Expiration
2042-11-04

AI Technical Summary

Technical Problem

When existing garbage disposalers deal with wet garbage, it is difficult to effectively separate moisture, causing the garbage to deteriorate and smell, and uneven heating is likely to cause corruption.

Method used

The garbage disposal chamber is heated by heating the heating element, and the fan blade assembly is used to guide the flow of hot air to make the hot air come into full contact with the garbage, and the airflow circulation is formed with the air outlet duct and the flow guide assembly to ensure uniform heating, anti-corrosion and odor.

Benefits of technology

The full heating and carbonization of garbage is achieved, which prevents corruption and odor, and improves the efficiency and effect of garbage disposal.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a garbage processor, which includes a machine base. A garbage treatment chamber, a heating chamber and an air outlet duct are provided inside the machine base; the heating chamber is located above the garbage treatment chamber, and the heating chamber communicates with the top end of the garbage treatment chamber; one end of the air outlet duct communicates with the heating chamber, and the other end of the air outlet duct communicates to the outside of the machine base; a first heating component and a fan blade component are provided inside the heating chamber, and the fan blade component is used to introduce the heat generated by the first heating component into the garbage treatment chamber and make the hot air in the garbage treatment chamber flow. For the garbage processor of the present invention, it can heat the garbage treatment chamber through the heating component, and cooperate with the fan blade component to conduct drainage above the garbage treatment chamber, so that the garbage in the garbage treatment chamber is fully heated and carbonized, and the anti-corrosion and anti-odor effects are better.
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Description

Technical Field

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

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

[0003] Existing garbage processors generally only perform water separation treatment and crushing treatment on garbage, and simply separate the water in wet garbage in the form of a filter screen. However, since wet garbage is stacked in a closed garbage processor with relatively poor internal air circulation, a large amount of water will stay inside the garbage processor, causing the wet garbage to deteriorate and stink continuously.

[0004] In addition, few garbage processors can perform heating and dehumidification treatment on garbage, but the heating is not uniform enough, and it is easy to deteriorate and stink inside. Summary of the Invention

[0005] In order to overcome the deficiencies of the prior art, the purpose of the present invention is to provide a garbage processor, which can heat the garbage treatment chamber through a heating component, and cooperate with a fan blade component to conduct air flow above the garbage treatment chamber, so that the garbage in the garbage treatment chamber is fully heated and carbonized, and the anti-corrosion and anti-odor effects are better.

[0006] The purpose of the present invention is achieved by the following technical solutions:

[0007] A garbage processor includes a machine base, and a garbage treatment chamber, a heating chamber and an air outlet duct are arranged inside the machine base; the heating chamber is located above the garbage treatment chamber, and the heating chamber is communicated with the top end of the garbage treatment chamber; one end of the air outlet duct is communicated with the heating chamber, and the other end of the air outlet duct is communicated to the outside of the machine base; a first heating component and a fan blade component are arranged in the heating chamber, and the fan blade component is used to introduce the heat generated by the first heating component into the garbage treatment chamber and make the hot air in the garbage treatment chamber flow.

[0008] Further, the fan blade component includes a fan blade and a first motor, and the first motor is installed on the top wall of the heating chamber; the fan blade is connected to the rotating shaft of the first motor; the first motor is used to drive the fan blade to rotate; the fan blade is used to guide the heat generated by the first heating component into the garbage treatment chamber during rotation;

[0009] Further, a partition net is arranged between the heating chamber and the garbage treatment chamber; the first heating component is arranged above the partition net.

[0010] Further, the first heating component is a heating coil; the heating coil is disposed at the top of the partition net.

[0011] Further, a first outlet is provided at a side of the heating chamber, and a second outlet is provided on the machine base; the air outlet duct extends along the height direction of the machine base; one end of the air outlet duct communicates with the first outlet; the other end of the air outlet duct communicates with the second outlet.

[0012] Further, a flow guiding component is provided in the air outlet duct, and the flow guiding component is configured to guide the air flow in the air outlet duct to flow out in a circuitous and staggered manner.

[0013] Further, the flow guiding component includes a flow guiding box and a plurality of flow guiding plates. An air inlet is provided at the top of the flow guiding box, and an air outlet is provided at the bottom of the flow guiding box; a plurality of flow guiding plates are provided on both side walls of the flow guiding box, and the plurality of flow guiding plates are spaced and staggered in the height direction of the air outlet duct.

[0014] Further, an installation opening is provided on the machine base; the installation opening penetrates into the air outlet duct; the flow guiding box is configured to be detachably installed in the air outlet duct through the installation opening.

[0015] Further, a disinfection lamp is provided at the bottom of the air outlet duct; the disinfection lamp is configured to disinfect the air outlet duct.

[0016] Further, the garbage processor further includes a garbage bin. A pick-up and placement opening is provided on the machine base, and the pick-up and placement opening penetrates into the garbage processing chamber; the garbage bin is detachably installed in the garbage processing chamber through the pick-up and placement opening.

[0017] Further, a second heating component is provided at the bottom of the garbage bin, and the second heating component is configured to heat the air inside the garbage bin.

[0018] Further, a first electronic connector is provided on the barrel wall of the garbage bin, and a second electronic connector is provided on the inner side wall of the garbage processing chamber. The first electronic connector is configured to be electrically connected to the second electronic connector after the garbage bin is loaded into the garbage processing chamber.

[0019] Further, a first connection portion is provided on the bottom wall of the garbage processing chamber, and a second connection portion is provided on the bottom wall of the garbage bin. The second connection portion is configured to be detachably connected to the first connection portion after the garbage bin is loaded into the garbage processing chamber.

[0020] Further, a stirring knife assembly is provided inside the trash can. The stirring knife assembly includes a second motor, a stirring shaft, and stirring knives. The second motor is installed at the bottom end of the trash can; the stirring shaft is connected to the rotating shaft of the second motor and extends into the trash can; at least two stirring knives are provided on the stirring shaft.

[0021] Compared with the prior art, the beneficial effects of the present invention are as follows: It can heat the garbage treatment chamber through the heating component, and cooperate with the fan blade assembly to conduct air diversion above the garbage treatment chamber. Due to the air diversion effect of the fan blade assembly, the hot air in the garbage treatment chamber can circulate inside the garbage treatment chamber and come into full contact with the garbage in the garbage treatment chamber, enabling the garbage treatment chamber to be fully heated and carbonized. The carbonized garbage is then discharged, and the anti-corrosion and anti-odor effects are better. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 is a schematic structural diagram of the present invention;

[0023] Figure 2 is a cross-sectional view of the present invention;

[0024] Figure 3 is a partial structural cross-sectional view of the present invention;

[0025] Figure 4 is a schematic structural diagram of the machine base of the present invention;

[0026] Figure 5 is a partial structural schematic diagram of the machine base of the present invention;

[0027] Figure 6 is a partial structural schematic diagram of the machine base of the present invention;

[0028] Figure 7 is a schematic structural diagram of the trash can of the present invention;

[0029] Figure 8 is a schematic structural diagram of the air diversion assembly of the present invention.

[0030] In the figure: 10, machine base; 11, garbage treatment chamber; 111, first connection part; 12, heating chamber; 121, first outlet; 13, air outlet duct; 14, partition net; 15, second outlet; 16, heat insulation cover; 17, second electronic connector; 20, trash can; 31, stirring knife; 32, second motor; 33, first electronic connector; 41, fan blade; 42, first motor; 50, first heating component; 60, air diversion box; 61, air diversion plate; 62, air inlet; 63, air outlet. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0031] Next, in combination with the drawings and specific embodiments, the present invention will be further described:

[0032] In the description of the present invention, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention.

[0033] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those of ordinary skill in the technical field to which the present invention belongs. The terms used in the specification of the present invention herein are only for the purpose of describing specific embodiments and are not intended to limit the present invention.

[0034] As Figure 1 A garbage processor as shown in -8 includes a machine base 10. A garbage treatment cavity 11, a heating cavity 12, and an air outlet duct 13 are provided inside the machine base 10. The heating cavity 12 is located above the garbage treatment cavity 11. The heating cavity 12 is communicated with the top end of the garbage treatment cavity 11. One end of the air outlet duct 13 is communicated with the heating cavity 12, and the other end of the air outlet duct 13 is communicated to the outside of the machine base 10. Specifically, a first heating component 50 and a fan blade component are provided inside the heating cavity 12. The fan blade component can introduce the heat generated by the first heating component 50 into the garbage treatment cavity 11.

[0035] On the basis of the above structure, when using the garbage processor of the present invention, the garbage to be processed can be placed in the garbage treatment cavity 11, and then the first heating component 50 can be started. When the first heating component 50 works, the first heating component 50 can heat the garbage in the garbage treatment cavity 11, so that the moisture in the garbage in the garbage treatment cavity 11 is evaporated, the humidity of the garbage is reduced, and the anti-corrosion and anti-odor effects are better.

[0036] Of course, compared with the prior art, only by heating above or below the garbage, due to the stacking of garbage, if the hot air does not flow, there will inevitably be unheated situations inside the garbage, so there will still be anti-corrosion and anti-odor situations. Therefore, when the first heating component 50 is heating in this embodiment, the fan blade component can also be started. During the use of the fan blade component, it can drive the hot air to flow inside the garbage treatment cavity 11, and during the flow of the hot air, it can be in full contact with the garbage in the garbage treatment cavity 11. After the garbage is in full contact with the hot air, it can be carbonized at high temperature, and the anti-corrosion and anti-odor effects are better. In addition, after the hot air is in full contact with the garbage and heated, it can flow back to the heating cavity 12 again and be led out through the air outlet duct 13 to form an air flow cycle, making the heating effect more uniform and the garbage heating more sufficient.

[0037] Further, the above-mentioned fan blade assembly includes a fan blade 41 and a first motor 42. The first motor 42 is installed on the top wall of the heating chamber 12, and the fan blade 41 is connected to the rotating shaft of the first motor 42. The first motor 42 can drive the fan blade 41 to rotate; the fan blade 41 can guide the heat generated by the first heating assembly 50 into the garbage disposal chamber 11 during rotation.

[0038] On the basis of this structure, when diverting hot air, after the first heating assembly 50 heats the hot air in the garbage disposal chamber 11 to a certain extent, the first motor 42 can be started. The rotation of the rotating shaft of the first motor 42 can drive the fan blade 41 to rotate, and the rotation of the fan blade 41 can guide the hot air to circulate in the garbage disposal chamber 11.

[0039] Of course, the above-mentioned fan blade assembly can also drive the fan blade 41 to rotate through the first motor 42 and a gear transmission mechanism, so that the rotation process of the fan blade 41 is more stable.

[0040] It should be noted that a heat insulation cover 16 can also be provided at the top of the heating chamber 12. The heat insulation cover 16 can be made of heat insulation material. When assembling the above-mentioned fan blade assembly, the first motor 42 can be installed above the heat insulation cover 16, and the rotating shaft of the first motor 42 can extend below the heat insulation cover 16, and the above-mentioned fan blade 41 can be located below the heat insulation cover 16 and connected to the rotating shaft of the first motor 42. In this way, the first motor 42 can be isolated from the heating chamber 12 by the heat insulation cover 16 to prevent the heat of the heating chamber 12 from overheating the first motor 42 and improve the service life of the first motor 42.

[0041] Further, a partition net 14 can also be provided between the heating chamber 12 and the garbage disposal chamber 11, and the first heating assembly 50 is arranged above the partition net 14. On the basis of this structure, during the process of heating and treating garbage, dust, ash and other impurities generated during the garbage treatment process enter the heating chamber 12 and adhere to the fan blade assembly or the first heating assembly 50 in the heating chamber 12, thereby improving the cleanliness of the fan blade assembly and the first heating assembly 50 during the garbage treatment process and reducing the frequency of later cleaning.

[0042] Further, the first heating assembly 50 in this embodiment is a heating coil; the heating coil is arranged at the top of the partition net 14, and the heating coil can be coiled on the partition net 14, so the heating effect is more uniform.

[0043] Of course, the above-mentioned first heating assembly 50 can also be selected from other heating elements in the prior art such as heating resistors and infrared heating tubes in the prior art, and can be specifically selected according to actual needs.

[0044] Further, in this embodiment, a first outlet 121 may be provided on the side of the heating chamber 12, and a second outlet 15 is correspondingly provided on the machine base 10. The air outlet duct 13 extends along the height direction of the machine base 10, and one end of the air outlet duct 13 is communicated with the first outlet 121; the other end of the air outlet duct 13 is communicated with the second outlet 15.

[0045] In this way, during the operation of the fan blade assembly, the hot air heated in the waste treatment chamber 11 can be introduced into the air outlet duct 13 through the first outlet 121 of the heating chamber 12 after circulating and heating the waste, and is guided by the air outlet duct 13 to flow downward from top to bottom in the height direction of the machine base 10, and is discharged through the second outlet 15. Since the hot air can flow and be discharged in the height direction of the machine base 10, the impurities mixed in the hot air in the air outlet duct 13 can be deposited in the air outlet duct 13 during the flowing process, reducing the impurities contained in the air discharged through the second outlet 15 and reducing the pollution to the external environment.

[0046] Further, a flow guiding assembly may be provided in the air outlet duct 13. The flow guiding assembly can guide the air flow in the air outlet duct 13 to flow out in a circuitous and staggered manner. That is, after the hot air after circulating heating enters the air outlet duct 13, it can also flow out in a circuitous and staggered manner through the flow guiding assembly. Therefore, it does not flow out directly along a straight line, which can increase the flow path of the air flow in the air outlet duct 13, and the impurities mixed in the air flow can be better deposited.

[0047] More specifically, the flow guiding assembly includes a flow guiding box 60 and a plurality of flow guiding plates 61. An air inlet 62 is provided at the top end of the flow guiding box 60, and an air outlet 63 is provided at the bottom end of the flow guiding box 60; a plurality of flow guiding plates 61 are provided on both side walls of the flow guiding box 60, and the plurality of flow guiding plates 61 are spaced and staggered in the height direction of the air outlet duct 13. In this way, when guiding the air flow, the air flow introduced into the air outlet duct 13 through the first outlet 121 can enter the air inlet 62 and enter the flow guiding box 60, and the plurality of flow guiding plates 61 distributed in a staggered manner in the flow guiding box 60 can form a block in the air flow direction. The flow guiding plates can retain the impurities mixed in the air flow and are distributed in a staggered manner, so that the air flow shows a circuitous and staggered trend, and the air flow path is longer.

[0048] After the waste processor is used for a period of time, impurities will inevitably accumulate in the flow guiding box 60. Therefore, the flow guiding box 60 can be removed and cleaned for later use.

[0049] Specifically, an installation opening may also be provided on the machine base 10, and the installation opening penetrates into the air outlet duct 13. The flow guiding box 60 is detachably installed in the air outlet duct 13 through the installation opening.

[0050] Based on this structure, when assembling the guide box 60, the guide box 60 can be installed into the air outlet duct 13 through the installation port. After installation, the air inlet 62 and the air outlet 63 of the guide box 60 can be respectively connected at both ends of the air outlet duct 13, and the air flow in the air outlet duct 13 can flow in the guide box 60.

[0051] Of course, after the guide box 60 is installed into the air outlet duct 13 through the installation port, it can be connected and fixed by a buckle, or fixed by screws, bolts and other structures, so as to facilitate disassembly, cleaning or replacement.

[0052] Furthermore, in the absence of a deflector box 60, multiple deflectors 61 can be provided within the outlet duct 13 to allow the airflow to flow in a circuitous and staggered manner within the outlet duct 13. Alternatively, spiral grooves or spiral blades can be provided within the outlet duct 13 to guide the airflow into a circuitous and staggered manner after entering the outlet duct 13. Furthermore, based on this structure, to facilitate the removal of impurities from the outlet duct 13, a cover structure can be provided at the installation opening. This cover can be opened or closed to allow the airflow to be removed from the outlet duct 13.

[0053] Furthermore, a disinfection lamp may be provided at the bottom end of the air outlet duct 13 ; the disinfection lamp is used to disinfect the air outlet duct 13 .

[0054] Specifically, the above-mentioned disinfection can be selected from ultraviolet disinfection lamps or negative ion disinfection lamps in the existing technology. Since various bacteria, viruses, etc. are inevitably present in the air during the garbage heating process, if they are directly discharged through the air outlet duct 13, it will cause pollution to the external environment. Therefore, after the air flow enters the air outlet duct 13, the air flow in the air outlet duct 13 can be disinfected by a disinfection lamp, so that the air flow discharged through the second outlet 15 is cleaner, reducing the infection of bacteria, viruses, etc. in the air.

[0055] Furthermore, in this embodiment, the garbage disposer also includes a garbage can 20, which can be specifically provided with a take-in and put-out port on the base 10, and the take-in and put-out port passes through the garbage disposal chamber 11, and the garbage can 20 is installed in the garbage disposal chamber 11 through the take-in and put-out port in a detachable manner.

[0056] During use, the trash can 20 can be placed outside the base 10 of the garbage disposal unit first, and the user can put garbage into the trash can 20. When the garbage in the trash can 20 needs to be processed, the trash can 20 can be placed into the garbage disposal chamber 11 through the above-mentioned access port, and then the first heating component 50 in the above-mentioned heating chamber 12 is started to heat the garbage in the trash can 20, and the fan blade component is started to make the hot air in the trash can 20 flow, so that the garbage in the trash can 20 is fully heated and carbonized.

[0057] After the garbage carbonization process is completed, the garbage bin 20 can be taken out through the access opening to facilitate the centralized dumping of the processed garbage in the garbage bin 20. Of course, in the case of a structure without the garbage bin 20, the garbage can be directly placed in the garbage processing chamber 11 when processing the garbage.

[0058] Furthermore, a second heating assembly can be provided at the bottom of the trash can 20 to heat the air inside the trash can 20. Thus, during waste disposal, the first heating assembly 50 located above the waste disposal chamber 11 can heat the upper portion of the trash can 20, while the second heating assembly at the bottom of the trash can 20 can heat the lower portion. This means that the waste in the trash can 20 is heated by heating assemblies both above and below, resulting in faster heating and higher efficiency. Furthermore, combined with the flow of hot air within the trash can 20 at the bottom of the fan assembly, the waste comes into more complete contact with the hot air, carbonizing more quickly, and thus processing more quickly.

[0059] More specifically, a first electronic connector 33 may be provided on the wall of the trash can 20, and a second electronic connector 17 may be provided on the inner wall of the garbage disposal chamber 11. The first electronic connector 33 is used to electrically connect to the second electronic connector 17 after the trash can 20 is loaded into the garbage disposal chamber 11.

[0060] Specifically, the first electronic connector 33 is electrically connected to the second heating component, and the second electronic connector 17 can be electrically connected to the power circuit in the garbage disposal. In this way, after the trash can 20 is loaded into the garbage disposal chamber 11, the first electronic connector 33 on the trash can 20 can be electrically connected to the second electronic connector 17 in the garbage disposal chamber 11, and the second heating component can be electrically connected to the power circuit inside the machine base 10, starting the heating work and starting in time.

[0061] In addition, when the trash can 20 is taken out, the first electronic connector 33 on the trash can 20 can be disconnected from the second electronic connector 17 on the base 10. At this time, the circuit of the second heating component is disconnected and will no longer work, preventing the trash can 20 from overheating when no garbage disposal is needed, making the use process safer.

[0062] It should be noted that the first electronic connector 33 and the second electronic connector 17 in this embodiment can be implemented by using plugs and sockets in the prior art, or male connectors and female connectors that plug into and mate with each other.

[0063] Further, a temperature sensor can also be provided on the trash can 20. The temperature sensor can detect the heating temperature of the trash can 20. When the heating temperature reaches a preset value, the second heating component or the first heating component 50 can stop in time according to the temperature value detected by the temperature sensor, preventing overheating inside the machine base 10 and saving electric energy.

[0064] Specifically, a controller (selected as a processing chip, a single-chip microcomputer, etc. in the prior art) can be provided on the machine base 10. A preset temperature value can be set inside the controller. The temperature value can be the carbonization temperature of 300-800°C in the prior art. Taking the preset temperature as 500°C as an example, when the temperature value detected by the temperature sensor is 500°C, the temperature sensor can transmit the temperature value signal to the controller, and the controller can control the first heating component 50 and the second heating component. The first heating component 50 and the second heating component can stop in time to achieve temperature control.

[0065] Of course, a temperature meter can also be provided on the machine base 10. The temperature meter can receive the temperature value detected by the temperature sensor. When the temperature value reaches 500°C, the operator can manually turn off the first heating component 50 and the second heating component to stop, which can also achieve temperature control.

[0066] It should be noted that the above-mentioned second heating component can also be implemented by using heating structures such as heating coils, heating resistors, or infrared heating tubes in the prior art.

[0067] Further, a first connecting portion 111 can be provided on the bottom wall of the garbage disposal chamber 11, and a second connecting portion corresponding to the bottom wall of the trash can 20 is provided. After the trash can 20 is loaded into the garbage disposal chamber 11, the second connecting portion is used for detachably connecting with the first connecting portion 111 to realize the installation and fixation of the trash can 20 and the garbage disposal chamber 11. After the garbage disposal is completed, the first connecting portion 111 and the second connecting portion can be separated, so that the trash can 20 can be separated from the garbage disposal chamber 11.

[0068] In this embodiment, the above-mentioned first connecting portion 111 can be selected as a spring pin structure in the prior art, and the second connecting portion can be selected as a bayonet structure. The spring pin structure can be provided on the bottom wall of the garbage disposal chamber 11, and the bayonet structure can be provided on the bottom wall of the trash can 20. During the process of loading the trash can 20 into the garbage processor, the spring pin can be first pressed and contracted by the bottom wall of the trash can 20. When the bayonet structure on the bottom wall of the trash can 20 moves to correspond to the spring pin structure, the spring pin structure can extend and be clamped into the bayonet under the action of the spring inside itself to achieve assembly.

[0069] Of course, the above-mentioned first connecting portion 111 and second connecting portion can also be implemented by using a magnet and magnetic structure in the prior art.

[0070] Furthermore, in this embodiment, a stirring knife 31 assembly may also be provided in the trash can 20. The stirring knife 31 assembly includes a second motor 32, a stirring shaft, and stirring knives 31. The second motor 32 is installed at the bottom end of the trash can 20, and the stirring shaft is connected to the rotating shaft of the second motor 32 and extends into the trash can 20; at least two stirring knives 31 are provided on the stirring shaft.

[0071] When garbage is being processed, the second motor 32 can be started. The second motor 32 drives the stirring shaft to rotate. The rotation of the stirring shaft can drive at least two stirring knives 31 to rotate. The rotation of at least two stirring knives 31 can chop the garbage in the trash can 20, making the garbage in the trash can 20 cut into finer pieces, which is more conducive to the heating and carbonization of the garbage. Moreover, during the rotation of the stirring knives 31, the garbage in the trash can 20 can also be agitated. During the agitation process, the garbage can come into contact with hot air more fully, the heating effect of the garbage is better, and the heating and carbonization rate is higher.

[0072] For those skilled in the art, according to the technical solutions and concepts described above, various other corresponding changes and deformations can be made, and all such changes and deformations should fall within the protection scope of the claims of the present invention.

Claims

1. A garbage processor, characterized in that, It includes a machine base, and a garbage treatment chamber, a heating chamber and an air outlet duct are arranged inside the machine base; the heating chamber is located above the garbage treatment chamber, and the heating chamber communicates with the top end of the garbage treatment chamber; one end of the air outlet duct communicates with the heating chamber, and the other end of the air outlet duct communicates to the outside of the machine base; A first heating component and a fan blade component are arranged inside the heating chamber, and the fan blade component is used to introduce the heat generated by the first heating component into the garbage treatment chamber and make the hot air in the garbage treatment chamber flow; A first outlet is arranged on the side of the heating chamber, and a second outlet is arranged on the machine base; the air outlet duct extends along the height direction of the machine base; one end of the air outlet duct communicates with the first outlet; the other end of the air outlet duct communicates with the second outlet; a flow guiding component is arranged inside the air outlet duct, and the flow guiding component is used to guide the air flow in the air outlet duct to flow out in a circuitous and staggered manner.

2. The garbage processor according to claim 1, characterized in that, The fan blade component includes a fan blade and a first motor, and the first motor is installed on the top wall of the heating chamber; the fan blade is connected to the rotating shaft of the first motor; the first motor is used to drive the fan blade to rotate; the fan blade is used to guide the heat generated by the first heating component into the garbage treatment chamber during rotation.

3. The garbage processor according to claim 1, wherein A partition net is arranged between the heating chamber and the garbage treatment chamber; the first heating component is arranged above the partition net.

4. The garbage processor according to claim 3, characterized in that, The first heating component is a heating coil; the heating coil is arranged at the top end of the partition net.

5. The garbage processor according to claim 1, characterized in that, The flow guiding component includes a flow guiding box and a plurality of flow guiding plates. An air inlet is arranged at the top end of the flow guiding box, and an air outlet is arranged at the bottom end of the flow guiding box; a plurality of flow guiding plates are arranged on both side walls of the flow guiding box, and the plurality of flow guiding plates are spaced and staggered in the height direction of the air outlet duct.

6. The garbage processor according to claim 5, wherein An installation opening is arranged on the machine base; the installation opening penetrates into the air outlet duct; the flow guiding box is used to be installed in the air outlet duct in a detachable manner through the installation opening.

7. The garbage processor according to claim 1, wherein A disinfection lamp is arranged at the bottom end of the air outlet duct; the disinfection lamp is used to disinfect the air outlet duct.

8. The garbage processor according to any one of claims 1-7, characterized in that, This garbage processor further includes a garbage bin. A pick-up and placement opening is arranged on the machine base, and the pick-up and placement opening penetrates into the garbage treatment chamber; the garbage bin is installed in the garbage treatment chamber through the pick-up and placement opening in a detachable manner.

9. The garbage processor according to claim 8, wherein, A second heating component is arranged at the bottom end of the garbage bin, and the second heating component is used to heat the air inside the garbage bin.

10. The garbage processor according to claim 9, characterized in that, A first electronic connector is arranged on the barrel wall of the garbage bin, and a second electronic connector is arranged on the inner side wall of the garbage treatment chamber. The first electronic connector is used to be electrically connected to the second electronic connector after the garbage bin is loaded into the garbage treatment chamber.

11. The garbage processor according to claim 8, wherein A first connection part is arranged on the bottom wall of the garbage treatment chamber, and a second connection part is arranged on the bottom wall of the garbage bin. The second connection part is used to be detachably connected to the first connection part after the garbage bin is loaded into the garbage treatment chamber.

12. The garbage processor according to claim 8, characterized in that, A stirring knife assembly is provided inside the trash can. The stirring knife assembly includes a second motor, a stirring shaft, and stirring knives. The second motor is installed at the bottom end of the trash can; the stirring shaft is connected to the rotating shaft of the second motor and extends into the trash can; at least two stirring knives are provided on the stirring shaft.

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