Improved kitchen garbage disposer capable of efficiently removing peculiar smell
By using multiple S-type filter elements and heating components in the kitchen waste disposal machine, combined with intelligent control modules, the problems of insufficient odor handling capacity and water vapor emissions are solved, and the odor removal is efficient, reducing maintenance costs and extending the life of the equipment.
Patent Information
- Application Number
- CN202421986958.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-16
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-08-16
AI Technical Summary
The existing kitchen waste disposal machines have shortcomings in terms of limited odor handling capacity, water vapor emission problems and high maintenance costs, making it difficult to effectively remove odors and reduce water vapor emissions, and frequent filter element replacement leads to an increase in usage costs.
Multiple S-shaped filter elements are used, each filter element is equipped with activated carbon, combined with heating components and intelligent control modules, to realize automated control and deodorization functions, monitor equipment status and prompt alarms, and has drying and dehydration functions. The water collector is designed to facilitate moisture collection and discharge.
It significantly improves the odor removal effect, reduces maintenance costs, ensures safe operation of the equipment, reduces moisture emissions, extends the life of the equipment, and provides intelligent operation and convenient maintenance.
Smart Images

Figure CN223070130U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of kitchen waste processors, and particularly to an improved high-efficiency odor-removing kitchen waste processor. Background Technique
[0002] With the acceleration of the urbanization process, the treatment of household kitchen waste has become an increasingly serious problem. To address this challenge, various kitchen waste processors have emerged on the market, which can achieve a certain degree of reduction and resource utilization of kitchen waste. However, the existing kitchen waste processors still have some deficiencies in odor removal, mainly reflected in the following aspects:
[0003] 1. Limited odor treatment capacity: Currently, the kitchen waste processors on the market usually come with small filter cores filled with less activated carbon or other adsorption media, resulting in limited odor absorption capacity. In addition, due to the short path of the odor gas passing through the filter core, it is difficult to effectively capture and decompose odor molecules.
[0004] 2. Water vapor emission problem: A large amount of water vapor generated during the treatment of kitchen waste is often directly discharged into the environment without sufficient treatment. This not only may increase the humidity of the surrounding air but also may carry the odor components that have not been completely removed, thus affecting the indoor air quality.
[0005] 3. Higher maintenance cost: Given the above problems, it is necessary to frequently replace the filter core to maintain its basic function, which undoubtedly increases the maintenance cost for users.
[0006] To solve these problems, it is necessary to develop a new type of high-efficiency kitchen waste processor that can more effectively remove odors, reduce the negative impact of water vapor emission, and lower the long-term use cost. Content of the Utility Model
[0007] The purpose of the utility model is to provide an improved high-efficiency odor-removing kitchen waste processor to solve the problems raised in the above background technique.
[0008] The technical solution of the utility model is: an improved high-efficiency odor-removing kitchen waste processor, including a chassis arranged at the lower end of the treatment cylinder and a movable cover arranged at the upper opening of the treatment cylinder. A air duct is arranged on one side of the treatment cylinder, and a filter cavity is arranged on one side of the air duct. Both the filter cavity and the air duct are arranged on the upper end of the chassis. At the same time, the inside of the air duct is connected to the inside of the filter cavity through an air drum;
[0009] It also includes a control module for controlling the operating state of the processing cylinder. The control module is arranged between the processing cylinder and the chassis, and a heat dissipation port is provided on the chassis at the lower end of the control module. At the same time, an operation panel is arranged on one side of the upper end of the processing cylinder, and both the operation panel and the air blower are electrically connected to the control module.
[0010] Furthermore, one end of the movable cover is connected to one side of the upper end of the processing cylinder through a spring device, and the other end of the movable cover is connected to the other side of the upper end of the processing cylinder through a key.
[0011] Furthermore, the filter chamber and the air duct are communicated through a guide pipe. At the same time, a water collecting tank is arranged at the lower end of the filter chamber, and the water collecting tank is communicated with a water guide pipe arranged at the lower end of the chassis.
[0012] Furthermore, an air duct opening is provided on one side of the barrel opening of the processing cylinder, and the air duct opening is communicated with the inside of the air duct.
[0013] Furthermore, the filter chamber includes an air outlet provided at the upper end and an air inlet provided at the lower end. The air inlet is communicated with the inside of the air duct through a guide pipe;
[0014] It also includes a plurality of filter cores arranged inside the filter chamber. The plurality of filter cores are spaced apart from each other, and the plurality of filter cores are distributed in an S shape. At the same time, the end of each filter core is connected to the inner wall of the filter chamber, and activated carbon is provided on each filter core.
[0015] Furthermore, the control module includes a motor assembly for controlling the operating state of the processing cylinder, a power supply board for providing a working power supply, a heating plate for starting the drying or dehydration function of the processing cylinder, and a control board for receiving, processing, and transmitting signals. The power supply board is electrically connected to the motor assembly, the heating plate, the control board, the operation panel, and the air blower. At the same time, the control board receives the operation instructions of the operation panel and sends operation instructions to the motor assembly, the heating plate, and the air blower according to the operation instructions.
[0016] Furthermore, the operation panel includes a display board for displaying the system status and error codes, and a key board for selecting the operating mode or function of the processing cylinder. Both the display board and the key board are electrically connected to the control board.
[0017] Furthermore, the control board is electrically connected to a sensing unit, a temperature unit, and an alarm unit;
[0018] The sensing unit is used to obtain the opening and closing state information of the movable cover;
[0019] The temperature unit is used to obtain the internal temperature information of the control module;
[0020] The alarm unit is used to issue an alarm signal according to the abnormal signal of the control board.
[0021] Furthermore, the control board is also electrically connected to a heating component for disinfection and deodorization, and the heating component is arranged inside the treatment cylinder and inside the filtering chamber.
[0022] The utility model provides an improved high-efficiency odor-removing kitchen waste processor through improvement. Compared with the prior art, the following improvements and advantages are achieved:
[0023] Firstly: The utility model utilizes a plurality of filter cores distributed in an S shape, and activated carbon is installed on each filter core, so as to effectively adsorb odor and impurities, significantly improve the odor-removing effect. At the same time, the setting of the heating component further enhances the disinfection and deodorization functions, ensuring that the odor generated during the treatment process can be better eliminated;
[0024] Secondly: The utility model realizes automatic control through the control module. Users can easily select different operating modes and functions through the operation panel. At the same time, the control board can control the working states of the motor component, the heating plate and the air drum according to the instructions of the users, realizing intelligent management;
[0025] Thirdly: The utility model can monitor the opening and closing state of the movable cover through the sensing unit to ensure that garbage treatment is carried out under safe conditions. The internal temperature of the control module can be monitored through the temperature unit to prevent overheating and ensure the safe operation of the equipment. The alarm unit can issue an alarm signal in time when the system is abnormal to remind the user to pay attention and take corresponding measures;
[0026] Fourthly: The display board of the utility model can display the system status and error codes in real time to help users understand the working conditions of the equipment. At the same time, the key board of the operation panel enables users to conveniently select different operating modes or functions, and the operation is simple;
[0027] Fifthly: The heating plate of the utility model can start the drying or dehydration function to help remove the moisture in the kitchen waste, reduce the volume of the waste, and facilitate storage and subsequent treatment;
[0028] Sixthly: The design of the heat dissipation port of the utility model helps to dissipate the heat of the control module and extend the service life of the electronic components. The design of the water collecting tank and the water guide pipe makes it simple to collect and discharge the water generated during the treatment process, thus facilitating daily maintenance. Description of the Drawings
[0029] The following further explains the utility model in conjunction with the drawings and embodiments:
[0030] Figure 1 It is a schematic structural diagram of the improved high-efficiency odor-removing kitchen waste processor of the utility model;
[0031] Figure 2 is the open - cover view of the improved high - efficiency odor - removing kitchen waste disposer of the present utility model;
[0032] Figure 3 is the rear - view internal sectional view of the improved high - efficiency odor - removing kitchen waste disposer of the present utility model;
[0033] Figure 4 is the schematic diagram of the barrel - mouth structure of the treatment barrel of the present utility model;
[0034] Figure 5 is the system block diagram of the improved high - efficiency odor - removing kitchen waste disposer of the present utility model;
[0035] Figure 6 is the circuit connection diagram of the rectifier diode DB1 of the present utility model;
[0036] Figure 7 is the circuit connection diagram of the transformer T1 of the present utility model;
[0037] Figure 8 is the circuit connection diagram of the chip U5 of the present utility model;
[0038] Figure 9 is the circuit connection diagram of the chip U3 of the present utility model;
[0039] Figure 10 is the circuit connection diagram between the control module and the air blower of the present utility model;
[0040] Figure 11 is the circuit connection diagram between the control module and the heating component of the present utility model;
[0041] Explanation of reference numerals:
[0042] 1. Treatment barrel; 2. Button; 3. Movable cover; 4. Operation panel; 5. Air outlet; 6. Filter chamber; 7. Air duct; 8. Spring device; 9. Air blower; 10. Control module; 11. Heat dissipation port; 12. Guide pipe; 13. Chassis; 14. Filter element; 15. Air duct opening; 16. Air inlet. Detailed implementation manners
[0043] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0044] It should be noted that in the description of the present invention, 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, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be construed as a limitation of the present invention.
[0045] In addition, it should be understood that for the convenience of description, the dimensions of the various components shown in the drawings are not drawn in accordance with the actual proportional relationship. For example, the thickness or width of some layers may be exaggerated relative to other layers.
[0046] It should be noted that similar reference numerals and letters denote similar items in the following drawings. Therefore, once an item is defined or described in one drawing, it will not be necessary to further specifically discuss and describe it in the description of subsequent drawings.
[0047] Embodiment 1
[0048] Reference Figures 1-4 , this embodiment provides an improved high-efficiency odor-removing kitchen waste processor. The improved high-efficiency odor-removing kitchen waste processor includes a processing cylinder 1, a movable cover 3, an operation panel 4, a filtering chamber 6, an air duct 7, an air drum 9, a control module 10, and a chassis 13. In this embodiment, the chassis 13 is disposed at the lower end of the processing cylinder 1, and the movable cover 3 is disposed at the upper opening of the processing cylinder 1. One side of the upper end of the processing cylinder 1 is connected to one end of the movable cover 3 through a spring device 8, and the other side of the upper end of the processing cylinder 1 is connected to the other end of the movable cover 3 through a key 2. That is to say, when the movable cover 3 is opened, it will automatically return to the closed position under the action of the spring device 8. At the same time, the setting of the key 2 can lock one end of the movable cover 3, that is, when the key 2 is pressed, one end of the movable cover 3 will be locked, so as to ensure that the movable cover 3 remains closed during use.
[0049] Furthermore, the air duct 7 is disposed on one side of the processing cylinder 1, the filtering chamber 6 is disposed on one side of the air duct 7, and at the same time, both the filtering chamber 6 and the air duct 7 are disposed at the upper end of the chassis 13, and the inside of the air duct 7 is connected to the inside of the filtering chamber 6 through the air drum 9. The filtering chamber 6 is disposed on one side of the air duct 7 and at the upper end of the chassis 13 for filtering odors and particulate matters in the air. The air duct 7 is disposed on one side of the processing cylinder 1 for guiding air flow. At the same time, the air drum 9 is located inside the air duct 7, and the airflow generated by it can push the air through the filtering chamber 6.
[0050] In this embodiment, an air duct opening 15 is provided on one side of the barrel opening of the processing barrel 1, and the air duct opening 15 is communicated with the inside of the air duct 7, that is, the inside of the processing barrel 1 is communicated with the inside of the air duct 7. That is to say, the setting of the air duct opening 15 enables the air inside the processing barrel 1 to flow into the inside of the air duct 7, and then into the inside of the filter chamber 6. At the same time, the filter chamber 6 and the air duct 7 are communicated through the guiding pipe 12, that is, through the guiding pipe 12, the air can flow between the filter chamber 6 and the air duct 7. At the same time, a water collecting tank is provided at the lower end of the filter chamber 6 for collecting the condensed water generated during the filtering process, and the water collecting tank is communicated with the water guiding pipe provided at the lower end of the chassis 13, that is, through the water guiding pipe, the collected condensed water is discharged.
[0051] Furthermore, an air outlet 5 is provided at the upper end of the filter chamber 6 for discharging the filtered air. An air inlet 16 is provided at the lower end of the filter chamber 6, and the air inlet 16 is communicated with the inside of the air duct 7 through the guiding pipe 12. That is, through the connection with the inside of the air duct 7 by the guiding pipe 12, the air can enter the inside of the filter chamber 6 from the air duct 7.
[0052] Furthermore, a plurality of filter cores 14 are provided inside the filter chamber 6. The plurality of filter cores 14 are spaced apart from each other, and the plurality of filter cores 14 are distributed in an S shape. At the same time, the end of each filter core 14 is connected to the inner wall of the filter chamber 6, and activated carbon is provided on each filter core 14 for adsorbing odors and particulate matters.
[0053] The air flow process of the food waste processor in this embodiment is as follows:
[0054] When the food waste processor is started, the air blower 9 starts to operate, generating a negative pressure to guide the air inside the processing barrel 1 to enter the inside of the air duct 7 through the air duct opening 15. At the same time, the air in the air duct 7 is guided into the inside of the filter chamber 6 by the action of the air blower 9. Finally, the air passes through the guiding pipe 12, and then through the air inlet 16, and enters the inside of the filter chamber 6.
[0055] The air filtration process of the food waste processor in this embodiment is as follows:
[0056] The air located inside the filter chamber 6 passes through a plurality of filter cores 14 distributed in an S shape in the filter chamber 6, and the activated carbon on the filter cores 14 adsorbs the odors and impurities in the air. Finally, the filtered air continues to flow upward and is finally discharged from the air outlet 5. It should be noted that during the air filtration process, the moisture in the air will be condensed and collected in the water collecting tank, and discharged through the water guiding pipe.
[0057] Embodiment 2
[0058] Embodiment 2 designs an improved high-efficiency odor-removing kitchen waste processor, whose basic structure is the same as that of Embodiment 1. The difference lies in that with reference to Figure 5 , this improved high-efficiency odor-removing kitchen waste processor includes a control module 10 for controlling the operating state of the processing cylinder 1, and the control module 10 is arranged between the processing cylinder 1 and the chassis 13. Further, a heat dissipation port 11 is opened on the chassis 13 at the lower end of the control module 10, which is used to provide sufficient heat dissipation space for the control module 10 to ensure its stable operation. At the same time, an operation panel 4 is arranged on one side of the upper end of the processing cylinder 1, and both the operation panel 4 and the air blower 9 are electrically connected to the control module 10. That is to say, the user can control the opening and closing of the air blower 9 through the operation panel 4 and adjust the operating mode of the processor.
[0059] Specifically, the user starts the kitchen waste processor through the operation panel 4, and at this time, the operation panel 4 sends corresponding control signals to the control module 10. After receiving the start signal, the control module 10 controls the air blower 9 to start and begins to generate air flow. At the same time, the user can adjust the working intensity of the air blower 9 through the operation panel 4 to meet the needs in different situations. And the control module 10 can adjust the working state of the air blower 9 according to the instructions of the operation panel 4 to ensure the efficient operation of the processor. It should be noted that the heat generated during the processing can be dissipated through the heat dissipation port 11 on the chassis 13, so as to ensure that the control module 10 and other electronic components will not be damaged due to overheating.
[0060] That is to say, by adding the operation panel 4 and the control module 10, more refined control of the kitchen waste processor is realized. The control module 10 can not only control the working state of the air blower 9, but also cooperate with the operation panel 4 to provide a more convenient operation experience for the user. At the same time, the design of the heat dissipation port 11 ensures the stable operation of the system and improves the reliability and service life of the entire device.
[0061] In this embodiment, the control module 10 includes a motor assembly, a power supply board, a heating plate and a control board. The motor assembly is used to drive the crushing assembly in the processing cylinder 1 to crush the kitchen waste into fine particles. The power supply board provides the working power required by the entire system and serves as the power distribution center among various components at the same time. The heating plate is used to start the drying or dehydration function of the processing cylinder 1 to help remove the moisture in the kitchen waste. The control board is responsible for receiving the operation instructions of the operation panel 4 and sending corresponding operation instructions to the motor assembly, the heating plate and the air blower 9 according to the instructions. The power supply board is electrically connected to the motor assembly, the heating plate, the control board, the operation panel 4 and the air blower 9. At the same time, the control board receives the operation instructions of the operation panel 4 and sends operation instructions to the motor assembly, the heating plate and the air blower 9 according to the operation instructions.
[0062] Furthermore, the operation panel 4 includes a display board for displaying the system status and error codes, and a keypad for selecting the operating mode or function of the processing cylinder 1. Both the display board and the keypad are electrically connected to the control board. Further, the control board is electrically connected to the sensing unit, the temperature unit, the alarm unit, and the heating component. The sensing unit is used to obtain the opening and closing status information of the movable cover 3, the temperature unit is used to obtain the internal temperature information of the control module 10, and the alarm unit is used to issue an alarm signal according to the abnormal signal of the control board. The heating component is a heating component for disinfection and deodorization, which is provided inside the processing cylinder 1 and inside the filter chamber 6. Specifically, the heating component in this embodiment includes, but is not limited to, ultraviolet lamps and negative ion generators.
[0063] The instruction execution process of the food waste processor in this embodiment is as follows:
[0064] The user starts the food waste processor through the operation panel 4, selects the required operating mode or function, and at the same time the operation panel 4 sends the user's operation instructions to the control board. The control board controls the motor assembly to start according to the instructions to perform the crushing process of food waste. When the user selects the drying or dehydration function, the control board starts the heating plate to help remove the moisture in the food waste, and the control board can also start the heating component as needed for disinfection and deodorization.
[0065] Furthermore, the sensing unit monitors the opening and closing status of the movable cover 3 to ensure that the food waste is processed under safe conditions. The temperature unit monitors the internal temperature of the control module 10 to ensure that the system does not overheat. When an abnormal situation occurs, the alarm unit will issue an alarm signal according to the instructions of the control board. At the same time, the display board can display the system status and error codes in real time to help the user understand the working status of the device, and the user can also adjust the operating mode or function at any time through the keypad.
[0066] Embodiment 3
[0067] Embodiment 3 designs an improved high-efficiency odor-removing food waste processor. Its basic structure is the same as that of Embodiment 1 and Embodiment 2. The difference is that with reference to Figures 6-11, in this embodiment, the execution circuit of the control module 10 specifically includes a rectifier diode DB1 and a transformer T1. Among them, the port 1 of the rectifier diode DB1 is electrically connected to the transformer T1, the port 2 of the rectifier diode DB1 is electrically connected to the resistor RX3 and the port 3 of the inductor L3, and the port 3 of the rectifier diode DB1 is electrically connected to the resistor RX4 and the port 4 of the inductor L3. The resistor RX3 and the resistor RX4 are electrically connected through the capacitor C7. At the same time, the port 2 of the inductor L3 is electrically connected to the port 3 of the inductor L2, and the port 1 of the inductor L3 is electrically connected to the port 4 of the inductor L2. The port 2 and the port 1 of the inductor L3 and the port 3 and the port 4 of the inductor L2 are electrically connected through the capacitor C6. At the same time, the port 2 of the inductor L2 is electrically connected to the resistor RV1 and the inductor F2, the port 1 of the inductor L2 is electrically connected to the resistor NTC1, the resistor NTC1 is electrically connected to the resistor RV1, the capacitor C3 and the resistor RX2, the resistor RX2 is electrically connected to the resistor RX1, the resistor RX1 is electrically connected to the inductor F1, and the inductor F1 is electrically connected to the inductor F2.
[0068] The port 1 of the transformer T1 is electrically connected to the TRAN1 port, the port 2 of the transformer T1 is grounded, the port 3 of the transformer T1 is electrically connected to the anode of the diode D4, and the cathode of the diode D4 is electrically connected to the resistor R3, the resistor R4 and the capacitor C8 through the resistor R6. At the same time, the resistor R3, the resistor R4 and the capacitor C8 are connected in parallel with each other, and the parallel circuit composed of the resistor R3, the resistor R4 and the capacitor C8 is electrically connected to the resistor R2, the capacitor C2, the port 1 of the rectifier diode DB1, the port 5 of the transformer T1 and the capacitor CY1. The resistor R2 is electrically connected to the capacitor C10, the capacitor C11, the resistor R9 and the port 6 of the chip U2 through the resistor R7, the resistor R9 is electrically connected to the cathode of the diode D6, the anode of the diode D6 is electrically connected to the resistor R15 and the resistor R17, the resistor R15 and the resistor R17 are connected in parallel with each other, and the parallel circuit composed of the resistor R15 and the resistor R17 is electrically connected to the resistor R18, the capacitor C13 and the port 4 of the chip U2. The resistor R18 and the capacitor C13 are connected in parallel with each other. At the same time, the port 2 of the chip U2 is electrically connected to the resistor R10 and the cathode of the diode D5, and the port 3 of the chip U2 is electrically connected to the resistor R14. The resistor R10 and the anode of the diode D5 are electrically connected to the resistor R12 and the base of the transistor Q1, and the resistor R12 is electrically connected to the resistor R14, the emitter of the transistor Q1, the resistor R13, the resistor RS1, the resistor RS2 and the resistor RS3. The resistor RS1, the resistor RS2 and the resistor RS3 are connected in parallel with each other. At the same time, the collector of the transistor Q1 is electrically connected to the anode of the diode D4 and the capacitor C12, and the capacitor C12 is electrically connected to the resistor R13.
[0069] The 5-port of transformer T1 is electrically connected to capacitor CY1. Capacitor CY1 is electrically connected to capacitor CY2, and capacitor CY2 is grounded. At the same time, the 7-port of transformer T1 is electrically connected to the anode of diode D1, the anode of diode D, and capacitor C1. Capacitor C1 is electrically connected to resistor R1. Resistor R1 is electrically connected to the cathode of diode D1, the cathode of diode D, capacitor C4, capacitor C5, resistor R5, capacitor C9, and inductor L4. At the same time, capacitor C4, capacitor C5, resistor R5, and capacitor C9 are connected in parallel with each other, and the parallel circuit composed of capacitor C4, capacitor C5, resistor R5, and capacitor C9 is electrically connected to the 9-port of transformer T1. At the same time, a diode D9 is connected in parallel with inductor L4.
[0070] The execution circuit of control module 10 further includes chip U5. Both the 0-port and 1-port of chip U5 are grounded and electrically connected to capacitor R22. Resistor R22 is electrically connected to resistor R23 and the 7-port of chip U5. Resistor R23 is electrically connected to capacitor C21 and the MCUAD MTLoad port. The 2-port of chip U5 is electrically connected to the MT Reverse port through resistor R25. The 3-port of chip U5 is electrically connected to the MT Forward port through resistor R27. The 4-port of chip U5 is electrically connected to resistor R28 and resistor R30. The 5-port of chip U5 is electrically connected to capacitor C23, capacitor C24, and the 24V power supply port. The 6-port of chip U5 is electrically connected to switch REL1. The 7-port of chip U5 is electrically connected to the 1-port of motor CN3 through resistor L8. The 2-port of motor CN3 is electrically connected to switch REL1 through resistor L7. Switch REL1 is connected in parallel with diode D7. The cathode of diode D7 is electrically connected to the 24V power supply port. The anode of diode D7 is electrically connected to the collector of transistor Q5. The emitter of transistor Q5 is grounded. The base of transistor Q5 is electrically connected to resistor R41 and resistor R43. Resistor R41 is electrically connected to the collector of transistor Q3. The emitter of transistor Q3 is electrically connected to resistor R34 and the 5V power supply port. The base of transistor Q3 is electrically connected to resistor R34 and resistor R40. Resistor R40 is electrically connected to the HALL2-D port and resistor R38. Resistor R38 is electrically connected to resistor R33. Resistor R33 is electrically connected to the HALL2 port.
[0071] The execution circuit of control module 10 further includes chip U3. The 1-port of chip U3 is electrically connected to the 6-port of chip U3 and inductor L6 through capacitor C14. Inductor L6 is electrically connected to resistor R19, capacitor C15, and capacitor C16. Among them, capacitor C15 and capacitor C16 are connected in parallel with each other. Resistor R19 is electrically connected to resistor R20 and the 3-port of chip U3. Both the 2-port of chip U3 and resistor R20 are grounded. At the same time, the 4-port of chip U3 is electrically connected to the 5-port of chip U3, capacitor C18, and capacitor C19 through resistor R21. Among them, capacitor C18 and capacitor C19 are connected in parallel with each other.
[0072] The execution circuit of the control module 10 is electrically connected to the air blower 9 through the connector CN7 and to the heating component through the connector CN2. Among them, the port 1 of the connector CN7 is electrically connected to the 24V power supply port and the cathode of the diode D8, the port 2 of the connector CN7 is electrically connected to the collector of the transistor Q4 and the anode of the diode D8, the emitter of the transistor Q4 is electrically connected to the resistors R44, R45 and R46, and the base of the transistor Q4 is electrically connected to the resistors R42 and R44. Among them, the resistor R42 is electrically connected to the FAN PWM port, the resistor R45 is electrically connected to the capacitor C28 and the AD FAN CUR port, and at the same time, both the resistor R46 and the capacitor C28 are grounded.
[0073] In this embodiment, the port 1 of the connector CN2 is electrically connected to the 24V power supply port and the cathode of the diode D3, the port 2 of the connector CN2 is electrically connected to the anode of the diode D8 and the resistor R36, the resistor R36 is electrically connected to the collector of the transistor Q6, the emitter of the transistor Q6 is grounded, and the base of the transistor Q6 is electrically connected to the resistors R39 and R47. Among them, the resistor R39 is electrically connected to the Port UVC port and the resistor R47 is grounded.
[0074] Although embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An improved high-efficiency odor-removing kitchen waste processor, comprising a chassis (13) arranged at the lower end of a processing cylinder (1) and a movable cover (3) arranged at the upper opening of the processing cylinder (1), characterized in that, One side of the processing cylinder (1) is provided with an air duct (7), one side of the air duct (7) is provided with a filtering chamber (6), both the filtering chamber (6) and the air duct (7) are arranged at the upper end of the chassis (13), and at the same time, the inside of the air duct (7) is communicated with the inside of the filtering chamber (6) through an air drum (9); It further includes a control module (10) for controlling the operating state of the processing cylinder (1), the control module (10) is arranged between the processing cylinder (1) and the chassis (13), and a heat dissipation port (11) is opened on the chassis (13) and is arranged at the lower end of the control module (10). At the same time, one side of the upper end of the processing cylinder (1) is provided with an operation panel (4), and both the operation panel (4) and the air drum (9) are electrically connected to the control module (10).
2. An improved high-efficiency odor-removing kitchen waste processor according to claim 1, characterized in that, One end of the upper side of the processing cylinder (1) is connected to one end of the movable cover (3) through a spring device (8), and the other side of the upper end of the processing cylinder (1) is connected to the other end of the movable cover (3) through a key (2).
3. An improved high-efficiency odor-removing kitchen waste processor according to claim 1, characterized in that, The filtering chamber (6) and the air duct (7) are communicated through a guiding pipe (12). At the same time, a water collecting tank is arranged at the lower end of the filtering chamber (6), and the water collecting tank is communicated with a water guiding pipe arranged at the lower end of the chassis (13).
4. An improved high-efficiency odor-removing kitchen waste processor according to claim 1, characterized in that, It further includes an air duct opening (15) opened on one side of the barrel opening of the processing cylinder (1), and the air duct opening (15) is communicated with the inside of the air duct (7).
5. An improved high-efficiency odor-removing kitchen waste processor according to claim 1 or 3, characterized in that, The filtering chamber (6) includes an air outlet (5) opened at the upper end and an air inlet (16) opened at the lower end. The air inlet (16) is communicated with the inside of the air duct (7) through a guiding pipe (12); It further includes a plurality of filter cores (14) arranged inside the filtering chamber (6). The plurality of filter cores (14) are spaced apart from each other, and the plurality of filter cores (14) are arranged in an S shape. At the same time, the end of each filter core (14) is connected to the inner wall of the filtering chamber (6), and activated carbon is arranged on each filter core (14).
6. An improved high-efficiency odor-removing kitchen waste disposer according to claim 1, characterized in that, The control module (10) includes a motor assembly for controlling the operating state of the processing cylinder (1), a power supply board for providing a working power supply, a heating plate for starting the drying or dehydration function of the processing cylinder (1), and a control board for receiving, processing and transmitting signals. The power supply board is electrically connected to the motor assembly, the heating plate, the control board, the operation panel (4) and the air drum (9). At the same time, the control board receives the operation instructions of the operation panel (4) and sends operation instructions to the motor assembly, the heating plate and the air drum (9) according to the operation instructions.
7. An improved high-efficiency odor-removing kitchen waste processor according to claim 6, characterized in that, The operation panel (4) includes a display board for displaying the system state and error codes, and a key board for selecting the operating mode or function of the processing cylinder (1). Both the display board and the key board are electrically connected to the control board.
8. An improved high-efficiency odor-removing kitchen waste disposer according to claim 6 or 7, characterized in that, The control board is electrically connected to a sensing unit, a temperature unit and an alarm unit; The sensing unit is used for acquiring the opening and closing state information of the movable cover (3); The temperature unit is used for acquiring the internal temperature information of the control module (10); The alarm unit is used for sending an alarm signal according to the abnormal signal of the control board.
9. An improved high-efficiency odor-removing kitchen waste processor according to claim 8, characterized in that, The control board is also electrically connected to a heating component for disinfection and deodorization, and the heating component is arranged inside the treatment cylinder (1) and inside the filtering cavity (6).
Citation Information
Cited By
Energy-saving kitchen waste processor capable of efficiently removing peculiar smell
CN120838807A