Treatment assembly and waste treatment device
By using a combination of connecting body, telescopic stopper, drive assembly and limit assembly in a stand-alone solid-liquid waste processor, the problem of telescopic stopper being squeezed out by kitchen waste is solved, and the processing efficiency and equipment stability are improved.
Patent Information
- Application Number
- CN202421677083.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-16
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-07-16
AI Technical Summary
In existing independent solid-liquid waste disposal processors, the telescopic stopper is easily opened by the force of kitchen waste, which affects the processing efficiency and causes equipment damage.
The processing component that includes connecting the body, the telescopic stopper, the driving component and the limiting component is adopted. The driving component switches the telescopic stopper between the open and closed states, and the limiting component limits it to ensure that it is not squeezed out by kitchen waste during the closed state.
Ensure that the telescopic stop is not squeezed out by kitchen waste when closed, improving the efficiency of kitchen waste disposal and the stability of equipment, and avoiding equipment damage.
Smart Images

Figure CN223043305U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of kitchen waste treatment, in particular to a processing component and a waste treatment device. Background Art
[0002] Kitchen waste, also known as organic waste, mainly includes food residues, fruit peels, vegetable leaves, etc., which is an important type of waste generated in daily life. These wastes contain rich organic substances and can be converted into useful resources through appropriate treatment and utilization, reducing environmental pollution.
[0003] In the prior art, there is an independent solid-liquid waste processor that can crush, grind and recycle kitchen waste. This independent solid-liquid waste processor includes several functional compartments, which are respectively used for crushing, grinding and collecting kitchen waste. Adjacent functional compartments are connected through a connection structure. A telescopic stopper is arranged inside the connection structure and is driven by a driving motor to open or close the connection channel. When the functional compartment is working, the telescopic stopper is in a closed state. During the crushing process of the hard waste in the functional compartment, it is easy to impact the telescopic stopper, resulting in accidental opening of the telescopic stopper, which not only affects the treatment efficiency of kitchen waste but also causes damage to the processor.
[0004] Therefore, a processing component and a waste treatment device are needed to solve the above problems. Summary of the Utility Model
[0005] The purpose of the utility model is to provide a processing component and a waste treatment device, which can prevent the connection structure from being opened due to the force of kitchen waste on the telescopic stopper, thereby ensuring the recycling efficiency of kitchen waste.
[0006] To achieve this purpose, the utility model adopts the following technical solutions:
[0007] A processing component, characterized in that the processing component includes a first functional compartment and a second functional compartment. The first functional compartment and the second functional compartment are connected through a connection structure. The connection structure includes a connection body, a telescopic stopper, a driving component and a limiting component. A connection channel is opened inside the connection body, and both ends of the connection channel are communicated with the first functional compartment and the second functional compartment respectively. The telescopic stopper is rotatably arranged between the outlet of the first functional compartment and the inlet of the connection channel. The driving component is used to drive the telescopic stopper to switch between two working states of an open state and a closed state. The limiting component is used to limit the telescopic stopper when it is in the open state and the closed state respectively.
[0008] As an alternative technical solution, the driving assembly includes a driving motor and a transmission assembly. The transmission assembly includes a first rod and a second rod. The first rod is connected to the output shaft of the driving motor. The second rod is rotatably connected to the telescopic blocking member. The first rod is rotatably connected to the second rod. The limiting assembly is used to limit the first rod.
[0009] As an alternative technical solution, the limiting assembly includes an abutting portion and a clamping portion. Both the abutting portion and the clamping portion are arranged on the connecting body. The abutting portion and the clamping portion are respectively located on both sides of the first rod. The abutting portion is used to limit the telescopic blocking member when it is in the open state. The clamping portion is used to limit the telescopic blocking member when it is in the closed state.
[0010] As an alternative technical solution, the clamping portion includes a telescopic rod. A buckle is arranged on the first rod. When the telescopic blocking member is in the closed state, the telescopic rod is clamped with the buckle.
[0011] As an alternative technical solution, the abutting portion includes an abutting seat and an abutting column. The abutting seat is connected to the connecting body. The abutting column is arranged on the abutting seat.
[0012] As an alternative technical solution, the connecting structure further includes a mounting structure, which is used to fixedly mount the driving motor on the connecting body.
[0013] As an alternative technical solution, the mounting structure includes a mounting seat and a mounting plate. The mounting seat is arranged on the connecting body. The mounting plate is mounted in the mounting seat. The mounting seat can limit the position of the mounting plate. The driving motor is mounted on the mounting plate.
[0014] As an alternative technical solution, the driving motor has a fixing seat. A first through hole is opened on the fixing seat. The mounting plate is provided with a first nut. A first bolt passes through the first through hole and is threadedly connected to the first nut, thereby connecting the driving motor to the mounting plate. A second through hole is opened on the mounting plate. A second threaded hole is arranged on the mounting seat. A second bolt passes through the second through hole and is threadedly connected to the second threaded hole, thereby connecting the mounting plate to the mounting seat.
[0015] As an alternative technical solution, the mounting seat includes a first mounting seat and a second mounting seat. The first mounting seat includes a first enclosure and a first column. The second mounting seat includes a second enclosure and a second column. The first enclosure and the second enclosure are used to limit the position of the mounting plate. There are multiple second threaded holes, and the multiple second threaded holes are respectively opened on the first column and the second column.
[0016] The present utility model adopts the following technical solutions:
[0017] A waste treatment device, including a box body. The waste treatment device further includes the treatment component as described above. The treatment component is arranged inside the box body. The first functional compartment is arranged above, and the second functional compartment is arranged below the first functional compartment.
[0018] The beneficial effects of the present utility model:
[0019] The present utility model discloses a treatment component, which includes a first functional compartment and a second functional compartment. The first functional compartment and the second functional compartment are connected by a connection structure. The connection structure includes a connection body, a telescopic stopper, a driving component and a limiting component. A connection channel is opened inside the connection body. Two ends of the connection channel are respectively communicated with the first functional compartment and the second functional compartment. The telescopic stopper is rotatably arranged inside the connection channel. The driving component is used to drive the telescopic stopper to switch between two working states of an open state and a closed state. The limiting component is used to limit the telescopic stopper when it is in the open state and the closed state respectively. The limiting component of this treatment component can limit the telescopic stopper when it is in the open state and the closed state respectively, which can ensure that the kitchen waste in the functional compartment adjacent to the telescopic stopper will not push open the telescopic stopper when the telescopic stopper is in the closed state, and ensure the normal treatment of the kitchen waste.
[0020] The present utility model also discloses a waste treatment device, including a box body, and further including the treatment component as described above. The treatment component is arranged inside the box body. The first functional compartment is arranged above, and the second functional compartment is arranged below the first functional compartment. The limiting component of this waste treatment device can limit the telescopic stopper, ensure the normal crushing and feeding work of the waste treatment device, and improve the recycling efficiency of the kitchen waste. Description of the Drawings
[0021] Figure 1 is a schematic structural view of the treatment component of an embodiment of the present utility model;
[0022] Figure 2 is an exploded view of the treatment component of an embodiment of the present utility model;
[0023] Figure 3 is a partial structure of the connection structure of an embodiment of the present utility model Figure 1 ;
[0024] Figure 4 is a partial structure of the connection structure of an embodiment of the present utility model Figure 2 ;
[0025] Figure 5 is a schematic structural view of the connection structure of an embodiment of the present utility modelFigure 1 ;
[0026] Figure 6 is a schematic diagram of the connection structure of an embodiment of the present utility model Figure 2 ;
[0027] Figure 7 is an exploded view of the connection structure of an embodiment of the present utility model.
[0028] In the figure:
[0029] 1. Processing component;
[0030] 10. Shredding chamber; 11. Rotating knife; 12. Fixed knife;
[0031] 20. Grinding chamber; 21. Grinding knife;
[0032] 30. Connection structure; 31. Connection body; 311. Connection channel; 32. Telescopic stopper; 331. Driving motor; 3311. Output shaft; 3331. Fixed seat; 33311. First through hole; 332. First rod; 3321. Buckle; 333. Second rod; 341. Abutting portion; 3411. Abutting seat; 3412. Abutting column; 3421. Telescopic rod; 35. Mounting structure; 351. Mounting seat; 3511. First enclosure; 3512. First column; 3513. Second enclosure; 3514. Second column; 3515. Rib plate; 3516. Second threaded hole; 352. Mounting plate; 3521. Second through hole; 36. Rotating shaft. Detailed implementation manners
[0033] The present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It can be understood that the specific embodiments described herein are only used to explain the present utility model, rather than limiting the present utility model. In addition, it should be noted that for the sake of description, only parts related to the present utility model are shown in the drawings, rather than all the structures.
[0034] In the description of the present utility model, unless otherwise clearly defined and limited, the terms "connected", "connected", and "fixed" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements or the interaction relationship between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.
[0035] In the present utility model, unless otherwise clearly defined and limited, the first feature being "above" or "below" the second feature may include direct contact between the first and second features, or may include the situation where the first and second features are not in direct contact but in contact through additional features therebetween. Moreover, the first feature being "above", "over" and "on the top of" the second feature includes that the first feature is directly above and obliquely above the second feature, or merely indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature being "below", "under" and "beneath" the second feature includes that the first feature is directly below and obliquely below the second feature, or merely indicates that the horizontal height of the first feature is lower than that of the second feature.
[0036] In the description of this embodiment, the orientation or positional relationships such as "upper", "lower", "right", etc. are based on the orientation or positional relationships shown in the drawings. It is only for the convenience of description and simplifying the operation, 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. Therefore, it should not be construed as a limitation to the present utility model. In addition, the terms "first" and "second" are only used for distinction in description and have no special meaning.
[0037] Such as Figures 1 to 7As shown, a processing component 1 is disclosed in the present embodiment, which includes a first functional cabin and a second functional cabin, and the first functional cabin and the second functional cabin are connected by a connecting structure 30. The connecting structure 30 includes a connecting body 31, a telescopic block 32, a driving component and a limiting component. A connecting channel 311 is opened inside the connecting body 31, and the two ends of the connecting channel 311 are respectively connected to the first functional cabin and the second functional cabin. The telescopic block 32 is rotatably arranged between the outlet of the first functional cabin and the entrance of the connecting channel 311. The driving component is used to drive the telescopic block 32 to switch between two working states of an open state and a closed state. The limiting component is used to limit the telescopic block 32 in the open state and the closed state respectively. Specifically, in this embodiment, the first functional cabin is the crushing cabin 10, and the second functional cabin is the grinding cabin 20. The crushing cabin 10 is used to crush the kitchen waste, and the grinding cabin 20 is used to collect the crushed kitchen waste and further grind it, thereby improving its recycling efficiency. The crushing cabin 10 and the grinding cabin 20 are connected by a connecting structure 30, and the connecting structure 30 includes a connecting body 31, a telescopic stopper 32, a driving assembly and a limiting assembly. The telescopic stopper 32 is rotatably arranged in the connecting channel 311 through a rotating shaft 36. When the kitchen waste is shredded, the driving component drives the telescopic stopper 32 to close the connecting channel 311, and the limiting component limits the telescopic stopper 32 to ensure that the telescopic stopper 32 is always in a closed state during the shredding process in the shredding chamber 10. After the kitchen waste is shredded in the shredding chamber 10, the driving component drives the telescopic stopper 32 to open the connecting channel 311, and the limiting component ensures that the telescopic stopper 32 is always in an open state, so that the kitchen waste can smoothly pass through the connecting channel 311 and enter the grinding chamber 20 for grinding. This processing component 1 can ensure that the working state of the telescopic stopper 32 has good stability, thereby improving the processing efficiency of the kitchen waste.
[0038] In this embodiment, a rotating knife 11 and a fixed knife 12 are provided in the crushing chamber 10 for crushing the kitchen waste. A grinder 21 is provided in the grinding chamber 20 for further grinding the kitchen waste, and the grinding knife 21 is also provided at the bottom of the collecting chamber. The collecting chamber is tilted so that the garbage at the bottom of the chamber, which is always under the effect of gravity, can fully contact with the grinding knife 21, thereby improving the grinding effect and further improving the recycling efficiency of the kitchen waste.
[0039] In another embodiment, the second functional compartment is a collection compartment. The inclined arrangement of the collection compartment enables the processed food waste to be piled at the bottom of the grinding compartment 20, so as to facilitate the recycling of the food waste.
[0040] In another embodiment, the processing component 11 includes a crushing chamber 10, a grinding chamber 20 and a collection chamber, and the crushing chamber 10, the grinding chamber 20 and the collection chamber are all arranged at an angle. This arrangement is beneficial to the crushing, grinding and collection of kitchen waste, and improves the recycling efficiency of kitchen waste, which will not be elaborated here.
[0041] Specifically, in the present embodiment, the structure of the connecting portion between the connecting body 31 and the crushing chamber 10 is adapted to the peripheral shape of the crushing chamber 10, and the structure of the connecting portion between the connecting body 31 and the grinding chamber 20 is adapted to the peripheral shape of the grinding chamber 20. This arrangement can effectively enhance the sealing effect between the connecting body 31, the crushing chamber 10 and the grinding chamber 20, and avoid leakage of kitchen waste.
[0042] In another embodiment, the second functional compartment is a collection compartment that can collect kitchen waste after the crushing operation in the crushing compartment 10. This processing component 1 is usually used for the recycling of kitchen waste without difficult-to-crush objects, and it can be collected after only crushing it.
[0043] In another embodiment, the first functional cabin is a crushing cabin 10, the second functional cabin is a grinding cabin 20, the processing component 1 also includes a collecting cabin, the collecting cabin is arranged below the grinding cabin 20, the crushing cabin 10 and the grinding cabin 20 are connected by a connecting structure 30, and the collecting cabin and the grinding cabin 20 are connected by a connecting structure 30. This processing component 1 can crush the kitchen waste in the crushing cabin 10, and then transport the crushed kitchen waste to the grinding cabin 20 for grinding. The grinding cabin 20 can grind the kitchen waste that is difficult to crush in the crushing cabin 10, such as hard bones, and then transport the ground kitchen waste to the collecting cabin for recycling, thereby improving the recycling effect of the kitchen waste. That is to say, the number and function of the functional cabins of the processing component 1 can be specifically set according to actual use, which will not be elaborated here.
[0044] Furthermore, if Figure 2 and Figure 3 As shown, the driving assembly includes a driving motor 331 and a transmission assembly, the driving motor 331 is in transmission connection with the transmission assembly, the transmission assembly is in transmission connection with the telescopic stopper 32, and the limit assembly is used to limit the transmission assembly. Specifically, in this embodiment, the driving motor 331 controls the movement of the telescopic stopper 32 through the transmission assembly, that is, the movement of the transmission assembly and the movement of the telescopic stopper 32 correspond to each other. In this embodiment, the limit assembly is used to limit the positioning of the transmission assembly, thereby limiting the position of the telescopic stopper 32.
[0045] Furthermore, the transmission assembly includes a first rod 332 and a second rod 333 , the first rod 332 is connected to the output shaft 3311 of the driving motor 331 , the second rod 333 is rotatably connected to the telescopic stopper 32 , and the limiting assembly is used to limit the first rod 332 . Specifically, in the present embodiment, the first rod 332 is connected to the output shaft 3311 of the driving motor 331, and the limiting assembly is used to limit the first rod 332. Since the first rod 332 is connected to the output shaft 3311 of the driving motor 331, the second rod 333 is rotationally connected to the telescopic block 32, and the first rod 332 is rotationally connected to the second rod 333. The driving motor 331 electrically drives the first rod 332 to rotate, and the first rod 332 drives the second rod 333 to rotate, thereby causing the telescopic block 32 to rotate relative to the rotating shaft 36, thereby opening or closing the connecting channel 311. When the telescopic block 32 switches between the open state and the closed state, the first rod 332 will shake within a certain range. The limiting assembly can limit the first rod 332, so as to limit the telescopic block 32, thereby improving the safety during use.
[0046] For further information, please refer to Figure 3 and Figure 4 The limiting assembly includes an abutment portion 341 and a clamping portion, both of which are arranged on the connecting body 31. The abutment portion 341 and the clamping portion are respectively located on both sides of the first rod 332. The abutment portion 341 is used to position the telescopic blocking member 32 when it is in the open state, and the clamping portion is used to limit the telescopic blocking member 32 when it is in the closed state. Specifically, in the present embodiment, the abutment portion 341 can provide a force on the first rod 332 when the telescopic block 32 is in the open state, thereby ensuring the effective limitation of the telescopic block 32, and the clamping portion can limit the first rod 332 when the telescopic block 32 is in the closed state, thereby enabling the second rod 333 to always provide support to the telescopic block 32 to prevent the harder kitchen waste from exerting a force on the telescopic block 32 when the kitchen waste is crushed in the crushing chamber 10. The force is transmitted to the first rod 332 through the telescopic block 32 and the second rod 333, causing the telescopic block 32 to open, thereby affecting the treatment of the kitchen waste.
[0047] Furthermore, the clamping portion includes a telescopic rod 3421, and a buckle 3321 is provided on the first rod 332. When the telescopic stopper 32 is in the closed state, the telescopic rod 3421 is clamped with the buckle 3321. Specifically, in this embodiment, the telescopic rod 3421 is usually in a retracted state. When the telescopic stopper 32 is in the closed state, the buckle 3321 of the first rod 332 is aligned with the telescopic rod 3421, and the telescopic rod 3421 is extended and then clamped with the buckle 3321, so that the first rod 332 is locked, so as to prevent the telescopic stopper 32 from being loosened when it is in the closed state, and then the kitchen waste is leaked, which affects the recycling of the kitchen waste. At the same time, the snap-fitting part can also reflect whether the telescopic stopper 32 completely closes the outlet of the crushing chamber 10. When the telescopic rod 3421 is extended, if the telescopic rod 3421 can be snap-fitted with the buckle 3321, it means that the position of the telescopic stopper 32 is correct. If there is a jam of kitchen waste between the telescopic stopper 32 and the outlet of the crushing chamber 10, the telescopic rod 3421 cannot be snap-fitted with the buckle 3321 normally and needs to be checked.
[0048] Further, the abutting portion 341 includes an abutting seat 3411 and an abutting column 3412, wherein the abutting seat 3411 is connected to the connecting body 31, and the abutting column 3412 is disposed on the abutting seat 3411. Specifically, in this embodiment, the abutting seat 3411 is convexly disposed on the connecting body 31, and the abutting column 3412 is inserted into the abutting seat 3411. In this embodiment, the abutting seat 3411 and the connecting body 31 are integrally formed, and the abutting column 3412 is a metal structure with good abutting strength, thereby ensuring that the telescopic stopper 32 can be effectively limited when opened, thereby ensuring stability in use.
[0049] Furthermore, if Figure 6 and Figure 7 As shown, the connection structure 30 also includes a mounting structure 35, and the mounting structure 35 is used to fix the drive motor 331 to the connection body 31. Specifically, in this embodiment, the drive motor 331 serves as the power output structure of the entire connection structure 30. In order to avoid being affected by the pressure of the crushing chamber 10 during the crushing process, the drive motor 331 usually needs to use a drive motor 331 with a large torque. The drive motor 331 with a large torque is directly installed on the connection body 31, which will have a certain impact on the mounting hole of the body. The mounting structure 35 in this embodiment can fix the drive motor 331 to the connection body 31, and can provide a certain buffer for the torque of the drive motor 331, thereby improving the service life of the connection structure 30.
[0050] Further, the mounting structure 35 includes a mounting seat 351 and a mounting plate 352. The mounting seat 351 is arranged on the connecting body 31, the mounting plate 352 is installed in the mounting seat 351, the mounting seat 351 can limit the position of the mounting plate 352, and the driving motor 331 is installed on the mounting plate 352. Specifically, in this embodiment, the mounting seat 351 is connected to the connecting body 31, the mounting plate 352 is installed in the mounting seat 351, and the mounting seat 351 can limit the position of the mounting plate 352, and the driving motor 331 is installed on the mounting plate 352. This arrangement can make the torque generated when the driving motor 331 moves first act on the mounting plate 352, and then act on the mounting seat 351 located on the connecting body 31, which can prevent the torque of the driving motor 331 from directly acting on the connecting body 31, thereby improving the service life.
[0051] Further, the driving motor 331 has a fixing seat 3331, a first through hole 33311 is provided on the fixing seat 3331, a first nut is provided on the mounting plate 352, a first bolt passes through the first through hole 33311 and is threadedly connected with the first nut, thereby connecting the driving motor 331 to the mounting plate 352, a second through hole 3521 is provided on the mounting plate 352, a second threaded hole 3516 is provided on the mounting seat 351, a second bolt passes through the second through hole 3521 and is threadedly connected with the second threaded hole 3516, thereby connecting the mounting plate 352 to the mounting seat 351. Specifically, in the present embodiment, the driving motor 331 is connected to the mounting plate 352 by the first bolt, and the mounting plate 352 is mounted on the mounting seat 351 by the second bolt, which not only ensures the connection stability, but also facilitates disassembly and assembly.
[0052] Further, the mounting seat 351 includes a first mounting seat and a second mounting seat, the first mounting seat includes a first enclosure 3511 and a first column 3512, the second mounting seat includes a second enclosure 3513 and a second column 3514, the first enclosure 3511 and the second enclosure 3513 are used to limit the position of the mounting plate 352, a plurality of second threaded holes 3516 are provided, and the plurality of second threaded holes 3516 are respectively opened in the first column 3512 and the second column 3514. Specifically, in this embodiment, the first enclosure 3511 and the second enclosure 3513 are both provided in the connecting body 31, the first enclosure 3511 and the second enclosure 3513 form an installation space, two first columns 3512 are provided inside the first enclosure 3511, and the two first columns 3512 are connected by a rib plate 3515, and two second columns 3514 are provided inside the second enclosure 3513, and the two second columns 3514 are connected by a rib plate 3515. The two first columns 3512 and the two second columns 3514 have the same height, forming a mounting plane for supporting the mounting plate 352. The height of the first enclosure 3511 and the second enclosure 3513 is higher than the mounting plane formed by the first columns 3512 and the second columns 3514, so that the mounting plate 352 can be confined to the installation space. The first columns 3512 and the second columns 3514 are both provided with second threaded holes 3516, which can be used to lock the mounting plate 352 at multiple points by bolts, thereby improving the installation stability of the mounting plate 352 and further improving the installation stability of the drive motor 331.
[0053] The present embodiment also discloses a waste treatment device, including a box body, and also including the processing assembly 1 as described above, the processing assembly 1 is arranged inside the box body, the first functional cabin is arranged above, and the second functional cabin is arranged below the first functional cabin. Specifically, in the present embodiment, the crushing cabin 10 and the grinding cabin 20 are fixed to the inner wall of the box body by fixing parts, the crushing cabin 10 is located at the upper part of the box body, the grinding cabin 20 is located below the crushing cabin 10, the outlet of the crushing cabin 10 is opened at the bottom of the crushing cabin 10, and the entrance of the grinding cabin 20 is opened at the top of the grinding cabin 20. This arrangement enables the processed kitchen waste in the crushing cabin 10 to enter the grinding cabin 20 through the connecting channel 311 for grinding treatment, thereby improving the processing efficiency. In addition, the crushing cabin 10 and the grinding cabin 20 in the present embodiment are both provided with separate doors, which can be used to put in and take out kitchen waste, and can also facilitate troubleshooting and maintenance, thereby improving the convenience of use. Among them, the number of functional cabins is specifically set according to actual use, which will not be repeated here.
[0054] Obviously, the above embodiments of the present invention are merely examples for the purpose of clearly illustrating the present invention, and are not intended to limit the implementation methods of the present invention. For those skilled in the art, various obvious changes, readjustments and substitutions can be made without departing from the scope of protection of the present invention. It is not necessary and impossible to list all implementation methods here. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention shall be included in the scope of protection of the claims of the present invention.
Claims
1. A processing component, characterized in that The processing assembly (1) comprises a first functional cabin and a second functional cabin, wherein the first functional cabin and the second functional cabin are connected via a connecting structure (30), wherein the connecting structure (30) comprises a connecting body (31), a telescopic stopper (32), a driving assembly and a limiting assembly, wherein a connecting channel (311) is provided inside the connecting body (31), wherein two ends of the connecting channel (311) are respectively connected to the first functional cabin and the second functional cabin, wherein the telescopic stopper (32) is rotatably arranged between an outlet of the first functional cabin and an inlet of the connecting channel (311), wherein the driving assembly is used for driving the telescopic stopper (32) to switch between two working states, namely, an open state and a closed state, and wherein the limiting assembly is used for limiting the position of the telescopic stopper (32) in the open state and the closed state, respectively.
2. The processing component according to claim 1, characterized in that The driving assembly comprises a driving motor (331) and a transmission assembly, wherein the transmission assembly comprises a first rod (332) and a second rod (333), wherein the first rod (332) is connected to an output shaft (3311) of the driving motor (331), and the second rod (333) is rotationally connected to the telescopic stopper (32), and the first rod (332) is rotationally connected to the second rod (333), and the limiting assembly is used to limit the first rod (332).
3. The processing component according to claim 2, characterized in that The limiting assembly comprises an abutting portion (341) and a clamping portion, wherein the abutting portion (341) and the clamping portion are both arranged on the connecting body (31), and the abutting portion (341) and the clamping portion are respectively located on both sides of the first rod (332), and the abutting portion (341) is used to limit the position of the telescopic blocking member (32) when it is in an open state, and the clamping portion is used to limit the position of the telescopic blocking member (32) when it is in a closed state.
4. The processing component according to claim 3, characterized in that The clamping portion comprises a telescopic rod (3421), and a buckle (3321) is provided on the first rod (332). When the telescopic blocking member (32) is in the closed state, the telescopic rod (3421) is clamped with the buckle (3321).
5. The processing assembly according to claim 3, characterized in that The abutting portion (341) comprises an abutting seat (3411) and an abutting column (3412), wherein the abutting seat (3411) is connected to the connecting body (31), and the abutting column (3412) is arranged on the abutting seat (3411).
6. The processing assembly according to claim 2, characterized in that The connection structure (30) further comprises a mounting structure (35), wherein the mounting structure (35) is used to fix the drive motor (331) to the connection body (31).
7. The processing assembly according to claim 6, characterized in that The mounting structure (35) comprises a mounting seat (351) and a mounting plate (352); the mounting seat (351) is arranged on the connecting body (31); the mounting plate (352) is mounted in the mounting seat (351); the mounting seat (351) can limit the position of the mounting plate (352); and the driving motor (331) is mounted on the mounting plate (352).
8. The processing assembly according to claim 7, characterized in that The drive motor (331) is provided with a fixing seat (3331), a first through hole (33311) is provided on the fixing seat (3331), a first nut is provided on the mounting plate (352), a first bolt passes through the first through hole (33311) and is threadedly connected to the first nut, thereby connecting the drive motor (331) to the mounting plate (352), a second through hole (3521) is provided on the mounting plate (352), a second threaded hole (3516) is provided on the mounting seat (351), a second bolt passes through the second through hole (3521) and is threadedly connected to the second threaded hole (3516), thereby connecting the mounting plate (352) to the mounting seat (351).
9. The processing assembly according to claim 8, characterized in that The mounting seat (351) includes a first mounting seat and a second mounting seat, the first mounting seat includes a first enclosure (3511) and a first column (3512), the second mounting seat includes a second enclosure (3513) and a second column (3514), the first enclosure (3511) and the second enclosure (3513) are used to limit the position of the mounting plate (352), and a plurality of second threaded holes (3516) are provided, and the plurality of second threaded holes (3516) are respectively opened on the first column (3512) and the second column (3514).
10. A waste treatment device, comprising a housing, characterized in that: The waste treatment device also includes a treatment component as described in any one of claims 1-9, and the treatment component is arranged inside the box body, the first functional cabin is arranged above, and the second functional cabin is arranged below the first functional cabin.