Garbage can
By using a synchronous component and a servo motor-driven compression component, the problem of insufficient internal space utilization in trash cans is solved, enabling the sorting and compression of trash and improving the convenience and comfort of using the trash cans.
Patent Information
- Application Number
- CN202520713744.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-04-15
AI Technical Summary
In the current process of using trash cans, the different shapes of trash make it difficult to make full use of the internal space, which affects the convenience and comfort of use.
The extrusion assembly, driven by a synchronous component and a servo motor, compresses the waste by rotating the flip cover in opposite directions to the dropping plate. The servo motor controls the waste to enter different garbage bags, thus achieving waste sorting and compression.
It improves the ease of use and space utilization of trash cans, enables effective sorting and compression of waste, and enhances user comfort.
Smart Images

Figure CN223804223U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a garbage can field especially relates to a garbage can. BACKGROUND
[0002] Garbage can, also known as waste box or dustbin, is the container for storing garbage. Most of them are made of metal or plastic, and plastic bags are put in when used. When the garbage is too much, the bag can be tied and thrown away. Garbage can is a container for hiding dirt in people's life, and it is a reflection of social culture. Most garbage cans have lids to prevent the smell of garbage from spreading. Some garbage cans can be opened by foot. Most of the garbage cans at home are placed in the kitchen to facilitate the disposal of kitchen waste. Some families will place one in each main room.
[0003] However, the existing garbage can is usually opened by rotating the lid during use, and the garbage is put into the can to realize the use of the garbage can. However, after long-term use, due to the different shapes of garbage, there is still a certain space between the garbage after the garbage can is filled, so that the space inside the garbage can cannot be fully used, thereby affecting the convenience of using the garbage can to some extent. UTILITY MODEL CONTENT
[0004] In order to overcome the problem that the space inside the garbage can cannot be fully used due to the different shapes of garbage during use of the existing garbage can, thereby affecting the comfort of using the entire garbage can to some extent.
[0005] The technical scheme of the utility model is: a garbage can, comprising a barrel body assembly, an adjusting assembly connected to the barrel body assembly, a synchronous assembly connected to the adjusting assembly, and a classification assembly connected to the synchronous assembly.
[0006] The synchronous assembly comprises a connecting head connected to the adjusting assembly, a driving rotating assembly movably connected to the connecting head, a first synchronous wheel connected to the driving rotating assembly, a synchronous belt movably connected to the first synchronous wheel, and a second synchronous wheel movably connected to the synchronous belt.
[0007] The classification assembly comprises a positioning strip connected to the second synchronous wheel through a rotating shaft, a falling object plate connected to the rotating shaft, and an extrusion assembly connected to the falling object plate.
[0008] As a preferred embodiment, the driving rotating assembly comprises a fixed column movably connected to the connecting head, a first meshing disc connected to the fixed column, a fixed sleeve movably connected to the fixed column, a second meshing disc connected to the fixed sleeve, a first meshing block movably connected to the first meshing disc, a connecting block frame movably connected to the first meshing block, and a second meshing block movably connected to the connecting block frame. The fixed sleeve is connected to the first synchronous wheel, and the connecting block frame is connected to the adjusting assembly.
[0009] As preferred, the extrusion assembly comprises a combination strip connected to the drop plate, a servo motor connected to the bottom end surface of the drop plate, a motor rotating shaft connected to the output shaft of the servo motor, and a poking strip connected to the motor rotating shaft.
[0010] As preferred, the adjusting assembly comprises a fixed plate connected to the connecting head, a fixed sliding block connected to the fixed plate, a fixed sliding rail movably connected to the fixed sliding block, and a flip cover assembly connected to the fixed column.
[0011] As preferred, the flip cover assembly comprises a rotating flip cover connected to the fixed column, a connecting handle connected to the rotating flip cover, and a pressure sensor connected to the connecting handle.
[0012] As preferred, the barrel assembly comprises a barrel shell connected to the fixed sliding rail, a clamping block movably connected to the barrel shell, a fixed handle connected to the clamping block, a connecting strip connected to the clamping block, a fixed clamp movably connected to the barrel shell, and a garbage bag movably connected to the fixed clamp.
[0013] As preferred, the first engaging disc is engaged with the first engaging block, the second engaging disc is engaged with the second engaging block, and the second engaging block is engaged with the first engaging block.
[0014] The utility model discloses the beneficial effect:
[0015] 1, the utility model discloses a rotating fixed column to drive the first engaging disc to rotate, and the first engaging disc is rotated to drive the first engaging block to rotate, and the first engaging block is rotated to drive the second engaging block to rotate, and the second engaging block is rotated to drive the second engaging disc to rotate, to drive the fixed sleeve to rotate through the second engaging disc, so that the first synchronous wheel of fixed sleeve is also synchronous rotation, and under the action of synchronous belt, the rotation of synchronous belt also drives the rotation of second synchronous wheel, and the fixed column and second synchronous wheel of opposite rotating direction can make the rotating direction of flip cover and drop plate opposite, and then make the flip cover in the process of opening, can press the garbage through drop plate, to improve the use convenience of whole garbage can.
[0016] 2, the utility model discloses a servo motor to drive the motor rotating shaft to rotate, and the motor rotating shaft is rotated to drive the poking strip to rotate, to drive the garbage falling on the drop plate to fall into different garbage bags according to the demand of user through the poking strip, so that the garbage can be separated according to the demand of user to compress the garbage and not to compress the garbage through the cavity in the barrel shell and garbage bag in the process of using, to realize the improvement of garbage can use convenience. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 A three-dimensional structure schematic view of the garbage can is shown;
[0018] Figure 2 A three-dimensional structure schematic view of the adjusting assembly of the garbage can is shown;
[0019] Figure 3 A first three-dimensional structure schematic view of the classification assembly of the garbage can is shown;
[0020] Figure 4 A second three-dimensional structure schematic view of the classification assembly of the garbage can is shown;
[0021] Figure 5 A three-dimensional structure schematic view of the synchronization assembly of the garbage can is shown;
[0022] Figure 6 An external schematic view of the physical appearance research and development model of the garbage can is shown;
[0023] Figure 7 An external schematic view of the physical appearance research and development model of the garbage can is shown;
[0024] Figure 8 An external schematic view of the physical appearance research and development model of the garbage can is shown;
[0025] Figure 9 An external schematic view of the physical appearance research and development model of the garbage can is shown.
[0026] BRIEF DESCRIPTION OF DRAWINGS: 1, barrel assembly; 2, adjusting assembly; 3, synchronization assembly; 4, classification assembly; 101, barrel shell; 102, clamping block; 103, fixed handle; 104, connecting strip; 105, fixed clamp; 106, garbage bag; 201, fixed slide rail; 202, fixed slide block; 203, fixed plate; 204, rotating cover; 205, connecting handle; 206, pressure sensor; 301, connecting head; 302, fixed column; 303, first meshing disc; 304, first meshing block; 305, second meshing block; 306, connecting block frame; 307, second meshing disc; 308, fixed sleeve; 309, first synchronization wheel; 310, synchronization belt; 311, second synchronization wheel; 401, positioning strip; 402, falling object plate; 403, combined strip; 404, motor rotating shaft; 405, actuating strip; 406, servo motor. DETAILED DESCRIPTION
[0027] The utility model will be further explained in connection with the drawings and examples.
[0028] A garbage can, according to Figures 1-5 As shown, comprising a barrel assembly 1, an adjusting assembly 2 connected to the barrel assembly 1, a synchronization assembly 3 connected to the adjusting assembly 2, and a classification assembly 4 connected to the synchronization assembly 3.
[0029] The synchronization assembly 3 comprises a connecting head 301 connected to the adjusting assembly 2, a driving assembly movably connected to the connecting head 301, a first synchronization wheel 309 connected to the driving assembly, a synchronization belt 310 movably connected to the first synchronization wheel 309, and a second synchronization wheel 311 movably connected to the synchronization belt 310.
[0030] The classification assembly 4 comprises a positioning strip 401 connected to the second synchronization wheel 311 through a rotating shaft, a falling plate 402 connected to the rotating shaft, and a squeezing assembly connected to the falling plate 402.
[0031] According to Figure 5 As shown, the driving assembly comprises a fixed column 302 movably connected to the connecting head 301, a first meshing disc 303 connected to the fixed column 302, a fixed sleeve 308 movably connected to the fixed column 302, a second meshing disc 307 connected to the fixed sleeve 308, a first meshing block 304 movably connected to the first meshing disc 303, a connecting block frame 306 movably connected to the first meshing block 304, and a second meshing block 305 movably connected to the connecting block frame 306, the fixed sleeve 308 is connected to the first synchronization wheel 309, and the connecting block frame 306 is connected to the adjusting assembly 2.
[0032] It should be noted that the fixed column 302 is rotated to drive the first meshing disc 303 to rotate, the first meshing disc 303 is rotated to drive the first meshing block 304 to rotate, the first meshing block 304 is rotated to drive the second meshing block 305 to rotate, and the second meshing block 305 is rotated to drive the second meshing disc 307 to rotate, so as to drive the fixed sleeve 308 to rotate synchronously through the second meshing disc 307, so that the first synchronization wheel 309 connected to the fixed sleeve 308 also rotates synchronously, and under the action of the synchronization belt 310, the rotation of the synchronization belt 310 also drives the rotation of the second synchronization wheel 311, while the fixed column 302 and the second synchronization wheel 311 with opposite rotation directions can make the rotation direction of the rotating cover 204 opposite to that of the falling plate 402, thereby making the rotating cover 204 open, and the falling plate 402 can squeeze the garbage during the opening process, so as to improve the use convenience of the entire garbage can.
[0033] According to Figures 3-4As shown, the pressing assembly comprises a combined strip 403 connected to the falling plate 402, a servo motor 406 connected to the bottom end surface of the falling plate 402, a motor rotating shaft 404 connected to the output shaft of the servo motor 406, and a poking strip 405 connected to the motor rotating shaft 404.
[0034] It should be noted that the servo motor 406 drives the motor rotating shaft 404 to rotate, and the motor rotating shaft 404 drives the poking strip 405 to rotate, so that the garbage falling on the falling plate 402 can fall into different garbage bags 106 according to the user's needs.
[0035] According to Figure 2 As shown, the adjusting assembly 2 comprises a fixed plate 203 connected to the connecting head 301, a fixed sliding block 202 connected to the fixed plate 203, a fixed sliding rail 201 movably connected to the fixed sliding block 202, and a flip cover assembly connected to the fixed column 302, which drives the flip cover assembly to move in the vertical direction through the movable connection of the fixed sliding block 202 and the fixed sliding rail 201.
[0036] According to Figure 2 As shown, the flip cover assembly comprises a rotating flip cover 204 connected to the fixed column 302, a connecting handle 205 connected to the rotating flip cover 204, and a pressure sensor 206 connected to the connecting handle 205, the pressure sensor 206 is electrically connected to the servo motor 406, and the pressure sensor 206 can drive the servo motor 406 to drive the poking strip 405 to rotate in the desired direction.
[0037] According to Figures 1-2 As shown, the barrel assembly 1 comprises a barrel shell 101 connected to the fixed sliding rail 201, a clamping block 102 movably connected to the barrel shell 101, a fixed handle 103 connected to the clamping block 102, a connecting strip 104 connected to the clamping block 102, a fixed clamp 105 movably connected to the barrel shell 101, and a garbage bag 106 movably connected to the fixed clamp 105.
[0038] It should be noted that the garbage bag 106 and the cavity inside the barrel shell 101 are set to separate the garbage that needs to be compressed from the garbage that does not need to be compressed during use, thereby improving the convenience of using the garbage can.
[0039] According to Figure 5 As shown, the first engaging disc 303 is engaged with the first engaging block 304, the second engaging disc 307 is engaged with the second engaging block 305, and the second engaging block 305 is engaged with the first engaging block 304.
[0040] The embodiment of the utility model has been explained in detail in combination with the drawings, but the utility model is not limited to the above-mentioned embodiment, and various changes can be made within the knowledge range possessed by the person skilled in the art without departing from the purpose of the utility model.
Claims
1. A trash receptacle, characterized by: The application relates to a kind of waste sorting machines, which comprises a barrel assembly (1), an adjusting assembly (2) connected to the barrel assembly (1), a synchronization assembly (3) connected to the adjusting assembly (2), and a classification assembly (4) connected to the synchronization assembly (3). The synchronization assembly (3) comprises a connecting head (301) connected to the adjusting assembly (2), a driving assembly movably connected to the connecting head (301), a first synchronization wheel (309) connected to the driving assembly, a synchronization belt (310) movably connected to the first synchronization wheel (309), and a second synchronization wheel (311) movably connected to the synchronization belt (310). The classification assembly (4) comprises a positioning strip (401) connected to the second synchronization wheel (311) through a rotating shaft, a falling object plate (402) connected to the rotating shaft, and a pressing assembly connected to the falling object plate (402).
2. The trash can of claim 1, wherein: The driving assembly comprises a fixed column (302) movably connected to the connecting head (301), a first meshing disc (303) connected to the fixed column (302), a fixed sleeve (308) movably connected to the fixed column (302), a second meshing disc (307) connected to the fixed sleeve (308), a first meshing block (304) movably connected to the first meshing disc (303), a connecting block frame (306) movably connected to the first meshing block (304), and a second meshing block (305) movably connected to the connecting block frame (306), wherein the fixed sleeve (308) is connected to the first synchronization wheel (309), and the connecting block frame (306) is connected to the adjusting assembly (2).
3. The trash can of claim 1, wherein: The pressing assembly comprises a combination strip (403) connected to the falling object plate (402), a servo motor (406) connected to the bottom end surface of the falling object plate (402), a motor rotating shaft (404) connected to the output shaft of the servo motor (406), and a pushing strip (405) connected to the motor rotating shaft (404).
4. The trash can of claim 1, wherein: The adjusting assembly (2) comprises a fixed plate (203) connected to the connecting head (301), a fixed sliding block (202) connected to the fixed plate (203), a fixed sliding rail (201) movably connected to the fixed sliding block (202), and a flip cover assembly connected to the fixed column (302).
5. The trash can of claim 4, wherein: The flip cover assembly comprises a rotating flip cover (204) connected to the fixed column (302), a connecting handle (205) connected to the rotating flip cover (204), and a pressure sensor (206) connected to the connecting handle (205).
6. The trash can of claim 4, wherein: The barrel assembly (1) comprises a barrel shell (101) connected to the fixed sliding rail (201), a clamping block (102) movably connected to the barrel shell (101), a fixed handle (103) connected to the clamping block (102), a connecting strip (104) connected to the clamping block (102), a fixed clamp (105) movably connected to the barrel shell (101), and a garbage bag (106) movably connected to the fixed clamp (105).
7. The trash can of claim 2, wherein: The first engaging disc (303) engages with the first engaging block (304), the second engaging disc (307) engages with the second engaging block (305), and the second engaging block (305) engages with the first engaging block (304).