Garbage can
By designing a switchable fixing part and a supporting part, the position of the trash can can be flexibly adjusted, solving the problems of existing trash cans occupying space and affecting user experience, and improving the convenience and aesthetics of use.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2026-04-03
AI Technical Summary
Existing trash cans cannot be flexibly relocated, taking up space and affecting user experience.
Design a trash can including a connecting part, a fixing part, and a supporting part. The fixing part and the supporting part are movably connected and can switch between a first state and a second state, allowing the supporting part to move in or out of the coverage area of the supporting platform, thus achieving flexible adjustment of its position.
By flexibly adjusting the location, the space occupied by the trash can is reduced, the user experience is improved, and the odor and visual discomfort caused by trash are avoided.
Smart Images

Figure CN224076236U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of waste collection technology, specifically to a trash can. Background Technology
[0002] Existing trash cans are usually fixed in a designated location, and the bin itself is typically closely connected to its placement. For example, wall-mounted trash cans are usually hung on the side wall of a kitchen cabinet, while countertop trash cans are placed on a table. However, in spaces with limited space, such as kitchens or countertops, trash cans may take up too much space, and the trash inside can also affect the user experience. Furthermore, existing trash cans are usually not flexible enough to be repositioned, which can affect user activities and the overall layout of other items. Utility Model Content
[0003] (a) Technical problems to be solved
[0004] This utility model mainly addresses the shortcomings of the existing technology, specifically relating to a trash can that solves the problem that the position of trash cans in the existing technology cannot be flexibly adjusted.
[0005] (II) Technical Solution
[0006] This utility model relates to a trash can, including a connecting part. One end of the connecting part is connected to a supporting platform via a fixing part, and the other end is movably connected to a supporting part for accommodating trash. The fixing part is movably connected to the connecting part. The fixing part has a first state and a second state. In the first state, the fixing part is connected to the working surface of the supporting platform. When the fixing part moves to the second state, the fixing part is connected to the side of the supporting platform away from the working surface. The supporting part moves relative to the connecting part, which is suitable for moving the supporting part into or out of the coverage area of the supporting platform.
[0007] The advantages are that both the fixing part and the supporting part have a degree of freedom of movement relative to the connecting part, allowing users to adjust their positions according to their needs. Users can adjust the positions of the fixing part and / or the supporting part so that the entire trash can is hidden within the coverage area of the supporting platform, or only the supporting part is hidden within the coverage area, or the entire trash can is exposed within the coverage area, to meet different user needs. When the supporting part is moved into the coverage area of the supporting platform, it can be hidden within the coverage area, which reduces user discomfort when seeing trash. Furthermore, it increases the space available for the supporting platform and its surrounding area, resulting in a better user experience.
[0008] In one alternative embodiment, the fixing part is rotatably connected to the connecting part, which is adapted to allow the fixing part to switch between the first state and the second state.
[0009] In one alternative embodiment, a reference direction is defined along the connecting portion from the supporting portion to the fixing portion, and the rotation axis of the fixing portion relative to the connecting portion forms an angle with the reference direction.
[0010] In one optional embodiment, the fixing part is provided with a first rotating part, and the connecting part is provided with a first rotating engagement part. The first rotating part and the first rotating engagement part are engaged and connected to each other so that the fixing part rotates relative to the connecting part.
[0011] In one optional embodiment, the first rotating part is a hole-like structure, and the first rotating mating part is a columnar structure that is inserted into the hole-like structure.
[0012] The advantages are that it has a simple structure and is easy to assemble, disassemble and repair.
[0013] In one optional embodiment, a mounting portion is provided on one side of the fixing portion. The mounting portion is a groove-shaped structure with an opening. The first rotating portion is disposed in the two side walls opposite to the opening. The end of the connecting portion is fitted with the opening to allow the mounting portion to rotate around the end of the connecting portion.
[0014] The advantage is that the grooved mounting part facilitates quick installation with the end of the connecting part, and its two side walls limit the mounting part when it rotates around the connecting part, preventing the mounting part from shaking during rotation.
[0015] In one alternative embodiment, the mounting portion is positioned relative to the connecting portion to keep the fixing portion in a first state or a second state.
[0016] The advantage is that the fixing part can be rotated to the first state or the second state according to the user's needs and remain stably in that state to meet the user's different needs.
[0017] In one optional embodiment, the fixing part has a first limiting part and a second limiting part disposed on opposite sides thereon. In a first state, the first limiting part abuts against the connecting part to restrict the fixing part from rotating about a preset direction. When the fixing part rotates to a second state in the opposite direction of the preset direction, the second limiting part abuts against the connecting part to restrict the fixing part from rotating in the opposite direction of the preset direction.
[0018] The advantage is that by using different limiting parts to limit the fixed part in different states, the operation is more precise. Users only need to drive the fixed part to rotate in different directions to achieve different limits, which improves the user's control and keeps the fixed part within the specified angle range.
[0019] In one alternative embodiment, the first limiting portion and the second limiting portion are the side edges of the mounting portion at the opening.
[0020] The advantage is that it has a simple structure, does not require separate limiting components, and is easy to manufacture.
[0021] In one alternative embodiment, the fixing part rotates relative to the connecting part at an angle ranging from 1° to 180°, which is suitable for rotating the fixing part to connect with a different surface of the bearing platform.
[0022] The advantage is that the fixing part can rotate freely within an angle range of 1°-180°. Users can choose to rotate the fixing part to a suitable angle range according to the positional relationship of different surfaces of the carrying platform, so that the opening of the carrying part always faces upward, making it convenient for users to dispose of garbage.
[0023] In one alternative embodiment, in the initial state, the fixing part is connected to the working surface, and when the fixing part rotates 180° relative to the connecting part, the fixing part rotates to connect to the other side opposite to the working surface.
[0024] In one alternative embodiment, the fixing part includes an abutting part opposite to the carrying platform, the fixing part applying pressure to the carrying platform through the abutting part to fix the trash can on the carrying platform.
[0025] The advantage is that the pressure applied by the abutment part to the load-bearing platform allows the fixing part to be installed securely and reliably on the load-bearing platform. The abutment part can also indicate the front and back of the fixing part to the user, making it easy for the user to quickly connect the fixing part to the load-bearing platform.
[0026] In one alternative embodiment, the abutment portion is vacuum-adhered to the support platform.
[0027] The advantages are low cost, simple fixing method, and strong and reliable connection.
[0028] In one optional embodiment, the supporting part is rotatably connected to the connecting part, the fixing part is rotatably connected to the connecting part, and the rotation axis of the supporting part about the connecting part is perpendicular to the rotation axis of the fixing part relative to the connecting part.
[0029] In one alternative embodiment, when the supporting part and / or the fixing part moves relative to the connecting part, the waste disposal port of the supporting part always faces upward.
[0030] The advantages are that the garbage disposal opening always faces upwards, making it convenient to dispose of garbage when the carrier moves out of the coverage area of the carrier platform, and preventing garbage from spilling when the carrier moves into the coverage area of the carrier platform. At the same time, the carrier platform can also cover the garbage disposal opening, reducing the emission of odors and the discomfort of users seeing garbage.
[0031] In one optional embodiment, the supporting part is provided with a second rotating part, and the connecting part is provided with a second rotating engagement part. The second rotating part and the second rotating engagement part are engaged and connected to each other so that the supporting part rotates relative to the connecting part.
[0032] In one optional embodiment, the second rotating part is a hole-like structure, and the second rotating mating part is a columnar structure that is inserted into the hole-like structure.
[0033] The advantages are that it has a simple structure and is easy to assemble, disassemble and repair.
[0034] In one optional embodiment, the supporting part includes a collar and a receiving barrel, the receiving barrel being detachably installed in the collar, and the collar being rotatably connected to the connecting part.
[0035] The advantages are that it makes it easy for users to replace and disassemble the container, and it also facilitates express delivery. The edge of the garbage bag can be clamped between the ring and the container to secure the garbage bag.
[0036] In one optional embodiment, the container has a flange at the opening, and when the container is installed with the collar, the flange abuts against the collar.
[0037] The advantage is that the folded edge serves two purposes: it supports the container and it also allows the edge of the garbage bag to be sandwiched between the folded edge and the retaining ring.
[0038] In one alternative embodiment, a scraper is further included, which is detachably mounted on the support portion, connecting portion, or fixing portion.
[0039] The advantage is that the scraper can scrape the garbage into the carrying area, and it is also easy to store the scraper.
[0040] In one optional embodiment, the bearing portion includes a collar and a receiving bucket, the receiving bucket being detachably installed in the collar, and the scraper being detachably installed in the collar.
[0041] The advantage is that by placing the scraper in the ring, it is easy to install the scraper and easy for the user to take it out, while also making the most efficient use of space.
[0042] In one alternative embodiment, the collar has a mounting position on the side opposite to the receiving barrel that matches the shape of the scraper, and the scraper is mounted in the mounting position.
[0043] The advantages are that it allows for better installation of the scraper, reduces the likelihood of the scraper falling off due to contact, and also facilitates quick installation of the scraper.
[0044] In one alternative embodiment, the scraper is C-shaped and is mounted in a wraparound manner on the support portion.
[0045] The advantage is that the C-shaped scraper can gather the garbage, prevent it from scattering, and scrape off the garbage more efficiently. Attached Figure Description
[0046] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0047] Figure 1 This is a schematic diagram of the structure of the trash can according to an embodiment of the present utility model;
[0048] Figure 2 This is a structural schematic diagram of another state of the trash can according to an embodiment of the present utility model;
[0049] Figure 3 This is a structural schematic diagram of another state of the trash can according to an embodiment of the present utility model;
[0050] Figure 4 This is a structural schematic diagram of another state of the trash can according to an embodiment of the present utility model;
[0051] Figure 5 This is a cross-sectional structural diagram of a trash can according to an embodiment of the present utility model;
[0052] Figure 6 This is a schematic diagram of the structure of the fixing part of the trash can according to an embodiment of the present utility model;
[0053] Explanation of reference numerals in the attached figures:
[0054] 10. Connecting part; 11. First rotating fitting part; 12. Second rotating fitting part;
[0055] 20. Fixing part; 21. First rotating part; 23. Mounting part; 231. Opening; 232. First limiting part; 233. Second limiting part; 24. Abutting part;
[0056] 30. Bearing part; 31. Ring; 32. Receiving tank; 33. Scraper; 34. Second rotating part;
[0057] 40. Supporting platform. Detailed Implementation
[0058] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0059] This utility model relates to a trash can, including a connecting part 10. One end of the connecting part 10 is connected to a supporting platform 40 via a fixing part 20, and the other end is movably connected to a supporting part 30 for accommodating trash. The fixing part 20 is movably connected to the connecting part 10. The fixing part 20 has a first state and a second state. In the first state, the fixing part 20 is connected to the working surface of the supporting platform 40. When the fixing part 20 moves to the second state, the fixing part 20 is connected to the side of the supporting platform 40 away from the working surface. The supporting part 30 moves relative to the connecting part 10, which is suitable for moving the supporting part 30 into or out of the coverage area of the supporting platform 40.
[0060] Existing trash cans typically have containers that cannot be flexibly repositioned, which is inconvenient for areas with limited space. For example, in a typical home, the kitchen is small. When a wall-mounted trash can is hung on a cabinet door, unpleasant odors can develop inside the can after the user throws away trash, especially when a lot of trash has accumulated, affecting the user experience. It also attracts flies and other insects. Furthermore, users are likely to rub trash off the can while using the kitchen, resulting in a poor user experience. The same applies to countertop trash cans. Countertops are usually used to place items such as computers and books, and placing a trash can on the countertop would take up space, while placing it under the countertop would reduce the efficiency of trash disposal.
[0061] The trash can provided in this example has a fixed part 20 connected to a support platform 40, a fixed part 20 movably connected to a connecting part 10, and a connecting part 10 connected to a support part 30 that holds trash. This allows the fixed part 20 and the support part 30 to have degrees of freedom relative to the connecting part 10, enabling users to adjust the positional relationship between the fixed part 20, the support part 30, and the connecting part 10 according to their needs to adapt to different usage scenarios. It also makes it easy for users to hide the fixed part 20 and / or the support part 30 within the coverage area of the support platform 40.
[0062] The bearing part 30 is used to hold waste, and the connecting part 10 is used to connect the fixing part 20 and the bearing part 30, so that the bearing part 30 can be installed on the bearing platform 40.
[0063] like Figure 2 and Figure 3 As shown, the fixing part 20 has a first state and a second state. The two states correspond to different surface connections between the fixing part 20 and the support platform 40, and the two states can be switched freely by simply driving the fixing part 20 to move relative to the connecting part 10. This provides a better user experience and makes operation more convenient. In this example, the fixing part 20 is preferably rotatably connected to the connecting part 10, which is suitable for switching the fixing part 20 between the first state and the second state. Specifically, when the fixing part 20 is in the first state, the fixing part 20 can rotate around the connecting part 10 in a preset direction to the second state. Similarly, when the fixing part 20 is in the second state, the fixing part 20 can rotate around the connecting part 10 in a direction opposite to the preset direction to the first state.
[0064] The carrier part 30 is movably connected to the connecting part 10, allowing the carrier part 30 to move out of or into the coverage area of the carrier platform 40 relative to the connecting part 10. Specifically, when the carrier part 30 moves into the coverage area of the carrier platform 40, the carrier platform 40 will at least partially cover the opening 231 of the carrier part 30, making it difficult for users to see the carrier part 30 and thus hiding the carrier part 30. When the carrier part 30 moves out of the coverage area of the carrier platform 40, the carrier platform 40 will not cover the opening 231 of the carrier part 30, making it convenient for users to throw garbage into the carrier part 30 through the opening 231.
[0065] The support platform 40 is used to form the mounting base of the trash can. The support platform 40 can be a flat surface such as a tabletop or countertop. In this example, preferably, the coverage area of the support platform 40 is the space on the side of the support platform 40 away from the working surface. The working surface of the support platform 40 is the flat surface used by the user, such as the top surface of a tabletop or the top surface of a kitchen countertop. In this example, the material of the support platform 40 is not limited, as long as the support part 30 can be installed. In one optional embodiment, the direction along the connecting portion 10 from the supporting portion 30 to the fixing portion 20 is defined as the reference direction. The rotation axis of the fixing portion 20 relative to the connecting portion 10 forms an angle with the reference direction. Typically, the fixing portion 20 is located above the supporting portion 30 in the vertical direction. This way, when the fixing portion 20 is connected to the supporting platform 40, the supporting portion 30 is a certain distance from the supporting platform 40, which conforms to the user's operating habits and also facilitates scraping garbage into the supporting portion 30. Therefore, the preferred reference direction in this example is the vertical direction, that is, the connecting portion 10 extends in the vertical direction, so that the fixing portion 20 is located directly above the supporting portion 30, which facilitates the rotation of the fixing portion 20 and the supporting portion 30 relative to the connecting portion 10. The angle between the rotation axis of the fixing portion 20 relative to the connecting portion 10 and the reference direction is preferably 90° in this example, so that the axis of rotation is a horizontal line, which is suitable for most household desktops and countertops and facilitates connection.
[0066] Understandably, when some household tabletops and countertops have a certain tilt angle, the fixing part 20 is connected to the support platform 40. In order to keep the garbage disposal port of the support part 30 facing upward, the reference direction is usually vertical. However, at this time, the angle between the rotation axis of the fixing part 20 relative to the connecting part 10 and the reference direction will be acute or obtuse.
[0067] It is understandable that when the reference direction is inclined, that is, the fixing part 20 and the bearing part 30 are not on the same vertical line, the fixing part 20 is usually installed on the horizontal bearing platform 40, and the angle between the rotation axis of the fixing part 20 relative to the connecting part 10 and the reference direction will be acute or obtuse.
[0068] In one optional embodiment, the fixing part 20 is provided with a first rotating part 21, and the connecting part 10 is provided with a first rotating mating part 11. The first rotating part 21 and the first rotating mating part 11 are mated and connected to allow the fixing part 20 to rotate relative to the connecting part 10. Through the mating connection of the first rotating part 21 and the first rotating mating part 11, the fixing part 20 and the connecting part 10 can form a stable and reliable connection. In this example, the mating connection method is determined according to the structure of the first rotating part 21 and the first rotating mating part 11. The two can be mated by plugging, magnetic attraction, screws, snap-fit, etc., as long as they can maintain relative rotation after connection.
[0069] In one optional embodiment, the first rotating part 21 is a hole-like structure, and the first rotating mating part 11 is a columnar structure that is inserted into the hole-like structure. The insertion and mating method of the hole-like structure and the columnar structure is simple and convenient for assembly, disassembly and maintenance.
[0070] It is understandable that either the first rotating part 21 or the first rotating mating part 11 is a magnet, and the other is a magnet with opposite magnetic poles or an iron sheet.
[0071] In one optional embodiment, a mounting portion 23 is provided on one side of the fixing portion 20. The mounting portion 23 is a groove-shaped structure with an opening 231. The first rotating portion 21 is disposed in the two side walls opposite to the opening 231. The end of the connecting portion 10 is fitted with the opening 231, so that the mounting portion 23 rotates around the end of the connecting portion 10. The mounting portion 23 is used to connect with the connecting portion 10, so the shape of the mounting portion 23 matches the shape of the connecting portion 10. In this example, the preferred mounting portion 23 is a groove-shaped structure with an opening 231. The mounting part 23 has a "U" shaped structure. The two opposite side walls of the mounting part 23 are fitted with the connecting part 10. Preferably, the first rotating parts 21 are respectively provided in the two side walls. Then, the connecting part 10 is provided with a first rotating fitting part 11 at the position that mates with the two first rotating parts 21, so that the line connecting the two first rotating parts 21 is the axis of rotation, so that the fixing part 20 can rotate around the axis of rotation. In this example, the distance from the first rotating fitting part 11 to the top of the connecting part 10 should be less than the depth of the opening 231, so that the fixing part 20 can rotate easily.
[0072] In one optional embodiment, the mounting part 23 is positioned relative to the connecting part 10 so that the fixing part 20 is held in a first state or a second state. By positioning the connecting part 10 relative to the mounting part 23, the fixing part 20 can be rotated to the first state or the second state according to the user's needs and stably held in that state. In this example, the positioning of the mounting part 23 and the connecting part 10 can preferably be achieved by means of interference fit, snap-fit, magnetic attraction, etc.
[0073] In one optional embodiment, the fixing part 20 has a first limiting part 232 and a second limiting part 233 disposed on opposite sides thereon. In a first state, the first limiting part 232 abuts against the connecting part 10 to restrict the fixing part 20 from rotating around a preset direction. When the fixing part 20 rotates to a second state in the opposite direction of the preset direction, the second limiting part 233 abuts against the connecting part 10 to restrict the fixing part 20 from rotating in the opposite direction of the preset direction. By limiting the fixing part 20 in different states through different limiting parts, the operation is more precise. The user only needs to drive the fixing part 20 to rotate in different directions to achieve different limits, which improves the user's control and keeps the fixing part 20 within a specified angle range.
[0074] In an alternative embodiment, the first limiting part 232 and the second limiting part 233 are the side edges of the mounting part 23 at the opening 231, which has a simpler structure and is easier to manufacture.
[0075] In one optional embodiment, the fixing part 20 can rotate within an angle range of 1° to 180° relative to the connecting part 10, which is suitable for rotating the fixing part 20 to connect with different surfaces of the bearing platform 40. In this example, the fixing part 20 can rotate arbitrarily within the angle range of 1° to 180°. The user can choose to rotate the fixing part 20 to a suitable angle range according to the positional relationship of different surfaces of the bearing platform 40, so that the opening 231 of the bearing part 30 always remains facing upward, so as to facilitate the user to dispose of garbage. The preferred angle of rotation of the fixing part 20 relative to the connecting part 10 can be 45°, 90°, 135°, 180°, etc.
[0076] Understandably, according to user needs, a damping structure can be provided at the rotation position of the fixed part 20 and the connecting part 10 so that the fixed part 20 can remain suspended when rotated to any angle, so as to adapt to different surfaces of the bearing platform 40 for connection.
[0077] In one alternative embodiment, in the initial state, the fixing part 20 is connected to the working surface. When the fixing part 20 rotates 180° relative to the connecting part 10, the fixing part 20 rotates to connect to the other side opposite to the working surface. For most flat-shaped support platforms 40, it is only necessary for the fixing part 20 to connect to the working surface, or for the fixing part 20 to rotate 180° to connect to the other side opposite to the working surface.
[0078] In one optional embodiment, the fixing part 20 includes an abutting part 24 opposite to the supporting platform 40. The fixing part 20 applies pressure to the supporting platform 40 through the abutting part 24 to fix the trash can on the supporting platform 40. The abutting part 24 is used to contact the supporting platform 40. By applying pressure to the supporting platform 40, the fixing part 20 can be stably and reliably installed on the supporting platform 40. The abutting part 24 can be a magnetic suction cup, vacuum suction cup, Velcro, or other structure.
[0079] In one alternative embodiment, the abutment portion 24 is vacuum-adhered to the support platform 40. The suction cup connection method is inexpensive, simple to fix, and the connection is firm and reliable.
[0080] In one optional embodiment, the supporting part 30 is rotatably connected to the connecting part 10, and the fixing part 20 is rotatably connected to the connecting part 10. The rotation axis of the supporting part 30 about the connecting part 10 is perpendicular to the rotation axis of the fixing part 20 relative to the connecting part 10, so that the rotation directions of the supporting part 30 and the fixing part 20 are different and their rotations will not interfere with each other.
[0081] In one optional embodiment, when the supporting part 30 and / or the fixing part 20 move relative to the connecting part 10, the garbage disposal port of the supporting part 30 always faces upward, so that no matter how the supporting part 30 and / or the fixing part 20 moves or rotates to any position, the garbage disposal port of the supporting part 30 always faces upward. That is, when the supporting part 30 moves out of the coverage area of the supporting platform 40, it is convenient for the user to dispose of garbage because the garbage disposal port is facing upward. When the supporting part 30 is moved into the coverage area of the supporting platform 40, garbage spillage can be avoided because the garbage disposal port is facing upward. At the same time, the supporting platform 40 can also block the garbage disposal port, reducing the emission of odors and the user's discomfort when seeing garbage.
[0082] In one optional embodiment, the supporting part 30 is provided with a second rotating part 34, and the connecting part 10 is provided with a second rotating mating part 12. The second rotating part 34 and the second rotating mating part 12 are mated and connected to allow the supporting part 30 to rotate relative to the connecting part 10. Through the mating connection of the second rotating part 34 and the second rotating mating part 12, the supporting part 30 and the connecting part 10 can form a stable and reliable connection. In this example, the mating connection method is determined based on the structure of the second rotating part 34 and the second rotating mating part 12. The two can be mated by plugging, magnetic attraction, screws, snap-fitting, etc., as long as they can maintain relative rotation after connection. The mating connection method of the second rotating part 34 and the second rotating mating part 12 may be the same as or different from the mating connection method of the first rotating part 21 and the first rotating mating part 11.
[0083] In one optional embodiment, the second rotating part 34 is a hole-like structure, and the second rotating mating part 12 is a columnar structure that is inserted into the hole-like structure. The insertion and mating method of the hole-like structure and the columnar structure is simple and convenient for assembly, disassembly and maintenance.
[0084] In one optional embodiment, the supporting part 30 includes a collar 31 and a receiving bucket 32. The receiving bucket 32 is detachably installed in the collar 31. The collar 31 is rotatably connected to the connecting part 10. The receiving bucket 32 is used to hold garbage. The collar 31 is provided, and the receiving bucket 32 is detachably connected to the collar 31, which facilitates the user to replace and disassemble the receiving bucket 32. It also facilitates express delivery. The edge of the garbage bag can also be clamped between the collar 31 and the receiving bucket 32 to fix the garbage bag.
[0085] In one optional embodiment, the container 32 has a flange at the opening. When the container 32 is installed with the collar 31, the flange abuts against the collar 31. The flange can cover the gap between the container 32 and the collar 31 to prevent garbage from falling into the gap. At the same time, the container 32 can be fixed by the collar 31 abutting against the flange.
[0086] In an optional embodiment, a scraper 33 is also included. The scraper 33 is detachably installed on the bearing part 30, the connecting part 10, or the fixing part 20. The scraper 33 is used to scrape off garbage and is also easy to store. By cooperating with the movable bearing part 30, garbage on the bearing platform 40 can be scraped into the bearing part 30 for storage. For example, the bearing part 30 can be rotated relative to the connecting part 10 so that the opening 231 is directly opposite the edge of the bearing platform 40, thereby facilitating the scraping of garbage on the bearing platform 40 into the bearing part 30. The scraper 33 can be detachably connected to the bearing part 30, the connecting part 10, or the fixing part 20 by means of buckles, ropes, hooks, magnets, adhesives, etc.
[0087] In one optional embodiment, the supporting part 30 includes a collar 31 and a receiving bucket 32. The receiving bucket 32 is detachably installed in the collar 31, and the scraper 33 is detachably installed in the collar 31. Setting the scraper 33 in the collar 31 makes it easy for the user to take it out, and at the same time, it can make reasonable and efficient use of space. Because the inner side wall of the collar 31 is usually in contact with the receiving bucket 32, while the outer side wall is usually opposite to the user and does not play a role in the trash can, it is convenient to set the scraper 33. For example, the scraper 33 can be connected to the outer side wall by means of buckles, ropes, hooks, magnets, adhesives, etc.
[0088] In one optional embodiment, the collar 31 has a mounting position on the side opposite to the receiving tank 32 that matches the shape of the scraper 33. The scraper 33 is installed in the mounting position. Setting a mounting position that matches the shape of the scraper 33 can better install the scraper 33, reduce the possibility of the scraper 33 falling off due to contact, and also facilitate quick installation of the scraper 33. In this example, it is preferable to set a limiting structure, such as a buckle or magnetic attraction, in the mounting position so that the scraper 33 can be stably held in the installation position.
[0089] In one optional embodiment, the scraper 33 is C-shaped and is mounted in a wrap-around manner on the support part 30. The C-shaped scraper 33 can gather the garbage, prevent the garbage from scattering, and scrape the garbage more efficiently. In this example, it is preferred to mount the scraper 33 in a wrap-around manner on the support part 30, which can make reasonable use of space, provide a better user experience, and also play a role in hiding the scraper 33, making the trash can more aesthetically pleasing.
[0090] In this example, the trash can has at least four states:
[0091] (1) As Figure 2 As shown, the fixing part 20 rotates relative to the connecting part 10 so that the abutting part 24 faces downward and connects with the upper surface (i.e., the working surface) of the bearing platform 40, and the bearing part 30 rotates relative to the connecting part 10 to move out of the coverage area of the bearing platform 40.
[0092] (2) Figure 3 As shown, the fixing part 20 rotates relative to the connecting part 10 so that the abutting part 24 faces upward and connects with the lower surface of the bearing platform 40 (i.e. the other side opposite to the working surface), and the bearing part 30 rotates relative to the connecting part 10 to move out of the coverage area of the bearing platform 40.
[0093] (3) Figure 4 As shown, the fixing part 20 rotates relative to the connecting part 10 so that the abutting part 24 faces downward and connects with the upper surface (i.e., the working surface) of the bearing platform 40, and the bearing part 30 rotates relative to the connecting part 10 to move into the coverage area of the bearing platform 40.
[0094] (4) As not shown in the figure, the fixing part 20 rotates relative to the connecting part 10 so that the abutting part 24 faces upward and connects with the lower surface of the bearing platform 40 (i.e. the other side opposite to the working surface), and the bearing part 30 rotates relative to the connecting part 10 to move into the coverage area of the bearing platform 40.
[0095] Although embodiments of the present invention have been described in conjunction with the accompanying drawings, those skilled in the art can make various modifications and variations without departing from the spirit and scope of the present invention, and such modifications and variations all fall within the scope defined by the appended claims.
Claims
1. A trash can, characterized by, The connecting part (10) is connected with the bearing platform (40) through the fixing part (20) at one end, and the bearing part (30) for accommodating garbage is movably connected at the other end, the fixing part (20) is movably connected with the connecting part (10), the fixing part (20) has a first state and a second state, in the first state, the fixing part (20) is connected with the working surface of the bearing platform (40), when the fixing part (20) moves to the second state, the fixing part (20) is connected with the side of the bearing platform (40) away from the working surface; The bearing part (30) moves relative to the connecting part (10), and is suitable for moving the bearing part (30) into or out of the coverage area of the bearing platform (40).
2. The trash can of claim 1, wherein, The fixing part (20) is rotatably connected with the connecting part (10), and is suitable for switching the fixing part (20) between the first state and the second state.
3. The trash can of claim 2, wherein, The direction from the bearing part (30) to the fixing part (20) along the connecting part (10) is defined as the reference direction, and the rotation axis of the fixing part (20) relative to the connecting part (10) forms an angle with the reference direction.
4. The trash can of claim 3, wherein, The fixing part (20) is provided with a first rotating part (21), and the connecting part (10) is provided with a first rotating matching part (11), the first rotating part (21) and the first rotating matching part (11) are matched and connected to rotate the fixing part (20) relative to the connecting part (10).
5. The trash can of claim 4, wherein, The first rotating part (21) is a hole structure, and the first rotating matching part (11) is a columnar structure matched with the hole structure.
6. A bin according to claim 4 or 5, wherein, One side of the fixing part (20) is provided with a mounting part (23), the mounting part (23) is a groove structure with an opening (231), the first rotating part (21) is arranged in the two side walls opposite to the opening (231), and the end of the connecting part (10) is matched and mounted with the opening (231) to rotate the mounting part (23) around the end of the connecting part (10).
7. The trash can of claim 6, wherein, The mounting part (23) is limited with the connecting part (10) to keep the fixing part (20) in the first state or the second state.
8. The trash can of claim 7, wherein, The fixing part (20) has a first limiting part (232) and a second limiting part (233) arranged on opposite sides thereof, in the first state, the first limiting part (232) abuts against the connecting part (10) to limit the rotation of the fixing part (20) around the preset direction; When the fixing part (20) rotates to the second state in the direction opposite to the preset direction, the second limiting part (233) abuts against the connecting part (10) to limit the rotation of the fixing part (20) in the direction opposite to the preset direction.
9. The trash can of claim 8, wherein, The first limiting part (232) and the second limiting part (233) are side edges of the mounting part (23) at the opening (231).
10. The trash can of any one of claims 2-5 and 7-9, wherein, The fixed part (20) rotates relative to the connecting part (10) within an angle range of 1°-180°, and is suitable for rotating the fixed part (20) to connect with different surfaces of the bearing platform (40).
11. The trash can of claim 10, wherein, In the initial state, the fixed part (20) is connected with the working surface, and when the fixed part (20) rotates 180° relative to the connecting part (10), the fixed part (20) rotates to connect with another surface away from the working surface.
12. The trash can of any one of claims 2-5, 7-9, and 11, wherein, The fixed part (20) comprises an abutting part (24) opposite to the bearing platform (40), and the fixed part (20) presses the bearing platform (40) through the abutting part (24) to fix the garbage can on the bearing platform (40).
13. The trash can of claim 12, wherein, The abutting part (24) is vacuum-sucked on the bearing platform (40).
14. The trash can of any one of claims 1-5, 7-9, 11, and 13, wherein, The bearing part (30) is rotationally connected with the connecting part (10), and the bearing part (30) is perpendicular to the rotation axis of the fixed part (20) relative to the connecting part (10).
15. The trash can of claim 14, wherein, When the bearing part (30) and / or the fixed part (20) move relative to the connecting part (10), the garbage throwing opening of the bearing part (30) is always upward.
16. The trash can of claim 14, wherein, The bearing part (30) is provided with a second rotation part (34), and the connecting part (10) is provided with a second rotation matching part (12), the second rotation part (34) is connected with the second rotation matching part (12) in a matching mode, so that the bearing part (30) rotates relative to the connecting part (10).
17. The trash can of claim 16, wherein, The second rotation part (34) is a hole structure, and the second rotation matching part (12) is a columnar structure matched with the hole structure.
18. The trash can of any one of claims 1-5, 7-9, 11, 13, and 15-17, wherein, The bearing part (30) comprises a sleeve ring (31) and a containing barrel (32), the containing barrel (32) is detachably installed in the sleeve ring (31), and the sleeve ring (31) is rotationally connected with the connecting part (10).
19. The trash receptacle of claim 18, wherein, The containing barrel (32) is provided with a turn-up at a barrel opening, and when the containing barrel (32) is installed in the sleeve ring (31), the turn-up abuts against the sleeve ring (31).
20. The trash can of any one of claims 1-5, 7-9, 11, 13, and 15-17, wherein, A scraper (33) is further included, and the scraper (33) is detachably installed on the bearing part (30), the connecting part (10) or the fixed part (20).
21. The trash receptacle of claim 20, wherein, The bearing part (30) comprises a sleeve ring (31) and a containing barrel (32), the containing barrel (32) is detachably installed in the sleeve ring (31), and the scraper (33) is detachably installed in the sleeve ring (31).
22. The trash receptacle of claim 21, wherein, The sleeve ring (31) is provided with a mounting position matched with the scraper (33) on a side away from the containing barrel (32), and the scraper (33) is installed in the mounting position.
23. The trash receptacle of claim 21 or 22, wherein, The scraper (33) is C-shaped, and the scraper (33) is installed on the bearing part (30) in a ring shape.