Garbage basket pop-up structure of water surface cleaning machine
By designing a sliding connection garbage basket pop-out structure on the water surface cleaning machine, the automatic sliding out and stable fixing of the garbage basket is achieved by using pop-out components and locking structures, which solves the problem of inconvenient garbage basket removal in existing water surface cleaning machines and improves operating efficiency and equipment stability.
Patent Information
- Application Number
- CN202520388812.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-06
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2035-03-06
AI Technical Summary
The existing garbage basket design of water surface cleaning machines lacks a convenient pop-out mechanism, which makes the operation cumbersome, prone to scattering, and increases the difficulty of maintenance when the garbage basket is full, and fails to meet the needs of fast and convenient operation.
Design a garbage basket ejection structure including a shell, an ejection component, and a locking structure. The garbage basket automatically slides out through a sliding connection and a power spring, and the locking structure automatically resets with the help of a button and a reset spring, ensuring the stability and safety of the garbage basket during the sliding process.
It simplifies the process of removing and putting back the trash cans, reduces operational difficulty and time costs, prevents trash from scattering, improves operational convenience and equipment stability, and ensures the high efficiency of trash collection.
Smart Images

Figure CN223824136U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of water surface cleaning technology, and in particular to a garbage basket pop-out structure for a water surface cleaning machine. Background Technology
[0002] As an environmentally friendly device, water surface cleaning machines are widely used in cleaning operations of rivers, lakes, ponds, and other bodies of water. Their main function is to collect and store floating debris on the water surface, such as plastic bags, leaves, and paper scraps. In existing water surface cleaning machine designs, a trash basket is a structure used to collect the debris collected by the machine. These baskets are typically designed to be fixed or simply detachable. However, this design has some significant shortcomings.
[0003] Ordinary water surface cleaning machines often lack a convenient pop-out mechanism for their trash baskets. After a period of use, when the basket is full and needs emptying, the operator usually has to manually remove it from the machine. This is not only cumbersome but also prone to scattering trash during removal, causing secondary pollution. Furthermore, if the basket is too firmly secured, tools or extra force may be needed to remove it, undoubtedly increasing the difficulty and time cost of the operation.
[0004] More importantly, the lack of a pop-out mechanism makes the replacement and maintenance of trash cans inefficient. In environments with frequent use, trash cans may need to be cleaned or replaced often, and the existing fixed or simply removable designs clearly cannot meet the needs for quick and convenient operation.
[0005] Therefore, in order to overcome the inconvenience of removing the trash basket in existing water surface cleaning machines and improve operational efficiency and convenience, it is necessary to design a trash basket pop-out structure for water surface cleaning machines. Utility Model Content
[0006] In view of this, it is necessary to provide a garbage basket pop-out structure for a water surface cleaning machine to solve the above problems.
[0007] Embodiments of this application provide a trash basket pop-out structure for a water surface cleaning machine, comprising:
[0008] A housing that allows the trash basket to be slidably attached to the housing;
[0009] A pop-out component is fixed inside the housing and located on the sliding path of the trash can. The housing allows the pop-out component to push the trash can out of the housing along the sliding direction of the trash can.
[0010] A locking structure is slidably connected to the housing, the housing allowing the locking structure to slide onto the sliding path of the trash basket, and when the locking structure is on the sliding path of the trash basket, the locking structure restricts the sliding of the trash basket.
[0011] In at least one embodiment of this application, when the locking structure slides onto the sliding path of the trash basket and the trash basket is slidably connected to the housing, the locking structure and the pop-out component simultaneously abut against the trash basket, and the trash basket is fixed to the housing.
[0012] In at least one embodiment of this application, the pop-up component includes:
[0013] The connecting part is disposed on the housing;
[0014] A power spring, one end of which is disposed on the connecting part, and the power spring is located on the sliding path of the garbage basket;
[0015] The housing allows the power spring to push the trash basket out of the housing along the sliding direction of the trash basket.
[0016] In at least one embodiment of this application, the trash basket pop-out structure of the water surface cleaning machine further includes:
[0017] A button is slidably connected to the housing, and the sliding direction of the button is parallel to the sliding direction of the locking structure.
[0018] A reset spring is provided between the button and the locking structure, and the elastic direction of the reset spring is parallel to the sliding direction of the locking structure.
[0019] A connecting rod, which is rotatably connected to the housing, with one end of the connecting rod located on the button and the other end of the connecting rod located on the locking structure;
[0020] When the button slides, the button pushes the linkage to rotate, and the rotation of the linkage pries the locking structure, causing the locking structure to slide in the opposite direction to the direction in which the button slides.
[0021] In at least one embodiment of this application, the pop-up component further includes:
[0022] The contact portion is located at the end of the power spring away from the connecting portion, and the contact portion corresponds to the trash basket.
[0023] In at least one embodiment of this application, a placement groove is provided on the housing, and when the garbage basket is fixed to the housing, the garbage basket is located in the placement groove.
[0024] In at least one embodiment of this application, a sliding track is provided in the placement slot, and the sliding track allows the trash basket to be slidably connected to the sliding track;
[0025] The trash basket is slidably connected to the shell by sliding connection with the sliding rail.
[0026] In at least one embodiment of this application, two sliding tracks are provided in the placement groove, and the two sliding tracks are respectively located on opposite sides of the placement groove.
[0027] In at least one embodiment of this application, the pop-out component is located within the placement slot.
[0028] In at least one embodiment of this application, the garbage basket pop-out structure of the water surface cleaning machine has two pop-out components, which are respectively located on opposite sides of the placement slot.
[0029] The aforementioned water surface cleaning machine's trash basket ejection structure features a design on the housing that allows the trash basket to slide. The trash basket can slide within the housing along a specific track or path. The ejection component is fixed within the housing and positioned along the trash basket's sliding path. When the trash basket needs to be ejected, the ejection component pushes the trash basket out of the housing in its sliding direction. A locking structure is also slidably connected to the housing and can slide onto the trash basket's sliding path. When the locking structure is positioned on the trash basket's sliding path, it restricts the basket's movement, thus ensuring the stability and safety of the trash basket during cleaning operations. This trash basket ejection structure effectively solves the inconvenience of removing the trash basket in ordinary water surface cleaning machines. Attached Figure Description
[0030] Figure 1 A three-dimensional view of the structure when the garbage basket pop-out structure of the water surface cleaning machine is installed on the water surface cleaning machine;
[0031] Figure 2 A three-dimensional view of the structure when the garbage basket pop-out structure of the water surface cleaning machine is installed on the water surface cleaning machine;
[0032] Figure 3 A front view of the garbage basket pop-out structure of the water surface cleaner when it is installed on the water surface cleaner;
[0033] Figure 4 for Figure 3 Cross-sectional view at point AA;
[0034] Figure 5 for Figure 4 Enlarged view of part B;
[0035] Figure 6An exploded view of the structure when the garbage basket pop-out structure of the water surface cleaning machine is installed on the water surface cleaning machine;
[0036] Figure 7 for Figure 6 Enlarged view of part C;
[0037] Figure 8 To display a 3D structural diagram of the pop-up component;
[0038] Figure 9 To display a 3D structural diagram of the pop-up component;
[0039] Figure 10 An exploded view of the structure when the garbage basket pop-out structure of the water surface cleaning machine is installed on the water surface cleaning machine;
[0040] Figure 11 An exploded view of the structure when the garbage basket pop-out structure of the water surface cleaning machine is installed on the water surface cleaning machine;
[0041] Figure 12 for Figure 11 Enlarged view of part D.
[0042] Explanation of main component symbols
[0043] 100. Garbage basket pop-out structure of water surface cleaning machine; 1. Housing; 11. Placement slot; 12. Sliding rail; 2. Pop-out assembly; 21. Connecting part; 22. Power spring; 23. Contact part; 3. Locking structure; 4. Return spring; 5. Garbage basket; 6. Button; 7. Linkage rod. Detailed Implementation
[0044] The embodiments of this application will now be described with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments.
[0045] It should be noted that when a component is considered to be "connected" to another component, it can be directly connected to the other component or may also have an intervening component. When a component is considered to be "placed" on another component, it can be directly placed on the other component or may also have an intervening component. The terms "top," "bottom," "upper," "lower," "left," "right," "front," "back," and similar expressions used in this article are for illustrative purposes only.
[0046] Embodiments of this application provide a trash basket pop-out structure for a water surface cleaning machine, comprising:
[0047] A housing that allows the trash basket to be slidably attached to the housing;
[0048] A pop-out component is fixed inside the housing and located on the sliding path of the trash can. The housing allows the pop-out component to push the trash can out of the housing along the sliding direction of the trash can.
[0049] A locking structure is slidably connected to the housing. The housing allows the locking structure to slide onto the sliding path of the trash basket. When the locking structure is on the sliding path of the trash basket, it restricts the sliding of the trash basket. The trash basket ejection structure of the above-mentioned water surface cleaning machine has a structure designed on the housing that allows the trash basket to slide. The trash basket can slide within the housing along a certain track or path. The ejection component is fixed inside the housing and located on the sliding path of the trash basket. When the trash basket needs to be ejected, the ejection component pushes the trash basket out of the housing along its sliding direction. The locking structure is also slidably connected to the housing and can slide onto the sliding path of the trash basket. When the locking structure is on the sliding path of the trash basket, it restricts the sliding of the trash basket, thereby ensuring the stability and safety of the trash basket during cleaning operations. The above-mentioned trash basket ejection structure of the water surface cleaning machine effectively solves the inconvenience of removing the trash basket in ordinary water surface cleaning machines.
[0050] The following detailed description of some embodiments of this application is provided in conjunction with the accompanying drawings. Unless otherwise specified, the following embodiments and features can be combined with each other.
[0051] Please see Figures 1-12 Embodiments of this application provide a trash basket pop-out structure 100 for a water surface cleaning machine, comprising:
[0052] The housing 1 allows the trash basket 5 to be slidably connected to the housing 1.
[0053] Pop-out component 2 is fixed inside the housing 1 and is located on the sliding path of the trash basket 5. The housing 1 allows the pop-out component 2 to push the trash basket 5 out of the housing 1 along the sliding direction of the trash basket 5.
[0054] A locking structure 3 is slidably connected to the housing 1. The housing 1 allows the locking structure 3 to slide onto the sliding path of the garbage basket 5. When the locking structure 3 is located on the sliding path of the garbage basket 5, the locking structure 3 restricts the sliding of the garbage basket 5.
[0055] Specifically, the housing 1 allows the trash basket 5 to slide onto the housing 1, serving as the base for the installation and sliding of the trash basket 5, providing stable support and guidance. The sliding connection design simplifies the process of removing and placing the trash basket 5, improving operational convenience. The pop-out component 2 is fixed inside the housing 1, located on the sliding path of the trash basket 5, pushing the trash basket 5 out of the housing 1 along its sliding direction. The housing 1 typically has a track to guide the sliding of the trash basket 5. The pop-out component 2 provides power for the pop-out of the trash basket 5, enabling the trash basket 5 to slide out quickly and automatically. This reduces the tediousness of manually removing the trash basket 5, lowers the operational difficulty and time cost, and avoids secondary pollution caused by trash scattering. The locking structure 3 is slidably connected to the housing 1 and can slide onto the sliding path of the trash basket 5, restricting the sliding of the trash basket 5. When the trash basket 5 needs to be fixed, it slides onto its sliding path to achieve a stable lock. This ensures the stability of the trash basket 5 during trash collection, preventing trash scattering or equipment damage caused by shaking or collision. When the trash can 5 needs to be secured, the locking structure 3 slides onto the sliding path of the trash can 5 and abuts against it, locking the trash can 5. At this time, the pop-out component 2 is in standby mode and will not push the trash can 5 out. When the trash can 5 needs to be removed, first slide the locking structure 3 away from the sliding path of the trash can 5. Then, the pop-out component 2 activates, pushing the trash can 5 out of the housing 1 along the sliding direction. The trash can 5 remains stable during the pop-out process to prevent trash from scattering. After the trash can 5 is removed, the locking structure 3 automatically returns to its initial position under the action of the return spring 4. When a new or cleaned trash can 5 is placed back into the housing 1 and slides to the designated position, the locking structure 3 slides onto the sliding path of the trash can 5 again, relocking it. The function of the pop-out component 2 can be achieved by magnetic repulsion or a spring.
[0056] In a specific example, when the locking structure 3 slides onto the sliding path of the trash basket 5 and the trash basket 5 is slidably connected to the housing 1, the locking structure 3 and the pop-out component 2 simultaneously abut against the trash basket 5, and the trash basket 5 is fixed to the housing 1.
[0057] Specifically, in the design of the water surface cleaning machine, the stable fixing of the trash basket 5 is crucial to ensuring the normal operation of the equipment and the effective collection of trash. To achieve this goal, this invention proposes a trash basket 5 ejection structure comprising a housing 1, an ejection component 2, and a locking structure 3. The housing 1 provides the basis for the sliding connection of the trash basket 5, the ejection component 2 is responsible for pushing the trash basket 5 out when needed, and the locking structure 3 is used to securely fix the trash basket 5 to the housing 1 when it is full of trash. When the trash basket 5 is full of trash and slides to the designated position on the housing 1, the locking structure 3 needs to be slid into the sliding path of the trash basket 5. This is usually achieved through manual operation or an automatic mechanism, with the aim of ensuring effective contact between the locking structure 3 and the trash basket 5. The trash basket 5 is connected to the housing 1 via a sliding connection, meaning that the trash basket 5 can move smoothly on the sliding track 12 of the housing 1. This design not only simplifies the process of removing and placing the trash basket 5 but also improves operational convenience. When the locking structure 3 slides onto the sliding path of the trash basket 5 and comes into contact with it, the pop-out component 2 is also in contact with the trash basket 5. However, it's important to note that at this time, the pop-out component 2 does not push the trash basket 5 out; instead, it works together with the locking structure 3 to securely fix the trash basket 5. This simultaneous contact design ensures the stability of the trash basket 5 during trash collection, preventing trash from scattering or the equipment from being damaged due to shaking or collision. Through the simultaneous contact of the locking structure 3 and the pop-out component 2, the trash basket 5 is firmly fixed to the housing 1. This fixing method is not only simple and effective but also easy to operate and maintain. With the trash basket 5 fixed, the water surface cleaning machine can perform cleaning operations normally without worrying about the trash basket 5 shaking or falling off.
[0058] In one specific example, the pop-up component 2 includes:
[0059] Connecting part 21, the connecting part 21 is provided on the housing 1;
[0060] A power spring 22, one end of which is disposed on the connecting part 21, and the power spring 22 is located on the sliding path of the garbage basket 5;
[0061] The housing 1 allows the power spring 22 to push the garbage basket 5 out of the housing 1 along the sliding direction of the garbage basket 5.
[0062] Specifically, the connecting part 21 is securely mounted on the housing 1, serving as a support and fixing point for the power spring 22. The main function of the connecting part 21 is to ensure that the power spring 22 can be stably mounted on the housing 1 and accurately transmit power to the garbage basket 5 when needed. One end of the power spring 22 is fixed to the connecting part 21, while the other end (or movable end) is located on the sliding path of the garbage basket 5, ready to contact the garbage basket 5 and push it out when needed. The power spring 22 is an elastic element capable of storing and releasing energy. When it is compressed or stretched, it stores energy; when the external force is removed, it releases this energy, thereby generating a pushing or pulling force. In the garbage basket 5 pop-out structure, the power spring 22 is used as the main power source. When the locking structure 3 is unlocked, allowing the garbage basket 5 to move, the power spring 22 quickly releases its stored energy, pushing the garbage basket 5 out of the housing 1 along its sliding direction. Under normal circumstances, when the trash can 5 is fixed inside the housing 1 by the locking structure 3, the power spring 22 is in a compressed or stretched standby state. At this time, its movable end maintains a certain distance from the trash can 5 and will not push the trash can 5 to move. When it is necessary to remove the trash can 5, the locking structure 3 is unlocked, allowing the trash can 5 to begin to move. At this time, the movable end of the power spring 22 will contact the trash can 5 and begin to release its stored energy. As the power spring 22 is released, it will generate a thrust along the sliding direction of the trash can 5. This thrust will gradually increase until the trash can 5 completely slides out of the housing 1. Throughout the process, the thrust of the power spring 22 is smooth and controllable, ensuring the smooth sliding out of the trash can 5. After the trash can 5 is removed, the power spring 22 may return to its initial state (or near its initial state) due to the release of energy. At this time, it is ready to provide thrust again when needed next time. In some designs, a reset mechanism may also be required to help the power spring 22 return to its initial position more quickly.
[0063] In a specific example, the garbage basket 5 pop-out structure 100 of the water surface cleaning machine further includes:
[0064] Button 6 is slidably connected to the housing 1, and the sliding direction of button 6 is parallel to the sliding direction of the locking structure 3;
[0065] A reset spring 4 is disposed between the button 6 and the locking structure 3, and the elastic direction of the reset spring 4 is parallel to the sliding direction of the locking structure 3.
[0066] Link 7 is rotatably connected to the housing 1. One end of the link 7 is located on the button 6, and the other end of the link 7 is located on the locking structure 3.
[0067] When the button 6 slides, the button 6 pushes the connecting rod 7 to rotate, and the rotation of the connecting rod 7 pries the locking structure 3 so that the locking structure 3 slides in the opposite direction to the sliding direction of the button 6.
[0068] Specifically, the main function of the return spring 4 is to ensure that the locking structure 3 automatically and smoothly returns to its initial position (i.e., the locked position) after unlocking and allowing the trash can 5 to slide out. This way, the locking structure 3 is already in a ready state when the trash can 5 needs to be secured again, without manual adjustment. The presence of the return spring 4 also helps maintain the stability of the locking structure 3 during sliding. When the locking structure 3 slides on the housing 1, the return spring 4 provides a continuous force opposite to the sliding direction, thus preventing the locking structure 3 from accidentally moving due to external forces or vibrations. Due to the automatic reset function of the return spring 4, operators do not need to manually reset the locking structure 3 each time the trash can 5 is removed. This not only simplifies the operation process but also improves work efficiency. When the locking structure 3 is slid to the unlocked position, the return spring 4 is compressed. At this time, it stores energy, ready to release this energy when the locking structure 3 needs to return. Once the external force on the locking structure 3 is removed (e.g., the operator releases the locking structure 3), the return spring 4 begins to release its stored energy, pushing the locking structure 3 to move in the opposite direction of its sliding direction until it returns to its initial position. The elastic recovery process of the return spring 4 is smooth and controllable, which ensures that the locking structure 3 does not suddenly accelerate or decelerate during the return process, thereby avoiding possible impact and damage.
[0069] A return spring 4 is located between the button 6 and the locking structure 3, with its elastic direction parallel to the sliding direction of the locking structure 3. When the locking structure 3 is unlocked and moved, the return spring 4 can push the locking structure 3 back to its initial position for the next locking operation. This ensures that the locking structure 3 can automatically reset after unlocking, improving the convenience and reliability of operation. The button 6 is slidably connected to the housing 1, with its sliding direction parallel to the sliding direction of the locking structure 3. By sliding the button 6, the user can control the unlocking and locking operations of the locking structure 3. A user-friendly interface is provided, allowing the user to easily control the state of the locking structure 3. A connecting rod 7 is rotatably connected to the housing 1, with one end on the button 6 and the other end on the locking structure 3. When the button 6 slides, the connecting rod 7 rotates and pries the locking structure 3, causing the locking structure 3 to slide in the opposite direction to the sliding direction of the button 6. Through the transmission action of the connecting rod 7, the linkage between the button 6 and the locking structure 3 is realized, simplifying the operation process and improving the compactness and reliability of the structure. When it is necessary to unlock the trash can 5, the user simply slides button 6 in a specific direction. Sliding button 6 will push linkage 7 to rotate, and the rotation of linkage 7 will in turn pry open the locking structure 3, causing it to slide in the opposite direction to the sliding direction of button 6. After the locking structure 3 moves to a position that no longer restricts the sliding of the trash can 5, the trash can 5 can then slide out of the housing 1 in the sliding direction under the action of the pop-out component 2.
[0070] Furthermore, under normal conditions (i.e., when the user does not apply pressure to button 6), the locking structure 3 is located on the sliding path of the trash can 5. This design aims to keep the trash can 5 permanently fixed to the housing 1, ensuring the stability and safety of the device. When the user needs to clean or replace the trash can 5, they simply press button 6. At this time, button 6 will move along the preset sliding direction, and the connecting rod 7 connected to button 6 will rotate accordingly. This rotation action pries the locking structure 3, causing it to move away from the sliding path of the trash can 5, thereby releasing the lock on the trash can 5. Releasing the pressure on button 6 will cause the return spring 4 to push the locking structure 3 back to its initial position, re-occupying the sliding path of the trash can 5.
[0071] In one specific example, the pop-up component 2 further includes:
[0072] Contact portion 23 is provided at the end of the power spring 22 away from the connecting portion 21, and the contact portion 23 corresponds to the garbage basket 5.
[0073] Specifically, the contact portion 23 is cleverly positioned at the end of the power spring 22 furthest from the connecting portion 21, meaning it is the part that directly contacts the garbage basket 5 when the power spring 22 releases energy. The main function of the contact portion 23 is to act as an energy transfer bridge between the power spring 22 and the garbage basket 5. When the power spring 22 is compressed or stretched and stores energy, once the locking structure 3 is unlocked, the contact portion 23 contacts the garbage basket 5 and smoothly transfers the energy released by the power spring 22 to the garbage basket 5, pushing it to slide out of the housing 1 along the sliding path. The design of the contact portion 23 ensures the smoothness of the garbage basket 5 during the sliding process. Since it is the part that directly contacts the garbage basket 5, friction and resistance can be reduced through appropriate shape and material selection, allowing the garbage basket 5 to slide out smoothly. The contact portion 23 can also be appropriately adjusted according to the load of the garbage basket 5. For example, when the garbage basket 5 is full of garbage, the contact portion 23 may need to provide more thrust to overcome additional resistance; while when the garbage basket 5 is empty or lightly loaded, the thrust can be appropriately reduced to avoid excessive acceleration or impact. The shape of the contact part 23 is typically designed based on the shape and sliding path of the garbage basket 5. It may have a smooth curved surface or a specific geometry to ensure good contact and energy transfer with the garbage basket 5. The material selection for the contact part 23 is also crucial. It typically needs sufficient hardness and wear resistance to withstand the energy released by the power spring 22 and friction with the garbage basket 5; simultaneously, it needs a certain degree of elasticity to accommodate the minor deformation of the garbage basket 5 during its sliding process. When the locking structure 3 unlocks, the power spring 22 begins to release its stored energy. At this time, the contact part 23, acting as the "front end" of the power spring 22, first contacts the garbage basket 5 and begins to transmit thrust. As the power spring 22 continues to release, the contact part 23 pushes the garbage basket 5 to gradually slide out of the housing 1 along the sliding path. During this process, the contact part 23 and the power spring 22 work closely together to ensure the smooth sliding out of the garbage basket 5.
[0074] In one specific example, the housing 1 has a placement groove 11, and when the garbage basket 5 is fixed to the housing 1, the garbage basket 5 is located in the placement groove 11.
[0075] Specifically, the position of the placement groove 11 is carefully determined based on the shape, size, and sliding path of the trash basket 5 to ensure that the trash basket 5 can be perfectly embedded when fixed. The main function of the placement groove 11 is to provide a precise positioning and fixing point, allowing the trash basket 5 to maintain a stable position when fixed to the housing 1. This not only prevents the trash basket 5 from falling off due to shaking or collision during cleaning, but also ensures that trash falls accurately into the trash basket 5. In addition to positioning and fixing, the placement groove 11 also guides the sliding path of the trash basket 5. When the trash basket 5 needs to be popped out or put back in, the shape and size of the placement groove 11 ensures that the trash basket 5 slides smoothly along the correct path, avoiding jamming or damage caused by path deviation. The design of the placement groove 11 also takes into account the protection of the trash basket 5 and the housing 1. Through reasonable groove depth and width design, it can be ensured that the trash basket 5 will not generate excessive friction or compression with the housing 1 when fixed, thereby extending the service life of both. When the trash basket 5 is fixed to the housing 1, it will be fully or partially embedded in the placement groove 11. This fit ensures a tight contact and stable connection between the garbage basket 5 and the housing 1. Simultaneously, the shape and size of the garbage basket 5 are typically designed based on the placement slot 11 to ensure a perfect match between the two. The shape and size of the placement slot 11 are determined based on the shape, size, and sliding path of the garbage basket 5. It typically has a contour that matches the bottom of the garbage basket 5 to ensure that the garbage basket 5 can be placed stably within the slot when fixed. Furthermore, the depth and width of the placement slot 11 also need to be rationally designed based on the weight and stability requirements of the garbage basket 5.
[0076] In one specific example, a sliding rail 12 is provided in the placement slot 11, and the sliding rail 12 allows the garbage basket 5 to slide in connection with the sliding rail 12;
[0077] The trash basket 5 is slidably connected to the housing 1 by sliding connection with the sliding rail 12.
[0078] Specifically, in the design of the water surface cleaning machine, to improve the ease of operation and stability of the trash basket 5, the designer further incorporated sliding tracks 12 within the placement slot 11. These sliding tracks 12 are precisely embedded in the bottom or side of the placement slot 11, providing a stable and smooth sliding path for the trash basket 5. The main function of the sliding tracks 12 is to guide the sliding of the trash basket 5 within the placement slot 11. They ensure that the trash basket 5 can move smoothly along the predetermined path when popping out or returning, avoiding jamming, tilting, or damage caused by path deviation. Through the sliding connection between the sliding tracks 12 and the trash basket 5, the trash basket 5 maintains high stability during both fixing and moving. This not only prevents the trash basket 5 from falling off due to shaking or collision, but also ensures that the trash falls accurately into the trash basket 5, avoiding secondary pollution during the cleaning process. The design of the sliding tracks 12 simplifies the operator's workflow. They do not need to laboriously move or adjust the position of the trash basket 5; they can simply push or pull to pop out or return the trash basket 5. The sliding track 12 is typically designed to match the shape and size of the sliding components on the bottom or sides of the trash basket 5. These sliding components can be pulleys, rails, or other forms of sliding devices, enabling them to slide smoothly along the sliding track 12. When the trash basket 5 is fixed to the housing 1, its sliding components come into close contact with the sliding track 12, forming a stable sliding connection. The sliding connection between the trash basket 5 and the housing 1 is achieved through the interaction between the sliding components on the trash basket 5 and the sliding track 12 within the placement slot 11. When the trash basket 5 needs to be ejected, the operator only needs to apply an appropriate pushing or pulling force to allow the trash basket 5 to slide smoothly out of the placement slot 11 along the sliding track 12. Similarly, when the trash basket 5 needs to be returned, it can simply be pushed back into the placement slot 11 along the sliding track 12.
[0079] In one specific example, two sliding tracks 12 are provided in the placement groove 11, and the two sliding tracks 12 are respectively located on opposite sides of the placement groove 11.
[0080] Specifically, two sliding tracks 12 are cleverly designed within the placement slot 11. These two sliding tracks 12 are located on opposite sides of the placement slot 11, forming a stable and balanced sliding support system. The positions of the sliding tracks 12 are carefully determined based on the shape, size, and weight distribution of the garbage basket 5. Their opposite locations within the placement slot 11 provide uniform support force during the sliding of the garbage basket 5, preventing it from tilting or jamming due to uneven force. The layout of the sliding tracks 12 considers not only the sliding path and stability requirements of the garbage basket 5 but also the operator's habits and convenience. This rational layout design ensures that the operator can easily apply force when popping out or putting back the garbage basket 5, improving operational convenience and efficiency. The two sliding tracks 12 provide a stable and balanced support system for the garbage basket 5. They ensure that the garbage basket 5 remains level during sliding, preventing garbage spillage or equipment damage caused by shaking or tilting. The design of the sliding tracks 12 allows the garbage basket 5 to slide smoothly along a predetermined path. These features reduce friction and resistance between the trash basket 5 and the placement slot 11, improving the smoothness and efficiency of sliding. The sliding rails 12 effectively protect the trash basket 5 and placement slot 11 from wear and damage caused by direct friction, extending the equipment's lifespan and reducing maintenance costs. The bottom or sides of the trash basket 5 are typically designed with sliding components (such as pulleys, rails, etc.) that match the sliding rails 12. These sliding components fit snugly against the sliding rails 12 and slide smoothly along them. Through the cooperation of the sliding rails 12 and the sliding components, a stable and smooth sliding connection between the trash basket 5 and the placement slot 11 is achieved. In the application of water surface cleaning machines, the design of the two sliding rails 12 within the placement slot 11 not only improves the convenience and stability of the trash basket 5 operation but also further enhances the overall performance of the equipment and the user experience. It allows operators to more easily remove and place the trash basket 5, improving the efficiency and quality of the entire cleaning operation. Furthermore, the reasonable design of the sliding rails 12 effectively reduces noise and vibration during the sliding process of the trash basket 5, improving the equipment's quietness and comfort.
[0081] In one specific example, the pop-up component 2 is located within the placement slot 11.
[0082] Specifically, in a water surface cleaning machine or other similar equipment, the pop-out component 2 is a key mechanical part responsible for popping out the trash basket 5. When the user needs to empty the trash basket 5, the pop-out component 2, upon receiving a corresponding command or force, drives the trash basket 5 to slide out of the main body of the equipment along a preset path, allowing the user to easily remove the trash. The placement slot 11 is a recess or space on the main body of the equipment used to accommodate and fix the trash basket 5. It typically has a contour that matches the shape of the trash basket 5 to ensure that the trash basket 5 can be placed stably in the slot. The design of the placement slot 11 not only considers the fixation and stability of the trash basket 5 but also the installation and operating space of the pop-out component 2. Installing the pop-out component 2 in the placement slot 11 can make full use of the internal space of the main body of the equipment, avoiding additional external protrusions, making the equipment more compact and aesthetically pleasing. The pop-out component 2, located in the placement slot 11, can more stably support the trash basket 5, preventing malfunctions caused by shaking or tilting during the pop-out process. This design improves the integration of the equipment, making the pop-out component 2 and the placement slot 11 a single unit, simplifying the structure and assembly process of the equipment. The pop-out component 2 is located within the placement slot 11, allowing users to more conveniently operate the pop-out function of the trash can 5 without additional space or tools. The pop-out component 2 typically includes a power source (such as a spring or motor), a transmission mechanism (such as a linkage or gear), and a sliding rail 12. These components need to precisely match the corresponding structures within the placement slot 11 to ensure the trash can 5 pops out smoothly and easily. For example, the sliding rail 12 needs to match the sliding groove or track within the placement slot 11, and the power source needs to be able to drive the transmission mechanism to move within the placement slot 11.
[0083] In one specific example, the trash basket pop-out structure 100 of the water surface cleaning machine has two pop-out components 2, which are respectively located on opposite sides of the placement slot 11.
[0084] Specifically, in the design of the water surface cleaning machine, the pop-out structure of the trash basket 5 is a crucial functional component. It is responsible for smoothly and quickly popping the trash basket 5 out of the main body of the machine when needed, allowing users to empty the trash. To improve the stability and smoothness of the trash basket 5's pop-out, the designers adopted a double pop-out component 2 design. One pop-out component 2 is installed on each of the opposite sides of the placement slot 11 within the water surface cleaning machine. The two pop-out components 2 are located on opposite sides of the placement slot 11, i.e., the left and right sides or the front and back sides of the trash basket 5 (depending on the layout and design of the equipment). This layout ensures that the trash basket 5 receives a uniform force during pop-out, thus maintaining a stable pop-out trajectory. The double pop-out component 2 layout not only considers the pop-out path and stability requirements of the trash basket 5 but also the utilization of the internal space and ease of operation. Through a reasonable layout design, it can be ensured that the two pop-out components 2 do not interfere with each other during operation, and also do not occupy excessive internal space. The double pop-out component 2 design significantly improves the stability of the trash basket 5's pop-out. When the two ejection components 2 work simultaneously, they can jointly support the trash basket 5, preventing tilting or jamming due to uneven force during ejection. The synergistic effect of the two ejection components 2 ensures that the trash basket 5 slides smoothly and steadily out of the placement slot 11 along a predetermined path. This not only improves the user experience but also reduces wear and damage to the equipment during ejection. The design of the two ejection components 2 also enhances the load-bearing capacity of the trash basket 5. When the trash basket 5 is full of trash, the two ejection components 2 can share the weight of the trash, ensuring that the trash basket 5 can eject smoothly without jamming due to excessive weight. The two ejection components 2 typically include a power source (such as a spring, motor, etc.), a transmission mechanism (such as a connecting rod, gear, etc.), and a sliding rail 12. These components need to be precisely matched with the corresponding structures within the placement slot 11 to ensure that the trash basket 5 can eject smoothly and steadily. For example, the sliding rail 12 needs to match the sliding groove or track within the placement slot 11, and the power source needs to be able to drive the transmission mechanism to move within the placement slot 11. In addition, precise synchronization control is required between the two pop-up components 2 to ensure that they maintain consistent movement and force during the pop-up process.
[0085] The above description is merely an embodiment of this application. It should be noted that those skilled in the art can make improvements without departing from the inventive concept of this application, but these improvements all fall within the protection scope of this application.
Claims
1. A garbage basket pop-out structure for a water surface cleaning machine, characterized in that, include: A housing that allows the trash basket to be slidably attached to the housing; A pop-out component is fixed inside the housing and located on the sliding path of the trash can. The housing allows the pop-out component to push the trash can out of the housing along the sliding direction of the trash can. A locking structure is slidably connected to the housing, the housing allowing the locking structure to slide onto the sliding path of the trash basket, and when the locking structure is on the sliding path of the trash basket, the locking structure restricts the sliding of the trash basket.
2. The garbage basket pop-out structure of the water surface cleaning machine according to claim 1, characterized in that, When the locking structure slides onto the sliding path of the trash basket and the trash basket is slidably connected to the housing, the locking structure and the pop-out component simultaneously abut against the trash basket, and the trash basket is fixed to the housing.
3. The garbage basket pop-out structure of the water surface cleaning machine according to claim 1, characterized in that, The pop-up component includes: The connecting part is disposed on the housing; A power spring, one end of which is disposed on the connecting part, and the power spring is located on the sliding path of the garbage basket; The housing allows the power spring to push the trash basket out of the housing along the sliding direction of the trash basket.
4. The garbage basket pop-out structure of the water surface cleaning machine according to claim 1, characterized in that, The garbage basket pop-out structure of the water surface cleaning machine also includes: A button is slidably connected to the housing, and the sliding direction of the button is parallel to the sliding direction of the locking structure. A reset spring is provided between the button and the locking structure, and the elastic direction of the reset spring is parallel to the sliding direction of the locking structure. A connecting rod, which is rotatably connected to the housing, with one end of the connecting rod located on the button and the other end of the connecting rod located on the locking structure; When the button slides, the button pushes the linkage to rotate, and the rotation of the linkage pries the locking structure, causing the locking structure to slide in the opposite direction to the direction in which the button slides.
5. The garbage basket pop-out structure of the water surface cleaning machine according to claim 3, characterized in that, The pop-up component also includes: The contact portion is located at the end of the power spring away from the connecting portion, and the contact portion corresponds to the trash basket.
6. The garbage basket pop-out structure of the water surface cleaning machine according to claim 2, characterized in that, The housing has a placement slot, and when the garbage basket is fixed to the housing, the garbage basket is located in the placement slot.
7. The garbage basket pop-out structure of the water surface cleaning machine according to claim 6, characterized in that, The placement slot is provided with a sliding track, which allows the trash basket to slide in a sliding connection with the sliding track. The trash basket is slidably connected to the shell by sliding connection with the sliding rail.
8. The garbage basket pop-out structure of the water surface cleaning machine according to claim 7, characterized in that, The placement slot is provided with two sliding tracks, which are located on opposite sides of the placement slot.
9. The garbage basket pop-out structure of the water surface cleaning machine according to claim 6, characterized in that, The pop-up component is located within the placement slot.
10. The garbage basket pop-out structure of the water surface cleaning machine according to claim 9, characterized in that, The garbage basket pop-out structure of the water surface cleaning machine has two pop-out components, which are located on opposite sides of the placement slot.