Foldable garbage transfer truck bracket for van type garbage room
By designing a foldable garbage transfer vehicle bracket, the problem of large space occupation by traditional brackets is solved, achieving efficient garbage storage and transfer, and improving the utilization rate and transfer convenience of the container garbage room.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-29
- Publication Date
- 2026-03-17
AI Technical Summary
Traditional garbage trucks have fixed or non-foldable frames, which are bulky, occupy space in container-type garbage rooms, and affect garbage storage efficiency.
A foldable garbage transfer vehicle bracket, comprising a load-bearing mechanism, a moving mechanism, and a tipping mechanism, was designed. The bracket can be folded and unfolded through a movable cavity, a moving block, and a connecting block. The combination of casters and telescopic rods improves convenience and stability.
This reduces the space occupancy of container-type garbage rooms, improves the efficiency and convenience of garbage transfer, and ensures the stability and safety of garbage storage and transfer.
Smart Images

Figure CN224000302U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of transfer vehicle bracket technology, specifically a foldable garbage transfer vehicle bracket for a box-type garbage room. Background Technology
[0002] In the urban waste management system, container-type garbage rooms are key facilities for temporary waste storage, and the waste transfer work inside them is crucial to assist in the efficient transfer of waste.
[0003] Based on the above, the inventors have discovered the following problems: Traditional garbage truck brackets are mostly fixed or non-foldable structures, resulting in a large volume. Garbage collection rooms themselves have limited space; they must not only accommodate various types of garbage but also provide passageways for staff operation and garbage truck access. The bulky brackets consistently occupy a significant amount of space, drastically reducing the usable space within the garbage collection room. This can lead to a compression of the garbage storage area, preventing proper sorting and storage of garbage, and reducing the storage efficiency of the garbage collection room.
[0004] Therefore, in view of this, we have studied and improved the existing structure and its shortcomings, and provided a foldable garbage transfer vehicle bracket for a box-type garbage room, in order to achieve a more practical purpose. Utility Model Content
[0005] The purpose of this utility model is to provide a foldable garbage transfer vehicle bracket for a box-type garbage room, so as to solve the problem mentioned in the background art that most traditional garbage transfer vehicle brackets are fixed or non-foldable structures, and their volume is large.
[0006] In view of the above problems, the technical solution proposed by this utility model is as follows:
[0007] A foldable garbage transfer vehicle bracket for a box-type garbage station includes a carrying mechanism, a moving mechanism, and a tipping mechanism. The carrying mechanism includes a first placement plate and a second placement plate for placing garbage bins. Each of the two opposite surfaces of the first and second placement plates has a movable cavity. The tipping mechanism includes a first moving block, a second moving block, and a connecting block. The first and second moving blocks are slidably connected to the interior of the pair of movable cavities. The two sides of the connecting block are hinged to the two opposite surfaces of the first and second moving blocks via pins. The carrying mechanism also includes a pair of fixed plates. Each of the two opposite surfaces of the pair of fixed plates has a side plate fixedly installed. The bottom sides of the two opposite surfaces of the pair of side plates are connected to one side of the first and second placement plates, respectively.
[0008] Furthermore, the moving mechanism includes a pair of support plates, and a pair of casters are installed on both sides of the bottom end of the pair of support plates.
[0009] The beneficial effect of adopting the above-mentioned further solution is that a pair of support plates of the moving mechanism provide support for the entire bracket, and the casters installed on both sides of the bottom end enable the bracket to move flexibly, which facilitates garbage transfer in box-type garbage rooms and other places, and improves transfer efficiency and convenience.
[0010] Furthermore, each of the support plates has a lithium battery installed at its bottom, and each of the lithium batteries has a control button installed on one side.
[0011] The beneficial effect of adopting the above-mentioned further solution is that the control button is electrically connected to the lithium battery and the telescopic pole through a wire, the lithium battery installed at the bottom of the support plate provides power support for the operation of the telescopic pole, and the control button makes it convenient for operators to control the telescopic pole, thus achieving convenient operation.
[0012] Furthermore, a pair of telescopic rods are inserted into both sides of the upper end face of the fixing plate, and the bottom end of each pair of telescopic rods is connected to the upper end of a pair of support plates respectively.
[0013] The beneficial effect of adopting the above-mentioned further solution is that the telescopic rods inserted on both sides of the upper end face of the fixed plate can adjust the height of the bearing mechanism so that it can be flush with the ground when lowered, making it convenient for users to move the garbage bin to the first placement plate and the second placement plate. Then, by activating the telescopic rods, the bearing mechanism can be raised to separate it from the ground, so that it can be transported by the casters.
[0014] Furthermore, a set of springs is installed on the outer side of both the first and second movable blocks, and the other end of the two sets of springs is connected to one side of a pair of movable cavities, respectively.
[0015] The beneficial effect of adopting the above-mentioned further solution is that the springs installed on the outside of the first and second moving blocks can provide a certain rebound force after the first and second placement plates are flipped, which helps the first and second moving blocks to return to their original positions. After the first and second placement plates are unfolded, the springs pull the first and second moving blocks inward respectively, so that the connecting block is located at the junction of a pair of movable cavities, thereby improving the load-bearing capacity of the first and second placement plates by using the connecting block.
[0016] Furthermore, a first docking groove is provided on one side of the upper end of the first placement plate, and a fixing plate is rotatably connected inside the first docking groove.
[0017] The beneficial effect of adopting the above-mentioned further solution is that the first docking groove opened on one side of the upper end of the first placement plate and the fixing piece for internal rotational connection facilitate the re-fixing of the unfolded first placement plate and the second placement plate, thereby improving their load-bearing capacity.
[0018] Furthermore, a second docking groove is provided on the upper end of the second placement plate near the first docking groove, and a threaded groove is provided inside the second docking groove.
[0019] The beneficial effect of adopting the above-mentioned further solution is that the second docking groove and the internal threaded groove opened on the upper end of the second placement plate near the first docking groove cooperate with the fixing plate and fixing bolt on the first placement plate. When the first placement plate and the second placement plate are in the unfolded state, the fixing plate can be connected and fixed to the second placement plate by the fixing bolt, thereby improving its load-bearing capacity.
[0020] Furthermore, each of the upper sides of the fixing plate is threaded with a fixing bolt, and the bottom end of the fixing bolt is threadedly connected to the threaded groove.
[0021] The beneficial effect of adopting the above-mentioned further solution is that the fixing bolts threaded on one side of the upper end of the fixing plate are threaded to the bottom end of the threaded groove on the second placement plate, thereby realizing a firm connection between the first placement plate and the second placement plate in the unfolded state.
[0022] Compared with the prior art, the beneficial effects of this utility model are as follows: The foldable garbage transfer vehicle bracket of this box-type garbage station has a first and second placement plate for placing garbage bins, providing a carrying platform for garbage transfer. The movable cavity provides sliding space for the first and second moving blocks of the flipping mechanism. Through the hinge action of the connecting block, the first and second placement plates can be flipped relative to each other, facilitating folding during downtime and reducing the space occupied inside the box-type garbage station. The fixed plate and side plates enhance the structural stability of the carrying mechanism, ensuring the overall structure is firm when placing and transferring garbage bins. Telescopic rods are inserted on both sides of the upper surface of the plate. The telescopic rods can adjust the height of the bearing mechanism so that it is flush with the ground when lowered, making it convenient for users to move the garbage bin onto the first and second placement plates. By activating the telescopic rods, the bearing mechanism can be raised and separated from the ground, so that it can be transported by casters. The second docking groove and the internal threaded groove on the upper surface of the second placement plate near the first docking groove cooperate with the fixing plate and fixing bolts on the first placement plate. When the first and second placement plates are in the unfolded state, the fixing plate can be connected and fixed to the second placement plate by fixing bolts to improve its bearing capacity. Attached Figure Description
[0023] Figure 1 This is a three-dimensional structural diagram of the foldable garbage transfer vehicle bracket for the box-type garbage station disclosed in this utility model embodiment. Figure 1 ;
[0024] Figure 2 This is a three-dimensional structural diagram of the foldable garbage transfer vehicle bracket for the box-type garbage station disclosed in this utility model embodiment. Figure 2 ;
[0025] Figure 3 This is a three-dimensional structural diagram of the foldable garbage transfer vehicle bracket for the box-type garbage station disclosed in this utility model embodiment. Figure 3 ;
[0026] Figure 4 This is a schematic diagram of the tilting mechanism of the foldable garbage transfer vehicle bracket of the box-type garbage room disclosed in this utility model embodiment;
[0027] Figure 5 This is a partial top sectional view of the first and second placement plates of the foldable garbage transfer vehicle bracket for the box-type garbage room disclosed in this utility model embodiment.
[0028] In the diagram: 100, telescopic rod; 101, bearing mechanism; 10101, fixing plate; 10102, side plate; 10103, first placement plate; 10104, second placement plate; 10105, first docking groove; 10106, fixing piece; 10107, fixing bolt; 10108, second docking groove; 10109, threaded groove; 10110, movable cavity; 102, moving mechanism; 10201, support plate; 10202, caster wheel; 10203, lithium battery; 10204, control button; 103, flipping mechanism; 10301, first moving block; 10302, second moving block; 10303, connecting block; 10304, spring. Detailed Implementation
[0029] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0030] Please see Figure 1 - Figure 5This utility model provides a technical solution: a foldable garbage transfer vehicle bracket for a box-type garbage station, including a carrying mechanism 101, a moving mechanism 102, and a flipping mechanism 103. The carrying mechanism 101 includes a first placement plate 10103 and a second placement plate 10104 for placing garbage bins. Movable cavities 10110 are formed on two opposite surfaces of the first placement plate 10103 and the second placement plate 10104. The flipping mechanism 103 includes a first moving block 10301, a second moving block 10302, and a connecting block 10303. The first moving block 10301 and the second moving block 10302 are slidably connected to the interior of a pair of movable cavities 10110, respectively. The two sides of the connecting block 10303 are hinged to the two opposite surfaces of the first moving block 10301 and the second moving block 10302 via pins. The carrying mechanism 101 also includes a pair of fixing plates 10101. Side plates 10102 are fixedly installed on both opposite sides of 0101. The bottom sides of the two opposite sides of the pair of side plates 10102 are respectively connected to one side of the first placement plate 10103 and the second placement plate 10104. The first placement plate 10103 and the second placement plate 10104 of the bearing mechanism 101 are used to place garbage bins and provide a bearing platform for garbage transfer. The movable cavity 10110 provides sliding space for the first moving block 10301 and the second moving block 10302 of the flipping mechanism 103. Through the hinge action of the connecting block 10303, the first placement plate 10103 and the second placement plate 10104 can be flipped relative to each other, which makes it easy to fold them when not in use, reducing the space occupied inside the box-type garbage room. The fixed plate 10101 and the side plates 10102 enhance the structural stability of the bearing mechanism 101 and ensure that the overall structure is firm when placing and transferring garbage bins.
[0031] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0032] Please see Figure 1 - Figure 5The moving mechanism 102 includes a pair of support plates 10201. A pair of casters 10202 are mounted on both sides of the bottom of each support plate 10201. A lithium battery 10203 is mounted on the bottom of each support plate 10201. A control button 10204 is mounted on one side of each lithium battery 10203. A pair of telescopic rods 100 are inserted into both sides of the upper surface of the fixed plate 10101. The bottom of each pair of telescopic rods 100 is connected to the upper end of the support plates 10201. The pair of support plates 10201 of the moving mechanism 102 provide support for the entire bracket, and the casters 10202 mounted on both sides of the bottom allow the bracket to move flexibly, facilitating garbage transfer in containerized garbage rooms and other locations. This improves the efficiency and convenience of transportation. The lithium battery 10203 installed at the bottom of the support plate 10201 provides power support for the operation of the telescopic rod 100. The control button 10204 makes it convenient for operators to control the telescopic rod 100 and realize convenient operation. The telescopic rod 100 is inserted on both sides of the upper end face of the fixed plate 10101. The height of the support mechanism 101 can be adjusted by the telescopic rod 100 so that it can be flush with the ground when lowered. This makes it convenient for users to move the garbage can to the first placement plate 10103 and the second placement plate 10104. Then, by starting the telescopic rod 100, the support mechanism 101 can be raised and separated from the ground, so that it can be transported by the casters 10202.
[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0034] Please see Figure 1 - Figure 5A set of springs 10304 is installed on the outer side of both the first moving block 10301 and the second moving block 10302. The other ends of the two sets of springs 10304 are respectively connected to one side of a pair of movable cavities 10110. A first docking groove 10105 is opened on one side of the upper end of the first placement plate 10103. A fixing plate 10106 is rotatably connected inside the first docking groove 10105. A second docking groove 10108 is opened on the upper end of the second placement plate 10104 near the first docking groove 10105. A threaded groove 10109 is opened inside the second docking groove 10108. The upper end of the fixing plate 10106 is... Both sides are threaded with fixing bolts 10107, the bottom end of which is threaded into a threaded groove 10109. Springs 10304 are mounted on the outer sides of the first moving block 10301 and the second moving block 10302. When the first placement plate 10103 and the second placement plate 10104 are flipped, the springs 10304 provide a certain rebound force to help the first moving block 10301 and the second moving block 10302 return to their original positions. Furthermore, after the first placement plate 10103 and the second placement plate 10104 are unfolded, the springs 10304 respectively push the first moving block 10301 and the second moving block 10302 back to their original positions. 02. Pulling inwards, the connecting block 10303 is positioned at the junction of a pair of movable cavities 10110, thereby increasing the load-bearing capacity of the first placement plate 10103 and the second placement plate 10104 using the connecting block 10303. The first docking groove 10105 on one side of the upper end of the first placement plate 10103 and the fixing piece 10106 internally rotatably connected facilitate the re-fixing of the unfolded first placement plate 10103 and the second placement plate 10104, improving their load-bearing effect. The second docking groove 10108 on the upper end of the second placement plate 10104 near the first docking groove 10105 and the internal screw... The groove 10109 cooperates with the fixing piece 10106 and fixing bolt 10107 on the first placement plate 10103. When the first placement plate 10103 and the second placement plate 10104 are in the unfolded state, the fixing piece 10106 can be connected and fixed to the second placement plate 10104 by the fixing bolt 10107 to improve its load-bearing effect. The fixing bolt 10107, which is threaded on one side of the upper end of the fixing piece 10106, is threaded to the bottom end of the groove 10109 on the second placement plate 10104, thus realizing a firm connection between the first placement plate 10103 and the second placement plate 10104 in the unfolded state.
[0035] Specifically, the working principle of this type of foldable garbage transfer vehicle bracket for box-type garbage rooms is as follows: Before transferring garbage, the operator presses the control button 10204 on the side of the lithium battery 10203 at the bottom of the support plate 10201. This controls the telescopic rods 100 inserted on both sides of the upper surface of the fixed plate 10101 to descend, lowering the height of the first placement plate 10103 and the second placement plate 10104 of the carrying mechanism 101 to be flush with the ground. At this time, the user can easily move the garbage bin onto the first placement plate 10103 and the second placement plate 10104. Then, the operator operates the control button 10204 again to raise the telescopic rods 100, separating the carrying mechanism 101 from the ground. Due to the pair of moving mechanisms 102... Casters 10202 are installed on both sides of the bottom end of the support plate 10201, allowing the operator to push the first placement plate 10103 and the second placement plate 10104 for flexible movement, transporting the garbage bins to containerized garbage rooms and other locations. When the bracket needs to be folded to save space, the operator pushes the first placement plate 10103 and the second placement plate 10104 to flip them relative to each other. During this process, the first moving block 10301 and the second moving block 10302 of the flipping mechanism 103 slide within the movable cavity 10110 opened on the opposite side of the first placement plate 10103 and the second placement plate 10104, respectively. The connecting block 10303 is connected to the first moving block 10202 on both sides by pins. The first moving block 10301 and the second moving block 10302 are hinged to each other, ensuring a smooth flipping process. Springs 10304 mounted on the outer sides of the first moving block 10301 and the second moving block 10302 are compressed during flipping. After flipping, springs 10304 provide a restoring force to help the first moving block 10301 and the second moving block 10302 return to their original positions. When the first placement plate 10103 and the second placement plate 10104 are unfolded to support the garbage bin, springs 10304 pull the first moving block 10301 and the second moving block 10302 into the movable cavity 10110, respectively, so that the connecting block 10303 is located at the junction of the pair of movable cavities 10110, thereby strengthening the first placement plate 10301. The load-bearing capacity of the first placement plate 10103 and the second placement plate 10104 is improved by rotating the fixing plate 10106, which is rotatably connected in the first docking groove 10105 on the upper side of the first placement plate 10103, to align with the second docking groove 10108 on the second placement plate 10104. Then, the fixing bolt 10107, which is threaded on the upper side of the fixing plate 10106, is screwed into the threaded groove 10109 inside the second docking groove 10108. This achieves a firm connection between the first placement plate 10103 and the second placement plate 10104 in the unfolded state, improves the load-bearing effect of the load-bearing mechanism 101 on the garbage bin, and ensures the safety and stability of the garbage transfer process.
Claims
1. A foldable refuse transfer station truck carriage for a refuse container, characterized by, The utility model provides a garbage can box automatic overturning device, including bearing mechanism (101), moving mechanism (102) and turnover mechanism (103), bearing mechanism (101) includes first placing plate (10103) and second placing plate (10104) for placing garbage can box, two opposite sides of first placing plate (10103) and second placing plate (10104) are all set up movable cavity (10110), turnover mechanism (103) includes first moving block (10301), second moving block (10302) and connecting block (10303), first moving block (10301) and second moving block (10302) are slidably connected with the inside of a pair of movable cavity (10110) respectively, both sides of connecting block (10303) are hinged with the two opposite sides of first moving block (10301) and second moving block (10302) respectively through pin shaft, bearing mechanism (101) still includes a pair of fixed plate (10101), both opposite sides of a pair of fixed plate (10101) are fixedly installed with side plate (10102), and the bottom side of both opposite sides of a pair of side plate (10102) is connected with the side of first placing plate (10103) and second placing plate (10104) respectively.
2. The foldable refuse transfer vehicle carriage of claim 1, wherein, The moving mechanism (102) includes a pair of support plates (10201), and the bottom ends of the pair of support plates (10201) are respectively provided with a pair of universal wheels (10202).
3. The foldable refuse transfer vehicle carriage of claim 2, wherein, The bottom ends of the pair of support plates (10201) are respectively provided with lithium batteries (10203), and the lithium batteries (10203) are respectively provided with control buttons (10204) on one side.
4. The foldable refuse transfer vehicle carriage of claim 3, wherein, The upper ends of the fixed plates (10101) are respectively provided with a pair of telescopic rods (100) on both sides, and the bottom ends of the telescopic rods (100) are respectively connected with the upper ends of the pair of support plates (10201).
5. The foldable refuse transfer vehicle carriage of claim 1, wherein, The outer sides of the first moving block (10301) and the second moving block (10302) are respectively provided with a group of springs (10304), and the other ends of the two groups of springs (10304) are respectively connected with the sides of the pair of movable cavities (10110).
6. The foldable refuse transfer vehicle carriage of claim 1, wherein, The upper end of the first placing plate (10103) is provided with a first docking groove (10105) on one side, and the first docking groove (10105) is rotatably connected with a fixed sheet (10106).
7. A foldable refuse transfer vehicle carriage for a refuse house according to claim 6, characterised in that, The upper end of the second placing plate (10104) is provided with a second docking groove (10108) on one side close to the first docking groove (10105), and the second docking groove (10108) is provided with a threaded groove (10109) in the inside.
8. The foldable refuse transfer vehicle carriage of claim 7, wherein, The upper end of the fixed sheet (10106) is provided with a fixed bolt (10107) on one side in a threaded connection, and the bottom end of the fixed bolt (10107) is in a threaded connection with the threaded groove (10109).