Building waste green construction transportation channel for multi-story and high-rise building
By using independent feeding blocks and inclined feeding holes in the waste transportation channels of high-rise buildings, combined with a spring mechanism, the safety hazards of multi-story waste disposal have been solved, achieving safe and efficient waste disposal and transportation, and adapting to diverse construction scenarios.
Patent Information
- Application Number
- CN202520579627.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2035-03-31
AI Technical Summary
Existing garbage transport channels in high-rise buildings pose safety hazards when garbage is simultaneously disposed of on multiple floors, as garbage could easily fall on users below.
By using independently set feeding blocks and feeding holes on each floor, combined with an inclined design and spring mechanism, the system enables autonomous selection of waste for disposal and automated conveying, avoiding direct disposal and ensuring safety and efficiency.
It enables safe and smooth garbage disposal across multiple floors, preventing garbage from falling on users below, improving disposal efficiency, reducing manual intervention, and adapting to the needs of different scales and construction schedules.
Smart Images

Figure CN223937554U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of high-rise waste transportation technology, and in particular to a green construction waste transportation channel for multi-story buildings. Background Technology
[0002] Green construction waste transportation channels for multi-story and high-rise buildings are environmentally friendly and efficient facilities specifically designed for the transportation of construction waste. They are typically built along the exterior facade of buildings and are made of sturdy and environmentally friendly materials such as steel and protective netting, possessing good load-bearing capacity and stability.
[0003] Existing technologies, such as the utility model patent with publication number CN222413874U, disclose a vertical enclosed construction waste transportation channel for multi-story buildings, belonging to the field of building construction. Its technical solution includes: several sections of pipe connected to form a vertical channel and U-bolts pre-embedded in the structural floor slab; a mounting plate is provided on one side of the pipe, and the mounting plate has mounting holes that mate with the U-bolts; the mounting plate is connected to the U-bolts by corresponding nuts; a buffer mechanism is provided inside the pipe, and the buffer mechanism includes several triangular plates arranged circumferentially.
[0004] Currently, most high-rise building waste transportation channels require waste to be directly deposited into the pipes. When multiple floors are disposing of waste simultaneously, waste from higher floors can easily fall on people disposing of waste below, posing a certain safety hazard. This needs to be improved. Utility Model Content
[0005] The purpose of this utility model is to solve the problem that in the existing technology, most high-rise building waste transportation channels require waste to be directly put into the pipes during use. When multiple floors are disposing of waste at the same time, the waste at the top may fall on the people disposing of waste below, which poses a certain safety hazard. Therefore, this utility model proposes a green construction waste transportation channel for multi-story buildings.
[0006] To achieve the above objectives, this utility model adopts the following technical solution: a green construction waste transportation channel for multi-story buildings, comprising a conveying pipe, an insertion hole on the surface of the conveying pipe, a feeding block slidably connected in the insertion hole, a feeding hole on the surface of the feeding block, an inclined portion on the surface of the feeding block, an installation frame mounted on the surface of the conveying pipe, the feeding block sliding against the inner wall of the installation frame, a support rod fixedly connected to the lower surface of the installation frame, the end of the support rod away from the installation frame being fixedly connected to the surface of the conveying pipe, and a protective cover plate fixedly connected to the surface of the conveying pipe, the protective cover plate being located on the feeding block. Above, each floor has an independently installed feeding block and feeding hole, allowing each floor to choose a suitable time to dispose of garbage without coordination. This avoids congestion and chaos caused by multiple floors disposing of garbage simultaneously, greatly improving garbage disposal efficiency and meeting the needs of different construction progress in high-rise building construction. The feeding block is supported by the mounting frame, and the lower part of the feeding hole is sealed to safely store garbage before the disposal operation is completed, preventing garbage from falling accidentally. When the feeding block is reset, it automatically dumps the garbage into the conveying pipe. The whole process is smooth and safe, allowing multiple floors to dispose of garbage simultaneously. At the same time, users do not need to put garbage directly into the pipe, avoiding garbage from above falling on users below and ensuring user safety.
[0007] Preferably, the disposal hole is inclined, and the entrance of the disposal hole is rectangular and the bottom is circular, which facilitates quick disposal of garbage.
[0008] Preferably, the upper end of the conveying pipeline is equipped with a maintenance cover to facilitate equipment maintenance.
[0009] Preferably, the mounting frame has positioning holes on its surface, and a sliding rod is fixedly connected to the inner wall of the positioning holes. Positioning blocks are fixedly connected to both sides of the feeding block. The positioning blocks are slidably connected to the inner wall of the positioning holes and slide on the surfaces of the sliding rods to ensure stable displacement of the feeding block.
[0010] Preferably, a spring is fixedly connected to one side of the positioning block. The spring is sleeved on the slide rod, and one end of the spring is fixedly connected to the inner wall of the positioning hole. When the upper layer of garbage accumulates on the inclined part of the lower feeding block and exceeds the spring thrust, the feeding block automatically opens to let the garbage fall, realizing intelligent garbage conveying without frequent manual intervention and saving labor costs. At the same time, when the weight of the garbage is insufficient, it can still be put in by manually pulling the handle to ensure that the garbage can fall stably into the bottom of the conveying pipe.
[0011] Preferably, a handle is fixedly connected to the end of the feeding block away from the conveying pipe. Pulling the handle can effectively move the feeding block, making it convenient for garbage disposal operations.
[0012] Preferably, there are multiple material feeding blocks and insertion holes, and the multiple material feeding blocks and insertion holes are set at equal intervals. This solution can adapt to the construction of multi-story buildings of different scales and construction progress. Whether it is a large-scale commercial building or a small residential building, the number and spacing of material feeding blocks and insertion holes can be flexibly adjusted according to actual needs to meet diverse construction scenarios.
[0013] Compared with the prior art, the advantages and positive effects of this utility model are as follows:
[0014] 1. In this utility model, the independently set feeding blocks and feeding holes on each floor allow each floor to choose a suitable time to dispose of garbage without coordination, avoiding congestion and chaos caused by simultaneous disposal by multiple floors, greatly improving garbage disposal efficiency, and meeting the needs of different construction progress in high-rise building construction. The feeding blocks are supported by the mounting frame, and the lower part of the feeding hole is blocked, which can safely store garbage before the disposal operation is completed, preventing garbage from falling accidentally. When the feeding blocks are reset, the garbage is automatically poured into the conveying pipe. The whole process is smooth and safe, and garbage can be disposed of by multiple floors at the same time. At the same time, users do not need to put garbage directly into the pipe, avoiding garbage from above falling on users below, ensuring the safety of users.
[0015] 2. In this utility model, when the upper layer of garbage accumulates on the inclined part of the lower feeding block and exceeds the spring thrust, the feeding block automatically opens to allow the garbage to fall, realizing intelligent garbage transportation without frequent manual intervention, saving labor costs. At the same time, when the weight of the garbage is insufficient, it can still be put in by manually pulling the handle to ensure that the garbage can fall stably into the bottom of the conveying pipe. This solution can adapt to the construction of multi-story buildings of different scales and construction progress. Whether it is a large-scale commercial building or a small residential building, the number and spacing of the feeding blocks and holes can be flexibly adjusted according to actual needs to meet diverse construction scenarios. Attached Figure Description
[0016] Figure 1 This utility model provides a three-dimensional structural schematic diagram of a green construction waste transportation channel for multi-story buildings;
[0017] Figure 2 This utility model provides a side view structural diagram of a green construction waste transportation channel for multi-story buildings;
[0018] Figure 3 This utility model provides a partial cross-sectional structural diagram of a green construction waste transportation channel for multi-story buildings;
[0019] Figure 4 This utility model provides an exploded structural diagram of a green construction waste transportation channel for multi-story buildings;
[0020] Figure 5This utility model proposes a green construction waste transportation channel for multi-story and high-rise buildings. Figure 4 A schematic diagram of the structure at point A.
[0021] Legend:
[0022] 1. Conveying pipe; 2. Maintenance cover; 3. Mounting frame; 4. Protective cover plate; 5. Feeding block; 6. Feeding hole; 7. Support rod; 8. Positioning hole; 9. Slide rod; 10. Positioning block; 11. Spring; 12. Handle; 13. Inclined part; 14. Insertion hole. Detailed Implementation
[0023] Please see Figures 1-5 This utility model provides a technical solution: a green construction waste transportation channel for multi-story buildings, including a conveying pipe 1. The surface of the conveying pipe 1 has insertion holes 14, and a feeding block 5 is slidably connected to the insertion holes 14. The surface of the feeding block 5 has feeding holes 6, and the surface of the feeding block 5 is provided with an inclined portion 13. An installation frame 3 is installed on the surface of the conveying pipe 1. The feeding block 5 slides against the inner wall of the installation frame 3. A support rod 7 is fixedly connected to the lower surface of the installation frame 3. The end of the support rod 7 away from the installation frame 3 is fixedly connected to the surface of the conveying pipe 1. A protective cover plate 4 is fixedly connected to the surface of the conveying pipe 1, located above the feeding block 5. Each layer... The independently installed feeding blocks 5 and feeding holes 6 allow each floor to choose a suitable time to dispose of garbage without coordination, avoiding congestion and chaos caused by simultaneous disposal by multiple floors. This greatly improves garbage disposal efficiency and meets the needs of different construction progress in high-rise building construction. The feeding block 5 is supported by the mounting frame 3, and the lower part of the feeding hole 6 is sealed to safely store garbage before the disposal operation is completed, preventing garbage from falling accidentally. When the feeding block 5 is reset, it automatically dumps the garbage into the conveying pipe 1. The whole process is smooth and safe, allowing multiple floors to dispose of garbage at the same time. At the same time, users do not need to put garbage directly into the pipe, avoiding garbage from above falling on users below and ensuring user safety.
[0024] Specifically, the disposal hole 6 is inclined, and the entrance of the disposal hole 6 is rectangular and the bottom is circular, which facilitates quick disposal of garbage.
[0025] Specifically, a maintenance cover 2 is installed at the upper end of the conveying pipeline 1 to facilitate equipment maintenance.
[0026] In this embodiment: the surface of the mounting bracket 3 is provided with positioning holes 8, the inner wall of the positioning holes 8 is fixedly connected with a sliding rod 9, and the surfaces on both sides of the feeding block 5 are fixedly connected with positioning blocks 10. The positioning blocks 10 are slidably connected to the inner wall of the positioning holes 8, and the surfaces of the positioning blocks 10 and the sliding rods 9 slide to ensure the stable displacement of the feeding block 5.
[0027] In this embodiment: A spring 11 is fixedly connected to one side of the positioning block 10. The spring 11 is sleeved on the slide rod 9. One end of the spring 11 is fixedly connected to the inner wall of the positioning hole 8. When the upper layer of garbage accumulates on the inclined part 13 of the lower feeding block 5 and exceeds the thrust of the spring 11, the feeding block 5 automatically opens to let the garbage fall, realizing the intelligent garbage conveying. It does not require frequent manual intervention and saves labor costs. At the same time, when the weight of the garbage is insufficient, it can still be put in by manually pulling the handle 12 to ensure that the garbage can fall stably into the bottom of the conveying pipe 1.
[0028] Specifically, a handle 12 is fixedly connected to the end of the feeding block 5 away from the conveying pipe 1. Pulling the handle 12 can effectively move the feeding block 5, making it convenient to carry out garbage disposal operations.
[0029] Specifically, there are multiple material feeding blocks 5 and multiple insertion holes 14, and the multiple material feeding blocks 5 and insertion holes 14 are set at equal intervals. This solution can adapt to the construction of multi-story buildings of different scales and construction progress. Whether it is a large-scale commercial building or a small residential building, the number and spacing of material feeding blocks 5 and insertion holes 14 can be flexibly adjusted according to actual needs to meet diverse construction scenarios.
[0030] Working principle: When construction waste needs to be disposed of, the operator pulls the handle 12, which is fixedly connected to the end of the feeding block 5 away from the conveying pipe 1, overcoming the elastic force of the spring 11. This causes the feeding block 5 to slide outward along the slide rod 9 and the positioning hole 8, protruding from the insertion hole 14 and disposing of waste into the disposal hole 6. Because the feeding block 5 is supported by the mounting bracket 3, the lower part of the disposal hole 6 is blocked by the mounting bracket 3. At this time, the waste is stored in the disposal hole 6. After the disposal operation is completed, simply release the handle 12. The spring 11 pulls the positioning block 10 and the feeding block 5 back to their original positions. During this process, the feeding block 5 can be pushed towards the conveying pipe 1. After the feeding block 5 is inserted into the conveying pipe 1, the waste in the disposal hole 6 immediately falls into the conveying pipe 1, thus completing the waste disposal operation. Therefore, waste disposal on multiple floors does not affect each other.
[0031] When garbage is disposed of on an upper floor, it is blocked by the feeding block 5 on the lower floor. The garbage piles up on the inclined section 13. When the weight of the garbage exceeds the pushing force of the spring 11, the garbage gathers at the bottom of the inclined section 13 and pushes the feeding block 5 away from the conveying pipe 1. After the feeding block 5 slides, the garbage falls down. After the garbage falls down, the spring 11 pushes the positioning block 10 and the feeding block 5 to reset. Repeating the above operation can ensure that the garbage falls to the bottom of the conveying pipe 1. When the stored garbage is not enough to push the feeding block 5, when people on that floor dispose of garbage, they pull the feeding block 5 open, and the garbage on the feeding block 5 falls down, ensuring stable garbage delivery.
Claims
1. A green construction waste transportation channel for multi-story buildings, comprising a conveying pipeline (1), characterized in that: The surface of the conveying pipe (1) is provided with an insertion hole (14), and a feeding block (5) is slidably connected in the insertion hole (14). The surface of the feeding block (5) is provided with a feeding hole (6), and the surface of the feeding block (5) is provided with an inclined part (13). The surface of the conveying pipe (1) is equipped with an installation frame (3). The feeding block (5) slides against the inner wall of the installation frame (3). The lower surface of the installation frame (3) is fixedly connected with a support rod (7). The end of the support rod (7) away from the installation frame (3) is fixedly connected to the surface of the conveying pipe (1). The surface of the conveying pipe (1) is fixedly connected with a protective cover plate (4), and the protective cover plate (4) is located above the feeding block (5).
2. The green construction waste transportation channel for multi-story buildings according to claim 1, characterized in that: The dispensing hole (6) is inclined, and the entrance of the dispensing hole (6) is rectangular and the bottom is circular.
3. The green construction waste transportation channel for multi-story buildings according to claim 1, characterized in that: A maintenance cover (2) is installed at the upper end of the conveying pipe (1).
4. The green construction waste transportation channel for multi-story buildings according to claim 1, characterized in that: The mounting bracket (3) has a positioning hole (8) on its surface. A sliding rod (9) is fixedly connected to the inner wall of the positioning hole (8). Positioning blocks (10) are fixedly connected to both sides of the feeding block (5). The positioning blocks (10) are slidably connected to the inner wall of the positioning hole (8). The positioning blocks (10) slide on the surface of the sliding rod (9).
5. A green construction waste transportation channel for multi-story buildings according to claim 4, characterized in that: A spring (11) is fixedly connected to one side of the positioning block (10). The spring (11) is sleeved on the slide rod (9), and one end of the spring (11) is fixedly connected to the inner wall of the positioning hole (8).
6. A green construction waste transportation channel for multi-story buildings according to claim 5, characterized in that: The feeding block (5) has a handle (12) fixedly connected to the end away from the conveying pipe (1).
7. A green construction waste transportation channel for multi-story buildings according to claim 5, characterized in that: The number of feeding blocks (5) and sockets (14) are multiple, and the multiple feeding blocks (5) and sockets (14) are equally spaced.
Citation Information
Patent Citations
Vertical closed construction waste transportation channel of multi-story and high-rise building
CN222413874U