Fabricated classification garbage station for construction garbage

By designing prefabricated garbage stations and using the combined structure of anti-collision components and telescopic sheds, the problems of inconvenience in building traditional garbage stations and waste of resources are solved, and the effects of convenient disassembly, shade, rain and resource recycling are achieved.

CN223200778UActive Publication Date: 2025-08-08THE FOURTH OF CHINA CONSTR SEVENTH ENG +2
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Patent Information

Application Number
CN202421861288.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-02
Publication Date
2025-08-08
Estimated Expiration
2034-08-02

AI Technical Summary

Technical Problem

The construction and demolition of garbage stations on traditional construction sites is inconvenient, and the lack of sunshade and rain protection functions, resulting in waste of construction waste resources and environmental pollution, affecting the image of the construction site.

Method used

A prefabricated sorting garbage station including a spacing garbage pool and a telescopic shed is designed. The anti-collision components are used to quickly splice the garbage pool, and a telescopic shed is set up above the garbage pool to realize the sunshade and rainproof function. The bottom of the telescopic shed slides in the sliding chute, combining the jack and insertion rod to enhance structural stability.

Benefits of technology

It realizes rapid classification and recycling of construction waste, extends the service life of the garbage pool, beautifies the construction site environment, and is convenient for disassembly and assembly and reuse.

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Abstract

The utility model relates to an assembly type classification garbage station for construction waste, which comprises a plurality of garbage pools arranged at intervals, each garbage pool comprises a plurality of anti-collision members, the anti-collision members are spliced end to end to form a U-shaped garbage pool wall structure, the outer sides, far away from the garbage pools, of the anti-collision members are provided with sliding chutes, a telescopic shed is arranged above each garbage pool, and the telescopic sheds are arranged in the sliding chutes. The starting end of the telescopic shed is arranged behind the garbage pool, and the telescopic shed can move and stretch in the length direction of the garbage pool; a base plate is arranged at the bottom of the initial position of the telescopic shed and flush with the bottom of the sliding groove. The bottom of the telescopic shed is slidably arranged in the sliding groove, and when the garbage pool collects construction garbage, on one hand, the anti-collision component can prevent the garbage in the garbage pool from making contact with the telescopic shed, and the situation that the construction garbage influences the telescopic function of the telescopic shed is avoided; and on the other hand, the telescopic shed assembly type frame body is arranged on the periphery of the garbage pool, and the service life of the garbage pool is greatly prolonged when the construction garbage is collected in combination with the use of the anti-collision component.
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Description

Technical Field

[0001] The utility model relates to the field of building construction, in particular to an assembled classification garbage station for building waste. Background Art

[0002] Construction waste refers to construction waste materials generated during construction due to human or natural reasons, including waste soil, abandoned soil, silt and abandoned materials. These materials are of no help to the building itself, but they are substances generated during the construction process and need to be treated accordingly in order to achieve the ideal construction project. Because it is an overall process, it is more important to consider its links.

[0003] Construction waste is not real garbage, but "gold" placed in the wrong place. After sorting, removing or crushing, most of the construction waste can be reused as renewable resources, such as scrap steel bars, scrap iron wires, scrap electric wires and other metals. After sorting, concentration and re-remelting, they can be processed into steel of various specifications; waste bamboo and wood can be used to make artificial wood; bricks, stones, concrete and other waste materials can be crushed and used instead of sand for masonry mortar, plastering mortar, etc., and can also be used to make paving bricks, lattice bricks and other building materials.

[0004] The construction and dismantling of traditional brick or concrete dumping stations at construction sites are very inconvenient, and most of them do not have the function of sunshade and rain protection, which results in a waste of most recyclable construction waste resources. On the other hand, a large amount of solid waste and environmental pollution is generated, which is not conducive to management during construction and affects the image of the entire construction site. Utility Model Content

[0005] In view of this, the purpose of the present invention is to provide an assembled classification garbage station for construction waste, which is quick to install and dismantle, easy to turn over, can provide shade and rain protection, and helps beautify the construction site environment.

[0006] To achieve the above-mentioned purpose, the technical solution adopted by the utility model is an assembled classification garbage station for construction waste, including several garbage pools arranged at intervals, the garbage pools including several anti-collision components, and the several anti-collision components are spliced end to end into a U-shaped garbage pool wall structure, and the anti-collision components are provided with a slide groove on the outside away from the garbage pool, and a telescopic shed is provided above each garbage pool, and the starting end of the telescopic shed is provided at the rear of the garbage pool, and the telescopic shed can move and retract along the length direction of the garbage pool; a pad is provided at the bottom of the starting position of the telescopic shed, and the height of the pad is flush with the bottom of the slide groove; the bottom of the telescopic shed is slidably arranged in the slide groove.

[0007] The beneficial effects of the above technical solution are: for the classified stacking of construction waste, the construction site is reasonably selected, and a garbage pool can be formed by quickly splicing anti-collision components. Compared with the brick-built or concrete-cast garbage stations on traditional construction sites, it has the advantages of turnover and convenient installation and disassembly. At the same time, a retractable shed is set on the garbage pool, which can play a role in sunshade, rain protection and dust prevention. The formed garbage pool is surrounded by a retractable shed assembled frame. Combined with the use of anti-collision components, the service life of the garbage pool is greatly extended when collecting construction waste, and the entire assembled classified garbage station can beautify the overall image of the construction site.

[0008] Furthermore, a transparent socket is provided on the anti-collision component, the socket positions of adjacent anti-collision components are correspondingly connected, and a plug rod is commonly inserted into the sockets of the anti-collision components on the same side of the garbage pool.

[0009] Beneficial effect: The anti-collision components on each side of the garbage pool are connected as one. Compared with the garbage pool spliced with single anti-collision components, the anti-collision capability is further improved, and the stability of the splicing structure of the garbage pool is enhanced.

[0010] Furthermore, the telescopic tent includes a tent cloth and a telescopic unit, the tent cloth is arranged on several telescopic units, the telescopic units include columns, rollers, arch frames and scissors frames, the two ends of the arch frames are respectively fixedly connected to the top ends of the two columns, the rollers are fixed at the bottom of the columns, and the scissors frames are hinged between the columns of adjacent telescopic units.

[0011] Beneficial effects: The shed cloth can provide shade and rain protection, and is convenient for the recycling of construction waste. The retractable shed can be adjusted in length to suit the size of the garbage pool, making it convenient for the construction of the entire garbage pool.

[0012] Furthermore, a brake is provided on the roller.

[0013] Beneficial effect: The position of the columns can be fixed. When the telescopic shed is extended to the position suitable for the garbage pool, the columns are fixed by the brake to prevent the telescopic shed from further extension.

[0014] Furthermore, the roller is a directional wheel.

[0015] Beneficial effect: The rotation direction of the fixed roller further maintains the moving track of the roller in the slide groove, making it easier for the telescopic shed to move and retract.

[0016] Furthermore, the width of the column is adapted to the width of the chute, and the depth of the chute is sufficient to accommodate the entire roller and a portion of the bottom end of the column itself.

[0017] Beneficial effect: The column is partially immersed in the chute, which can limit the column in the width direction of the garbage pool, making the overall structure of the telescopic shed and anti-collision components more stable, while avoiding contact between the roller and the side wall of the chute when under force, preventing roller wear.

[0018] Furthermore, the opening direction of the U-shaped pool wall structure of the garbage pool is the front of the garbage pool, and the anti-collision component corresponding to the rear of the garbage pool does not have a slide groove.

[0019] Beneficial effects: The anti-collision component behind the garbage pool does not need to provide a sliding channel for the telescopic shed, and does not need to open a slide groove, which reduces the number of processing anti-collision components. On the other hand, it maintains the integrity of the anti-collision component and can have a stronger anti-collision ability. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a structural diagram of the utility model;

[0021] Figure 2 This is a structural diagram of a single garbage pool of the utility model after removing the tarpaulin;

[0022] Figure 3 It is a structural diagram of this practical garbage pool;

[0023] In the figure: 1-garbage pool, 2-anti-collision member, 3-telescopic shed, 4-pad, 21-insertion rod, 31-shed cloth, 32-column, 33-roller, 34-arch frame, 35-scissor frame, 201-chute. DETAILED DESCRIPTION

[0024] The following is a further detailed description of an assembled classification garbage station for construction waste in conjunction with the accompanying drawings and specific implementation methods of the present invention.

[0025] like Figure 1-3 When garbage is collected by the garbage pool 1, on the one hand, the anti-collision member 2 can prevent the garbage in the garbage pool 1 from contacting the retractable shed 3, thereby preventing the garbage from affecting the retractable function of the retractable shed 3. On the other hand, the garbage pool 1 is surrounded by the assembled frame of the retractable shed 3. Combined with the use of the anti-collision member 2, the service life of the garbage pool 1 is greatly extended when collecting construction garbage.

[0026] In this embodiment, a transparent socket is opened on the anti-collision component 2, and the socket positions of adjacent anti-collision components 2 are connected correspondingly. An insertion rod 21 is commonly passed through the sockets of the anti-collision components 2 on the same side of the garbage pool 1. Compared with the garbage pool 1 spliced with a single anti-collision component 2, the anti-collision ability is further improved, and the stability of the splicing structure of the garbage pool 1 is enhanced.

[0027] In this embodiment, the telescopic shed 3 includes a shed cloth 31 and a telescopic unit. The shed cloth 31 is arranged on several telescopic units. The telescopic unit includes a column 32, a roller 33, an arch frame 34 and a scissor frame 35. The two ends of the arch frame 34 are respectively fixedly connected to the top of the two columns 32, and the roller 33 is fixed at the bottom of the column 32. The scissor frames 35 are hinged between the columns 32 of adjacent telescopic units. The hinged connection method of the scissor frames 35 is a commonly used folding method in the field. The implementation method of the scissor frames 35 is not described in detail here; the shed cloth 31 can play a role in sunshade and rainproof, and is convenient for the recycling of construction waste. The telescopic shed 3 can adapt to the size of the garbage pool 1 to adjust the length, which is convenient for the construction of the entire garbage pool 1; in order to keep the moving trajectory of the bottom of the telescopic shed 3 in the slide 201 stable, the roller 33 in the embodiment is a directional wheel.

[0028] Specifically, the roller 33 is provided with a brake, which can fix the position of the column 32. When the telescopic shed 3 is extended to a position suitable for the garbage pool 1, the column 32 is fixed by the brake to prevent the telescopic shed 3 from continuing to extend and retract, which is equivalent to limiting the column 32 in the length direction of the garbage pool 1; the width of the column 32 is adapted to the width of the chute 201, and the depth of the chute 201 satisfies the entire roller 33 and a section of the bottom end of the column 32 itself, which can limit the column 32 in the width direction of the garbage pool 1, making the overall structure of the telescopic shed 3 and the anti-collision member 2 more stable, and at the same time avoiding contact between the roller 33 and the side wall of the chute 201 when subjected to force, thereby preventing the roller 33 from wearing.

[0029] In this embodiment, the opening direction of the U-shaped pool wall structure of the garbage pool 1 is the front of the garbage pool 1, and the anti-collision component 2 behind the corresponding garbage pool 1 does not have a slide groove 201. The anti-collision component 2 behind the garbage pool 1 does not need to provide a sliding channel for the telescopic shed 3, and does not need to have a slide groove 201, which reduces the processing quantity of the anti-collision component 2. On the other hand, the integrity of the anti-collision component 2 is maintained, and it can have a stronger anti-collision ability.

[0030] When the present invention is in use, first select a suitable construction site for the garbage station on the construction site, align and lay all the pads 4, pre-place each telescopic shed 3 on the pad 4, and then build the garbage pool 1 in front of the pad 4. It should be noted that the width of the telescopic shed 3 will constrain the width of the garbage pool 1. Calculate the number of anti-collision components 2 required for the rear pool wall of the garbage pool 1 in advance according to the width of the telescopic shed 3. First, splice the rear pool wall of the garbage pool 1, select the appropriate length of the insertion rod 21 and insert it into the insertion holes of all the anti-collision components 2 of the rear pool wall in turn, and then splice the anti-collision components 2 on the left and right sides of the garbage pool 1. Splice the left and right side walls of the garbage pool 1 according to the planned size of the garbage pool 1. The chute 201 on the anti-collision component 2 used at this stage should face the garbage pool 1. On the outside, similarly, an insertion rod 21 of appropriate length is selected to connect the insertion holes of the anti-collision components 2 on the left and right side walls respectively. After the garbage pool 1 is assembled, a slideway with chutes 201 is formed on both sides of the garbage pool 1. Observe and adjust the bottom of the telescopic shed 3 to correspond to the position of the slideway, move the rollers 33 at the bottom of the columns 32 of the telescopic shed 3, and stretch the telescopic shed 3 along the slideway until the telescopic shed 3 completely covers the garbage pool 1. Then, brake and fix the rollers 33 at the bottom of all the columns 32 of the telescopic shed 3. The entire assembled sorting garbage station is completed. After the construction is completed and the internal construction waste is processed, first open the brakes of all rollers 33, move the rollers 33 to retract the telescopic shed 3 to the pad 4, remove the insertion rod 21, and all components can be recycled and transported for reuse.

[0031] The utility model is an assembled classification garbage station for construction waste, which has the following advantages: first, the entire assembled classification garbage station is very convenient to build and dismantle, does not generate fixed garbage itself, and is convenient for turnover and reuse; second, the telescopic shed 3 provides shade and rain protection, which is conducive to the recycling of construction waste and beautifies the overall image of the construction site; third, the anti-collision component 2, on the one hand, blocks the construction waste from approaching the telescopic shed 3, avoiding the limitation of the telescopic function of the telescopic shed 3; on the other hand, the four sides of the garbage pool 1 are jointly enclosed by the telescopic shed 3 frame and the anti-collision component 2, which further enhances the service life of the garbage pool 1.

[0032] In the above embodiment, a transparent socket is provided on the anti-collision component, and the socket positions of adjacent anti-collision components are connected correspondingly. A common insertion rod is passed through the sockets of the anti-collision components on the same side of the garbage pool. In other embodiments, the insertion rod may not be connected between adjacent anti-collision components.

[0033] In the above embodiment, the telescopic shed includes a shed cloth and a telescopic unit, the shed cloth is arranged on several telescopic units, the telescopic unit includes a column, a roller, an arch frame and a scissors frame, the two ends of the arch frame are fixedly connected to the top of the two columns respectively, the bottom of the column is fixed with a roller, and the columns of adjacent telescopic units are hinged with a scissors frame. In other embodiments, the telescopic shed may not have rollers, and the bottom of the column may be directly slidably set in the slide groove, or a positioning device may be added to the column.

[0034] In the above embodiment, the roller is a directional wheel. In other embodiments, the roller is not limited to a directional wheel.

[0035] In the above embodiment, the width of the column is adapted to the width of the slide, and the depth of the slide satisfies the entire roller and a section of the bottom end of the column itself. In other embodiments, the relationship between the column and the slide is not additionally limited, as long as the bottom of the telescopic shed can slide in the slide.

[0036] In the above embodiment, the opening direction of the U-shaped wall structure of the garbage pool is the front of the garbage pool, and the anti-collision component at the rear of the garbage pool does not have a chute. In other embodiments, the anti-collision component at the rear of the garbage pool can have a chute.

[0037] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. An assembled type classification garbage station for construction waste, characterized by: The invention comprises a plurality of garbage pools (1) arranged at intervals, wherein the garbage pools comprise a plurality of anti-collision components (2), wherein the plurality of anti-collision components (2) are spliced end to end to form a U-shaped garbage pool wall structure, wherein a chute (201) is provided on the outer side of the anti-collision component (2) away from the garbage pool (1), and a telescopic shed (3) is provided above each garbage pool (1), wherein the starting end of the telescopic shed (3) is provided at the rear of the garbage pool (1), and the telescopic shed (3) can move and retract along the length direction of the garbage pool (1); a pad (4) is provided at the bottom of the starting position of the telescopic shed (3), wherein the height of the pad (4) is flush with the bottom of the chute (201); and the bottom of the telescopic shed (3) is slidably provided in the chute (201).

2. The assembled type classification garbage station for construction waste according to claim 1 is characterized in that: The anti-collision member (2) is provided with a transparent insertion hole, and the insertion holes of adjacent anti-collision members (2) are connected in a corresponding manner. The insertion holes of the anti-collision members (2) on the same side of the garbage pool (1) are provided with an insertion rod (21) passing through them.

3. The assembled type classification garbage station for construction waste according to claim 1 or 2, characterized in that: The telescopic shed comprises a shed cloth (31) and telescopic units, wherein the shed cloth (31) is arranged on a plurality of telescopic units, and the telescopic units comprise upright posts (32), rollers (33), arches (34) and scissor racks (35), wherein both ends of the arches (34) are fixedly connected to the top ends of the two upright posts (32), respectively, and the rollers (33) are fixed to the bottoms of the upright posts (32), and the scissor racks (35) are hingedly connected between the upright posts (32) of adjacent telescopic units.

4. The assembled type classification garbage station for construction waste according to claim 3, wherein the roller (33) is provided with a brake.

5. The assembled type classification garbage station for construction waste according to claim 4, wherein the roller (33) is a directional wheel.

6. The assembled type classification garbage station for construction waste according to claim 4 is characterized in that: The width of the column (32) is adapted to the width of the chute (201), and the depth of the chute (201) is sufficient to accommodate the entire roller (33) and a portion of the bottom end of the column (32).

7. The assembled type classification garbage station for construction waste according to claim 1 or 2, characterized in that: The opening direction of the U-shaped pool wall structure of the garbage pool (1) is the front of the garbage pool (1), and the anti-collision component (2) at the rear of the garbage pool does not have a chute (201).