Direct insertion type discharging platform

By designing a direct-insertion unloading platform, and utilizing a combination of unloading hoppers, side beams, toe blocks, and lifting points, the problem of difficult installation of cantilever unloading platforms is solved, achieving efficient and stable installation of cantilever unloading platforms and avoiding conflicts and safety hazards with building scaffolding.

CN223824627UActive Publication Date: 2026-01-23CHINA CONSTR EIGHTH ENG BUREAU TECH CONSTR CO LTD
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Patent Information

Application Number
CN202520263075.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-19
Publication Date
2026-01-23
Estimated Expiration
2035-02-19

AI Technical Summary

Technical Problem

The existing cantilevered unloading platform is difficult and inefficient to install, and it is prone to conflict with the location of the building's scaffolding, which makes installation difficult.

Method used

The design adopts a direct-insertion unloading platform. Through the combination of unloading hopper, side beam, toe stop and lifting point, the side beam extends directly into the top of the building beam and slab and abuts against the toe stop. With the help of the lifting point, the cantilever unloading platform can be installed, avoiding conflict with the building scaffolding.

Benefits of technology

It reduces the installation difficulty of the cantilever unloading platform, improves installation efficiency and flexibility, increases the platform's stability and protection, and avoids safety hazards.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223824627U_ABST
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Abstract

The utility model relates to a direct insertion type discharging platform which comprises a discharging hopper, edge beams, blocking feet and lifting points. An opening is formed in the front side of the discharge hopper; the edge beam is connected to the bottom of the discharge hopper, and the front end of the edge beam extends out of the front side of the discharge hopper; the blocking feet correspond to the lower portion of the front side of the discharge hopper and are connected to the bottoms of the edge beams, and the blocking feet are perpendicular to the edge beams; the lifting points are connected to the two sides of the discharging hopper. On the basis of the formed discharge hopper, the boundary beams extending out of the discharge hopper are arranged to be inserted into the house building and matched with the blocking feet to abut against the house building beam plate, the hoisting points are arranged for hoisting and pulling, the overhanging discharge platform supported on the edge of the house building beam plate is formed, dismounting and mounting are convenient, and the mounting and dismounting efficiency of the overhanging discharge platform is improved.
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Description

Technical Field

[0001] This utility model relates to the field of building construction, and specifically refers to a direct-insertion unloading platform. Background Technology

[0002] Building construction requires unloading platforms for transporting formwork and materials, as well as for adjusting masonry blocks. When the floor height reaches a certain level or the ground conditions do not allow it, a ground-mounted unloading platform cannot be used.

[0003] Conventional cantilevered unloading platforms are installed on-site, which is not only inefficient but also prone to conflicts with the location of building scaffolding, leading to installation difficulties. Utility Model Content

[0004] The purpose of this utility model is to overcome the defects of the prior art and provide a direct-insertion unloading platform to solve the problems of difficult installation and low efficiency of the cantilever unloading platform in the prior art.

[0005] To achieve the above objectives, this utility model provides a direct-insertion unloading platform, including an unloading hopper, side beams, toe blocks, and lifting points;

[0006] An opening is provided on the front side of the unloading hopper;

[0007] The side beam is connected to the bottom of the unloading hopper, and the front end of the side beam extends out of the front side of the unloading hopper;

[0008] The stop foot is connected to the bottom of the side beam below the front side of the unloading hopper, and the stop foot is perpendicular to the side beam.

[0009] The lifting points are connected to both sides of the unloading hopper.

[0010] By adopting this technical solution, side beams, toe blocks, and lifting points are set on the foundation of the formed unloading hopper. When installing the cantilever unloading platform, the side beams can extend directly above the building beams and slabs, and form double-sided abutment with the building beams and slabs through the toe blocks. After the lifting points are tied with ropes, the unloading hopper can be directly installed at the edge of the lower building to form a cantilever unloading platform without being fixedly connected to the building beams and slabs. This reduces the installation difficulty of the cantilever unloading platform and increases its installation efficiency. The position of the cantilever unloading platform is fixed by connecting the side beams and building beams and slabs. Since there are no obstructions above the side beams, there will be no conflict with the building's external scaffolding, which increases the installation flexibility and applicability of the cantilever unloading platform.

[0011] Furthermore, the unloading hopper includes a bottom plate connected to the top of the side beam, a side guardrail connected to the bottom plate, and a tail guardrail;

[0012] The side guardrails are connected in two sections on the top sides of the base plate;

[0013] The tail guardrail is connected to the top rear side of the base plate, and both ends of the tail guardrail are respectively connected to the rear ends of the two side guardrails.

[0014] By adopting this technical solution, two side guardrails and one tail guardrail, together with the base plate, can form a stable and protective bucket-shaped structure, which can meet the usage requirements of the unloading platform opening towards the building.

[0015] Furthermore, both the side guardrails and the rear guardrails are covered with protective netting on their outer surfaces.

[0016] By adopting this technical solution, the protective effect of the unloading hopper is increased except for the side facing the building.

[0017] Furthermore, the unloading hopper also includes a flap that is flipped and connected to the front end of the bottom plate at its rear end, with the front end of the flap extending out of the front side of the stop.

[0018] By adopting this technical solution, after the foot block is installed against the edge of the building beam, the flap can cover the gap between the unloading hopper and the edge of the building beam, thereby avoiding the safety hazard caused by debris falling through the gap.

[0019] Furthermore, this also includes crossbeams;

[0020] Two side beams are arranged parallel to each other on both sides of the bottom of the unloading hopper, and the two side beams are fixedly connected by the crossbeam.

[0021] By adopting this technical solution, two lifting points are set on the side beam to match the unloading hopper on both sides. After the lifting points are connected, the stability of the cantilever unloading platform installed at the edge of the building beam and slab can be guaranteed.

[0022] Furthermore, a buffer pad layer is provided at the angle formed between the stop and the front side of the side beam.

[0023] By adopting this technical solution, a buffer layer is set up to protect the edges of the building beams and slabs, reducing the impact damage caused by the rigid contact between the cantilevered unloading platform and the edges of the building beams and slabs.

[0024] Furthermore, a fixing hole is provided at the front end of the side beam, running from top to bottom through the side beam.

[0025] By adopting this technical solution, the flexibility of the cantilever unloading platform is increased. When using the cantilever unloading platform for a long time, the side beams can be fixed to the building beams and slabs with bolts, thereby increasing the stability of the cantilever unloading platform for long-term use.

[0026] Compared with the prior art, this utility model has the following advantages:

[0027] 1. Based on the pre-formed unloading hopper, a side beam extending out of the unloading hopper is inserted into the building and, together with the toe block, abuts against the building beams and slabs. Lifting points are set for hoisting and connection, forming a cantilevered unloading platform supported on the edge of the building beams and slabs. This not only facilitates assembly and disassembly but also increases the efficiency of the cantilevered unloading platform.

[0028] 2. A flip-up flap is installed between the cantilevered unloading platform and the building beams and slabs to cover the gap between the cantilevered unloading platform and the edge of the building beams and slabs, thereby avoiding the safety risks caused by debris falling through the gap. Attached Figure Description

[0029] Figure 1 This is a front view schematic diagram of the direct-insertion unloading platform of this utility model;

[0030] Figure 2 This is a top view of the direct-insertion unloading platform of this utility model;

[0031] Figure 3 This is a side view of the direct-insertion unloading platform of this utility model.

[0032] Explanation of reference numerals in the attached drawings: 1. Side beam; 2. Cross beam; 3. Side guardrail; 4. Rear guardrail; 5. Toe stop; 6. Base plate; 7. Flip plate; 8. Lifting point; 9. Fixing hole. Detailed Implementation

[0033] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0034] Please see the appendix Figure 1-3 This utility model provides a direct-insertion unloading platform, including an unloading hopper, a side beam 1, a stop 5, and lifting points 8. The unloading hopper has an opening on its front side. The side beam 1 is connected to the bottom of the unloading hopper, and its front end extends beyond the front side of the hopper. The stop 5 is connected to the bottom of the side beam 1 below the front side of the unloading hopper, and is perpendicular to the side beam 1. The lifting points 8 are connected to both sides of the unloading hopper. With the side beam 1, stop 5, and lifting points 8 installed on the foundation of the formed unloading hopper, the side beam 1 can directly extend above the building beams and slabs during the installation of the cantilevered unloading platform, and the stop 5... By forming a double-sided abutment with the building beams and slabs, and connecting the lifting point 8 with ropes, the unloading hopper can be directly installed at the edge of the lower building to form a cantilevered unloading platform without being fixedly connected to the building beams and slabs. This reduces the installation difficulty of the cantilevered unloading platform while increasing its installation efficiency. The position of the cantilevered unloading platform is fixed by connecting the side beam 1 with the building beams and slabs. Since there are no obstructions above the side beam 1, it will not conflict with the building's external scaffolding, increasing the installation flexibility and applicability of the cantilevered unloading platform.

[0035] The unloading hopper includes a base plate 6 connected to the top of the side beam 1, side guardrails 3 connected to the base plate 6, and a tail guardrail 4. There are two side guardrails 3 connected to the top of the base plate 6 on both sides. The tail guardrail 4 is connected to the top rear side of the base plate 6, and both ends of the tail guardrail 4 are connected to the rear ends of the two side guardrails 3 respectively. The two side guardrails 3 and the tail guardrail 4, together with the base plate, can form a stable and protective bucket-shaped structure to meet the usage requirements of the unloading platform opening towards the building side.

[0036] Furthermore, the exterior surfaces of both the side guardrails 3 and the rear guardrails 4 are covered with protective netting, thus enhancing the protective effect of the unloading hopper on the side facing the building.

[0037] The unloading hopper also includes a flap 7 that is flipped and connected to the front end of the bottom plate 6 at the rear end. The front end of the flap 7 extends out of the front side of the stop 5. When the stop 5 is installed, it abuts against the edge of the building beam slab. The flap 7 can cover the gap between the unloading hopper and the edge of the building beam slab, thereby avoiding the safety hazard caused by debris falling through the gap.

[0038] The direct-insertion unloading platform also includes a crossbeam 2; two side beams 1 are arranged in parallel on both sides of the bottom of the unloading hopper, and the two side beams 1 are fixedly connected by the crossbeam 2; the side beams 1 are provided with two lifting points 8 that cooperate with the two sides of the unloading hopper. After the lifting points 8 are connected, the stability of the cantilever unloading platform installed at the edge of the building beams and slabs can be guaranteed.

[0039] A buffer pad is placed at the angle formed by the toe block 5 and the front side of the edge beam 1. The buffer pad is set to protect the edge of the building beam and slab, and reduce the impact damage caused by the rigid contact between the cantilever unloading platform and the edge of the building beam and slab.

[0040] The front end of the side beam 1 is provided with a fixing hole 9 that runs from top to bottom through the side beam 1; this increases the flexibility of the cantilever unloading platform. When the cantilever unloading platform is used for a long time, the side beam 1 can be fixed to the building beams and slabs by bolts, thereby increasing the stability of the cantilever unloading platform for long-term use.

[0041] The present invention has been described in detail above with reference to the accompanying drawings and embodiments. Those skilled in the art can make various modifications to the present invention based on the above description. Therefore, certain details in the embodiments should not be construed as limiting the present invention, and the scope of protection of the present invention shall be defined by the appended claims.

Claims

1. A direct-insertion unloading platform, characterized in that, Includes unloading hopper, side beams, toe stops, and lifting points; An opening is provided on the front side of the unloading hopper; The side beam is connected to the bottom of the unloading hopper, and the front end of the side beam extends out of the front side of the unloading hopper; The stop foot is connected to the bottom of the side beam below the front side of the unloading hopper, and the stop foot is perpendicular to the side beam. The lifting points are connected to both sides of the unloading hopper.

2. The direct-insertion unloading platform according to claim 1, characterized in that: The unloading hopper includes a bottom plate connected to the top of the side beam, a side guardrail connected to the bottom plate, and a tail guardrail; The side guardrails are connected in two sections on the top sides of the base plate; The tail guardrail is connected to the top rear side of the base plate, and both ends of the tail guardrail are respectively connected to the rear ends of the two side guardrails.

3. The direct-insertion unloading platform according to claim 2, characterized in that: The exterior surfaces of both the side guardrails and the rear guardrails are covered with protective netting.

4. The direct-insertion unloading platform according to claim 2, characterized in that: The unloading hopper also includes a flap that is flipped and connected to the front end of the bottom plate at its rear end, with the front end of the flap extending out of the front side of the foot stop.

5. The direct-insertion unloading platform according to claim 1, characterized in that: It also includes crossbeams; Two side beams are arranged parallel to each other on both sides of the bottom of the unloading hopper, and the two side beams are fixedly connected by the crossbeam.

6. The direct-insertion unloading platform according to claim 1, characterized in that: A cushioning pad is provided at the angle formed between the stop and the front side of the side beam.

7. The direct-insertion unloading platform according to claim 1, characterized in that: The front end of the side beam has a fixing hole that runs from top to bottom through the side beam.