A construction elevator access device for convenient loading and unloading
Patent Information
- Application Number
- CN202522254424.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-24
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2035-10-24
AI Technical Summary
[0003]目前在将货物输送到施工现场后,材料需拆包二次搬运至专用上楼运输车,存在二次装卸,同时增加材料损耗,每次上材料较少,不能满效率使用电梯,且雨季不能施工,耽误工期
[0013]通过设置架高通道件包括若干个板底支撑钢管和若干个斜撑管,若干个板底支撑钢管和若干个斜撑管相互拼接固定,板底支撑钢管上固定连接有卸料平台,施工电梯轿厢的梯门均与上料平台、卸料平台相对,使用该装置,可以在风雨季节正常进行材料转运工作,保证工期,与此同时,提升材料运输效率,减少材料损耗。保证了工人的安全、提高了效率,充分利用施工电梯效率,可以轻松转运材料上楼。
Smart Images

Figure CN224704185U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of loading channel technology, specifically relating to a construction elevator channel device for convenient loading. Background Technology
[0002] At construction sites, some goods need to be transported by elevator, and some building blocks are often transported in pallets. The transfer of materials facilitates construction, and construction can be carried out after the materials are picked up.
[0003] Currently, after the goods are delivered to the construction site, the materials need to be unpacked and transported twice to a special upstairs transport vehicle, which involves secondary loading and unloading, increases material loss, and results in a small amount of material being transported each time, making it impossible to use the elevator efficiently. In addition, construction cannot be carried out during the rainy season, which delays the construction period. Utility Model Content
[0004] This utility model provides a construction elevator access device for convenient loading and unloading of materials. It solves the problem of the traditional process of transporting materials upstairs from freight pallets to normal loading and unloading to transport vehicles, and then to the floor via transport vehicles. The elevator access device can directly transport freight materials to the floor, thereby reducing secondary handling of materials and increasing material loss during transportation. At the same time, it can speed up construction efficiency and save construction time.
[0005] This utility model provides the following technical solution: a construction elevator passage device for convenient loading and unloading, including a construction elevator car, an elevator base on the construction elevator car, a loading platform and an elevated passage component on the outside of the construction elevator car, the elevated passage component including a plurality of bottom support steel pipes and a plurality of diagonal bracing pipes, the plurality of bottom support steel pipes and the plurality of diagonal bracing pipes being spliced and fixed together, a unloading platform being fixedly connected to the bottom support steel pipes, and the elevator doors of the construction elevator car being opposite to the loading platform and the unloading platform.
[0006] The loading platform is fixedly connected to a loading and transfer ramp, the slope of which is 5-10 degrees.
[0007] An embossed steel plate is fixedly connected to the bottom support steel pipe of the plate, and the embossed steel plate extends inward.
[0008] The feeding platform and the feeding transfer ramp are integrally formed, and the feeding platform and the feeding transfer ramp are hardened and smoothed with concrete.
[0009] The loading platform is fixedly connected to a protective door, which is opposite to the construction elevator car.
[0010] The passageway is equipped with electric hydraulic forklifts for transportation, which pass through the loading platform and the unloading platform.
[0011] The protective door includes a door frame and a door body, with the door body protecting the unloading platform by being enclosed on the door frame.
[0012] The beneficial effects of this utility model are:
[0013] By installing an elevated access system consisting of several bottom support steel pipes and several diagonal bracing pipes, which are spliced and fixed together, and a material unloading platform is fixedly connected to the bottom support steel pipes, the elevator car doors are aligned with both the loading and unloading platforms. Using this device, material transfer can be carried out normally during rainy seasons, ensuring the project schedule is met. Simultaneously, it improves material transportation efficiency and reduces material waste. It also ensures worker safety, increases efficiency, and fully utilizes the construction elevator's capacity, allowing for easy material transfer to upper floors.
[0014] The parts of the device not covered herein are the same as or can be implemented using existing technologies. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of this utility model;
[0016] Figure 2 This is a schematic diagram of the material loading platform in this utility model;
[0017] Figure 3 This is a structural schematic diagram of the high-passage mid-frame component of this utility model;
[0018] In the diagram: 1. Loading platform; 11. Loading and transfer ramp; 2. Construction elevator car; 21. Elevator base; 3. Elevated access structure; 31. Bottom support steel pipe; 32. Diagonal bracing pipe; 33. Embossed steel plate; 34. Unloading platform; 35. Protective door. Detailed Implementation
[0019] Please see Figures 1-3 The present invention provides the following technical solution: it includes a construction elevator car 2, an elevator base 21 on the construction elevator car 2, a loading platform 1 and an elevated passage 3 on the outside of the construction elevator car 2, the elevated passage 3 includes a number of bottom support steel pipes 31 and a number of diagonal bracing pipes 32, the number of bottom support steel pipes 31 and the number of diagonal bracing pipes 32 are spliced and fixed to each other, and a unloading platform 34 is fixedly connected to the bottom support steel pipes 31. The elevator doors of the construction elevator car 2 are all opposite to the loading platform 1 and the unloading platform 34.
[0020] In this implementation plan: the elevated passageway component 3 includes several bottom support steel pipes 31 and several diagonal bracing pipes 32. The bottom support steel pipes 31 and several diagonal bracing pipes 32 are spliced and fixed together. The bottom support steel pipes 31 and several diagonal bracing pipes 32 can be combined to form a frame for stable use of the passageway. The bottom support steel pipes 31 are fixedly connected to the unloading platform 34. The doors of the construction elevator car 2 are all opposite to the loading platform 1 and the unloading platform 34. Using this device, material transfer work can be carried out normally during the rainy season, ensuring the construction period. At the same time, it improves the efficiency of material transportation and reduces material loss. This system ensures worker safety, improves efficiency, and fully utilizes the construction elevator's efficiency, allowing for easy material transfer upstairs. During transport, goods are transported via an electric hydraulic forklift through the loading ramp 11 and loading platform 1, and then into the construction elevator car 2. They can be directly transported out via the unloading platform 34. The system consists of the loading ramp, loading platform 1, and elevator shaft. An electric hydraulic forklift is installed in the shaft for transport. The electric hydraulic forklift passes through the loading platform 1 and unloading platform 34. On-site, materials are transferred as a whole using electric hydraulic forklifts. The ramp slope should not exceed 10%. The ramp and platform are entirely hardened and finished with concrete. The elevator is an SC200 intelligent construction elevator. Embossed steel plates 33 are installed in the shaft, extending 50cm inward to allow for smooth entry and exit of the electric hydraulic forklifts.
[0021] A loading ramp 11 is fixedly connected to the loading platform 1. The slope of the loading ramp 11 is 5-10 degrees. This facilitates the use of electric hydraulic forklifts to pass through and transport goods through the loading ramp 11 and the loading platform 1, and into the construction elevator car 2.
[0022] A protective door 35 is fixedly connected to the loading platform 1. The protective door 35 is opposite to the construction elevator car 2. The protective door 35 includes a door frame and a door body. The door body is closed on the door frame to protect the unloading platform 34. The unloading platform 34 can be used when the protective door 35 is opened, and the unloading platform 34 can be closed when the protective door 35 is closed.
[0023] The working principle and usage process of this utility model are as follows: Several bottom support steel pipes 31 and several diagonal bracing pipes 32 are spliced and fixed together. The several bottom support steel pipes 31 and several diagonal bracing pipes 32 can be combined to form a frame for stable use. A material unloading platform 34 is fixedly connected to the bottom support steel pipes 31. The elevator doors of the construction elevator car 2 are all opposite to the loading platform 1 and the unloading platform 34. Using this device, material transfer work can be carried out normally during the rainy season to ensure the construction period. At the same time, it improves the efficiency of material transportation and reduces material loss. This system ensures worker safety, improves efficiency, and fully utilizes the construction elevator's efficiency, allowing for easy material transfer upstairs. During transport, goods are transported via an electric hydraulic forklift through the loading ramp 11 and loading platform 1, and then into the construction elevator car 2. They can be directly transported out via the unloading platform 34. The system consists of the loading ramp, loading platform 1, and elevator shaft. An electric hydraulic forklift is installed in the shaft for transport. The electric hydraulic forklift passes through the loading platform 1 and unloading platform 34. On-site, materials are transferred as a whole using electric hydraulic forklifts. The ramp slope should not exceed 10%. The ramp and platform are entirely hardened and finished with concrete. The elevator is an SC200 intelligent construction elevator. Embossed steel plates 33 are installed in the shaft, extending 50cm inward to allow for smooth entry and exit of the electric hydraulic forklifts.
Claims
1. A construction elevator access device for convenient loading and unloading, comprising a construction elevator car (2), wherein an elevator base (21) is provided on the construction elevator car (2), characterized in that: The construction elevator car (2) is provided with a loading platform (1) and an elevated passage (3) on the outside. The elevated passage (3) includes several bottom support steel pipes (31) and several diagonal bracing pipes (32). The several bottom support steel pipes (31) and several diagonal bracing pipes (32) are spliced and fixed to each other. A unloading platform (34) is fixedly connected to the bottom support steel pipes (31). The elevator doors of the construction elevator car (2) are all opposite to the loading platform (1) and the unloading platform (34).
2. The construction elevator access device for convenient loading and unloading according to claim 1, characterized in that: The loading platform (1) is fixedly connected to a loading transfer ramp (11), and the slope of the loading transfer ramp (11) is 5-10 degrees.
3. The construction elevator access device for convenient loading and unloading according to claim 1, characterized in that: An embossed steel plate (33) is fixedly connected to the bottom support steel pipe (31), and the embossed steel plate (33) extends inward.
4. The construction elevator access device for convenient loading and unloading according to claim 2, characterized in that: The loading platform (1) and the loading transfer ramp (11) are integrally formed, and the loading platform (1) and the loading transfer ramp (11) are finished with hardened concrete.
5. The construction elevator access device for convenient loading and unloading according to claim 1, characterized in that: A protective door (35) is fixedly connected to the loading platform (1), and the protective door (35) is opposite to the construction elevator car (2).
6. A construction elevator access device for convenient loading and unloading according to claim 1, characterized in that: An electric hydraulic forklift is installed in the passage for transportation, and the electric hydraulic forklift passes through the loading platform (1) and the unloading platform (34).
7. A construction elevator access device for convenient loading and unloading according to claim 5, characterized in that: The protective door (35) includes a door frame and a door body, and the door body protects the unloading platform (34) by being enclosed on the door frame.