A recyclable architecture platform suitable for efficient construction of multiple types of devices

By designing a reusable architecture platform suitable for multiple types of equipment, the problem of inconvenient installation and dismantling of traditional equipment processing sheds has been solved, enabling rapid turnover and efficient construction. This makes the processing sheds suitable for multiple types of equipment more efficient.

CN116357092BActive Publication Date: 2026-03-31THE THIRD CONSTR OF CHINA CONSTR EIGHTH ENG BUREAU
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-06
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Traditional equipment processing sheds are inconvenient to install and dismantle, have poor turnover, and are difficult to meet the engineering needs of disaster relief projects or other national emergency projects.

Method used

Design a reusable structural platform suitable for various types of equipment, including a structural frame, side plates, a base, and movable supports. It can be quickly deployed and retracted through a hydraulic linkage mechanism and a rotary cylinder to adapt to the support and protection needs of different equipment.

Benefits of technology

It enables efficient setup and rapid turnover of processing equipment, improves equipment utilization efficiency, is applicable to multiple types of equipment, has a high degree of automation, is easy to turn around, and meets engineering needs.

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Abstract

The application provides a turnover architecture platform suitable for efficient construction of various types of equipment, comprising: an architecture framework; side plates reversibly connected with the architecture framework; a base arranged inside the architecture framework and reversibly connected with the architecture framework; and a plurality of movable supports arranged on the underside of the base and slidably connected with the architecture framework. The application has the characteristics of rapid turnover, efficient construction and suitability for various types of equipment.
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Description

Technical Field

[0001] This invention relates to the field of equipment building platform technology, specifically a reusable architecture platform suitable for the efficient building of multiple types of equipment. Background Technology

[0002] Construction sites require various mechanical processing equipment, such as rebar straightening and cutting machines, woodworking table saws, and profile cutting machines. In accordance with safety standardization requirements, processing sheds that meet the specifications and usage requirements must be erected on construction sites. Traditional equipment processing sheds are usually constructed using structural steel or steel pipes, with a rigid protective roof to meet requirements such as rain protection and impact resistance.

[0003] However, the installation and dismantling of traditional equipment processing sheds requires on-site welding or cutting of materials such as columns, steel trusses, and rigid isolation formwork. Simultaneously, reinforcement measures such as using expansion bolts or pre-embedding and welding on hardened ground are necessary, making installation and dismantling inconvenient and limiting their reusability. Especially for disaster relief projects or other national emergency engineering projects, the reusability of traditional processing equipment and its sheds often cannot meet the project requirements. Summary of the Invention

[0004] In view of the above-mentioned existing technologies, in order to meet the needs of efficient use and rapid turnover of processing equipment and solve the technical problems existing in the equipment processing shed, this invention proposes a reusable architecture platform suitable for the efficient construction of multiple types of equipment, which has the characteristics of rapid turnover, efficient construction and applicability to multiple types of equipment.

[0005] This invention provides a reusable architecture platform suitable for efficient deployment of multiple types of equipment, comprising:

[0006] Architecture framework;

[0007] The side panel is rotatably connected to the aforementioned architectural frame;

[0008] The base is placed inside the architectural frame and is rotatably connected to the architectural frame;

[0009] Several movable supports are located on the lower side of the base and are slidably connected to the structural frame.

[0010] Preferably, the structural framework includes a top frame and a bottom frame, with four frame columns between the top frame and the bottom frame. The top frame has a top plate, the bottom frame has a bottom plate, and the top frame has hanging points at its four corners.

[0011] Preferably, the side panel includes two short side panels and two double-layer long side panels. The two short side panels are rotatably connected to both ends of the structural frame. The double-layer long side panel includes an inner long side panel and an outer long side panel. The two inner long side panels are rotatably connected to both sides of the structural frame. The outer long side panel is slidably connected to the inner long side panel.

[0012] Preferably, the top four sides of the frame structure are provided with pivots, and one side of the short side plate and the inner plate of the long side plate are provided with bushings. The bushings are fitted onto the pivots, and the short side plate and the inner plate of the long side plate are connected to a hydraulic linkage mechanism, which is installed on the frame structure.

[0013] Preferably, the base is connected to a rotary cylinder, which is mounted on the structural frame.

[0014] Preferably, the movable support is connected to at least one synchronous chain drive mechanism, the synchronous chain drive mechanism is mounted on the frame, and both ends of the movable support are provided with sliding members at their bottom. The frame is provided with sliding grooves that cooperate with the sliding members, and the sliding members are slidably connected to the sliding grooves.

[0015] Preferably, the synchronous chain drive mechanism includes two bearing seats arranged opposite each other, a drive shaft is provided on the bearing seats, a drive gear is provided on the drive shaft, the two drive gears are meshed with the drive chain, and the drive shaft is connected to the motor.

[0016] Preferably, the structural frame is further provided with a fixed support on the lower side of the base.

[0017] Preferably, the movable support is made of I-beams, and the upper end of the movable support is provided with a nylon plate.

[0018] Compared to existing technologies, the advantages of this invention are as follows: This invention provides a reusable structural platform suitable for the efficient construction of various types of equipment, primarily designed to meet the needs of efficient use and rapid turnover of processing equipment. When using this structural platform, the processing equipment to be used is first forked onto the base and adjusted using movable supports, adaptable to the support needs of various processing equipment. To meet the need for rapid on-site turnover, the structural platform can be hoisted together with the processing equipment. After the entire structure is hoisted to the usage location, the side panels of the structural platform can be quickly unfolded, efficiently constructing a standardized processing shed. Under the action of rotating hydraulic cylinders, the processing equipment placed on the base can be adjusted laterally or longitudinally, while the movable supports can be adjusted simultaneously. When the longitudinal arrangement does not meet the needs of the processing equipment, it can be adjusted to a lateral arrangement, providing a larger protection range and more operating space, suitable for the protection and operation needs of various processing equipment. If the equipment and processing site need to be moved to other locations, the structural platform can be quickly folded up, restoring its box shape for easy overall hoisting and improving turnover efficiency. This architecture platform is highly automated, applicable to various types of equipment, and is quick and easy to set up and turn around. It meets the needs of efficient use and rapid turnover of processing equipment, while improving the conditions of the equipment processing site. It has the advantages of high automation, strong practicality, high standardization, applicability to various types of equipment, and high equipment turnover efficiency. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the structure of the architecture platform in the collapsed state in an embodiment of the present invention.

[0020] Figure 2 This is a structural diagram of the architecture platform in its unfolded state in an embodiment of the present invention.

[0021] Figure 3 , 4 This is a partial structural diagram of the transfer architecture platform in an embodiment of the present invention.

[0022] In the diagram: 1. Top frame; 2. Bottom frame; 3. Frame column; 4. Short side plate; 5. Inner plate of long side plate; 6. Outer plate of long side plate; 7. Hydraulic linkage mechanism; 8. Base; 9. Rotary cylinder; 10. Fixed support; 11. Movable support; 12. Drive shaft; 13. Drive chain; 14. Motor; 15. Universal ball slide. Detailed Implementation

[0023] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below with reference to specific illustrations. Example

[0024] A reusable architecture platform suitable for efficient deployment of various types of equipment, such as Figure 1 , 2As shown, the structure includes a top frame 1 and a bottom frame 2, both of which are welded from channel steel and I-beams. Four frame columns 3 are provided between the top frame 1 and the bottom frame 2. The frame columns 3 are made of rectangular steel pipes and are welded to the corners of the top frame 1 and the bottom frame 2 respectively. A top plate is fixed on the top frame 1 and a bottom plate is fixed on the bottom frame 2. Hanging points are provided at the four corners of the top frame 1 to facilitate the overall hoisting of the structure platform.

[0025] Furthermore, such as Figure 1 , 2 As shown, the structural frame also includes side plates, which include two short side plates 4 and two double-layer long side plates. The two short side plates 4 are rotatably connected to both ends of the structural frame. The double-layer long side plates include an inner long side plate 5 and an outer long side plate 6. The two inner long side plates 5 are rotatably connected to both sides of the structural frame. The outer long side plate 6 and the inner long side plate 5 are slidably connected by an electric guide rod slide and a guide rail.

[0026] Specifically, such as Figure 3 As shown, the top of the frame structure is equipped with pivots on all four sides. Each side of the short side plate 4 and the inner long side plate 5 has a bushing, which is fitted onto the pivot. Both the short side plate 4 and the inner long side plate 5 are connected to a hydraulic linkage mechanism 7. The hydraulic linkage mechanism 7 consists of a hydraulic cylinder and connecting rods, and is fixed to the inside of the frame column 3. Under the action of the hydraulic linkage mechanism 7, the short side plate 4 and the inner long side plate 5 can rotate around the pivot, causing them to unfold outwards. After the inner long side plate 5 unfolds under the action of the hydraulic linkage mechanism 7, the electric guide rod slide moves the outer long side plate 6, causing it to extend, thus expanding the protective range.

[0027] Furthermore, such as Figure 2 , 4 As shown, the inner bottom of the structural frame is provided with a base 8, which is composed of double-layer plates and inter-plate distributed keels to ensure that the base 8 has sufficient rigidity for placing processing equipment. The base 8 is connected to a rotary cylinder 9, which is mounted on the bottom frame 2. The rotary cylinder 9 is hydraulically driven to rotate the base 90° back and forth, so that the processing equipment placed on the base 8 is arranged longitudinally or laterally. A fixed support 10 is provided on each of the lower sides of the base 8 on the bottom frame 2 to support the base 8.

[0028] Furthermore, such as Figure 2 , 4As shown, each of the lower ends of the base 8 is provided with a movable support 11. The movable support 11 is made of I-beams, and a nylon plate is fixed to the upper surface of the movable support 11 to prevent damage to the I-beams caused by frequent movement. The movable support 11 is connected to two synchronous chain drive mechanisms, which are mounted on the bottom frame 2. The synchronous chain drive mechanism includes two bearing seats arranged opposite each other. A drive shaft 12 is rotatably mounted on the bearing seats. A drive gear is fixed on the drive shaft 12. The two drive gears are meshed with the drive chain 13. One of the drive shafts 12 is connected to a motor 14. The bottom of the movable support 11 is fixedly connected to the drive chain 13 through a U-shaped plate. Driven by the motor 14, the drive chain 13 moves horizontally, driving the movable support 11 to move, thereby achieving the purpose of automatically adjusting the movable support 11 to adapt to the support of different processing equipment.

[0029] Furthermore, universal balls are installed at both ends of the movable support 11, and universal ball grooves 15 that mate with the universal balls are provided on the upper surface of the bottom frame 2, so that the movable support 11 and the bottom frame 2 are slidably connected, reducing the movement resistance of the bottom frame 2 to the movable support 11. A motor support and a bearing support are also fixed on the inner side of the base plate to fix the motor 14 and the bearing housing.

[0030] The method of using this invention includes the following steps:

[0031] Step 1: Arrange the processing equipment: Select the corresponding processing equipment according to the construction requirements, transport the processing equipment to the base 8, and adjust the movable support 11 so that the movable support 11 is located at the support leg position of the processing equipment to improve the stability and rigidity of the base 8.

[0032] Step 2, Overall hoisting: After the processing equipment is arranged, the side panels are folded up, and the frame platform and processing equipment are hoisted together using the hoisting points and transported to the designated processing site.

[0033] Step 3, Side Panel Deployment: After the structural platform is hoisted and placed, the side panels are deployed under the action of the hydraulic linkage mechanism 7. Simultaneously, the outer long side panel 6 can be further extended under the action of the electric guide rod slide, depending on equipment requirements.

[0034] Step 4, Chassis Adjustment: Determine whether the orientation of the equipment needs to be adjusted based on the requirements of the multi-type processing equipment. If the space after the short side plate 4 is unfolded is sufficient, the orientation of the equipment does not need to be adjusted; if the equipment requires more space, rotate the base 8 by rotating the hydraulic cylinder 9 to adjust the orientation of the equipment to the side, providing more spacious space.

[0035] Step 5, Equipment Usage: After adjusting the orientation of the base 8, adjust the movable support 11 via the synchronous chain drive mechanism to position it at the support leg position of the processing equipment, thereby improving the stability and rigidity of the base 8. If the orientation of the base 8 is not adjusted, there is no need to adjust the movable support 11.

[0036] Step 6: Reset the chassis and fold up the side panels: After the equipment is used, rotate the base 8 to reset it, retracting the equipment into the frame platform. At the same time, adjust the movable support 11 to reset it to the position of the equipment's support legs. After the base 8 is reset, fold up the side panels, and the entire frame platform will be in a box shape, facilitating overall hoisting.

[0037] Step 7: Overall hoisting: After the framework platform is retracted, depending on the needs of whether it needs to be moved or directly removed from the site, the framework platform and processing equipment can be hoisted together using the hoisting points of the framework platform and transported to the designated processing site or removed from the site.

[0038] The above are merely embodiments of the present invention and do not limit the patent scope of the present invention. Any equivalent structures made using the contents of the present invention specification and drawings, whether directly or indirectly applied to other related technical fields, are similarly within the patent protection scope of the present invention.

Claims

1. A recyclable architecture platform suitable for efficient construction of multiple types of equipment, characterized in that, The utility model provides a kind of movable support frame, including: Architecture framework; Side plate, with the architecture framework can be turned over connection; Base, inside the architecture framework is placed, and with the architecture framework can be rotatable connection; Several movable supports, be equipped with the downside of the base, and with the architecture framework can be slidably connected;The movable support is connected with at least one synchronous chain transmission mechanism, the synchronous chain transmission mechanism is installed on the architecture framework, the bottom of both ends of the movable support is equipped with sliding piece, the architecture framework is equipped with with the sliding piece matched sliding groove, the sliding piece with The sliding groove can be slidably connected;The synchronous chain transmission mechanism includes two bearings that are oppositely arranged, the bearing is equipped with transmission shaft, the transmission shaft is equipped with transmission gear, two transmission gears are connected with transmission chain teeth, the transmission shaft is connected with motor;The downside of the base on the architecture framework is further equipped with fixed support.

2. The reusable architecture platform suitable for efficient setup of multiple types of equipment of claim 1, wherein, The architecture framework includes top frame and bottom frame, four frame columns are equipped between the top frame and bottom frame, top plate is equipped on the top frame, bottom plate is equipped on the bottom frame, four corners of the top frame are equipped with hanging point. 3.The turnover architecture platform suitable for efficient construction of multi-type devices according to claim 1 or 2, characterized in that, The side plate includes two short side plates and two double-layer long side plates, the two short side plates are respectively connected with the both ends of the architecture framework can be turned over, the double-layer long side plate includes long side plate inner plate and long side plate outer plate, two long side plate inner plates are respectively connected with the both sides of the architecture framework can be turned over, the long side plate outer plate is slidably connected with the long side plate inner plate.

4. The reusable architecture platform suitable for efficient setup of multiple types of devices of claim 3, wherein, The top of the architecture framework is equipped with rotating shaft around, one side of the short side plate and the long side plate inner plate is equipped with shaft sleeve, the shaft sleeve is sleeved on the rotating shaft, the short side plate and long side plate inner plate are connected with hydraulic link mechanism, the hydraulic link mechanism is installed on the architecture framework.

5. The reusable architecture platform suitable for efficient construction of multiple types of devices of claim 1 or 2, wherein, The base is connected with rotary oil cylinder, the rotary oil cylinder is installed on the architecture framework.

6. The reusable architecture platform suitable for efficient set-up of multiple types of equipment of claim 1 or 2, wherein, The movable support is made of I-shaped steel, and the upper end of the movable support is provided with a nylon plate.

Citation Information

Patent Citations

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    CN113653372A

  • Container type foldable and unfoldable reinforcing steel bar processing shed structure

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