Multi-business cloud intelligent manufacturing integrated system and modular equipment
Through the electric push rod driving the extrusion plate and the magnetic metal rod support structure, the problem that existing modular equipment cannot be flexibly adjusted in complex scenarios is solved, the dynamic adaptation and stability of the equipment is achieved, the scope of application is expanded and construction risks are reduced.
Patent Information
- Application Number
- CN202510754245.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-06
- Publication Date
- 2025-08-12
AI Technical Summary
When the existing multi-industry cloud intelligent manufacturing integrated systems and modular equipment are used, the hanging baskets are difficult to change flexibly according to the needs, and cannot dynamically adapt to complex scenarios, resulting in greater limitations in use and inconvenience to construction.
A multi-industry cloud intelligent manufacturing integrated modular equipment was designed. The extrusion plate is driven down by electric push rods to drive the movement of the mobile plate and the protective frame, adjust the distance between the connecting frames, and combine the magnetic metal rod support and limit structure to achieve flexible adjustment and stability of the space.
It realizes flexible adaptation of modular equipment in different scenarios, expands the scope of application, and improves the stability and portability of the equipment through magnetic connections, reducing construction risks.
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Figure CN120465672A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of construction engineering equipment, and specifically relates to a multi-format cloud-based intelligent manufacturing integrated system and modular equipment. Background Art
[0002] Multi-format cloud-based intelligent manufacturing integrated systems and modular equipment are relatively important and common equipment in construction projects. They have the following values: multi-factory linkage control (supporting group enterprises to uniformly formulate quality standards and production plans, dynamically allocating global distributed factory resources through cloud-based instructions, and realizing cross-regional production capacity collaboration), real-time data fusion (connecting the entire chain of design, manufacturing, and logistics data, building a unified data base, and eliminating information islands) and edge intelligent decision-making (deploying lightweight AI models on the equipment side, responding to abnormal events at 50ms, and reducing cloud dependence).
[0003] The existing multi-format cloud-based intelligent manufacturing integrated system and modular equipment are difficult to flexibly change the upper hanging basket according to demand when in use. Therefore, they cannot dynamically adapt to complex scenarios during use. Their use is very limited, causing great inconvenience to personnel during construction:
[0004] To this end, the present invention provides a multi-format cloud-based intelligent manufacturing integrated system and modular equipment. Summary of the Invention
[0005] In order to make up for the deficiencies of the prior art, at least one technical problem raised in the background technology is solved.
[0006] The technical solution adopted by the present invention to solve the technical problem is as follows: the multi-format cloud-based intelligent manufacturing integrated modular equipment of the present invention includes a first base, and a second base is fixedly connected to the side of the first base;
[0007] The upper sides of the first base and the second base are provided with a same connecting frame, the bottom of the connecting frame is fixedly connected to a plurality of protective frames, the bottom of the protective frame is fixedly connected to a slide, and the tops of the first base and the second base are both provided with a sliding groove slidably connected to the slide;
[0008] The tops of the first base and the second base are both fixedly connected to a fixing plate, the inner top wall of the fixing plate is fixedly connected to an electric push rod 1, and the bottom of the electric push rod 1 is fixedly connected to an extrusion plate;
[0009] Movable plates are placed on both sides of the extrusion plate, and the sides of a pair of movable plates that are away from each other are fixedly connected to the protective frame.
[0010] Preferably, the movable plate is an inclined structure, and its width gradually increases from top to bottom. A limiting groove is provided on the inner wall of the slide groove, and a pair of side surfaces of the slide plate are provided with rectangular grooves, and a rectangular plate is movably inserted inside the rectangular groove.
[0011] Preferably, a telescopic groove is provided on the inner wall of the rectangular groove, a mounting block is movably inserted into the telescopic groove, a side surface of the mounting block is fixedly connected to the rectangular plate, and the mounting block is fixed in the rectangular groove by bolts.
[0012] Preferably, a pair of the fixed plates are provided with a connecting groove on one side away from each other, a vertical plate is fixedly connected to the inner wall of the connecting groove, a pair of side surfaces of the vertical plate are fixedly connected to a second electric push rod, and the end of the second electric push rod away from the vertical plate is fixedly connected to a push-pull plate.
[0013] Preferably, a T-shaped groove is provided on one side of a pair of movable plates close to each other, and a T-shaped plate adapted to the T-shaped groove is fixedly connected to a pair of side surfaces of the extrusion plate.
[0014] Preferably, a reinforcement groove is provided on the first base, and a docking groove is provided on the second base. A metal rod is movably inserted into the reinforcement groove, and the inner walls of the reinforcement groove and the docking groove are coated with a magnetic coating that is magnetically connected to the metal rod.
[0015] Preferably, one end of the metal rod passes through the reinforcement groove and is inserted into the docking groove, and a side of the second base away from the first base is not connected to the docking groove.
[0016] A multi-format cloud-based intelligent manufacturing integrated system, which is applied to the multi-format cloud-based intelligent manufacturing integrated modular equipment described above, includes: a material hanging basket system, an elevator operating platform system, a flap operating platform system, an edge protection device system, a column opening blocking and hanging formwork system, a bolt tightening measurement device system, and a truss installation operating platform system.
[0017] The beneficial effects of the present invention are as follows:
[0018] 1. The multi-format cloud-based intelligent manufacturing integrated system and modular equipment described in the present invention, when in use, can start an electric push rod 1, and use it to push the extrusion plate downward. When the extrusion plate moves downward, since the space enclosed by the pair of movable plates gradually becomes smaller, the extrusion plate will push the pair of movable plates, causing the protective frame and the connecting frame connected thereto to move to the side away from each other, thereby adjusting the distance between the pair of connecting frames, and then adjusting the size of the space enclosed by the pair of connecting frames. Therefore, the present invention can flexibly change according to the requirements of the size of the use space, and can dynamically adapt to complex scenes when in use, and has a relatively wide range of applications.
[0019] 2. The multi-format cloud-based intelligent manufacturing integrated system and modular equipment described in the present invention, when in use, after the first base and the second base are opened, the metal rod needs to be inserted into the reinforcement groove on the first base and the docking groove on the second base. After insertion, the magnetic coating will adsorb the metal rod, thereby improving the stability of the metal rod in the docking groove and the reinforcement groove. After the metal rod is installed in the first base and the second base, the metal rod can be used to support and limit the first base and the second base to prevent the first base and the second base from flipping over. After use, and after removing the protective frame and the connecting frame, force needs to be applied to the metal rod to pull it out from the inside of the first base and the second base to release the limiting and supporting effect of the metal rod on the first base and the second base, and finally the first base is flipped upward 180 degrees and stacked together with the second base, thereby reducing the space occupied by the first base and the second base, and making it easier for people to carry and store it. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The present invention will be further described below with reference to the accompanying drawings.
[0021] Figure 1 is a perspective view of the present invention;
[0022] Figure 2 It is an enlarged schematic diagram of point A in the present invention;
[0023] Figure 3 is a schematic diagram of the first base in the present invention;
[0024] Figure 4 It is a schematic diagram of the fixing plate in the present invention;
[0025] Figure 5 It is an enlarged schematic diagram of point B in the present invention;
[0026] Figure 6 It is a schematic diagram of the local structure of the slide plate in the present invention;
[0027] Figure 7 It is an enlarged schematic diagram of point C in the present invention;
[0028] Figure 8 is a schematic diagram of a metal rod in the present invention;
[0029] Figure 9 It is a schematic diagram of the system in the present invention.
[0030] In the figure: 1. First base; 2. Second base; 3. Connecting frame; 4. Protective frame; 5. Slide plate; 6. Slide groove; 7. Fixed plate; 8. Electric push rod 1; 9. Extrusion plate; 10. Moving plate; 11. Limiting groove; 12. Rectangular groove; 13. Rectangular plate; 14. Telescopic groove; 15. Mounting block; 16. Reinforcement groove; 17. Metal rod; 18. Magnetic coating; 19. Connecting groove; 20. Vertical plate; 21. Electric push rod 2; 22. Push-pull plate; 23. T-slot; 24. T-plate. DETAILED DESCRIPTION
[0031] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.
[0032] Example 1: Figures 1 to 4 As shown, a multi-format cloud-based intelligent manufacturing integrated modular equipment according to an embodiment of the present invention includes a first base 1, and a second base 2 is fixedly connected to the side of the first base 1;
[0033] The upper sides of the first base 1 and the second base 2 are provided with a same connecting frame 3, and a plurality of protective frames 4 are fixedly connected to the bottom of the connecting frame 3, and a slide 5 is fixedly connected to the bottom of the protective frame 4. The tops of the first base 1 and the second base 2 are both provided with a slide groove 6 that is slidably connected to the slide 5. When in use, the slide 5 needs to be inserted into the slide groove 6, and the slide groove 6 is used to limit the slide 5 so that it is not easy to move forward and backward. When the slide 5 moves in the slide groove 6, it will drive the connecting frame 3 and the protective frame 4, so that the connecting frame 3 and the protective frame 4 move above the first base 1 and the second base 2;
[0034] The tops of the first base 1 and the second base 2 are both fixedly connected to a fixing plate 7, the inner top wall of the fixing plate 7 is fixedly connected to an electric push rod 1 8, and the bottom of the electric push rod 1 8 is fixedly connected to an extrusion plate 9. In the initial state, a pair of side surfaces of the fixing plate 7 respectively abut against the side surfaces of the corresponding connecting frame 3;
[0035] The movable plates 10 are placed on both sides of the extrusion plate 9, and the sides of the pair of movable plates 10 that are away from each other are fixedly connected to the protective frame 4, and the bottom of the movable plate 10 is fixedly connected to the top of the slide plate 5. The sides of the movable plate 10 and the extrusion plate 9 are both inclined structures, and the inclined surface of the extrusion plate 9 is inclination in the same direction as the inclined surface of the movable plate 10, and the side surfaces of the movable plate 10 can be offset against the side surfaces of the extrusion plate 9. When force is applied to the extrusion plate 9 to move it downward, its pair of side surfaces will always be in contact with the inclined surfaces of the corresponding movable plates 10, and move on the movable plate 10, and push the pair of movable plates 10 to move to the side away from each other, thereby adjusting the distance between the pair of movable plates 10.
[0036] The existing multi-format cloud-based intelligent manufacturing integrated system and modular equipment are difficult to flexibly change the upper hanging basket according to demand, so they cannot dynamically adapt to complex scenarios during use. Their use is very limited, causing great inconvenience to personnel during construction.
[0037] When the present invention is in use, the electric push rod 8 can be started to push the extrusion plate 9 downward. When the extrusion plate 9 moves downward, the space enclosed by the pair of movable plates 10 gradually becomes smaller, so the extrusion plate 9 will push the pair of movable plates 10, causing the protective frame 4 and the connecting frame 3 connected thereto to move away from each other, thereby adjusting the distance between the pair of connecting frames 3, and then adjusting the size of the space enclosed by the pair of connecting frames 3. Therefore, the present invention can be flexibly changed according to the demand for the size of the use space, and can dynamically adapt to complex scenes when in use, and has a relatively wide range of applications.
[0038] like Figure 2 As shown, the movable plate 10 is an inclined structure, and its width gradually increases from top to bottom. A limiting groove 11 is provided on the inner wall of the slide 6, and a pair of side surfaces of the slide plate 5 are provided with a rectangular groove 12. A rectangular plate 13 is movably inserted into the interior of the rectangular groove 12.
[0039] After the slide plate 5 is inserted into the slide groove 6, it is necessary to manually push the rectangular plate 13 to push one side of the rectangular plate 13 out of the rectangular groove 12 and into the limiting groove 11. At this time, the other side of the rectangular plate 13 is still in the rectangular groove 12, so that the rectangular plate 13 is installed between the limiting groove 11 and the rectangular groove 12, and then the rectangular plate 13 can be used to limit the slide plate 5, making it difficult to move up, thereby improving the stability of the protective frame 4.
[0040] like Figure 2 As shown, a telescopic slot 14 is provided on the inner wall of the rectangular slot 12, and a mounting block 15 is movably inserted into the interior of the telescopic slot 14. The side surface of the mounting block 15 is fixedly connected to the rectangular plate 13, and the mounting block 15 is fixed in the rectangular slot 12 by bolts;
[0041] When the rectangular plate 13 is pushed so that one side thereof enters the limiting groove 11, the mounting block 15 will move along with the rectangular plate 13, thereby causing the mounting block 15 to be moved out of the telescopic groove 14. The mounting block 15 can then be fixed in the rectangular groove 12 using bolts, thereby limiting the rectangular plate 13 and preventing it from being easily moved out of the limiting groove 11.
[0042] like Figure 4As shown, a pair of the fixed plates 7 are provided with a connecting groove 19 on one side away from each other, a vertical plate 20 is fixedly connected to the inner wall of the connecting groove 19, and a pair of side surfaces of the vertical plate 20 are fixedly connected to a second electric push rod 21, and one end of the second electric push rod 21 away from the vertical plate 20 is fixedly connected to a push-pull plate 22;
[0043] After adjusting the distance between a pair of connecting frames 3, the electric push rod 21 can be started so that its telescopic end pushes the push-pull plate 22 toward the protective frame 4 until the push-pull plate 22 is away from the side of the electric push rod 21 and is against the surface of the protective frame 4. The space between the protective frame 4 and the fixed plate 7 is blocked by the extended electric push rod 21 and the push-pull plate 22, which not only improves the safety of personnel on the first base 1 and the second base 2, but also reduces the risk of construction tools and materials falling into the gap between the protective frame 4 and the fixed plate 7 due to the large gap between the protective frame 4 and the fixed plate 7.
[0044] like Figure 4-5 As shown, a T-shaped slot 23 is provided on each side of the pair of movable plates 10 close to each other, and a T-shaped plate 24 adapted to the T-shaped slot 23 is fixedly connected to a pair of side surfaces of the extrusion plate 9;
[0045] The extrusion plate 9 is pushed by the electric push rod 8 so that when the movable plate 10 moves up and down, the extrusion plate 9 will drive the T-shaped plate 24 to move obliquely downward in the T-shaped groove 23. The T-shaped plate 24 can be used to limit the movable plate 10 and the protective frame 4, making it difficult for them to move above the first base 1 and the second base 2, thereby improving the stability of the movable plate 10 and the protective frame 4.
[0046] Example 2: Figure 8 As shown, based on the first embodiment, this embodiment changes the connection mode between the first base 1 and the second base 2 to a hinged connection, and the rest of the parts are consistent with the first embodiment, specifically as follows: a reinforcement groove 16 is provided on the first base 1, and a docking groove is provided on the second base 2. A metal rod 17 is movably inserted into the interior of the reinforcement groove 16, and the inner walls of the reinforcement groove 16 and the docking groove are coated with a magnetic coating 18 that is magnetically connected to the metal rod 17. After the metal rod 17 is inserted into the first base 1 and the second base 2, the side end of the metal rod 17 will be flush with the side of the first base 1 away from the second base 2, and a handle is fixedly connected to the side of the metal rod 17 away from the second base 2, and the handle is moved out of the reinforcement groove 16 so that people can apply force to the metal rod 17 to pull it out of the first base 1 and the second base 2.
[0047] When the present invention is in use, after the first base 1 and the second base 2 are opened, the metal rod 17 needs to be inserted into the reinforcement groove 16 on the first base 1 and the docking groove on the second base 2. After insertion, the magnetic coating 18 will adsorb the metal rod 17, thereby improving the stability of the metal rod 17 in the docking groove and the reinforcement groove 16;
[0048] After the metal rod 17 is installed in the first base 1 and the second base 2, the metal rod 17 can be used to support and limit the first base 1 and the second base 2 to prevent the first base 1 and the second base 2 from turning over;
[0049] After use is completed and the protective frame 4 and the connecting frame 3 are removed, force needs to be applied to the metal rod 17 to pull it out from the inside of the first base 1 and the second base 2 to release the limiting and supporting effect of the metal rod 17 on the first base 1 and the second base 2. Finally, the first base 1 is turned upward 180 degrees and stacked together with the second base 2, thereby reducing the space occupied by the first base 1 and the second base 2, making it easier for people to carry and store them.
[0050] like Figure 8 As shown, one end of the metal rod 17 passes through the reinforcement groove 16 and is inserted into the docking groove, and the side of the second base 2 away from the first base 1 is not connected to the docking groove;
[0051] Since the side of the second base 2 away from the first base 1 is not connected to the docking groove, one end of the metal rod 17 can be prevented from moving out of the docking groove.
[0052] like Figure 9 As shown, the multi-format cloud-based intelligent manufacturing integrated system described in the present invention is applied to the multi-format cloud-based intelligent manufacturing integrated modular equipment described above, including: a material hanging basket system, an elevator operating platform system, a flap operating platform system, an edge protection device system, a column opening blocking and hanging formwork system, a bolt tightening measurement device system, and a truss installation operating platform system;
[0053] The structural design of the material hanging basket system: electric lifting + cloud-based remote locking function, with a load capacity increased to 1.8 tons, suitable for residential and commercial floor heights. Its technical features: equipped with a Beidou positioning module, with an installation coordinate error of ≤2cm.
[0054] The structural design of the elevator operating platform system: a modular assembly platform that supports quick disassembly and height adjustment (range 3m to 20m). Its technical features: Technical features: integrated pressure sensor, real-time load monitoring and warning of over-limit risks.
[0055] The structural design of the flap operating platform system: foldable structure, the unfolded area is 8㎡→2㎡, and the installation efficiency is increased by 50%. Its technical features: hinge self-locking device to ensure stability during high-altitude operations.
[0056] The structural design of the edge protection device system: magnetic adsorption + slide rail adjustment, the protection range automatically expands with the construction progress. Its technical features: support cloud-based remote control of protection area switching.
[0057] The structural design of the column opening plugging and hanging formwork system: lightweight aluminum alloy frame + adjustable formwork, adaptable to different apertures (0.5m~2m). Its technical features: one-button hydraulic fixation, plugging efficiency increased by 60%.
[0058] The structural design of the bolt tightening measurement device system: intelligent torque wrench + cloud data synchronization module. Its technical features: real-time feedback of bolt tightening force data, with an error of ≤1%.
[0059] The structural design of the truss installation operating platform system: telescopic support frame + anti-slip operation panel, load-bearing capacity ≥ 2 tons / ㎡, its technical features: integrated laser alignment device, installation accuracy error ≤ 3mm;
[0060] In summary, compared with existing technologies, this system has the following advantages: multi-format adaptability (equipment reuse rate increased by 70%, customization cost reduced by 50%), efficient scheduling (cross-project turnaround time reduced by 40%, equipment utilization increased by 60%), and safety and reliability (dynamic protection device installation qualification rate is 100%, and work-related accidents are reduced by 80%).
[0061] The above-mentioned front, back, left, right, up and down are all based on the Figure 1 As a benchmark, according to the person's observation perspective, the side of the device facing the observer is defined as the front, the left side of the observer is defined as the left, and so on.
[0062] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the scope of protection of the present invention.
[0063] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the foregoing embodiments. The foregoing embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.
Claims
1. A multi-format cloud-based intelligent manufacturing integrated modular equipment, comprising a first base (1), characterized in that: The side surface of the first base (1) is fixedly connected to the second base (2); The first base (1) and the second base (2) are provided with a same connecting frame (3) on their upper sides, a plurality of protective frames (4) are fixedly connected to the bottom of the connecting frame (3), a slide plate (5) is fixedly connected to the bottom of the protective frame (4), and the tops of the first base (1) and the second base (2) are both provided with a sliding groove (6) slidably connected to the slide plate (5); The tops of the first base (1) and the second base (2) are both fixedly connected to a fixing plate (7), the inner top wall of the fixing plate (7) is fixedly connected to an electric push rod (8), and the bottom of the electric push rod (8) is fixedly connected to an extrusion plate (9); Movable plates (10) are placed on both sides of the extrusion plate (9), and the sides of a pair of movable plates (10) that are away from each other are fixedly connected to the protective frame (4).
2. The multi-format cloud-based intelligent manufacturing integrated modular equipment according to claim 1, characterized in that: The movable plate (10) is an inclined structure, and its width gradually increases from top to bottom. A limiting groove (11) is provided on the inner wall of the slide groove (6). A pair of side surfaces of the slide plate (5) are provided with rectangular grooves (12). A rectangular plate (13) is movably inserted inside the rectangular groove (12).
3. The multi-format cloud-based intelligent manufacturing integrated modular equipment according to claim 2, characterized in that: A telescopic groove (14) is provided on the inner wall of the rectangular groove (12), a mounting block (15) is movably inserted into the interior of the telescopic groove (14), a side surface of the mounting block (15) is fixedly connected to the rectangular plate (13), and the mounting block (15) is fixed in the rectangular groove (12) by bolts.
4. The multi-format cloud-based intelligent manufacturing integrated modular equipment according to claim 1, characterized in that: A pair of fixed plates (7) are provided with a connecting groove (19) on one side away from each other, a vertical plate (20) is fixedly connected to the inner wall of the connecting groove (19), a pair of side surfaces of the vertical plate (20) are fixedly connected to a second electric push rod (21), and an end of the second electric push rod (21) away from the vertical plate (20) is fixedly connected to a push-pull plate (22).
5. The multi-format cloud-based intelligent manufacturing integrated modular equipment according to claim 1, characterized in that: A T-shaped groove (23) is provided on one side of a pair of movable plates (10) close to each other, and a T-shaped plate (24) adapted to the T-shaped groove (23) is fixedly connected to a pair of side surfaces of the extrusion plate (9).
6. The multi-format cloud-based intelligent manufacturing integrated modular equipment according to claim 1, characterized in that: A reinforcement groove (16) is provided on the first base (1), and a docking groove is provided on the second base (2). A metal rod (17) is movably inserted into the interior of the reinforcement groove (16), and the inner walls of the reinforcement groove (16) and the docking groove are both coated with a magnetic coating (18) that is magnetically connected to the metal rod (17).
7. The multi-format cloud-based intelligent manufacturing integrated modular equipment according to claim 6, characterized in that: One end of the metal rod (17) passes through the reinforcement groove (16) and is inserted into the docking groove, and the side of the second base (2) away from the first base (1) is not connected to the docking groove.
8. A multi-format cloud-based intelligent manufacturing integrated system, which is applied to the multi-format cloud-based intelligent manufacturing integrated modular equipment according to claim 7, comprising: Material hanging basket system, elevator operating platform system, flap operating platform system, edge protection device system, column opening blocking and hanging formwork system, bolt tightening measurement device system and truss installation operating platform system.