A prefabricated multi-functional mobile factory

By using fixing, stabilizing, and reinforcing mechanisms, the problem of rapid fixing and disassembly of prefabricated multifunctional mobile factories is solved, enabling damage-free disassembly and installation, improving stability and sealing, and enhancing the structural robustness and sealing effect.

CN119466155BActive Publication Date: 2025-12-02CCCC SECOND HARBOR ENGINEERING CO LTD +1
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Patent Information

Application Number
CN202411602925.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-11
Publication Date
2025-12-02
Estimated Expiration
2044-11-11

AI Technical Summary

Technical Problem

The existing fixing methods for prefabricated multifunctional mobile factories have limitations. Traditional fixing methods are cumbersome to disassemble and install, and are prone to damaging components and affecting structural accuracy and performance.

Method used

It employs a fixing mechanism, a stabilizing mechanism, and a reinforcing mechanism. A variable speed motor drives a helical gear and a threaded rod to achieve rapid fixing and disassembly. A cylinder drives a support plate and a push plate to achieve stabilization and reinforcement. A sealing mechanism prevents rainwater from seeping in.

Benefits of technology

It enables rapid and non-destructive fixing and disassembly, improves the stability and sealing of mobile factories, avoids deformation and residual stress, and enhances the structural robustness and sealing effect.

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Abstract

This invention discloses a prefabricated multifunctional mobile factory, relating to the field of mobile factory technology. It includes a primary assembly box and a secondary assembly box. Both the primary and secondary assembly boxes have fixing mechanisms on their outer walls, stabilizing mechanisms on the outer walls of both fixing mechanisms, and reinforcing mechanisms on the outer walls of both assembly boxes. Each fixing mechanism includes a long base with vertical supports fixedly installed on both sides. Limiting seats are fixedly installed on both sides of the primary and secondary assembly boxes at their end edges. This invention enables rapid fixing of the primary and secondary assembly boxes, replacing traditional anchor bolts, welding, and other methods. It allows for rapid disassembly and fixing of the mobile factory without damaging the components, causing deformation or residual stress, or affecting the structural accuracy and performance.
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Description

Technical Field

[0001] This invention relates to the field of mobile factory technology, specifically to a prefabricated multifunctional mobile factory. Background Technology

[0002] A factory, also known as a manufacturing plant, is a type of large industrial building used to produce goods. Most factories have production lines consisting of large machines or equipment. In order to meet different production needs, there are now mobile factories that utilize converted shipping containers.

[0003] However, the existing technologies for fixing prefabricated multifunctional mobile factories have limitations. Generally, the fixing method of a mobile factory needs to consider the balance between mobility and stability. Common fixing methods include anchor bolts, welding, and anchoring, but these methods all have certain limitations. When the mobile factory needs to be moved frequently, it is also troublesome to disassemble and install anchor bolts. Although welding has high strength, it requires cutting during disassembly, which can easily damage the components. In addition, deformation and residual stress will be generated during the welding process, affecting the accuracy and performance of the structure. Therefore, the prefabricated multifunctional mobile factory has been proposed. Summary of the Invention

[0004] The purpose of this invention is to provide a modular, multifunctional mobile factory to solve the problems mentioned in the background section.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a prefabricated multifunctional mobile factory, comprising a first assembly box and a second assembly box, wherein the outer walls of the first assembly box and the second assembly box are provided with fixing mechanisms, the outer walls of the two sets of fixing mechanisms are provided with stabilizing mechanisms, and the outer walls of the first assembly box and the second assembly box are provided with reinforcing mechanisms.

[0006] The fixing mechanism includes a long seat, with vertical seats fixedly installed on both sides of the long seat. Limiting seats are fixedly installed on both sides of the first and second assembly boxes at their respective edge positions. Square frames are slidably installed on the outer walls of both sets of vertical seats. Irregular seats are fixedly installed at the lower ends of both sets of vertical seats. Two sets of fixing blocks are welded to one end of both sets of square frames at their respective edge positions. Limiting blocks are welded to the lower ends of all four sets of fixing blocks. A variable speed motor is fixedly installed at one end of one set of vertical seats. Limiting holes are opened through one end of both sets of vertical seats. A transmission rod is rotatably installed inside the long seat. A first helical gear is rotatably installed on the inner wall of one set of vertical seats. A second helical gear is rotatably installed at the top of both sets of vertical seats. A third helical gear is rotatably installed on the inner side walls of both sets of vertical seats. Threaded rods are rotatably installed inside both sets of vertical seats. Threaded seats are threadedly connected to the outer walls of both sets of threaded rods. Connecting blocks are slidably installed inside the limiting holes of both sets of vertical seats.

[0007] The stabilizing mechanism includes two sets of base plates. The inner walls of both sets of base plates are provided with movable plates. Support plates are rotatably installed inside the two sets of movable plates. Four sets of No. 1 cylinders are movably installed on the inner walls of the two sets of movable plates. A mating seat is fixedly installed in the middle of the two sets of base plates. A mating column is fixedly installed inside the two sets of support plates. Elliptical grooves are opened on the inner side walls of the two sets of base plates. A movable rod is installed through one side of the two sets of movable plates.

[0008] Preferably, the reinforcement mechanism includes two sets of guide frames and two sets of push plates. A reinforcement block is welded to one side of each of the two sets of push plates. Limiting recesses are welded to both sides of the first assembly box and the second assembly box near the edge. Movable seats are slidably installed inside each of the two sets of guide frames. A second cylinder is fixedly installed on one side of each guide frame. Fixed plates are fixedly installed on both sides of the first assembly box. A third cylinder is fixedly installed inside each of the two sets of fixed plates. Guide seats are fixedly installed at one end of each of the two sets of movable seats and at the four corners. Two sets of guide rods are slidably installed at one end of each of the two sets of fixed plates.

[0009] Preferably, a sealing square groove is provided at one end of both the first assembly box and the second assembly box, a concave guide plate is fixedly installed at the upper end and edge of both the first assembly box and the second assembly box, and a sealing square gasket is fixedly installed at the other end of both the first assembly box and the second assembly box.

[0010] Preferably, one side of each of the two sets of irregular seats is fixed to both sides of the first assembly box, both ends of the transmission rod are fixed to the protrusions of the two sets of third helical gears, the protrusion of the first helical gear is fixed to the output end of the variable speed motor, the first helical gear meshes with the second and third helical gears, the two sets of second helical gears mesh with the two sets of third helical gears respectively, the two sets of threaded seats are slidably installed inside the two sets of vertical seats, one end of each of the two sets of connecting blocks is fixed to the inner wall of the two sets of square frames, and the other end of each of the two sets of connecting blocks is fixed to the outer wall of the two sets of threaded seats respectively.

[0011] Preferably, diagonal bracing blocks are welded to one end of each of the two sets of base plates and at the two side edges. One end of each of the two sets of base plates is fixed to the other end of the square frame. The two protruding ends of the two sets of support plates are rotatably installed inside the two protruding ends of the two sets of mating seats.

[0012] Preferably, one end of each of the two sets of guide frames is fixed to both sides of the first assembly box, and the protruding ends of the two sets of second cylinders pass through one side of each of the two sets of guide frames and are fixed to one side of each of the two sets of movable seats.

[0013] Preferably, guide rails are fixedly installed on the upper ends of both sets of irregular seats, and slide blocks are slidably installed on the outer walls of both sets of guide rails. One end of each set of guide rails is fixed to both sides of the first assembly box, and one end of each set of slide blocks is fixed to one end of each set of square frames.

[0014] Preferably, the extended ends of the four sets of No. 1 cylinders are respectively movably installed inside the four protruding ends of the two sets of mating columns, the two ends of the two sets of movable rods are respectively slidably installed inside the four sets of elliptical grooves, and the upper ends of the four sets of inclined support blocks are respectively fixed to the lower ends of the two sets of square frames.

[0015] Preferably, one end of each pair of guide rods passes through the interior of the corresponding four guide seats and is fixed to one end of a push plate. The protruding ends of the two sets of No. 3 cylinders are fixed to one end of the two sets of push plates, and the diameter of the two sets of reinforcing blocks is the same as the diameter of the two sets of limiting recesses.

[0016] Preferably, one end of the second assembly box is in contact with one end of the first assembly box, and one set of the sealing gaskets is disposed inside one set of sealing grooves.

[0017] Compared with the prior art, the beneficial effects of the present invention are:

[0018] 1. In this invention, by setting a fixing mechanism, the first assembly box and the second assembly box can be fixed. Conversely, the four sets of limiting blocks can be moved out from the inside of the four sets of limiting seats, thereby releasing the fixing of the first assembly box and the second assembly box. This allows for the quick fixing of the first assembly box and the second assembly box, and can replace traditional anchor bolts, welding, anchoring and other methods. It enables the rapid disassembly and fixing of the mobile factory without damaging the components, causing deformation and residual stress, or affecting the accuracy and performance of the structure.

[0019] 2. In this invention, by providing a stabilizing mechanism, the two sides of the first assembly box and the second assembly box can be supported, thereby increasing the contact area between the first assembly box and the second assembly box and the ground, and improving the stability of the first assembly box and the second assembly box.

[0020] 3. In this invention, the concave guide plate can block the gap between the first assembly box and the second assembly box, guide rainwater, prevent rainwater from directly seeping into the gap, and seal the first and second assembly boxes. Furthermore, when assembling the second and first assembly boxes, moving the second assembly box causes the sealing gasket at one end to move until it is inserted into the sealing groove at one end of the first assembly box, thereby further sealing the gap between the first and second assembly boxes and improving their sealing performance.

[0021] 4. In this invention, by providing a reinforcement mechanism, the second assembly box can be moved by two sets of limiting recesses, so that one end of the second assembly box contacts one end of the first assembly box, thereby increasing the firmness between the second assembly box and the first assembly box. Attached Figure Description

[0022] Figure 1 This is a three-dimensional structural diagram of a prefabricated multifunctional mobile factory according to the present invention;

[0023] Figure 2 This is a partial side view of a prefabricated multifunctional mobile factory according to the present invention;

[0024] Figure 3 This is a schematic diagram of the fixing mechanism in a prefabricated multifunctional mobile factory according to the present invention;

[0025] Figure 4 This is a partial half-sectional view of the fixing mechanism in a prefabricated multifunctional mobile factory according to the present invention.

[0026] Figure 5 This is a partial structural diagram of the fixing mechanism in a prefabricated multifunctional mobile factory according to the present invention;

[0027] Figure 6 This is a schematic diagram of the frame and stabilizing mechanism in a prefabricated multifunctional mobile factory according to the present invention;

[0028] Figure 7 This is a top view of a stabilizing mechanism in a prefabricated multifunctional mobile factory according to the present invention;

[0029] Figure 8 This is a structural schematic diagram of the No. 1 assembly box and the reinforcement mechanism in a prefabricated multifunctional mobile factory according to the present invention;

[0030] Figure 9 This is a perspective view of a reinforcement mechanism in a prefabricated multifunctional mobile factory according to the present invention.

[0031] In the diagram: 1. Assembly Box No. 1; 11. Assembly Box No. 2; 12. Sealing Square Groove; 13. Concave Guide Plate; 14. Sealing Square Gasket; 2. Fixing Mechanism; 21. Long Seat; 22. Vertical Seat; 23. Limiting Seat; 24. Square Frame; 25. Irregularly Shaped Seat; 26. Fixing Block; 27. Limiting Block; 28. Variable Speed ​​Motor; 29. ​​Guide Rail; 210. Slide; 211. Limiting Hole; 212. Transmission Rod; 213. Helical Gear No. 1; 214. Helical Gear No. 2; 215. Helical Gear No. 3; 216. Screw 217. Threaded rod; 218. Threaded seat; 3. Connecting block; 4. Stabilizing mechanism; 31. Base plate; 32. Support plate; 33. Movable frame plate; 34. Diagonal brace block; 35. Cylinder No. 1; 36. Mating seat; 37. Mating column; 38. Elliptical groove; 39. Movable rod; 4. Reinforcing mechanism; 41. Guide frame; 42. Push plate; 43. Reinforcing block; 44. Limiting recess; 45. Movable seat; 46. Cylinder No. 2; 47. Fixed plate; 48. Cylinder No. 3; 49. Guide seat; 410. Guide rod. Detailed Implementation

[0032] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0033] Example 1: Refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 and Figure 9 As shown: A prefabricated multifunctional mobile factory includes a first assembly box 1 and a second assembly box 11. The outer walls of the first assembly box 1 and the second assembly box 11 are provided with fixing mechanisms 2. The outer walls of the two sets of fixing mechanisms 2 are provided with stabilizing mechanisms 3. The outer walls of the first assembly box 1 and the second assembly box 11 are provided with reinforcing mechanisms 4.

[0034] The fixing mechanism 2 includes a long base 21, with vertical bases 22 fixedly installed on both sides of the long base 21. Limiting seats 23 are fixedly installed on both sides of the first assembly box 1 and the second assembly box 11, at their respective end edges. Square frames 24 are slidably installed on the outer walls of both sets of vertical bases 22. Irregularly shaped seats 25 are fixedly installed at the lower ends of both sets of vertical bases 22. Two sets of fixing blocks 26 are welded to one end of each set of square frames 24, at their respective end edges. Limiting blocks 27 are welded to the lower ends of all four sets of fixing blocks 26. One set of vertical bases 22... A variable speed motor 28 is fixedly installed at one end. Limiting holes 211 are drilled through one end of each of the two sets of vertical seats 22. A transmission rod 212 is rotatably installed inside the long seat 21. A first helical gear 213 is rotatably installed on the inner wall of one set of vertical seats 22. A second helical gear 214 is rotatably installed at the top of the inner walls of both sets of vertical seats 22. A third helical gear 215 is rotatably installed on the inner side walls of both sets of vertical seats 22. Threaded rods 216 are rotatably installed inside the two sets of vertical seats 22. Threaded seats are threadedly connected to the outer walls of both sets of threaded rods 216. 217. Connecting blocks 218 are slidably installed inside both sets of limiting holes 211. One side of each of the two sets of irregular seats 25 is fixed to both sides of the first assembly box 1. The two ends of the transmission rod 212 are fixed to the protrusions of the two sets of third helical gears 215. The protrusion of the first helical gear 213 is fixed to the output end of the variable speed motor 28. The first helical gear 213 meshes with the second helical gear 214 and the third helical gear 215. The two sets of second helical gears 214 mesh with the two sets of third helical gears 215 respectively. The two sets of screws... The threaded seats 217 are slidably installed inside the two sets of vertical seats 22. One end of the two sets of connecting blocks 218 is fixed to the inner wall of the two sets of square frames 24. The other end of the two sets of connecting blocks 218 is fixed to the outer wall of the two sets of threaded seats 217. The upper end of the two sets of irregular seats 25 is fixedly installed with guide rails 29. The outer wall of the two sets of guide rails 29 is slidably installed with slide blocks 210. One end of the two sets of guide rails 29 is fixed to both sides of the first assembly box 1. One end of the two sets of slide blocks 210 is fixed to one end of the two sets of square frames 24.

[0035] The stabilizing mechanism 3 includes two sets of base plates 31. Each set of base plates 31 has a movable plate 33 on its inner wall. A support plate 32 is rotatably installed inside each set of movable plate 33. Four sets of No. 1 cylinders 35 are movably installed on the inner wall of each set of movable plate 33. A mating seat 36 is fixedly installed in the middle of each set of base plates 31. A mating column 37 is fixedly installed inside each set of support plates 32. Elliptical grooves 38 are formed on both inner side walls of each set of base plates 31. A movable rod 39 is installed through one side of each set of movable plate 33. One end of the base plate 31 and at the two side edges are welded with a diagonal brace 34. One end of each of the two sets of base plates 31 is fixed to the other end of the square frame 24. The two protruding ends of the two sets of support plates 32 are rotatably installed inside the two protruding ends of the two sets of mating seats 36. The extended ends of the four sets of No. 1 cylinders 35 are movably installed inside the four protruding ends of the two sets of mating columns 37. The two ends of the two sets of movable rods 39 are slidably installed inside the four sets of elliptical grooves 38. The upper ends of the four sets of diagonal braces 34 are fixed to the lower ends of the two sets of square frames 24.

[0036] In this embodiment, the mobile factory is assembled according to the actual situation, and two or more assembly boxes 1 and 2 assembly boxes 11 are assembled together. By starting the variable speed motor 28, the output of the variable speed motor 28 drives the first helical gear 213 to rotate inside the vertical seat 22. The first helical gear 213 drives one set of second helical gears 214 and third helical gears 215 to rotate together inside the vertical seat 22. One set of third helical gears 215 drives another set of third helical gears 215 to rotate via the transmission rod 212. The two sets of third helical gears 215 drive two sets of threaded rods 216 to rotate inside the two sets of vertical seats 22 respectively. Simultaneously, the two sets of threaded rods 216 also rotate threadedly inside two sets of threaded seats 217, causing the two sets of threaded seats 217 to move downwards inside the two sets of vertical seats 22. The two sets of threaded seats 217 drive two sets of square frames 24 to move downwards together via two sets of connecting blocks 218. The 8 sets of blocks move downward inside the two sets of limiting holes 211, while the two sets of square frames 24 move downward on the outer walls of the two sets of vertical seats 22. The two sets of square frames 24 move downward together with the four sets of limiting blocks 27 through the four sets of fixing blocks 26, so that the four sets of limiting blocks 27 pass through the interior of the two sets of irregular seats 25 and are inserted into the interior of the four sets of limiting seats 23. This allows the first assembly box 1 and the second assembly box 11 to be fixed. Conversely, the four sets of limiting blocks 27 can be moved out from the interior of the four sets of limiting seats 23 to release the fixation of the first assembly box 1 and the second assembly box 11. This allows for the quick fixation of the first assembly box 1 and the second assembly box 11, and can replace traditional anchor bolts, welding, anchoring and other methods. It can quickly disassemble and fix the mobile factory without damaging the components, without deformation or residual stress, and without affecting the accuracy and performance of the structure.

[0037] When the two sets of squares 24 move up and down, the two sets of squares 24 will drive the two sets of slides 210 to move up and down together. The two sets of slides 210 slide up and down on the outer walls of the two sets of guide rails 29 respectively, which can increase the stability of the two sets of squares 24 when they move up and down.

[0038] The four sets of No. 1 cylinders 35 are activated simultaneously. The extended ends of the four sets of No. 1 cylinders 35 push the two sets of support plates 32 to move through the two sets of mating columns 37. The two sets of support plates 32 rotate inside the two sets of movable frame plates 33, and the two sets of movable frame plates 33 drive the two sets of movable rods 39 to move. This causes the two ends of the two sets of movable rods 39 to move inside the four sets of elliptical grooves 38. At the same time, the two protruding parts at one end of the two sets of support plates 32 rotate at the two sets of mating seats 36 until the two sets of support plates 32 contact the ground. This can support the two sides of No. 1 assembly box 1 and No. 2 assembly box 11, thereby increasing the contact area between No. 1 assembly box 1 and No. 2 assembly box 11 and the ground, and improving the stability of No. 1 assembly box 1 and No. 2 assembly box 11.

[0039] The four sets of diagonal bracing blocks 34 are configured such that one end of each set of diagonal bracing blocks 34 is fixed to one end of each set of two sets of base plates 31, and the other end of each set of diagonal bracing blocks 34 is fixed to the lower end of each set of two sets of square frames 24. This can support the two sets of base plates 31, thereby improving the stability and firmness of the two sets of base plates 31.

[0040] Example 2: According to Figure 1 and Figure 2 As shown, a sealing groove 12 is provided at one end of both assembly box 1 and assembly box 11. A concave guide plate 13 is fixedly installed at the upper end and edge of both assembly box 1 and assembly box 11. A sealing gasket 14 is fixedly installed at the other end of both assembly box 1 and assembly box 11. One end of assembly box 11 is in contact with one end of assembly box 1. One set of sealing gaskets 14 is disposed inside one set of sealing grooves 12.

[0041] In this embodiment, the concave guide plate 13 can block the gap between the first assembly box 1 and the second assembly box 11, guide rainwater, prevent rainwater from directly seeping into the gap, and seal the first assembly box 1 and the second assembly box 11.

[0042] When assembling assembly box 11 and assembly box 1, by moving assembly box 11, the sealing gasket 14 at one end of assembly box 11 moves until the sealing gasket 14 is inserted into the sealing groove 12 at one end of assembly box 1, thereby further sealing the gap between assembly box 1 and assembly box 11 and improving the sealing performance between assembly box 1 and assembly box 11.

[0043] Example 3: According to Figure 1 , Figure 2 , Figure 8 and Figure 9 As shown, the reinforcement mechanism 4 includes two sets of guide frames 41 and two sets of push plates 42. A reinforcing block 43 is welded to one side of each of the two sets of push plates 42. Limiting recesses 44 are welded to both sides of assembly box 1 and assembly box 11 near their edges. Movable seats 45 are slidably installed inside each of the two sets of guide frames 41. A second cylinder 46 is fixedly installed on one side of each guide frame 41. Fixed plates 47 are fixedly installed on both sides of assembly box 1. A third cylinder 48 is fixedly installed inside each of the two sets of fixed plates 47. Guide seats 49 are fixedly installed at one end of each of the two sets of movable seats 45, located at each of the four corners. Two sets of guide rods 410 are slidably installed on one end of each of the two sets of fixed plates 47. One end of each of the two sets of guide frames 41 is fixed to both sides of the first assembly box 1. The extended ends of the two sets of second cylinders 46 pass through one side of each of the two sets of guide frames 41 and are fixed to one side of each of the two sets of movable seats 45. One end of each pair of guide rods 410 passes through the interior of the corresponding four sets of guide seats 49 and is fixed to one end of each of the push plates 42. The extended ends of the two sets of third cylinders 48 are fixed to one end of each of the two sets of push plates 42. The diameter of the two sets of reinforcing blocks 43 is the same as the diameter of the two sets of limiting recesses 44.

[0044] In this embodiment, by simultaneously activating two sets of No. 3 cylinders 48, the extended ends of the two sets of No. 3 cylinders 48 push the two sets of push plates 42 to move, so that the two sets of push plates 42 pass through the gap between the two sets of vertical seats 22 and the No. 1 assembly box 1 to both sides of the No. 2 assembly box 11. At the same time, the two sets of push plates 42 drive the two sets of reinforcing blocks 43 to move until the two sets of reinforcing blocks 43 are moved to one side of the two sets of limiting recesses 44 located on both sides of the No. 2 assembly box 11. Then, the No. 2 cylinders 46 are activated simultaneously, and the extended ends of the two sets of No. 2 cylinders 46 drive the two sets of movable seats 45 to move on the two sets of guide frames 41 respectively. Slide upwards until the two sets of movable seats 45 contact the inner side wall of the guide frame 41, then simultaneously start the two sets of No. 3 cylinders 48. The extended ends of the two sets of No. 3 cylinders 48 drive the two sets of push plates 42 to move. The two sets of push plates 42 drive the two sets of reinforcing blocks 43 to move, and move the two sets of reinforcing blocks 43 into the interior of the two sets of limiting recesses 44 respectively. Then, the two sets of limiting recesses 44 can pull the No. 2 assembly box 11 to move, so that one end of the No. 2 assembly box 11 contacts one end of the No. 1 assembly box 1, thereby increasing the firmness between the No. 2 assembly box 11 and the No. 2 assembly box 11.

[0045] When the two sets of push plates 42 move, they will drive the four sets of guide rods 410 to move. The four sets of guide rods 410 slide inside the guide seat 49, which can increase the stability of the two sets of push plates 42 when they move.

[0046] The method of use and working principle of this device: First, assemble the mobile factory according to the actual situation, and assemble two or more No. 1 assembly boxes 1 and No. 2 assembly boxes 11 together. Then, by moving No. 2 assembly box 11, the No. 2 assembly box 11 drives the sealing gasket 14 at one end to move until the sealing gasket 14 is inserted into the sealing groove 12 at one end of No. 1 assembly box 1.

[0047] Then, by starting the variable speed motor 28, the output end of the variable speed motor 28 drives the first helical gear 213 to rotate inside the vertical seat 22. The first helical gear 213 drives one set of second helical gears 214 and third helical gears 215 to rotate together inside the vertical seat 22. Meanwhile, one set of third helical gears 215 drives another set of third helical gears 215 to rotate through the transmission rod 212. The two sets of third helical gears 215 drive the two sets of threaded rods 216 to rotate inside the two sets of vertical seats 22 respectively. At the same time, the two sets of threaded rods 216 also rotate threadedly inside the two sets of threaded seats 217 respectively, causing the two sets of threaded seats 217 to rotate separately. Do not move downward inside the two sets of vertical seats 22. The two sets of threaded seats 217 drive the two sets of square frames 24 to move downward together through the two sets of connecting blocks 218. The two sets of connecting blocks 218 move downward inside the two sets of limiting holes 211 respectively. The two sets of square frames 24 move downward on the outer wall of the two sets of vertical seats 22 respectively. The two sets of square frames 24 drive the four sets of limiting blocks 27 to move downward together through the four sets of fixing blocks 26. This allows the four sets of limiting blocks 27 to pass through the interior of the two sets of irregular seats 25 respectively and insert the four sets of limiting blocks 27 into the interior of the four sets of limiting seats 23 respectively, which can fix the first assembly box 1 and the second assembly box 11.

[0048] Then, the four sets of No. 1 cylinders 35 are started simultaneously. The extended ends of the four sets of No. 1 cylinders 35 push the two sets of support plates 32 to move through the two sets of mating columns 37. The two sets of support plates 32 rotate inside the two sets of movable frame plates 33 respectively. The two sets of movable frame plates 33 drive the two sets of movable rods 39 to move, so that the two ends of the two sets of movable rods 39 move inside the four sets of elliptical grooves 38 respectively. At the same time, the two protruding parts at one end of the two sets of support plates 32 rotate at the two sets of mating seats 36 respectively until the two sets of support plates 32 contact the ground, which can support the two sides of the No. 1 assembly box 1 and the No. 2 assembly box 11.

[0049] Finally, the two sets of No. 3 cylinders 48 are activated simultaneously. The extended ends of the two sets of No. 3 cylinders 48 push the two sets of push plates 42 to move, so that the two sets of push plates 42 pass through the gap between the two sets of vertical seats 22 and the No. 1 assembly box 1 to both sides of the No. 2 assembly box 11. At the same time, the two sets of push plates 42 drive the two sets of reinforcing blocks 43 to move until the two sets of reinforcing blocks 43 are moved to one side of the two sets of limiting recesses 44 on both sides of the No. 2 assembly box 11. Then, the No. 2 cylinder 46 is activated simultaneously. The two sets of No. 2 cylinders 48... The extended end of 6 drives the two sets of movable seats 45 to slide on the two sets of guide frames 41 respectively until the two sets of movable seats 45 contact the inner side wall of the guide frame 41. Then, the two sets of No. 3 cylinders 48 are activated simultaneously. The extended ends of the two sets of No. 3 cylinders 48 drive the two sets of push plates 42 to move. The two sets of push plates 42 drive the two sets of reinforcing blocks 43 to move and move the two sets of reinforcing blocks 43 into the interior of the two sets of limiting recesses 44 respectively, which can increase the firmness between the No. 2 assembly box 11 and the No. 2 assembly box 11.

[0050] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A modular multi-functional mobile factory, comprising a first assembly box (1) and a second assembly box (11), characterized in that: The outer walls of the first assembly box (1) and the second assembly box (11) are provided with fixing mechanisms (2), the outer walls of the two sets of fixing mechanisms (2) are provided with stabilizing mechanisms (3), and the outer walls of the first assembly box (1) and the second assembly box (11) are provided with reinforcing mechanisms (4). The reinforcement mechanism (4) includes two sets of guide frames (41) and two sets of push plates (42). A reinforcement block (43) is welded to one side of each of the two sets of push plates (42). Limiting recesses (44) are welded to both sides of the first assembly box (1) and the second assembly box (11) near the edge. Movable seats (45) are slidably installed inside each of the two sets of guide frames (41). A second cylinder (46) is fixedly installed on one side of each guide frame (41). Fixed plates (47) are fixedly installed on both sides of the first assembly box (1). A third cylinder (48) is fixedly installed inside each of the two sets of fixed plates (47). Guide seats are fixedly installed at one end of each of the two sets of movable seats (45) at the four corners. (49) Two sets of guide rods (410) are slidably installed on one end of each of the two sets of fixed plates (47). One end of each of the two sets of guide frames (41) is fixed to both sides of the first assembly box (1). The protruding ends of the two sets of second cylinders (46) pass through one side of each of the two sets of guide frames (41) and are fixed to one side of each of the two sets of movable seats (45). One end of each pair of guide rods (410) passes through the interior of the corresponding four sets of guide seats (49) and is fixed to one end of each of the push plates (42). The protruding ends of the two sets of third cylinders (48) are fixed to one end of each of the two sets of push plates (42). The diameter of the two sets of reinforcing blocks (43) is the same as the diameter of the two sets of limiting recesses (44).

2. The prefabricated multifunctional mobile factory according to claim 1, characterized in that: One end of the first assembly box (1) and the second assembly box (11) is provided with a sealing square groove (12). A concave guide plate (13) is fixedly installed at the upper end and edge position of the first assembly box (1) and the second assembly box (11). A sealing square gasket (14) is fixedly installed at the other end of the first assembly box (1) and the second assembly box (11).

3. The prefabricated multifunctional mobile factory according to claim 1, characterized in that: The fixing mechanism (2) includes a long seat (21), on both sides of which vertical seats (22) are fixedly installed. Limiting seats (23) are fixedly installed on both sides of the first assembly box (1) and the second assembly box (11) at their respective ends. Square frames (24) are slidably installed on the outer walls of both sets of vertical seats (22). Irregularly shaped seats (25) are fixedly installed at the lower ends of both sets of vertical seats (22). Two sets of fixing blocks (26) are welded to one end of each set of square frames (24) at their respective ends. The four sets of fixing blocks... Limiting blocks (27) are welded to the lower end of each block (26). A variable speed motor (28) is fixedly installed at one end of one set of vertical seats (22). Limiting holes (211) are opened through one end of both sets of vertical seats (22). A transmission rod (212) is rotatably installed inside the long seat (21). A first helical gear (213) is rotatably installed on the inner wall of one set of vertical seats (22). A second helical gear (214) is rotatably installed on the top of the inner walls of both sets of vertical seats (22). A transmission rod (212) is rotatably installed on the inner side walls of both sets of vertical seats (22). The third helical gear (215) has threaded rods (216) rotatably installed inside both sets of vertical seats (22). The outer walls of both sets of threaded rods (216) are threadedly connected to threaded seats (217). Connecting blocks (218) are slidably installed inside both sets of limiting holes (211). One side of each of the two sets of irregular seats (25) is fixed to both sides of the first assembly box (1). The two ends of the transmission rod (212) are fixed to the protrusions of the two sets of third helical gears (215). The protrusion of the first helical gear (213) is connected to the variable... The output end of the high-speed motor (28) is fixed. The first helical gear (213) meshes with the second helical gear (214) and the third helical gear (215). The two sets of the second helical gears (214) mesh with the two sets of the third helical gears (215) respectively. The two sets of threaded seats (217) are slidably installed inside the two sets of vertical seats (22). One end of the two sets of connecting blocks (218) is fixed to the inner wall of the two sets of square frames (24) respectively. The other end of the two sets of connecting blocks (218) is fixed to the outer wall of the two sets of threaded seats (217) respectively.

4. The prefabricated multifunctional mobile factory according to claim 1, characterized in that: The stabilizing mechanism (3) includes two sets of base plates (31). Each set of base plates (31) has a movable plate (33) on its inner wall. Each set of movable plates (33) has a support plate (32) rotatably mounted inside. Each set of movable plates (33) has four sets of No. 1 cylinders (35) movably mounted on its inner wall. Each set of base plates (31) has a mating seat (36) fixedly mounted in the middle. Each set of support plates (32) has a mating column (37) fixedly mounted inside. Both sides of the inner side walls of the two sets of base plates (31) are provided with elliptical grooves (38). One side of the two sets of movable frame plates (33) is provided with a movable rod (39). One end of the two sets of base plates (31) and at the two side edges are welded with a diagonal brace (34). One end of the two sets of base plates (31) is fixed to the other end of the square frame (24). The two protruding ends of the two sets of support plates (32) are respectively rotatably installed inside the two protruding ends of the two sets of mating seats (36).

5. The prefabricated multifunctional mobile factory according to claim 3, characterized in that: The upper ends of the two sets of irregular seats (25) are fixedly installed with guide rails (29), and the outer walls of the two sets of guide rails (29) are slidably installed with slide blocks (210). One end of the two sets of guide rails (29) is fixed to both sides of the first assembly box (1), and one end of the two sets of slide blocks (210) is fixed to one end of the two sets of square frames (24).

6. The prefabricated multifunctional mobile factory according to claim 4, characterized in that: The extended ends of the four sets of cylinders (35) are respectively movably installed inside the four protruding ends of the two sets of mating columns (37), and the two ends of the two sets of movable rods (39) are respectively slidably installed inside the four sets of elliptical grooves (38). The upper ends of the four sets of inclined support blocks (34) are respectively fixed to the lower ends of the two sets of square frames (24).

7. The prefabricated multifunctional mobile factory according to claim 2, characterized in that: One end of the second assembly box (11) is in contact with one end of the first assembly box (1), and a set of the sealing gaskets (14) are disposed inside one set of sealing grooves (12).

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