New energy modularized clean room

By adopting the design of positioning structure, through holes and positioning holes in a modular clean room, avoiding the use of screws, the problems of splicing and installation time and resource waste in the existing technology are solved, and the effects of efficient installation and resource conservation are achieved.

CN120100219AInactive Publication Date: 2025-06-06AOTONG GLOBAL ENVIRONMENTAL CONTROL (SHENZHEN) CO LTD
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Patent Information

Application Number
CN202510392420.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2025-06-06
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing modular clean room requires a large number of screws during the splicing and installation process, which leads to an increase in the workload of workers, damage to the module structure, and the inability to be reused, resulting in waste of resources.

Method used

By setting up positioning structures, through holes and positioning holes, avoiding the use of screws, and adopting a design of sliding connections and snagging slots, simplifying the installation and disassembly of the clean room.

Benefits of technology

It improves the installation efficiency of the clean room, reduces the consumption of human resources, extends the service life of the module, and saves resources.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a new energy modular clean room, and relates to the field of modular clean rooms. The new energy modularized clean room comprises a frame, lap joint plates are fixedly connected to the two sides of the inner wall of the bottom of the frame, bottom plates arranged at equal intervals are slidably connected to the upper surfaces of the two lap joint plates, lap joint parts are arranged at the two ends of each bottom plate, and the two ends of each bottom plate are slidably connected with the lap joint plates in a sleeving mode through the lap joint parts. Supporting plates are fixedly connected to the two sides of the inner wall of the top end of the frame correspondingly, top plates arranged at equal intervals are arranged on the upper surfaces of the two supporting plates, and two first screw rods are fixedly connected to the bottom face of each top plate. According to the modular clean room, by arranging the positioning structures, the through holes and the positioning holes, positioning of the wallboards can be completed under the condition that the modular structure is prevented from being damaged, using of screws is avoided, mounting and dismounting of the modular clean room are facilitated, the working efficiency is improved, manpower is saved, follow-up dismounting, mounting and repeated utilization are facilitated, and resources are saved.
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Description

Technical Field

[0001] The invention relates to the field of modular clean rooms, in particular to a new energy modular clean room. Background Art

[0002] A clean room is a space where parameters such as air cleanliness, temperature, humidity, pressure, and noise are strictly controlled. Modularization is achieved by breaking down complex structures into smaller, manageable modules, which are easier to manage and splice. A modular clean room is a clean space solution that provides efficiency, flexibility, and environmental protection by splitting and combining modules. It splits the main frame, doors and windows, purification equipment, etc. into different modules, and conducts personalized design, production, and rapid transportation to the site for assembly according to customer needs, thereby meeting the needs of different scenarios. The existing modular clean rooms require a large number of screws to connect and fix the modules during the splicing and installation process. Using a large number of screws to fix the modules is not only laborious and increases the workload of workers, but also damages the structure of the modules themselves, resulting in the inability to reuse the modules in the future, causing a waste of resources. Summary of the invention

[0003] 1. Technical problems solved In view of the deficiencies in the prior art, the present invention provides a new energy modular clean room, which solves the problem that a large number of screws are needed to connect and fix each module during the splicing and installation process of the existing modular clean room. Using a large number of screws to fix the modules is not only laborious and increases the workload of the workers, but also damages the structure of the module itself, resulting in the inability to reuse the module in the future, causing a waste of resources.

[0004] 2. Technical solution To achieve the above objectives, the present invention is implemented through the following technical solutions: A new energy modular clean room comprises a frame, wherein both sides of the bottom inner wall of the frame are fixedly connected with lap plates, the upper surfaces of the two lap plates are slidably connected with base plates arranged equidistantly, both ends of each base plate are provided with lap parts, and the two ends of the base plate are respectively slidably sleeved with the lap plates through the lap parts, and both sides of the top inner wall of the frame are fixedly connected with support plates, the upper surfaces of the two support plates are provided with top plates arranged equidistantly, and the bottom surface of each top plate is fixedly connected with two first screws, the outer circumferential surface of the first screw is slidably plugged into the top plate through a mounting hole opened inside the top plate, and the outer circumferential surface of each of the first screws is threadedly connected with a nut.

[0005] The bottom of the outer wall of the frame is fixedly connected with four lower mounting plates, and each of the lower mounting plates is provided with a lower mounting groove inside. The top of the outer wall of the frame is fixedly connected with four upper mounting plates, and each of the upper mounting plates is provided with an upper mounting groove inside. The first wall plate, the second wall plate and the third wall plate are slidably connected between the lower mounting groove and the upper mounting groove. The bottom of the frame is provided with an equidistantly arranged positioning structure, and the positioning structure includes a base, and the base is rotatably connected with a screw rod inside. Two plug plates are provided at one end of the base close to the lower mounting plate, and the outer circumferential surface of the screw rod is provided with a first threaded portion, and the screw rod is threadedly connected to the positioning plate through the first threaded portion. The outer circumferential surface of the screw rod is provided with a second threaded portion, and the screw rod is threadedly connected to a threaded tube through the second threaded portion, and the outer circumferential surface of the threaded tube is fixedly connected to two first plug rods, and the outer circumferential surface of the first plug rod is slidably plugged into the interior of the base, and the interior of the lower mounting plate is provided with equidistantly arranged through holes, and the bottoms of the first wall panel, the second wall panel and the third wall panel are all provided with positioning holes, and the interior of the lower mounting plate is provided with equidistantly arranged slots, and the plug plates are slidably plugged into the lower mounting plate through the slots, respectively, and the interior of the lower mounting plate is provided with equidistantly arranged first plug holes, and the first plug rods are slidably plugged into the lower mounting plate through the first plug holes.

[0006] Through the above technical scheme, since using a large number of screws to fix the modules is not only laborious and increases the workload of workers, but also damages the structure of the modules themselves, resulting in the modules being unable to be well reused in the future, causing a waste of resources, by setting the lower mounting plate, the lower mounting groove, the upper mounting plate, and the upper mounting groove, the wall panels can be initially limited, which is convenient for the sliding installation of the wall panels. By setting the positioning structure, through holes and positioning holes, the positioning of the wall panels can be completed without damaging the module structure, avoiding the use of screws, facilitating the installation and disassembly of the modular clean room, improving work efficiency, saving manpower, facilitating subsequent disassembly and reuse, and saving resources.

[0007] Further, the positioning plate is slidably plugged with the lower mounting plate through the through holes, the positioning plate is slidably plugged with the first wall panel, the second wall panel and the third wall panel through the positioning holes, and the bottom surface of the front end of the positioning plate is in contact with the upper surface of the overlap portion; Through the above technical solution, by passing the positioning plate through the through hole and the positioning hole, the positioning structure itself can be restricted to prevent the positioning structure from falling off the lower mounting plate. At the same time, the wall panel can be restricted to limit the lateral movement of the wall panel to complete the positioning of the wall panel. At the same time, the overlapping parts at both ends of the bottom plate can also be restricted to complete the positioning operation of the bottom plate.

[0008] Furthermore, the lap plate is a T-shaped structure, and a groove adapted to the top of the lap plate is provided inside the lap portion; Through the above technical solution, the overlapping plate of the T-shaped structure can limit the overlapping part, thereby improving the stability of the bottom plate.

[0009] Furthermore, the plug board is a T-shaped structure, and the slot is a T-shaped structure; Through the above technical solution, the T-shaped plug plate and slot can limit the positioning structure, prompting the positioning structure to always perform longitudinal lifting and lowering, which not only facilitates the installation and disassembly of the positioning structure, but also improves the stability of the connection between the positioning structure and the lower mounting plate.

[0010] Furthermore, four enclosures are provided at the bottom of the frame, and the enclosures are respectively set outside the positioning structure, wherein the front end of the enclosure is provided with a slope; Through the above technical solution, the enclosure can shield the positioning structure to prevent the positioning structure from being always exposed to the outside, causing damage to the positioning structure and affecting traffic. The slope of the front enclosure facilitates the movement of equipment with rollers, providing convenience for the passage of staff.

[0011] Furthermore, two second screws are fixedly connected to the upper surface of the lower mounting plate, and the second screws are slidably plugged with the enclosure plate through mounting holes opened at both ends of the enclosure plate, and the outer circumferential surface of each second screw is threadedly connected with a nut; Through the above technical solution, the second screw is used to limit the positioning of the enclosure, so as to prevent the enclosure from moving easily and improve the stability of the enclosure.

[0012] Furthermore, the bottom surface of each of the enclosures is fixedly connected with second plug rods arranged at equal distances, and the interior of each of the lower mounting plates is provided with second plug holes arranged at equal distances, and the second plug rods are respectively slidably plugged with the lower mounting plates through the second plug holes; Through the above technical solution, the enclosure can be further reinforced by the second insertion rod and the second insertion hole, thereby further improving the stability of the enclosure.

[0013] Further, a door frame is provided inside the third wall panel, a clamping groove is provided on the outer surface of the door frame, the third wall panel is slidably connected with the door frame through the clamping groove provided on the outer surface of the door frame, and a door panel is provided inside the door frame; Through the above technical solution, the door frame can be directly inserted into the third wall panel through the card slot of the door frame, which simplifies the installation process of the door frame and reduces the workload of workers.

[0014] Furthermore, a window frame is provided inside the second wall panel, a clamping groove is provided on the outer surface of the window frame, the second wall panel is slidably connected with the window frame through the clamping groove provided on the outer surface of the window frame, and a visible window is provided inside the window frame; Through the above technical solution, the window frame can be directly inserted into the second wall panel through the snap-in groove of the window frame, which simplifies the installation process of the window frame and reduces the workload of workers.

[0015] Furthermore, a ventilation frame is provided inside the second wall panel, a clamping groove is provided on the outer surface of the ventilation frame, the second wall panel is slidably plugged with the ventilation frame through the clamping groove provided on the outer surface of the ventilation frame, a ventilation plate with ventilation holes is provided inside the ventilation frame, the pitch of the first threaded portion is greater than the pitch of the second threaded portion, so that the positioning plate and the threaded tube can move at different speeds, so that when the positioning plate passes through the through hole and the positioning hole to restrict the overlapped portion, the first insertion rod is just completely inserted into the first insertion hole; Through the above technical solution, the ventilation frame can be directly inserted into the second wall panel through the clamping groove of the ventilation frame, which simplifies the installation process of the ventilation frame and reduces the workload of workers. 3. Beneficial effects The present invention provides a new energy modular clean room. It has the following beneficial effects: 1. The present invention provides a new energy modular clean room. By setting a positioning structure, a through hole and a positioning hole, the wall panel can be positioned without damaging the module structure, and the use of screws is avoided, which facilitates the installation and disassembly of the modular clean room, improves work efficiency, saves manpower, facilitates subsequent disassembly and reuse, and saves resources.

[0016] 2. The present invention provides a new energy modular clean room. By setting a lower mounting plate, a lower mounting groove, an upper mounting plate, and an upper mounting groove, the wall panels can be initially limited, which is convenient for the sliding installation of the wall panels. By setting a lap plate and lap portions at both ends of the bottom plate, the installation of the bottom plate is facilitated. By setting a support plate and fixing the top plate to the support plate using a first screw and a nut, the installation of the top plate is facilitated, the installation process of the clean room is simplified, and the burden of splicing and installation operations in the clean room is reduced.

[0017] 3. The present invention provides a new energy modular clean room, which drives the positioning plate and the threaded tube to move simultaneously at different speeds by rotating the screw rod, so that the positioning plate is inserted into the through hole and the positioning hole while the first insertion rod is inserted into the first insertion hole, which facilitates the positioning operation of the positioning structure and ensures the stability of the connection between the positioning structure and the lower mounting plate, thereby improving the overall stability of the clean room. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is the overall three-dimensional structure diagram of the present invention; Figure 2 This is a structural diagram of the bottom plate of the present invention; Figure 3 It is the framework structure diagram of the present invention; Figure 4This is a structural diagram of the lap plate of the present invention; Figure 5 For the present invention Figure 4 A magnified structural diagram; Figure 6 This is a top plate structure diagram of the present invention; Figure 7 For the present invention Figure 6 The enlarged structure diagram at B; Figure 8 This is a structural diagram of the support plate of the present invention; Fig. 9 For the present invention Figure 8 The enlarged structure diagram at C; Fig.10 This is a structural diagram of the second wall panel of the present invention; Fig.11 This is a structural diagram of the third wall panel of the present invention; Fig.12 This is a structural diagram of the first wall panel of the present invention; Fig.13 It is a partial front view structural diagram of the present invention; Fig.14 For the present invention Fig.13 The enlarged structure diagram at D; Fig.15 For the present invention Fig.13 The enlarged structure diagram at E; Fig.16 This is a structural diagram of the enclosure of the present invention; Fig.17 For the present invention Fig.17 The enlarged structure diagram at F; Fig.18 It is a positioning structure diagram of the present invention; Fig.19 It is the structural diagram of the screw rod of the present invention.

[0019] Among them, 1. frame; 2. lap plate; 3. bottom plate; 4. lap part; 5. support plate; 6. top plate; 7. first screw; 8. lower mounting plate; 9. lower mounting groove; 10. upper mounting plate; 11. upper mounting groove; 12. first wall panel; 13. second wall panel; 14. third wall panel; 15. positioning structure; 1501. base; 1502. screw; 1503. plug plate; 1504. first threaded part; 1505. positioning plate; 1506. second threaded part; 1507. threaded tube; 1508. first plug rod; 16. through hole; 17. positioning hole; 18. slot; 19. first plug hole; 20. enclosure; 21. second screw; 22. second plug rod; 23. second plug hole; 24. door frame; 25. window frame; 26. ventilation frame. DETAILED DESCRIPTION

[0020] The following will be combined with the drawings in the specific embodiments of the present invention to clearly and completely describe the technical solutions in the specific embodiments of the present invention. Obviously, the specific embodiments described are only part of the specific embodiments of the present invention, not all of the specific embodiments. Based on the specific embodiments of the present invention, all other specific embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention. Specific implementation 1: like Figure 1-9 As shown, a specific embodiment of the present invention provides a new energy modular clean room, including a frame 1, both sides of the bottom inner wall of the frame 1 are fixedly connected with lap plates 2, the upper surfaces of the two lap plates 2 are slidably connected with equidistantly arranged bottom plates 3, both ends of each bottom plate 3 are provided with lap portions 4, and the two ends of the bottom plate 3 are respectively slidably connected with the lap plates 2 through the lap portions 4, both sides of the top inner wall of the frame 1 are fixedly connected with support plates 5, the upper surfaces of the two support plates 5 are provided with equidistantly arranged top plates 6, the bottom surface of each top plate 6 is fixedly connected with two first screws 7, the outer circumferential surface of the first screw 7 is slidably plugged into the top plate 6 through the mounting hole opened in the top plate 6, and the outer circumferential surface of each first screw 7 is threadedly connected with a nut.

[0022] like Figure 1-19 As shown, four lower mounting plates 8 are fixedly connected to the bottom of the outer wall of the frame 1, and each lower mounting plate 8 is provided with a lower mounting groove 9 inside. Four upper mounting plates 10 are fixedly connected to the top of the outer wall of the frame 1, and each upper mounting plate 10 is provided with an upper mounting groove 11 inside. The first wall panel 12, the second wall panel 13 and the third wall panel 14 are slidably connected between the lower mounting groove 9 and the upper mounting groove 11. The bottom of the frame 1 is provided with an equidistantly arranged positioning structure 15, and the positioning structure 15 includes a base 1501, and the base 1501 is internally rotatably connected with a screw rod 1502. Two plug plates 1503 are provided at one end of the base 1501 close to the lower mounting plate 8, and the outer circumferential surface of the screw rod 1502 is provided with a first threaded portion 1504, and the screw rod 1502 is threadedly connected to a positioning plate 1505 through the first threaded portion 1504. The outer circumferential surface of the screw rod 1502 is provided with a second threaded portion 1506, and the screw rod 1502 is threadedly connected to a threaded tube 1507 through the second threaded portion 1506. The outer circumferential surface of the threaded tube 1507 is fixedly connected to two first plug rods 1508. The outer circumferential surface of the first plug rod 1508 is slidably plugged into the interior of the base 1501. The interior of the lower mounting plate 8 is provided with equidistantly arranged through holes 16. The bottoms of the first wall panel 12, the second wall panel 13 and the third wall panel 14 are all provided with positioning holes 17. The interior of the lower mounting plate 8 is provided with equidistantly arranged slots 18. The plug plate 1503 is slidably plugged into the lower mounting plate 8 through the slots 18 respectively. The interior of the lower mounting plate 8 is provided with equidistantly arranged first plug holes 19, and the first plug rods 1508 are slidably plugged into the lower mounting plate 8 through the first plug holes 19 respectively.

[0023] like Figure 2 , Figure 6 and Fig.18 As shown, the positioning plate 1505 is slidably connected with the lower mounting plate 8 through the through holes 16, and the positioning plate 1505 is slidably connected with the first wall panel 12, the second wall panel 13 and the third wall panel 14 through the positioning holes 17. The bottom surface of the front end of the positioning plate 1505 contacts the upper surface of the overlapping portion 4. By passing the positioning plate 1505 through the through holes 16 and the positioning holes 17, the positioning structure 15 itself can be restricted to prevent the positioning structure 15 from falling off the lower mounting plate 8. At the same time, the wall panel is restricted to limit the lateral movement of the wall panel to complete the positioning of the wall panel. At the same time, the overlapping portions 4 at both ends of the bottom plate 3 can also be restricted to complete the positioning operation of the bottom plate 3.

[0024] like Figure 3 , Figure 4 and Figure 5 As shown, the lap plate 2 is a T-shaped structure, and a groove adapted to the top of the lap plate 2 is provided inside the lap portion 4. The T-shaped lap plate 2 can limit the lap portion 4, thereby improving the stability of the bottom plate 3.

[0025] like Fig.17 , Fig.18 and Fig.19 As shown, the plug plate 1503 is a T-shaped structure, and the slot 18 is a T-shaped structure. The T-shaped plug plate 1503 and the slot 18 can restrict the positioning structure 15, causing the positioning structure 15 to always be lifted and lowered longitudinally, which not only facilitates the installation and disassembly of the positioning structure 15, but also improves the stability of the connection between the positioning structure 15 and the lower mounting plate 8.

[0026] like Figure 1 , Figure 2 and Fig.16 As shown, four panels 20 are provided at the bottom of the frame 1, and the panels 20 are respectively erected on the outside of the positioning structure 15, wherein a slope is provided at the front end of the front panel 20, and the panel 20 can shield the positioning structure 15 to prevent the positioning structure 15 from being always exposed to the outside, causing damage to the positioning structure 15 and affecting passage. The slope of the front panel 20 facilitates the movement of equipment with rollers, providing convenience for the passage of staff.

[0027] like Fig.16 and Fig.17 As shown, two second screws 21 are fixedly connected to the upper surface of the lower mounting plate 8. The second screws 21 are slidably plugged into the enclosure 20 through mounting holes opened at both ends of the enclosure 20. A nut is threadedly connected to the outer circumference of each second screw 21. The second screws 21 are used to position and limit the enclosure 20 to prevent the enclosure 20 from moving easily, thereby improving the stability of the enclosure 20.

[0028] like Fig.16 and Fig.17 As shown, the bottom surface of each enclosure 20 is fixedly connected with equidistantly arranged second plug rods 22, and the interior of each lower mounting plate 8 is provided with equidistantly arranged second plug holes 23, and the second plug rods 22 are slidably plugged into the lower mounting plate 8 through the second plug holes 23, respectively. The enclosure 20 can be further reinforced by the second plug rods 22 and the second plug holes 23, thereby further improving the stability of the enclosure 20.

[0029] like Figure 1 , Figure 2 and Fig.11 As shown, a door frame 24 is provided inside the third wall panel 14, and a snap-in groove is provided on the outer surface of the door frame 24. The third wall panel 14 is slidably connected with the door frame 24 through the snap-in groove provided on the outer surface of the door frame 24. A door panel is provided inside the door frame 24, and the door frame 24 can be directly inserted into the third wall panel 14 through the snap-in groove of the door frame 24, thereby simplifying the installation process of the door frame 24 and reducing the workload of the workers.

[0030] like Figure 1 , Figure 2 and Fig.10 As shown, a window frame 25 is provided inside the second wall panel 13, and a snap-in groove is provided on the outer surface of the window frame 25. The second wall panel 13 is slidably connected with the window frame 25 through the snap-in groove provided on the outer surface of the window frame 25. A visible window is provided inside the window frame 25, and the window frame 25 can be directly snapped into the second wall panel 13 through the snap-in groove of the window frame 25, thereby simplifying the installation process of the window frame 25 and reducing the workload of workers.

[0031] like Figure 1 , Figure 2 and Fig.10 As shown, a ventilation frame 26 is provided inside the second wall panel 13, and a snap-in groove is provided on the outer surface of the ventilation frame 26. The second wall panel 13 is slidably plugged with the ventilation frame 26 through the snap-in groove provided on the outer surface of the ventilation frame 26. A ventilation plate with ventilation holes is provided inside the ventilation frame 26. The ventilation frame 26 can be directly inserted into the second wall panel 13 through the snap-in groove of the ventilation frame 26, which simplifies the installation process of the ventilation frame 26 and reduces the workload of workers. like Fig.19 As shown, the pitch of the first threaded portion 1504 is greater than the pitch of the second threaded portion 1506, which enables the positioning plate 1505 and the threaded tube 1507 to move at different speeds, so that when the positioning plate 1505 passes through the through hole 16 and the positioning hole 17 to restrict the overlapping portion 4, the first insertion rod 1508 is completely inserted into the first insertion hole 19.

[0032] Working principle: When installing the clean room, place the frame 1 in a suitable position, and sleeve the overlapping parts 4 at both ends of the bottom plate 3 on the overlapping plate 2 of the T-shaped structure through the grooves inside the bottom plate 3, so that the bottom plate 3 is arranged neatly, and the top plate 6 is fixed on the top of the support plate 5 through the first screw 7, so that the top plate 6 is arranged neatly. After the installation of the bottom plate 3 and the top plate 6 is completed, the first wall panel 12, the second wall panel 13, and the third wall panel 14 are installed between the lower installation groove 9 and the upper installation groove 11 in a certain order. When installing the second wall panel 13, it is necessary to first insert the window frame 25 and the ventilation frame 26 between the two second wall panels 13. When installing the third wall panel 14, it is necessary to first insert the door frame 24 between the two third wall panels 14. During the installation of the wall panel, the positioning structure 15 can be used to position the wall panel. Use the positioning structure 15 to position the wall panel. When the bottom plate 3 is in position, the positioning structure 15 is inserted into the lower mounting plate 8 through the plug plate 1503 and the slot 18, and the screw rod 1502 is rotated to drive the positioning plate 1505 and the threaded tube 1507 to move forward, so that the positioning plate 1505 passes through the through hole 16 and the positioning hole 17 in turn, and the wall panel is positioned respectively to limit the lateral movement of the wall panel. After the positioning plate 1505 passes through the positioning hole 17, it will be placed on the upper surface of the overlapping part 4 at both ends of the bottom plate 3 to position the bottom plate 3. When the threaded tube 1507 moves forward, it will drive the first plug rod 1508 to be inserted into the first plug hole 19, so as to position and reinforce the positioning structure 15 and improve the stability of the connection between the positioning structure 15 and the lower mounting plate 8. When the positioning structure 15 is installed, the enclosure 20 is fixed to the lower mounting plate 8 by the second screw rod 21, and the overall clean room installation is completed.

[0033] Although specific embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the specific embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A new energy modular clean room, comprising a frame (1), characterized in that: Both sides of the bottom inner wall of the frame (1) are fixedly connected with lap plates (2), the upper surfaces of the two lap plates (2) are slidably connected with base plates (3) arranged at equal intervals, both ends of each base plate (3) are provided with lap portions (4), and the two ends of the base plate (3) are respectively slidably sleeved with the lap plates (2) through the lap portions (4), and both sides of the top inner wall of the frame (1) are fixedly connected with support plates (5), the upper surfaces of the two support plates (5) are provided with top plates (6) arranged at equal intervals, and the bottom surface of each top plate (6) is fixedly connected with two first screw rods (7), the outer circumferential surface of the first screw rod (7) is slidably plugged into the top plate (6) through a mounting hole provided inside the top plate (6), and the outer circumferential surface of each first screw rod (7) is threadedly connected with a nut; Four lower mounting plates (8) are fixedly connected to the bottom of the outer wall of the frame (1), and each of the lower mounting plates (8) is provided with a lower mounting groove (9) therein. Four upper mounting plates (10) are fixedly connected to the top of the outer wall of the frame (1), and each of the upper mounting plates (10) is provided with an upper mounting groove (11) therein. A first wall panel (12), a second wall panel (13) and a third wall panel (14) are slidably connected between the lower mounting grooves (9) and the upper mounting grooves (11). The bottom is provided with equidistantly arranged positioning structures (15), the positioning structure (15) comprising a base (1501), the base (1501) is internally rotatably connected to a screw rod (1502), one end of the base (1501) close to the lower mounting plate (8) is provided with two plug plates (1503), the outer circumferential surface of the screw rod (1502) is provided with a first threaded portion (1504), and the screw rod (1502) is threadedly connected to a positioning plate (1505) via the first threaded portion (1504). ), the outer circumferential surface of the screw rod (1502) is provided with a second threaded portion (1506), the screw rod (1502) is threadedly connected to a threaded tube (1507) via the second threaded portion (1506), the outer circumferential surface of the threaded tube (1507) is fixedly connected to two first plug rods (1508), the outer circumferential surface of the first plug rods (1508) is slidably plugged into the inside of the base (1501), the inside of the lower mounting plate (8) is provided with equidistantly arranged through holes (16), the The bottoms of the first wall panel (12), the second wall panel (13) and the third wall panel (14) are all provided with positioning holes (17); the interior of the lower mounting plate (8) is provided with slots (18) arranged at equal intervals; the plug plates (1503) are respectively slidably plugged into the lower mounting plate (8) via the slots (18); the interior of the lower mounting plate (8) is provided with first plug holes (19) arranged at equal intervals; the first plug rods (1508) are respectively slidably plugged into the lower mounting plate (8) via the first plug holes (19).

2. A new energy modular clean room according to claim 1, characterized in that: The positioning plate (1505) is slidably plugged into the lower mounting plate (8) through the through holes (16), and the positioning plate (1505) is slidably plugged into the first wall plate (12), the second wall plate (13), and the third wall plate (14) through the positioning holes (17). The bottom surface of the front end of the positioning plate (1505) contacts the upper surface of the overlapping portion (4).

3. The new energy modular clean room according to claim 1, characterized in that: The lap plate (2) is of a T-shaped structure, and a groove adapted to the top end of the lap plate (2) is provided inside the lap portion (4).

4. The new energy modular clean room according to claim 1, characterized in that: The plug board (1503) is a T-shaped structure, and the slot (18) is a T-shaped structure.

5. The new energy modular clean room according to claim 1, characterized in that: Four enclosures (20) are provided at the bottom of the frame (1), and the enclosures (20) are respectively erected outside the positioning structure (15), wherein a slope is provided at the front end of the enclosure (20) on the front side.

6. The new energy modular clean room according to claim 5, characterized in that: Two second screw rods (21) are fixedly connected to the upper surface of the lower mounting plate (8); the second screw rods (21) are slidably plugged into the enclosure plate (20) through mounting holes provided at both ends of the enclosure plate (20); and a nut is threadedly connected to the outer circumferential surface of each second screw rod (21).

7. The new energy modular clean room according to claim 5, characterized in that: The bottom surface of each enclosure (20) is fixedly connected to second insertion rods (22) arranged at equal intervals, and the interior of each lower mounting plate (8) is provided with second insertion holes (23) arranged at equal intervals, and the second insertion rods (22) are slidably plugged into the lower mounting plate (8) through the second insertion holes (23).

8. The new energy modular clean room according to claim 1, characterized in that: A door frame (24) is provided inside the third wall panel (14), a clamping groove is provided on the outer surface of the door frame (24), the third wall panel (14) is slidably plugged with the door frame (24) via the clamping groove provided on the outer surface of the door frame (24), and a door panel is provided inside the door frame (24).

9. The new energy modular clean room according to claim 1, characterized in that: A window frame (25) is provided inside the second wall panel (13), a snap-in groove is provided on the outer surface of the window frame (25), the second wall panel (13) is slidably plugged into the window frame (25) via the snap-in groove provided on the outer surface of the window frame (25), and a visible window is provided inside the window frame (25).

10. The new energy modular clean room according to claim 1, characterized in that: A ventilation frame (26) is provided inside the second wall panel (13), and a snap-in groove is provided on the outer surface of the ventilation frame (26). The second wall panel (13) is slidably plugged into the ventilation frame (26) via the snap-in groove provided on the outer surface of the ventilation frame (26). A ventilation plate with ventilation holes is provided inside the ventilation frame (26), and the pitch of the first threaded portion (1504) is greater than the pitch of the second threaded portion (1506).