Intelligent fast-assembly type operation room and installation method

By dividing the operating room into prefabricated modules and adopting prefabricated assembly technology, the problems of complex and low efficiency in traditional operating room construction are solved, and rapid installation and disassembly are achieved to meet the needs of various occasions.

CN120684032APending Publication Date: 2025-09-23CHINA CONSTR FOURTH ENG DIV CORP LTD
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Patent Information

Application Number
CN202510803586.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-17
Publication Date
2025-09-23

AI Technical Summary

Technical Problem

The construction procedures of traditional operating rooms are complicated, the construction efficiency is low, and they cannot adapt to the needs of various occasions.

Method used

The operating room is divided into multiple prefabricated modules, which are prefabricated in the factory and assembled on site. Sliders and slide grooves are used to achieve quick connection, and elastic parts and locking nuts are used to ensure the reliability of fixation.

Benefits of technology

Greatly improve construction efficiency, achieve rapid installation and disassembly, adapt to the needs of various occasions, and ensure connection reliability and stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an intelligent fast-assembly type operation room and an installation method, the intelligent fast-assembly type operation room comprises a bottom keel, a middle keel and a top keel, the bottom keel is connected to the ground, the middle keel is connected to the bottom keel, and the top keel is connected to the middle keel; the middle keel is detachably connected with a middle panel wall, and the top keel is detachably connected with a top panel module; an auxiliary module for placing instruments required by an operation is arranged on the middle panel wall, and an intelligent module for assisting the operation is arranged on the top panel; a floor is installed in the middle of the bottom keel, and a ventilation pipeline is installed on the top panel module. The operation room is divided into a plurality of prefabricated modules, the construction efficiency is greatly improved by means of prefabrication in a factory and on-site assembly, meanwhile, the main body part is of a detachable structure, disassembly and displacement are convenient, and the operation room can adapt to various occasions.
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Description

Technical Field

[0001] The present application relates to the technical field of assembled operating rooms, and in particular to an intelligent quick-assembly operating room and an installation method. Background Art

[0002] The operating room is a place where patients undergo surgery and receive emergency treatment.

[0003] When constructing a traditional operating room, the cast-in-place method is generally used for the overall construction of the operating room. There are many construction procedures and the construction technology is relatively complicated. Therefore, the construction time is relatively long and the construction efficiency is low. Summary of the Invention

[0004] The purpose of this application is to provide an intelligent quick-install operating room and installation method to improve the problem that the conventional jacking method cannot be applied due to the interference between the steel frame under the bridge deck and the cable tower cross brace.

[0005] This application provides an intelligent quick-install operating room and installation method, which adopts the following technical solutions: An intelligent quick-install operating room includes a bottom keel, a middle keel and a top keel, wherein the bottom keel is connected to the ground, the middle keel is connected to the bottom keel, and the top keel is connected to the middle keel; the middle keel is detachably connected to a middle panel wall, and the top keel is detachably connected to a top panel module; the middle panel wall is provided with an auxiliary module for placing equipment required for surgery, and the top panel is provided with an intelligent module for assisting surgery; a floor is installed in the middle of the bottom keel, and a ventilation duct is installed on the top panel module.

[0006] By adopting the above technical solution, the operating room is divided into multiple prefabricated modules, and the construction efficiency is greatly improved through prefabrication in the factory and assembly on site. At the same time, the main parts are all detachable structures, which are convenient for disassembly and displacement and can adapt to various occasions.

[0007] Optionally, the bottom keel is formed by splicing together several first profiles, the first profile includes a first main body and a first connecting part, two first plane panels are connected to the first main body, the first connecting part includes two first vertical panels, the two first vertical panels are connected to the two first plane panels, and a connecting groove is formed between the two first vertical panels; the middle keel includes several second profiles, the bottom of the second profile is inserted into the connecting groove, and a quick-release component is connected to the second profile, and the quick-release component is detachably connected to the first vertical panel.

[0008] By adopting the above technical solution, the second profile is inserted into the connecting groove so as to be connected with the first profile.

[0009] Optionally, the quick-release assembly includes a slider and a pushing block, two sliders are provided along the width direction of the connecting groove, the first vertical plate is provided with a sliding groove for inserting the slider, the pushing block is provided between the two sliders, and two pushing inclined surfaces are provided on the side wall of the pushing block, the pushing inclined surfaces are in contact with the slider to make the two sliders move away from each other when the pushing block moves; when the side wall of the pushing block is in contact with the slider, the slider is in an extended state.

[0010] By adopting the above technical solution, the connection between the first profile and the second profile is achieved through the cooperation of the slider and the slide groove, and the connection is relatively fast and reliable.

[0011] Optionally, the bottom of the second profile is connected to a quick-release frame, the slider and the push block are both installed in the quick-release frame, the quick-release frame is inserted into the bottom of the second profile, the bottom of the quick-release frame is fixedly connected to a quick-release base plate, and the quick-release base plate abuts against the bottom of the second profile.

[0012] By adopting the above technical solution, the slider and the push block are installed on the quick-install frame, and then the quick-install frame is connected to the second profile, which reduces the processing difficulty and can strengthen the strength of the bottom of the second profile.

[0013] Optionally, a first elastic member is provided between the top of the quick-release frame and the pushing block, and the first elastic member applies elastic force to the pushing block so that the pushing block abuts against the quick-release base plate; a shift rod is threadedly connected to the side wall of the pushing block, and a shift groove is provided on the second profile and the quick-release frame for the shift block to move in the vertical direction.

[0014] By adopting the above technical solution, the first elastic member applies pressure to the push block, so that the push block can maintain abutment with the quick-release base plate, thereby keeping the slider in an extended state; the threaded connection between the lever and the push block makes it convenient to connect the lever and the push block after the quick-release frame is installed in the second profile.

[0015] Optionally, an anti-slip plate is provided on the slider, and a second elastic member is sleeved on the slider, one end of the second elastic member abuts against the quick-release frame, and the other end abuts against the anti-slip plate.

[0016] By adopting the above technical solution, the second elastic member can automatically retract the slider into the quick-install frame when the pushing block moves upward, and the anti-slip block can cooperate with the pushing block to prevent the slider from detaching from the quick-install frame.

[0017] Optionally, two first inclined plates are connected to the bottom of the first main body, a second planar plate is connected between the two first inclined plates, a bottom hole is provided on the second planar plate for the ground nail to pass through, and the part of the ground nail passing through the second planar plate is threadedly connected with a locking nut, and the bottom of the locking nut abuts against the second planar portion.

[0018] By adopting the above technical solution, the locking nut is threadedly connected to the ground nail, so that the first profile can be firmly fixed to the ground. The cooperation between the two first inclined plates and the second flat plate can cause a certain deformation when subjected to force, and exert a reaction force on the locking nut through deformation to prevent the possibility of the locking nut loosening, while also increasing the degree of fixation between the first profile and the ground.

[0019] Optionally, two limit rods are connected to the bottom of the pushing block, and the bottoms of the two limit rods pass through the quick-release base plate. When the pushing block abuts against the quick-release base plate, the two limit rods are located on both sides of the ground nail and above the locking nut.

[0020] By adopting the above technical solution, the limiting rod can easily limit the pushing block, and can also limit the position of the second profile through the position of the ground nail.

[0021] Optionally, two limit plates are provided at the bottom of the quick-release base plate, and a first limit groove and a second limit groove that are interconnected are formed between the two limit plates. The width of the first limit groove is smaller than the width of the second limit groove. The first limit groove is used to accommodate the part of the ground nail extending out of the locking nut, and the second limit groove is used to accommodate the locking nut.

[0022] By adopting the above technical solution, the first limiting groove and the second limiting groove facilitate avoiding the ground nails and the locking nut, so that the second profile slides in the connecting groove. At the same time, the second limiting groove can also prevent the locking nut from moving up and disconnecting from the ground nail.

[0023] An installation method comprises the following steps: S1. Install the bottom keel; S2. Connect the middle keel to the bottom keel; S3. Connect the top keel to the middle keel; S4. Install the middle panel wall on the middle keel; S5. Install the top panel module on the top keel; S6. Install flooring; S7. Install auxiliary modules on the middle panel wall; S8. Install ventilation ducts on the top panel module; S9. Install the smart module on the top panel module; S10. Install the operating room door on the middle panel wall.

[0024] In summary, this application includes at least one of the following beneficial technical effects: 1. The operating room is divided into multiple prefabricated modules, which are prefabricated in the factory and assembled on site to greatly improve construction efficiency. At the same time, the main parts are all detachable structures, which are easy to disassemble and move, and can be adapted to various occasions; 2. The first profile and the second profile are connected by the cooperation of the slider and the slide groove. The connection is fast and reliable. The first elastic member applies pressure to the push block, so that the push block can maintain abutment with the quick-release base plate, thereby keeping the slider in the extended state. During installation, the second profile and the first profile can be connected by toggling the lever. This is quick and convenient, and can improve construction efficiency. 3. The locking nut is threadedly connected to the ground nail, which can firmly fix the first profile on the ground. The cooperation between the two first inclined plates and the second flat plate can cause a certain deformation when subjected to force, and exert a reaction force on the locking nut through deformation to prevent the possibility of the locking nut loosening. At the same time, it can also increase the firmness of the fixation between the first profile and the ground. The limiting rod is convenient for limiting the pushing block, and can also limit the position of the second profile through the position of the ground nail. The second limiting groove can also prevent the locking nut from moving up and disconnecting from the ground nail. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 It is a schematic diagram of the overall structure of an intelligent quick-install operating room in the present invention.

[0026] Figure 2 It is a cross-sectional schematic diagram of the first profile in the present invention.

[0027] Figure 3 It is a schematic cross-sectional view of the quick-install assembly of the present invention.

[0028] Figure 4 yes Figure 1 A partial enlarged view of part A in the middle.

[0029] In the figure, 1, bottom keel; 11, first profile; 12, first main body; 13, first connecting portion; 14, first flat plate; 15, first vertical plate; 151, connecting groove; 152, slide groove; 16, first inclined plate; 17, second flat plate; 171, locking nut; 18, second inclined plate; 181, inclined groove; 19, first T-slot; 191, reinforcement plate; 2, middle keel; 21, second profile; 22, quick-release frame; 221, quick-release bottom plate ; 23. Quick-release assembly; 231. Slider; 232. Push block; 2321. Limit rod; 2322. Limit plate; 2323. First limiting groove; 2324. Second limiting groove; 2325. Fitting block; 233. Pushing slope; 234. First elastic member; 235. Push rod; 236. Push groove; 237. Second elastic member; 238. Anti-slip plate; 24. Second T-slot; 3. Top keel; 4. Middle panel wall; 5. Top panel module; 6. Ground nail. DETAILED DESCRIPTION

[0030] The present invention will now be described in further detail with reference to the accompanying drawings, which are simplified schematic diagrams that illustrate the basic structure of the present invention in a schematic manner.

[0031] In the description of the present invention, it should be understood that the terms "center," "longitudinal," "transverse," "length," "width," "thickness," "upper," "lower," "front," "back," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," "circumferential," and the like, indicating positions or relationships, are based on the positions or relationships shown in the accompanying drawings and are intended solely to facilitate the description of the present invention and simplify the description. They are not intended to indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation, and therefore should not be construed as limiting the present invention. Furthermore, features defined as "first" or "second" may explicitly or implicitly include one or more of such features. In the description of the present invention, unless otherwise specified, "plurality" means two or more. In the description of the present invention, it should be noted that, unless otherwise specified or limited, the terms "mounted," "connected," and "connected" should be broadly understood, for example, to mean fixed, removable, or integral; mechanically or electrically connected; directly or indirectly through an intermediary; or internally connected between two components. For those skilled in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0032] Example An intelligent quick-install operating room, referring to Figures 1 to 4, including a bottom keel 1, an intermediate keel 2, and a top keel 3. The bottom keel 1 is connected to the ground, the intermediate keel 2 is connected to the bottom keel 1, and the top keel 3 is connected to the intermediate keel 2. The intermediate panel wall 4 is detachably connected to the intermediate keel 2, and the top panel module 5 is detachably connected to the top keel 3. The intermediate panel wall 4 is provided with an auxiliary module for placing surgical equipment, and the top panel is provided with an intelligent module for assisting surgery. A floor is installed in the middle of the bottom keel 1, and a ventilation duct is installed on the top panel module 5. By dividing the operating room into multiple prefabricated modules, construction efficiency is greatly improved through prefabrication in the factory and on-site assembly. At the same time, the main parts are all detachable structures, which are convenient for disassembly and displacement, and can be adapted to various occasions.

[0033] The bottom keel 1 is formed by splicing together a plurality of first profiles 11. The bottom keel 1 formed by the plurality of first profiles 11 can be rectangular. The middle position of the rectangle formed by the bottom keel 1 is also convenient for installing the floor.

[0034] Specifically, the first profile 11 includes a first main body 12 and a first connecting portion. The first main body 12 is integrally formed with two first planar panels 14. The first connecting portion includes two first vertical panels 15. The two first vertical panels 15 are integrally formed with the two first planar panels 14, and a connecting groove 151 is formed between the two first vertical panels 15. The intermediate keel 2 includes a plurality of second profiles 21. The bottoms of the second profiles 21 are inserted into the connecting grooves 151, and the second profiles 21 are inserted into the connecting grooves 151 to connect with the first profile 11. A quick-release assembly 23 is connected to the second profile 21, which is detachably connected to the first vertical panels 15.

[0035] More specifically, a quick-install frame 22 is provided at the bottom of the second profile 21, and the quick-install components 23 are installed within the quick-install frame 22. The quick-install frame 22 is inserted into the bottom of the second profile 21 and has an interference fit with the second profile 21. A quick-install base plate 221 is fixedly connected to the bottom of the quick-install frame 22, and the quick-install base plate 221 abuts the bottom of the second profile 21. Installing the quick-install components 23 on the quick-install frame 22 and then connecting the quick-install frame 22 to the second profile 21 reduces processing difficulty and simultaneously strengthens the bottom of the second profile 21.

[0036] The quick-release assembly 23 includes two sliders 231 and a push block 232. Two sliders 231 are provided along the width of the connecting slot 151. The first vertical plate 15 is provided with a chute 152 for the sliders 231 to insert. The push block 232 is positioned between the two sliders 231. Two inclined push surfaces 233 are provided on the sidewalls of the push block 232. These inclined push surfaces 233 contact the sliders 231, causing the two sliders 231 to move away from each other when the push block 232 moves. When the sidewalls of the push block 232 contact the sliders 231, the sliders 231 are extended. The cooperation between the sliders 231 and the chute 152 achieves a quick and reliable connection between the first profile 11 and the second profile 21.

[0037] A first elastic member 234 is provided between the top of the quick-release frame 22 and the push block 232. This member applies an elastic force to the push block 232, forcing it into contact with the quick-release base plate 221. A lever 235 is threadedly connected to the sidewall of the push block 232. A lever slot 236 is provided on the second profile 21 and the quick-release frame 22 for vertical movement of the lever block. The first elastic member 234 applies pressure to the push block 232, maintaining contact with the quick-release base plate 221 and, in turn, the extended slider 231. The threaded connection between the lever 235 and the push block 232 facilitates reconnection of the lever 235 to the push block 232 after the quick-release frame 22 is installed within the second profile 21. A compression spring can be employed for the first elastic member 234.

[0038] The slider 231 is provided with an anti-slip plate 238, which is sleeved with a second elastic member 237. One end of the second elastic member 237 abuts the quick-release frame 22, while the other end abuts the anti-slip plate 238. The second elastic member 237 automatically retracts the slider 231 into the quick-release frame 22 when the push block 232 moves upward. The anti-slip block then cooperates with the push block 232 to prevent the slider 231 from escaping the quick-release frame 22. The second elastic member 237 can be a compression spring.

[0039] Two first inclined plates 16 are integrally formed at the bottom of the first main body 12. A second flat plate 17 is connected between the two first inclined plates 16. The second flat plate 17 has a bottom hole for the ground spike 6 to pass through. A locking nut 171 is threadedly connected to the portion of the ground spike 6 that passes through the second flat plate 17. The bottom of the locking nut 171 abuts against the second flat portion. The locking nut 171 is threadedly connected to the ground spike 6, securely fixing the first profile 11 to the ground. The two first inclined plates 16 and the second flat plate 17 deform when subjected to force. This deformation exerts a reaction force on the locking nut 171, preventing it from loosening and increasing the securement of the first profile 11 to the ground. The two first inclined plates 16 also reduce the contact area between the first profile 11 and the ground, increasing local pressure and ensuring the stability of the first profile 11.

[0040] Two limiting rods 2321 are connected to the bottom of the push block 232. The bottoms of the two limiting rods 2321 pass through the quick-release base plate 221. When the push block 232 abuts the quick-release base plate 221, the two limiting rods 2321 are located on either side of the ground spike 6 and above the locking nut 171. The limiting rods 2321 facilitate limiting the position of the push block 232 and also limit the position of the second profile 21 based on the position of the ground spike 6.

[0041] The bottom of the quick-release base plate 221 is provided with two retaining plates 2322. A first retaining groove 2323 and a second retaining groove 2324 are formed between the retaining plates 2322. The width of the first retaining groove 2323 is smaller than that of the second retaining groove 2324. The first retaining groove 2323 is used to accommodate the portion of the ground spike 6 that extends beyond the locking nut 171, while the second retaining groove 2324 is used to accommodate the locking nut 171. The first retaining groove 2323 and the second retaining groove 2324 facilitate clearance between the ground spike 6 and the locking nut 171, allowing the second profile 21 to slide within the connecting groove 151. The second retaining groove 2324 also prevents the locking nut 171 from moving upward and disconnecting from the ground spike 6.

[0042] Two fitting blocks 2325 are also hinged on the quick-release base plate 221. The first vertical portion is integrally formed with a second inclined plate 18. An inclined groove 181 for accommodating the fitting block 2325 is formed between the first inclined plate 16 and the second inclined plate 18. When the second profile 21 is inserted into the connecting groove 151, the fitting block 2325 is also inserted into the inclined groove 181 to increase the bearing capacity of the first profile 11, reduce the possibility of plastic deformation of the first profile 11, and improve the stability and reliability of the connection between the first profile 11 and the second profile 21.

[0043] The sidewall of the first profile 11 has a first T-slot 19 extending along its length. A reinforcing plate 191 is provided on the first profile 11. A first T-bolt slides within the first T-slot 19, passes through the reinforcing plate 191, and is threadedly connected to a first retaining nut. A second T-slot 24 extends along its length on the sidewall of the second profile 21. A second T-bolt slides within the second T-slot 24, passes through the reinforcing plate 191, and is threadedly connected to a second retaining nut. The reinforcing plate 191 further enhances the reliability of the connection between the first and second profiles 11 and 21.

[0044] An installation method comprises the following steps: S1. Install the bottom keel 1. During installation, place the first profile 11 on the ground, pass the ground spike 6 through the second flat plate 17, and then thread the locking nut 171 into the ground spike 6 to fix the first profile 11 to the ground.

[0045] S2. Connect the middle keel 2 to the bottom keel 1. During installation, insert the second profile 21 into the connecting groove 151, insert the fitting block 2325 into the inclined groove 181, and then move the lever 235 to insert the slider 231 into the sliding groove 152. At the same time, the two limiting rods 2321 are located on both sides of the part of the ground nail 6 exposed above the locking nut 171.

[0046] S3, connecting the top keel 3 to the middle keel 2. The top keel 3 is made of the third profile, and the third profile is fixedly connected to the second profile 21 by bolts.

[0047] S4. Install the middle panel wall 4 on the middle keel 2. The middle panel wall 4 is composed of a plurality of middle panels, each of which is embedded between two adjacent second profiles 21.

[0048] S5. Install the top panel module 5 on the top keel 3. The top panel module 5 is composed of a plurality of top panels, and the top panels are embedded between adjacent third profiles.

[0049] S6. Install the floor. The floor is installed in the middle of the rectangle formed by the plurality of first profiles 11.

[0050] S7. Install auxiliary modules on the middle panel wall 4. The auxiliary modules can be cold cabinets, hot cabinets, or instrument cabinets, etc., and can be embedded in the middle panel.

[0051] S8. Install ventilation ducts on the top panel module 5. The ventilation ducts are installed on the top panel and communicate with the operating room for ventilation. The ventilation ducts are connected to a filter module to filter the air entering and exiting the ventilation ducts.

[0052] S9. Install an intelligent module on the top panel module 5. The intelligent module can be a shadowless lamp, an equipment pendant, or an anesthesia tower.

[0053] S10. Install the operating room door on the middle panel wall 4.

[0054] Working Principle: The operating room is divided into multiple prefabricated modules. Construction efficiency is greatly improved by prefabrication in the factory and assembly on site. At the same time, the main parts are all detachable structures, which are convenient for disassembly and displacement, and can be adapted to various occasions. The first profile 11 and the second profile 21 are connected by the cooperation of the slider 231 and the slide 152. The connection is relatively fast and reliable. The first elastic member 234 applies pressure to the push block 232, so that the push block 232 can maintain abutment with the quick-release base plate 221, thereby keeping the slider 231 in an extended state. During installation, the second profile 21 and the first profile 11 can be connected by toggling the lever 235. It is quick and convenient and can improve construction efficiency.

[0055] The locking nut 171 is threadedly connected to the ground nail 6, which can firmly fix the first profile 11 on the ground. The cooperation between the two first inclined plates 16 and the second flat plate 17 can cause a certain deformation when subjected to force, and exert a reaction force on the locking nut 171 through deformation to prevent the locking nut 171 from loosening, while also increasing the firmness of the fixation between the first profile 11 and the ground. The limiting rod 2321 is convenient for limiting the pushing block 232, and can also limit the position of the second profile 21 through the position of the ground nail 6, and the second limiting groove 2324 can also prevent the locking nut 171 from moving up and disconnecting from the ground nail 6.

[0056] The examples of this specific embodiment are all preferred embodiments of this application and are not intended to limit the scope of protection of this application. Identical components are represented by the same reference numerals. Therefore, any equivalent changes made based on the structure, shape, and principle of this application should be included in the scope of protection of this application.

Claims

1. An intelligent quick-install operating room, characterized in that: The invention comprises a bottom keel (1), an intermediate keel (2) and a top keel (3), wherein the bottom keel (1) is connected to the ground, the intermediate keel (2) is connected to the bottom keel (1), and the top keel (3) is connected to the intermediate keel (2); The middle keel (2) is detachably connected to a middle panel wall (4), and the top keel (3) is detachably connected to a top panel module (5); The middle panel wall (4) is provided with an auxiliary module for placing equipment required for surgery, and the top panel is provided with an intelligent module for assisting surgery; A floor is installed at the middle position of the bottom keel (1), and a ventilation duct is installed on the top panel module (5).

2. The intelligent quick-install operating room according to claim 1, characterized in that: The bottom keel (1) is formed by splicing a plurality of first profiles (11), wherein the first profile (11) comprises a first main body portion (12) and a first connecting portion (13), wherein the first main body portion (12) is connected to two first plane plates (14), and the first connecting portion (13) comprises two first vertical plates (15), wherein the two first vertical plates (15) are connected to the two first plane plates (14), and a connecting groove (151) is formed between the two first vertical plates (15); The middle keel (2) includes a plurality of second profiles (21), the bottom of each second profile (21) is inserted into a connection groove (151), a quick-install component (23) is connected to the second profile (21), and the quick-install component (23) is detachably connected to the first vertical plate (15).

3. The intelligent quick-install operating room according to claim 2, characterized in that: The quick-install assembly (23) includes a slider (231) and a push block (232), two sliders (231) are provided along the width direction of the connecting groove (151), the first vertical plate (15) is provided with a sliding groove (152) for the sliders (231) to be inserted, the push block (232) is provided between the two sliders (231), and two push inclined surfaces (233) are provided on the side wall of the push block (232), the push inclined surfaces (233) are in contact with the sliders (231), so that the two sliders (231) move away from each other when the push block (232) moves; When the side wall of the pushing block (232) contacts the slider (231), the slider (231) is in an extended state.

4. The intelligent quick-install operating room according to claim 3, characterized in that: The bottom of the second profile (21) is connected to a quick-install frame (22), the slider (231) and the push block (232) are both installed in the quick-install frame (22), the quick-install frame (22) is inserted into the bottom of the second profile (21), the bottom of the quick-install frame (22) is fixedly connected to a quick-install base plate (221), and the quick-install base plate (221) abuts against the bottom of the second profile (21).

5. The intelligent quick-install operating room according to claim 4, characterized in that: A first elastic member (234) is provided between the top of the quick-install frame (22) and the pushing block (232), and the first elastic member (234) applies elastic force to the pushing block (232) to make the pushing block (232) abut against the quick-install base plate (221); A shifting rod (235) is threadedly connected to the side wall of the pushing block (232), and a shifting groove (236) for the shifting block to move in a vertical direction is provided on the second profile (21) and the quick-install frame (22).

6. The intelligent quick-install operating room according to claim 5, characterized in that: The slider (231) is provided with an anti-slip plate (238), and the slider (231) is sleeved with a second elastic member (237). One end of the second elastic member (237) abuts against the quick-install frame (22), and the other end abuts against the anti-slip plate (238).

7. The intelligent quick-install operating room according to claim 6, characterized in that: Two first inclined plates (16) are connected to the bottom of the first main body (12), a second plane plate (17) is connected between the two first inclined plates (16), a bottom hole for a ground nail (6) to pass through is provided on the second plane plate (17), a locking nut (171) is threadedly connected to the portion of the ground nail (6) passing through the second plane plate (17), and the bottom of the locking nut (171) abuts against the second plane portion.

8. The intelligent quick-install operating room according to claim 7, characterized in that: The bottom of the pushing block (232) is connected to two limiting rods (2321), and the bottoms of the two limiting rods (2321) pass through the quick-install base plate (221). When the pushing block (232) abuts against the quick-install base plate (221), the two limiting rods (2321) are located on both sides of the ground nail (6) and above the locking nut (171).

9. The intelligent quick-install operating room according to claim 7, characterized in that: Two limiting plates (2322) are provided at the bottom of the quick-release base plate (221), and a first limiting groove (2323) and a second limiting groove (2324) that are interconnected are formed between the two limiting plates (2322). The width of the first limiting groove (2323) is smaller than the width of the second limiting groove (2324). The first limiting groove (2323) is used to accommodate the portion of the ground nail (6) extending out of the locking nut (171), and the second limiting groove (2324) is used to accommodate the locking nut (171).

10. An installation method, characterized in that: The steps include: S1, installing the bottom keel (1); S2, connecting the middle keel (2) to the bottom keel (1); S3, connecting the top keel (3) and the middle keel (2); S4, installing the middle panel wall (4) on the middle keel (2); S5, installing the top panel module (5) on the top keel (3); S6. Install flooring; S7, installing the auxiliary module on the middle panel wall (4); S8. Install ventilation ducts on the top panel module (5); S9, installing the smart module on the top panel module (5); S10. Install the operating room door on the middle panel wall (4).