Assembled clean operating room convenient to transfer and assembling method thereof
Through modular design and rapid assembly technology, the problems of long construction cycle and inconvenient transportation of traditional clean operating rooms have been solved, realizing rapid installation and efficient transportation, which is suitable for rapid deployment and flexible transportation of clean operating rooms.
Patent Information
- Application Number
- CN202610097693.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-01-24
- Publication Date
- 2026-03-24
AI Technical Summary
Traditional clean operating rooms have long construction cycles, non-adjustable structures, and are difficult to relocate. They also have low assembly efficiency and are inconvenient to transport, making them unable to meet the needs for rapid deployment and flexible transport, especially when responding to public health emergencies or renovating hospital interior spaces.
Adopting a modular design, it enables rapid assembly and disassembly through components such as positioning columns, pins, and stoppers. It utilizes folding plates and a detachable top cover to improve space utilization, and combines nut seats and lifting structures to simplify the installation process and achieve convenient transportation.
It improves assembly efficiency, reduces the space occupied during transport, lowers costs, and meets the needs for rapid deployment and flexible transport.
Smart Images

Figure CN121719403A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of clean operating room technology, and in particular to a modular clean operating room that is easy to transport and its assembly method. Background Technology
[0002] In modern healthcare systems, clean operating rooms serve as dedicated spaces for core medical procedures such as surgery and interventional treatments. Their construction quality directly impacts surgical success rates, postoperative infection rates, and the overall quality of medical services. By integrating key equipment such as high-efficiency air purification systems, precise temperature and humidity control systems, and differential pressure regulation systems, clean operating rooms effectively filter airborne dust particles and microorganisms, maintaining a constant temperature and humidity, sterile and dust-free environment. This minimizes the risk of surgical infection and provides a safe guarantee for complex surgeries, making them an indispensable core infrastructure for medical institutions at all levels.
[0003] However, traditional clean operating rooms mostly adopt a fixed building model, which has problems such as long construction period, non-adjustable structure, and difficulty in relocation. Especially when responding to public health emergencies or hospital internal space renovation, traditional operating rooms cannot meet the needs of rapid deployment and flexible transfer. At present, some modular or mobile operating room solutions have emerged in the existing technology, but most of them use integral wall modules. During installation, each wall unit requires a large number of hoisting equipment and various special tools for on-site assembly, resulting in low assembly efficiency. Moreover, these integral wall modules occupy a lot of space during transfer, resulting in low space utilization, making transfer difficult and costly. Therefore, those skilled in the art provide a modular clean operating room that is easy to transfer and its assembly method to solve the problems mentioned in the background technology. Summary of the Invention
[0004] The purpose of this invention is to solve the problems of inconvenient transportation and low assembly efficiency caused by the use of integral modular walls in existing assembled clean operating rooms, and to propose an assembled clean operating room that is easy to transport and its assembly method.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a modular clean operating room that is easy to transport, comprising four sets of positioning columns installed on the ground by means of insertion columns, wherein one set of positioning columns has several sets of positioning pins on one side and several sets of pins on the other side, and further comprising: a folding plate installed on the inner side of the positioning column by means of pins; a first side plate installed on one side of the positioning column by means of positioning pins; a top cover that can be quickly assembled on the top of the four sets of positioning columns by means of a limiter; a second side plate that is suspended at the bottom of the top cover by means of a set assembly; and a rear baffle that is slidably installed at the bottom of the top cover, wherein several sets of top panels are suspended between the rear baffle and the top of the folding plate by means of a hoisting device.
[0006] As a further description of the assembled clean operating room that facilitates transportation, as described above: the folding panel is assembled from two sets of single panels by hinges, and a normally open door and a sealed door are respectively installed inside the folding panel. Positioning grooves are provided on the inner side of both sets of folding panels, and the pins passing through the positioning grooves are limited by stoppers.
[0007] As a further description of the above-mentioned technology for a modular clean operating room that is easy to transport: the stop includes a reset torsion bar rotatably installed inside a rotating groove, the rotating groove being opened on the bottom side of the positioning groove, a stop bar integrally connected to the top of the reset torsion bar to limit the pin, and a stop plate fixedly provided on the outer side of the stop bar.
[0008] As a further description of the assembled clean operating room that is easy to transport, as described above: a load-bearing column is integrally provided at the central ridge of the first side panel, the load-bearing column is separated from the ventilation sleeve, and a sleeve frame is fixedly provided on both sides of the ventilation sleeve, and a cabinet is embedded inside the sleeve frame.
[0009] As a further description of the above-mentioned technology for a conveniently transportable assembled clean operating room: the limiter includes splicing bolts integrally welded to the top of the top cover, which are spliced together to form a complete bolt column and secured by a nut seat with a threaded sleeve. A threaded sleeve rod is installed on the inner thread of the bottom end of the nut seat, and the threaded sleeve rod passes through a set of top splicing plates. A mounting seat is integrally formed at the bottom end of the threaded sleeve rod.
[0010] As a further description of the assembled clean operating room that facilitates transportation, as described above: a limiting bolt is fixedly provided on the top of the rear baffle, and a sliding groove is provided on the bottom of the top cover. The limiting bolt can be inserted into the sliding groove at the bottom of the top cover through a mounting bracket. A clip head is engaged in the bracket installed on one side of the top of the rear baffle. The clip head is connected to one end of the top panel, and the other end of the top panel abuts against one side of the folding plate, with its protrusion pressing against the top of the folding plate.
[0011] As a further description of the assembled clean operating room that facilitates transportation, the above-mentioned technology includes a T-shaped insert rod integrally connected to the top of the second side plate, the T-shaped insert rod being fitted into a T-shaped slot, and a rotatable locking block being installed in the positioning columns located on both sides of the second side plate.
[0012] As a further description of the above-mentioned technology for a modular clean operating room that is easy to transport: the top panel is covered by a lasso at one end of the top of the folding panel, the lasso is hooked to the bottom side of the nail post, the nail post is fixedly installed on the top of the folding panel, and the top of the nail post is provided with a limiting ring block, and each group of nail posts passes through the inner groove opened at the bottom of the top cover.
[0013] As a further description of the assembled clean operating room that facilitates transportation, as described above: a top positioning post is provided on the top of the positioning column, the top positioning post is inserted into a corresponding slot inside each set of top covers, and an insert post integrally set at the bottom of the positioning column provides longitudinal positioning for the positioning column.
[0014] The positioning column can fit and limit the first side plate, completing the positioning and installation of the first side plate. Then, it can be fully fixed and installed with another set of positioning columns. The two sets of positioning columns on one side can quickly limit the installation of the folding plate. With the abutment and pressing of the top panel and the hook of the lasso, the folding plate is kept stable. The second side plate is rotated and fitted into the bottom of the top cover. The rear baffle is slidably installed at the bottom of the top cover for easy disassembly and assembly.
[0015] As the skeleton of the entire operating room, the positioning column is not only fixed to the ground foundation through the bottom insert column, but more importantly, the positioning pins and bolts on its side form the quick installation base points for other large plates such as the first side plate and the folding plate. This design eliminates the need for complicated hoisting and alignment of the side plate. It can be initially positioned and supported by simply placing it against the positioning column and inserting the positioning pins or bolts, which greatly simplifies the on-site installation process. After the top cover is assembled on the top, it is hoisted onto the positioning column as a whole to form a stable top frame structure.
[0016] An assembly method for a modular clean operating room that is easy to transport includes the following steps: S1. First, two sets of diagonally positioned columns are installed in the ground beams cast in the ground using inserts, and the corresponding first side plates are fixed by fitting with positioning pins. Then, another set of positioned columns is installed on the other side of the first side plate. S2. Second, the second side plate is rotatably fitted into the T-shaped groove using the top T-shaped insert, and the second side plate is limited and fixed by the twisting of the locking blocks on both sides, so that the top of the second side plate is aligned with the bottom of the top cover. S3. Next, unfold the folding plate and insert the pin into the folding plate through the positioning groove. Due to the stop plate, the stop bar can be limited to rotate inward, thereby limiting the pin and positioning the folding plate inside the two sets of positioning columns. S4. Next, assemble the four sets of top covers, assembling the splicing bolts into a complete bolt assembly. Then, fit the nut seat bolts onto the outside of the four sets of splicing bolts to complete the installation and positioning of the top cover. The completed assembly is then lifted by a crane above the positioning columns and positioned on top of the four positioning columns using the top positioning column. The threaded sleeve can be inserted through the threaded sleeve of the top panel into the splicing bolt. The shadowless lamp can be installed in the mounting bracket at the bottom of the threaded sleeve. S5. Next, the three sets of rear baffles are slidably installed into the sliding grooves via the limiting bolts and mounting brackets. The top panel is then secured to the bracket using a clamp at one end, with the other end of the top panel abutting and pressing against the top of the folding plate. S6. Finally, install sealing strips at the joints of each part, and apply waterproof and anti-corrosion coatings to necessary parts inside and outside the operating room to maintain the airtightness and cleanliness of the operating room. Install various functional cabinets such as instrument cabinets, medicine cabinets and storage cabinets into the frame. Surgical shadowless lamps can be installed at the bottom of the top panel. Anesthesia towers can be installed on the side near the second side panel. Connect the external ventilation ducts to the pre-embedded ventilation sleeves and install the fresh air system and exhaust system.
[0017] In summary, due to the adoption of the above-mentioned easily transportable modular clean operating room and its assembly method, the beneficial effects of the present invention are as follows: 1. In the present invention, firstly, through four sets of positioning columns, not only can the first side plate be installed quickly, but also the folding plate can be installed and positioned quickly under the action of pins and stops. The top panel is used to stabilize the folding plate, and the top cover can be quickly installed and disassembled under the rotation of the nut seat. Furthermore, the rear baffle and the second side plate can be hoisted and installed. Not only can the top cover be configured, but the overall quick installation can also be achieved, improving assembly efficiency.
[0018] 2. In this invention, since the whole is assembled in a modular manner, the disassembled baffles are more convenient for transportation. Furthermore, the front is made of folding plate and the rear baffle is spliced and installed, which makes it easier to disassemble and transport. The top cover is also disassembled and can be stacked during transportation, which improves space utilization. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the overall installation structure of the present invention;
[0020] Figure 2 This is a schematic diagram of the overall top-removing mounting structure of the present invention;
[0021] Figure 3 This is a schematic diagram of the installation of the internal structure of the folding plate and the first side plate of the present invention;
[0022] Figure 4 This is a schematic diagram of the top cover assembly of the present invention;
[0023] Figure 5 This is a schematic diagram of the connection between the nut seat and the mounting base of the present invention;
[0024] Figure 6 This is a schematic diagram of the positioning column structure on one side of the folding plate of the present invention;
[0025] Figure 7 For the present invention Figure 2 Enlarged view of section A in the middle structure;
[0026] Figure 8 This is a schematic diagram of the internal structure and connection of the folding plate of the present invention;
[0027] Figure 9 This is a schematic diagram of the folding plate structure of the present invention;
[0028] Figure 10 This is a schematic diagram of the connection between the rear baffle and the top cover of the present invention;
[0029] Figure 11 This is a schematic diagram of the connection between the second side plate and the top cover of the present invention.
[0030] Figure 12 This is a schematic diagram of the bottom part of the top cover of the present invention;
[0031] Figure 13 For the present invention Figure 9 Enlarged view of section A in the middle structure.
[0032] Legend:
[0033] 10. Positioning column; 101. Positioning pin; 102. Bolt; 103. Top positioning column; 104. Insert column; 11. Folding panel; 111. Normally open door; 112. Sealed door; 113. Nail column; 114. Positioning groove; 115. Hinge; 116. Stop bar; 117. Turning groove; 118. Return torsion bar; 119. Stop plate; 12. First side panel; 121. Frame; 122. Fitted cabinet; 123. Load-bearing column; 124. Ventilation sleeve; 13. Rear baffle; 131. Limit bolt; 132. Card holder; 14. Second side plate; 141. T-shaped insert; 142. Card block; 15. Top cover; 151. Splicing bolt; 152. Nut seat; 153. Mounting card holder; 154. Sliding groove; 155. Inner groove; 156. Threaded sleeve; 157. Mounting seat; 158. T-shaped swivel; 20. Top splice plate; 21. Lasso; 22. Card head. Detailed Implementation
[0034] The following will describe, with reference to the accompanying drawings of the embodiments of the present invention, a modular clean operating room that is easy to transport and its assembly method. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. 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.
[0035] like Figure 1 - Figure 13 As shown, the present invention provides a modular clean operating room that is easy to transport. Its main advantages lie in its high degree of modularity, rapid plug-in assembly, and extreme space compression during transport. It includes four sets of positioning columns 10 positioned on the ground via insertion columns 104. Each positioning column 10 has several sets of positioning pins 101 on one side and several sets of bolts 102 on the other side. It also includes a folding plate 11 positioned inside the positioning columns 10 via bolts 102. The folding plate 11 can be folded and flipped during transport to improve space utilization. The positioning pins 101 limit the space... The first side plate 12 is installed on one side of the positioning column 10. The positioning pin 101 passes through the corresponding first side plate 12 to complete the quick positioning of the first side plate 12. The top cover 15 on the top of the four positioning columns 10 can be quickly assembled by the limiter. The assembled top cover 15 can be disassembled and stacked during transportation to save space. The second side plate 14 is installed at the bottom of the top cover 15 by the kit component, which facilitates quick disassembly and assembly of the second side plate 14. The rear baffle 13 is slidably installed at the bottom of the top cover 15. Several sets of top splicing plates 20 are hoisted between the rear baffle 13 and the top of the folding plate 11 by a hoist.
[0036] Specifically, the positioning column 10 can engage and limit the first side plate 12 and the second side plate 14, completing the positioning and installation of the first side plate 12 and the second side plate 14. Then, it can be fully fixed and installed in conjunction with the other two sets of positioning columns 10. The two sets of positioning columns 10 on one side can quickly limit the installation of the folding plate 11. The rear baffle 13 is slidably installed at the bottom of the top cover 15 for easy disassembly and assembly.
[0037] The positioning column 10 serves as the skeleton of the entire operating room. It is not only fixed to the ground foundation through the bottom insert column 104, but more importantly, the positioning pins 101 and bolts 102 on its side form the quick installation base points for other large plates such as the first side plate 12, the second side plate 14, and the folding plate 11. This design eliminates the need for complicated hoisting and alignment of the side plates. They can simply be placed against the positioning column 10 and the positioning pins 101 or bolts 102 can be inserted to complete the initial positioning and load-bearing, which greatly simplifies the on-site installation process. After the top cover 15 is assembled at the top, it is hoisted onto the column as a whole to form a stable top frame structure.
[0038] In this embodiment, please refer to Figure 1 , Figure 7 , Figure 8 and Figure 11 The folding plate 11 is assembled from two sets of single plates hinged together by hinges 115. A normally open door 111 and a sealed door 112 are installed inside the folding plate 11. By embedding the normally open door and the sealed door inside the folding plate, installation can be completed more quickly, and the space of the two sets of doors is saved during transportation. Positioning grooves 114 are provided on the inner sides of both sets of folding plates 11. A pin 102 passing through the positioning groove 114 is limited by a stopper. The stopper includes a return torsion bar 118 rotatably installed inside a rotating groove 117. The rotating groove 117 is located on the bottom side of the positioning groove 114. A stop bar 11 is integrally connected to the top of the return torsion bar 118. Six pairs of pins 102 are limited, and a stop plate 119 is fixedly provided on the outer side of the stop bar 116. When the pin 102 is pushed into the positioning groove 114, the stop bar 116 will rotate inward and retract under the inward pressing force of the pin 102. After the pin 102 is fully inserted into the positioning groove 114, the stop bar 116 will automatically spring up and reset under the action of the reset torsion bar 118. Under the action of the stop plate 119, the stop bar 116 cannot rotate outward. When the pin 102 presses the stop bar 116 outward, it can prevent the pin 102 from falling out of the positioning groove, thereby limiting the pin 102 and preventing the folding plate 11 from automatically disengaging.
[0039] Specifically, the folding plate 11 can be folded and unfolded under the action of the hinge 115. Folding and storing it during transportation can save more space, and when placed upright, it can effectively protect the normally open door 111 and the sealed door 112 installed inside. Under the action of the stop plate 119, the reset torsion bar 118 cannot drive the stop bar 116 to rotate outward. Therefore, the pin 102 is completely limited in the positioning groove 114, thereby unfolding and installing the folding plate 11.
[0040] In this embodiment, please refer to Figure 2 and Figure 3 The first side panel 12 has a load-bearing column 123 at the ridge, and a ventilation sleeve 124 is pre-embedded on its outer side for subsequent installation of fresh air and exhaust systems. The sleeves 121 on both sides of the ventilation sleeve 124 can be directly embedded into the cabinet 122, such as an instrument cabinet or medicine cabinet, to achieve functional integration and reduce on-site installation procedures. The second side panel 14 is connected to the first side panel 12 and the corresponding positioning column 10 through positioning pins 101.
[0041] Specifically, the load-bearing column 123 can support the first side panel, preventing excessive pressure on the cabinet 122 and ventilation sleeve 124 from causing the first side panel 12 to deform under excessive pressure. The cabinet 122 can not only achieve rapid installation, but also reduce the difficulty of on-site assembly.
[0042] In this embodiment, please refer to Figure 4 , Figure 5 , Figure 10 and Figure 11The top cover 15 is assembled on-site from four plates. Each top cover 15 has a splicing bolt 151 welded to its top. When the top covers 15 are assembled, the splicing bolts 151 at their tops form a complete bolt. Then, a nut seat 152 is inserted from above and tightened to securely lock the four sets of top covers 15 together. The locked top cover plates are easier to hoist onto the top of the positioning columns 10. The bottom end of the nut seat 152 has a threaded sleeve 156 installed internally. The threaded sleeve 156 passes through a set of top splicing plates 20 and has an integrally formed mounting base 157 at its bottom end. The mounting base 157 can be used to hoist and install surgical shadowless lamps. The T-shaped insert 141 integrally connected to the top of the second side plate 14 is snapped into the T-shaped rotating groove 158. The positioning columns 10 located on both sides of the second side plate 14 also have rotatable locking blocks 142 installed inside, which can rotate and hoist the second side plate 14 to the bottom of the top cover 15. The locking block 142 limits the second side plate, keeping the second side plate 14 in contact with the top cover 15 and fixing the second side plate 14. The top cover 15 is inserted and positioned into the top positioning post 103 of the positioning post 10 through the slot at its bottom, so that the top cover plate can be stably installed on the top of the positioning post 10. The rear baffle 13 suspended at the bottom of the top cover 15 adds counterweight, making the top cover plate more stable when in use. The sliding groove 154 at the bottom of the top cover 15 is used for sliding and hoisting the rear baffle 13. The top of the rear baffle 13 is provided with a limiting bolt 131. During installation, the limiting bolt 131 is aligned with the mounting bracket 153 at the bottom of the top cover 15 and inserted, and then slid inward along the sliding groove 154 to complete the suspension installation of the three sets of rear baffles 13. After the last set of rear baffles 13 is installed, it can be simply limited, such as by installing a sliding baffle, to prevent it from loosening and falling. The operation is simple.
[0043] By breaking down the parts into a whole, the top cover 15 can be quickly assembled without reducing the structural strength. Furthermore, the nut seat 152 serves as the splicing point and the hoisting position, facilitating hoisting. During transportation, it can be broken down into parts to reduce the space occupied during transportation and make it easier to transport.
[0044] In this embodiment, please refer to Figure 2 , Figure 6 and Figure 10A locking head 22 is engaged in a locking seat 132 installed on one side of the top of the rear baffle 13. The locking head 22 is connected to one end of the top panel 20, and the other end of the top panel 20 abuts against one side of the folding plate 11. Its protrusion presses against the top of the folding plate 11, which can abut against the folding plate 11 and maintain its stability. The locking method between the locking head 22 and the locking seat 132 can fix one end of the top panel 20 and maintain its stability. A lasso 21 is provided at the end of the top panel 20 that presses against the top of the folding plate 11. The lasso 21 is hooked to the bottom side of the nail post 113. By hooking one end of the top panel 15 to the nail post 113 via the lasso 21, the top panel 15 and the folding plate 11 are connected by force, which can improve the stability of the folding plate 11 and the top panel 15. Qualitatively, the nail post 113 is fixedly installed on the top of the folding plate 11, and a limiting ring block is provided on the top. Each set of nail posts 113 passes through the inner groove 155 opened at the bottom of the top cover 15. The other end of the top splicing plate 20 is used to stabilize the folding plate 11, which can make the folding plate 11 more stable after installation. The top positioning post 103 set on the top of the positioning post 10 is inserted into the corresponding slot inside each set of top covers 15. The insert post 104 integrally set at the bottom of the positioning post 10 provides longitudinal positioning for the positioning post 10, which can stabilize the positioning post 10 first and facilitate subsequent assembly. The modular components, together with the pins, stoppers, positioning inserts and limiting sliding installation, can quickly achieve assembly and reduce the number of installation personnel and machines, thereby reducing assembly costs.
[0045] An assembly method for a modular clean operating room that is easy to transport includes the following steps: S1. First, two sets of diagonally positioned positioning columns 10 are positioned and installed in the ground beam cast in the ground using insert columns 104, and the corresponding first side plates 12 are fitted and fixed using positioning pins 101. Then, another set of positioning columns 10 is positioned and installed on the other side of the first side plate 12. S2. Second, the second side plate 14 is rotatably fitted into the T-shaped slot 158 using the top T-shaped insert rod 141, and the second side plate 14 is limited and fixed by the twisting of the clamps 142 on both sides, so that the top of the second side plate 14 is aligned with the bottom of the top cover 15. S3. Next, unfold the folding plate 11 and insert the pin 102 into the folding plate 11 through the positioning groove 114. Due to the stop plate 119, the stop strip 116 can only rotate inward, thereby limiting the pin 102 and limiting the folding plate 11 to be installed inside the two sets of positioning columns 10. S4. Next, assemble the four sets of top covers 15 so that the splicing bolts 151 are assembled into complete bolts. Then, bolt the nut seat 152 onto the outside of the four sets of splicing bolts 151 to complete the installation of the top cover 15. The entire assembly is then lifted by a crane above the positioning columns 10 and positioned on top of the four positioning columns 10 using the top positioning column 103. The threaded sleeve 156 is threaded through the top panel 20 and inserted into the splicing bolt 151. The shadowless lamp can be installed in the mounting seat 157 at the bottom of the threaded sleeve 156. Next, the three sets of rear baffles 13 are slidably installed into the sliding groove 154 via the mounting bracket 153 using the limit bolts 131. The top panel 20 is then engaged with the bracket 132 using the clamp 22 at one end. The other end of the top panel 20... The folding plate 11 is pressed against the top of the folding plate 11 and hooked to the nail post 113 by the lasso 21 to protect the stability of the folding plate 11 during use; S6, finally, the sealing strip is installed at the joint gaps of each part, and the necessary parts inside and outside the operating room are treated with waterproof and anti-corrosion coating to maintain the airtightness and cleanliness of the operating room. Various functional cabinets such as instrument cabinets, medicine cabinets and storage cabinets are embedded in the frame 121. The bottom of the top panel 20 can be equipped with a surgical shadowless lamp. The anesthesia tower can be installed on the side near the second side panel 14. The external ventilation duct is connected to the pre-embedded ventilation sleeve 124, and the fresh air system and exhaust system are installed.
[0046] During transport, when transport is required, disassembly and loading should be carried out according to the following principles: 1. Foldable components: Fold the folding plate 11 together, making it stand upright with the built-in door as a whole unit, maximizing space saving and protecting the door. 2. Separable panels: Loosen the nut seat 152 of the top cover 15 to separate it into four panels; slide the rear baffle 13 out of the sliding groove 154. These panels can be stacked. 3. Frame and side panels: Pull the positioning column 10 out of the ground and bundle or stand it upright together with the first side panel 12, second side panel 14, and other large flat panels in the transport tool. All connecting parts, such as the nut seat 152, should be stored in a special box and transported with the vehicle. Through the above methods, all components are in a regular plate or column form, which greatly improves the loading efficiency of the transport space and reduces the cost of a single transport.
[0047] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the present invention's technology, to provide an easily transportable assembled clean operating room and its assembly method and inventive concept, should be covered within the scope of protection of the present invention.
Claims
1. A modular clean operating room that is easy to transport, comprising four sets of positioning columns (10) installed on the ground by means of insertion columns (104), wherein one set of positioning columns (10) is provided with several sets of positioning pins (101) on one side and several sets of pins (102) on the other side, characterized in that, Also includes: The folding plate (11) installed inside the positioning column (10) is positioned by the pin (102). The first side plate (12) installed on one side of the positioning column (10) is limited by the positioning pin (101). The top cover (15) is assembled on the top of the four sets of positioning columns (10) by means of limiters. The second side plate (14) at the bottom of the top cover (15) is suspended by the kit assembly. And a rear baffle (13) that is slidably installed at the bottom of the top cover (15), and a number of top panels (20) are hoisted between the rear baffle (13) and the top of the folding plate (11) by a hoisting device.
2. The modular clean operating room for easy transport according to claim 1, characterized in that: The folding plate (11) is assembled by hinges (115) from two sets of single plates. A normally open door (111) and a sealed door (112) are installed in the folding plate (11). A positioning groove (114) is provided on the inner side of both sets of folding plates (11). The pin (102) passing through the positioning groove (114) is limited by a stopper.
3. The modular clean operating room for easy transport according to claim 2, characterized in that: The stopper includes a reset torsion bar (118) rotatably installed inside the rotating groove (117). The rotating groove (117) is opened on the bottom side of the positioning groove (114). A stop bar (116) integrally connected to the top of the reset torsion bar (118) limits the pin (102). A stop plate (119) is fixedly provided on the outer side of the stop bar (116).
4. The modular clean operating room for easy transport according to claim 1, characterized in that: The first side panel (12) has an integrally provided load-bearing column (123) at the ridge. The load-bearing column (123) separates the ventilation sleeve (124). Both sides of the ventilation sleeve (124) are fixedly provided with a sleeve frame (121). The sleeve frame (121) is fitted with a cabinet (122).
5. A modular clean operating room for easy transport according to claim 1, characterized in that: The limiter includes a splicing bolt (151) integrally welded to the top of the top cover (15). The splicing bolt (151) is used to splice together to form a complete bolt column, and is bound by a nut seat (152) threaded sleeve. The bottom end of the nut seat (152) is internally threaded with a threaded sleeve rod (156). The threaded sleeve rod (156) passes through a set of top splicing plates (20). The bottom end of the threaded sleeve rod (156) is integrally formed with a mounting seat (157).
6. The modular clean operating room for easy transport according to claim 1, characterized in that: The top of the rear baffle (13) is fixedly provided with a limiting bolt (131), and the bottom of the top cover (15) is provided with a sliding groove (154). The limiting bolt (131) can be inserted into the sliding groove (154) at the bottom of the top cover (15) through the mounting bracket (153). A clip head (22) is installed in the bracket (132) on the top side of the rear baffle (13). The clip head (22) is connected to one end of the top panel (20), and the other end of the top panel (20) abuts against one side of the folding plate (11), with its protrusion pressing against the top of the folding plate (11).
7. A modular clean operating room for easy transport according to claim 5, characterized in that: The kit includes a T-shaped insert (141) integrally connected to the top of the second side plate (14), the T-shaped insert (141) being fitted into a T-shaped slot (158), and a rotatable locking block (142) installed in the positioning columns (10) on both sides of the second side plate (14).
8. A modular clean operating room for easy transport according to claim 7, characterized in that: The top panel (20) is covered by a lasso (21) at one end of the top of the folding panel (11). The lasso (21) is hooked to the bottom side of the nail post (113). The nail post (113) is fixedly installed on the top of the folding panel (11), and the top of the nail post (113) is provided with a limiting ring block. Each set of nail posts (113) passes through the inner groove (155) opened at the bottom of the top cover (15).
9. A modular clean operating room for easy transport according to claim 5, characterized in that: The top of the positioning column (10) is provided with a top positioning column (103), which is inserted into the corresponding slot inside each set of top covers (15). The insert (104) integrally set at the bottom of the positioning column (10) positions the positioning column (10) longitudinally.
10. A method for assembling a modular clean operating room that is easy to transport, as described in any one of claims 1-9, characterized in that: Includes the following steps, S1. First, two sets of diagonally positioned columns (10) are positioned and installed in the ground beam poured on the ground by inserting columns (104), and the corresponding first side plate (12) is fitted and fixed by positioning pins (101). Then, another set of positioned columns (10) is positioned and installed on the other side of the first side plate (12). S2. Next, the second side plate (14) is rotated and fitted into the T-shaped slot (158) by the top T-shaped insert (141), and the second side plate (14) is fixed by the twisting of the two side blocks (142), so that the top of the second side plate (14) and the bottom of the top cover (15) are tightly abutted, and the fixed installation of the second side plate (14) is completed. S3. Next, unfold the folding plate (11) and insert the pin (102) into the folding plate (11) through the positioning groove (114). Due to the stop plate (119), the stop bar (116) can be limited to rotate inward, thereby limiting the pin (102) and making the folding plate (11) installed on the inner side of the two sets of positioning columns (10). S4. Next, the four sets of top covers (15) are assembled so that the splicing bolts (151) are assembled into complete bolts, and the nut seat (152) is bolted onto the outside of the four sets of splicing bolts (151) to complete the installation and positioning of the top cover (15). The completed assembly is then lifted by a crane above the positioning column (10) and positioned on the top of the four sets of positioning columns (10) by the top positioning column (103). The threaded sleeve (156) can be threaded through the top splicing plate (20) and inserted into the splicing bolt (151). The shadowless lamp can be hoisted and installed in the mounting seat (157) at the bottom of the threaded sleeve (156). S5. Next, the three sets of rear baffles (13) are installed in the sliding groove (154) by means of the limit bolts (131) and the mounting brackets (153). The top panel (20) is then connected to the bracket (132) by means of the clip (22) at one end. The other end of the top panel (20) is pressed against the top of the folding plate (11) and is hooked to the nail column (113) by means of the lasso (21) to protect the stability of the folding plate (11) during use. S6. Finally, install the sealing strip at the joints of each part, and apply waterproof and anti-corrosion coatings to the necessary parts inside and outside the operating room to maintain the airtightness and cleanliness of the operating room. Install various functional cabinets such as instrument cabinets, medicine cabinets and storage cabinets into the frame (121). The bottom of the top panel (20) can be equipped with a surgical shadowless lamp. The anesthesia tower can be installed on the side near the second side panel (14). Connect the external ventilation duct to the pre-embedded ventilation sleeve (124) and install the fresh air system and exhaust system.