Assembly type sterile laboratory

By designing a curved ventilation structure and a filter plate with magnetic adsorption and limiting in a prefabricated aseptic laboratory, the problem of dust and pollutants entering the laboratory from the air is solved, achieving efficient air filtration and aseptic maintenance.

CN223739070UActive Publication Date: 2025-12-30JIANGSU SHUANGPU CLEAN SYST TECH CO LTD
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Patent Information

Application Number
CN202423056892.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-11
Publication Date
2025-12-30
Estimated Expiration
2034-12-11

AI Technical Summary

Technical Problem

In existing prefabricated sterile laboratories, dust and pollutants in the air can easily enter the laboratory during ventilation, affecting the sterile state.

Method used

The design incorporates a ventilation structure with baffles and filter plates. The baffles form a curved barrier to ensure airflow, while the filter plates filter dust and contaminants. The filter plates are made of magnetic material to prevent displacement. Combined with magnetic adsorption and a sliding design, the design facilitates disassembly and cleaning.

Benefits of technology

It effectively improves air filtration efficiency, prevents dust and pollutants from entering the laboratory, maintains a sterile environment, facilitates the maintenance and cleaning of the filter plate, and enhances the sterility and hygiene of the laboratory.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an assembly type sterile laboratory, which relates to the technical field of sterile laboratories and comprises a laboratory body, a protective door is mounted on the outer wall of the laboratory body, a door handle is mounted on the front side of the protective door, and a high-pressure sterilization pot is mounted at the bottom end of the inner side of the laboratory body. And one side of the high-pressure sterilization pot is attached to the inner wall of the laboratory body. By the adoption of the structure, air circulation in the laboratory body can be guaranteed through the ventilation opening, the two baffles can block circulating air in a winding mode, the circulating air enters the laboratory body in a winding mode, in the air winding process, the filtering plate can effectively filter the circulating air, and therefore the ventilation effect of the laboratory body is improved. Furthermore, the isolation efficiency of the filter plate on dust or pollutants in the air can be effectively improved, the situation that a sterile state cannot be achieved in the laboratory body can be avoided, and in order to avoid displacement of the baffle, a limiting block is inserted into a limiting groove according to the sliding principle.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to aseptic laboratory technical field, especially relate to a kind of assembly type aseptic laboratory. BACKGROUND

[0002] Assembly type aseptic laboratory is a kind of modern laboratory construction mode, using factory production standardization, modular component to carry out on-site rapid assembly, realize aseptic environment, it has the advantages such as short construction period, low cost, quality controllable, green environmental protection, is widely used in microbiology, biomedical laboratory construction in fields such as, provide efficient, safe, reliable aseptic operation environment for scientific research experiment.

[0003] The Chinese patent with publication number "CN214659102U" discloses a kind of modular PCR laboratory structure, including laboratory main body, the side of one end of the laboratory main body is connected with observation window, the other side of one end of the laboratory main body is connected with corridor door, the middle part of the both sides of the laboratory main body is connected with the window of passing on, the side and one end of the inside of the laboratory main body are connected with L type operating table.

[0004] However, this laboratory still has some deficiencies, when using laboratory, because it is kept in time ventilation state inside, although air circulation in laboratory can be made through ventilation duct, dust and pollutants in air can also be sent into laboratory together, if the air cleanliness of laboratory is insufficient, it will lead to the number of microorganism in air exceed standard, affect aseptic state. UTILITY MODEL CONTENT

[0005] For the problems mentioned in the background art, the purpose of the utility model is to provide an assembly type aseptic laboratory to solve the problems raised in the above background art.

[0006] The above technical purpose of the utility model is realized by the following technical scheme:

[0007] The utility model provides a prefabricated aseptic laboratory, including laboratory body, the outer wall of laboratory body is installed with the protective door, the front side of protective door is installed with the door handle, the inside bottom of laboratory body is installed with the high pressure sterilization pot, one side of high pressure sterilization pot is pasted with laboratory body inner wall, the inside bottom of laboratory body is installed with the super clean bench, the front side of laboratory body is provided with the ventilation opening, the inner wall of ventilation opening is connected with the baffle of sliding, the baffle is connected with the corner position of ventilation opening inner wall of sliding respectively, the inner wall of ventilation opening is provided with the first sliding slot of matching with the baffle, the baffle is connected with the inner wall of ventilation opening of sliding through the first sliding slot, the inner wall of ventilation opening is connected with the filter plate of sliding, the filter plate covers the inside of ventilation opening, the inner wall of ventilation opening is provided with the third sliding slot of matching with the filter plate, the filter plate is connected with the inner wall of ventilation opening of sliding through the third sliding slot, and the filter plate is located at the inside close to the baffle, the top of laboratory body is installed with the ventilation pipeline, and the inside of laboratory body is communicated with the ventilation pipeline.

[0008] As a preferred technical scheme, the front side of the baffle is slidably connected with a limiting block, the front side of the baffle is provided with a second sliding slot matched with the limiting block, the limiting block is slidably connected with the front side of the baffle through the second sliding slot, and the inner bottom of the ventilation opening is provided with a limiting groove matched with the baffle, the position of the limiting block is symmetrical to the position of the limiting groove.

[0009] As a preferred technical scheme, the inner bottom of the ventilation opening is provided with a groove, the inner bottom of the groove is fixedly connected with a magnet, the magnet covers the inner side of the groove, the top of the magnet is attached to the bottom of the filter plate, and the filter plate is made of a magnetically attracted iron material.

[0010] As a preferred technical scheme, the front side of the laboratory body is provided with a rectangular opening, the rectangular opening is communicated with the inner side of the laboratory body, the inner side of the rectangular opening is fixedly connected with an observation window, the observation window covers the inner side of the rectangular opening, and the position of the observation window is corresponding to the position of the super clean bench.

[0011] As a preferred technical scheme, the front side of the laboratory body is slidably connected with a support plate, the rear side of the support plate is fixedly connected with a cleaning sponge, the cleaning sponge covers the rear side of the support plate, and the rear side of the cleaning sponge is attached to the front side of the observation window.

[0012] As a preferred technical scheme, the front side of the laboratory body is provided with a fourth sliding slot matched with the support plate, the support plate is slidably connected with the front side of the laboratory body through the fourth sliding slot, the front side of the support plate is fixedly connected with a protruding block, and the corner of the protruding block is concave.

[0013] As a preferred technical scheme, the inner wall of the laboratory body is provided with an antibacterial coating, the thickness of the antibacterial coating on the inner wall of the laboratory body is five millimeters, and the antibacterial coating on the inner wall of the laboratory body is made of a polyester resin material.

[0014] In summary, the utility model mainly has the following beneficial effects:

[0015] First, when using the laboratory body, the ventilation opening can ensure the air circulation in the laboratory body, the two baffles can form a bending resistance to the circulating air, so that the circulating air enters the laboratory body in a bending manner, and in the air bending process, the filter plate can effectively filter the circulating air, thereby effectively improving the isolation efficiency of the filter plate to dust or pollutants in the air, and avoiding the laboratory body from not reaching a sterile state, to avoid displacement of the baffle, the limiting block is inserted into the limiting groove through the sliding principle, and the limiting block is inserted into the limiting groove through the sliding principle.

[0016] Second, due to the presence of the magnet, the adsorption of the magnet can effectively adsorb and limit the position of the filter plate, so as to avoid displacement of the filter plate, when the filter plate needs to be cleaned later, the limiting block is pulled out of the limiting groove through the sliding principle, and then the baffle is pulled out through the first sliding groove, and finally the filter plate is pulled out through the third sliding groove, so that the baffle and the filter plate can be conveniently disassembled and assembled, and the user can maintain or clean them later, thereby effectively improving the sterile and sanitary nature of the interior of the laboratory body. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 is a structural schematic diagram of the utility model;

[0018] Figure 2 is a structural schematic diagram of the utility model Figure 1 ;

[0019] Figure 3 is a structural schematic diagram of the interior side of the laboratory body of the utility model;

[0020] Figure 4 is a structural schematic diagram of the utility model Figure 3 ;

[0021] The drawings show that: 1, the laboratory body; 2, the protection door; 3, the ventilation duct; 4, the high-pressure sterilization pot; 5, the super-clean workbench; 6, the rectangular port; 7, the observation window; 8, the ventilation opening; 9, the first sliding groove; 10, the baffle; 11, the second sliding groove; 12, the limiting block; 13, the limiting groove; 14, the filter plate; 15, the third sliding groove; 16, the groove; 17, the magnet; 18, the door handle; 19, the fourth sliding groove; 20, the supporting plate; 21, the cleaning sponge; 22, the protruding block. DETAILED DESCRIPTION

[0022] Embodiment

[0023] Reference Figures 1 to 4The embodiment of the assembled sterile laboratory includes a laboratory body 1, a protective door 2 installed on the outer wall of the laboratory body 1, a door handle 18 installed on the front side of the protective door 2, a high-pressure sterilization pot 4 installed on the inner side of the bottom end of the laboratory body 1, one side of the high-pressure sterilization pot 4 being attached to the inner wall of the laboratory body 1, an ultra-clean workbench 5 installed on the inner side of the bottom end of the laboratory body 1, a ventilation opening 8 formed on the front side of the laboratory body 1, a baffle 10 slidingly connected to the inner wall of the ventilation opening 8, the baffle 10 being slidingly connected to the corner positions of the inner wall of the ventilation opening 8, respectively, a first sliding groove 9 matched with the baffle 10 being formed on the inner wall of the ventilation opening 8, the baffle 10 being slidingly connected to the inner wall of the ventilation opening 8 through the first sliding groove 9, a filter plate 14 slidingly connected to the inner wall of the ventilation opening 8, the filter plate 14 covering the inner side of the ventilation opening 8, a third sliding groove 15 matched with the filter plate 14 being formed on the inner wall of the ventilation opening 8, the filter plate 14 being slidingly connected to the inner wall of the ventilation opening 8 through the third sliding groove 15, the filter plate 14 being located on the inner side close to the baffle 10, a ventilation duct 3 installed on the top end of the laboratory body 1, the ventilation duct 3 being communicated with the inner side of the laboratory body 1, in use, the high-pressure sterilization pot 4 is started, the steam is used to heat destroy and coagulate the microorganism protein, and various microorganisms are killed, at the same time, relative experiments can be carried out on the ultra-clean workbench 5, the ultra-clean workbench 5 can provide an air purification unit of a local clean environment, and can be flexibly installed above a process point requiring high cleanliness, due to the formation of the ventilation opening 8, the ventilation opening 8 can ensure the air circulation in the laboratory body 1, the two baffles 10 on the inner wall of the ventilation opening 8 are arranged above and below, respectively, the two baffles 10 can form a bending resistance to the circulating air, so that the circulating air enters the laboratory body 1 in a bending manner, in the air bending process, the filter plate 14 can effectively filter the circulating air, thereby effectively improving the isolation efficiency of the filter plate 14 to dust or pollutants in the air, and the sterile state in the laboratory body 1 can be avoided, the ventilation point structure of the ventilation duct 3 is the same as the inner side structure of the ventilation opening 8, and the inconvenience caused by the large amount of dust and pollutants brought into the laboratory body 1 in the past can be effectively solved.

[0024] Reference Figures 1 to 4The front side of the baffle 10 is slidably connected with a limiting block 12, the front side of the baffle 10 is provided with a second sliding groove 11 matched with the limiting block 12, the limiting block 12 is slidably connected with the front side of the baffle 10 through the second sliding groove 11, the inner bottom end of the air vent 8 is provided with a limiting groove 13 matched with the baffle 10, the position of the limiting block 12 is symmetrical with the position of the limiting groove 13, the inner bottom end of the air vent 8 is provided with a groove 16, the inner bottom end of the groove 16 is fixedly connected with a magnet 17, the magnet 17 covers the inner side of the groove 16, the top end of the magnet 17 is attached to the bottom end of the filter plate 14, the filter plate 14 is made of a magnetic material, and the filter plate 14 is effectively adsorbed and limited due to the existence of the magnet 17, so as to avoid displacement of the filter plate 14, when the filter plate 14 needs to be cleaned later, the limiting block 12 is first pulled out of the limiting groove 13 through the sliding principle, then the baffle 10 is pulled out through the first sliding groove 9, and finally the filter plate 14 is pulled out through the third sliding groove 15, so that the baffle 10 and the filter plate 14 can be conveniently disassembled and assembled, and the user can maintain or clean them later, thereby effectively improving the sterile and sanitary property of the laboratory body 1.

[0025] Reference Figure 1 The front side of the laboratory body 1 is provided with a rectangular opening 6, the rectangular opening 6 communicates with the inner side of the laboratory body 1, the inner side of the rectangular opening 6 is fixedly connected with an observation window 7, the observation window 7 covers the inner side of the rectangular opening 6, and the position of the observation window 7 corresponds to the position of the clean bench 5, so that the user can view the clean bench 5 without entering the laboratory body 1, thereby facilitating observation of the experiment from outside, and effectively improving the safety and health of the laboratory body 1.

[0026] Reference Figure 1 And Figure 2 The front side of the laboratory body 1 is slidably connected with a support plate 20, the rear side of the support plate 20 is fixedly connected with a cleaning sponge 21, the cleaning sponge 21 covers the rear side of the support plate 20, the rear side of the cleaning sponge 21 is attached to the front side of the observation window 7, the front side of the laboratory body 1 is provided with a fourth sliding groove 19 matched with the support plate 20, the support plate 20 is slidably connected with the front side of the laboratory body 1 through the fourth sliding groove 19, the front side of the support plate 20 is fixedly connected with a protruding block 22, and the corner of the protruding block 22 is concave, so that when the surface of the observation window 7 needs to be cleaned later, the surface of the observation window 7 is sprayed with an appropriate amount of cleaning liquid, then the protruding block 22 is grabbed, the support plate 20 is moved through the fourth sliding groove 19, the support plate 20 can drive the cleaning sponge 21 to uniformly wipe the surface of the observation window 7, thereby achieving the purpose of conveniently cleaning the surface of the observation window 7.

[0027] Reference Figures 1 to 4The inner wall of the laboratory body 1 is provided with a bacterium-proof coating, the thickness of the bacterium-proof coating on the inner wall of the laboratory body 1 is five millimeters, and the bacterium-proof coating on the inner wall of the laboratory body 1 is made of polyester resin material. Due to the existence of the bacterium-proof coating, the polyester resin material has the characteristics of bacterium-proof, mildew-proof, moisture-proof, wear-resistant, oxidation-resistant and the like, and is very suitable for the laboratory environment.

[0028] Principle and advantages: when in use, the high-pressure sterilization pot 4 is started, and the steam is used to kill various microorganisms by heat destruction and coagulation of microbial proteins. At the same time, relative experiments can be carried out on the super-clean bench 5, the super-clean bench 5 can provide an air purification unit for a local clean environment, and can be flexibly installed above the process point requiring high cleanliness. Due to the opening of the ventilation opening 8, the ventilation opening 8 can ensure the air circulation in the laboratory body 1, the two baffles 10 can form a bending resistance to the circulating air, so that the circulating air enters the laboratory body 1 in a bending manner. In the air bending process, the filter plate 14 can effectively filter the circulating air, thereby effectively improving the isolation efficiency of the filter plate 14 to dust or pollutants in the air, and avoiding the inconvenience of bringing a large amount of dust and pollutants into the laboratory body 1. Due to the existence of the magnet 17, the adsorption of the magnet 17 can effectively adsorb and limit the position of the filter plate 14, so as to avoid displacement of the filter plate 14. When the filter plate 14 needs to be cleaned later, the limiting block 12 is first pulled out of the limiting groove 13 through the sliding principle, then the baffle 10 is pulled out through the first sliding groove 9, and finally the filter plate 14 is pulled out through the third sliding groove 15. At the same time of achieving the convenience of single disassembly and assembly of the baffle 10 and the filter plate 14, it is also more conducive to the maintenance or cleaning of the user later, thereby effectively improving the sterile and sanitary nature of the interior of the laboratory body 1. Due to the opening of the rectangular opening 6, the user can directly view the position of the super-clean bench 5 through the observation window 7 without entering the laboratory body 1, which can not only facilitate relevant personnel to observe the experimental conditions outside, but also effectively improve the safety and health of the laboratory body 1. Due to the existence of the cleaning sponge 21, when the surface of the observation window 7 needs to be cleaned later, a proper amount of cleaning liquid is sprayed on the observation window 7, then the lug 22 is grabbed, and the support plate 20 is moved by pulling the fourth sliding groove 19. The support plate 20 can drive the cleaning sponge 21 to uniformly wipe the surface of the observation window 7, thereby achieving the purpose of conveniently cleaning the surface of the observation window 7.

Claims

1. A modular aseptic laboratory comprising a laboratory body (1), characterized in that: The outer wall of the laboratory body (1) is provided with a protective door (2), the front side of the protective door (2) is provided with a door handle (18), the inner side of the bottom end of the laboratory body (1) is provided with a high-pressure sterilization pot (4), one side of the high-pressure sterilization pot (4) is attached to the inner wall of the laboratory body (1), the inner side of the bottom end of the laboratory body (1) is provided with an ultra-clean bench (5), the front side of the laboratory body (1) is provided with a ventilation opening (8), the inner wall of the ventilation opening (8) is slidably connected with a baffle (10), the baffle (10) is slidably connected to the corner positions of the inner wall of the ventilation opening (8) respectively, the inner wall of the ventilation opening (8) is provided with a first sliding groove (9) matched with the baffle (10), the baffle (10) is slidably connected to the inner wall of the ventilation opening (8) through the first sliding groove (9), the inner wall of the ventilation opening (8) is slidably connected with a filter plate (14), the filter plate (14) covers the inner side of the ventilation opening (8), the inner wall of the ventilation opening (8) is provided with a third sliding groove (15) matched with the filter plate (14), the filter plate (14) is slidably connected to the inner wall of the ventilation opening (8) through the third sliding groove (15), the filter plate (14) is located on the inner side close to the baffle (10), the top end of the laboratory body (1) is provided with a ventilation duct (3), the ventilation duct (3) communicates with the inner side of the laboratory body (1).

2. A fabricated sterile laboratory according to claim 1, characterized in that: The front side of the baffle (10) is slidably connected with a limiting block (12), the front side of the baffle (10) is provided with a second sliding groove (11) matched with the limiting block (12), the limiting block (12) is slidably connected to the front side of the baffle (10) through the second sliding groove (11), the inner side of the bottom end of the ventilation opening (8) is provided with a limiting groove (13) matched with the baffle (10), the position of the limiting block (12) is symmetrical to the position of the limiting groove (13).

3. The fabricated aseptic laboratory of claim 1, wherein: The inner side of the bottom end of the ventilation opening (8) is provided with a groove (16), the inner side of the bottom end of the groove (16) is fixedly connected with a magnet (17), the magnet (17) covers the inner side of the groove (16), the top end of the magnet (17) is attached to the bottom end of the filter plate (14), the filter plate (14) is made of magnetic iron material.

4. The fabricated aseptic laboratory of claim 1, wherein: The front side of the laboratory body (1) is provided with a rectangular opening (6), the rectangular opening (6) communicates with the inner side of the laboratory body (1), the inner side of the rectangular opening (6) is fixedly connected with an observation window (7), the observation window (7) covers the inner side of the rectangular opening (6), the position of the observation window (7) corresponds to the position of the ultra-clean bench (5).

5. A modular cleanroom according to claim 4, wherein: The front side of the laboratory body (1) is slidably connected with a support plate (20), the rear side of the support plate (20) is fixedly connected with a cleaning sponge (21), the cleaning sponge (21) covers the rear side of the support plate (20), the rear side of the cleaning sponge (21) is attached to the front side of the observation window (7).

6. A modular cleanroom according to claim 5, wherein: The front side of the laboratory body (1) is provided with a fourth sliding groove (19) matched with a supporting plate (20), the supporting plate (20) is slidably connected to the front side of the laboratory body (1) through the fourth sliding groove (19), and the front side of the supporting plate (20) is fixedly connected with a protruding block (22), and the shape of the corner of the protruding block (22) is concave.

7. The fabricated aseptic laboratory of claim 1, wherein: The inner wall of the laboratory body (1) is provided with a bacteria-proof coating, the thickness of the bacteria-proof coating on the inner wall of the laboratory body (1) is five millimeters, and the bacteria-proof coating on the inner wall of the laboratory body (1) is made of a polyester resin material.