Integrated movable intelligent laboratory

The integrated design of the lifting platform, annular operating chamber and expansion storage device solves the problems of large space occupation and inconvenient equipment management in mobile laboratories, realizes the orderly deployment and efficient disinfection of experimental equipment, improves experimental efficiency and environmental cleanliness, and is suitable for emergency detection and field experiments with limited space.

CN120714716APending Publication Date: 2025-09-30ZHEJIANG CAMPBELL IND CO LTD
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Patent Information

Application Number
CN202510945714.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-09
Publication Date
2025-09-30

AI Technical Summary

Technical Problem

The existing structural design of mobile laboratories results in large experimental space occupation, inconvenient equipment management, and uncentralized disinfection, which affects experimental efficiency and environmental cleanliness. In particular, when used in space-constrained environments, there are problems such as equipment stacking and cross-contamination.

Method used

It adopts an integrated design, including a lifting platform, an annular operating chamber, an expansion storage device and a sterilization and disinfection ring, to achieve centralized storage, orderly deployment and in-situ operation of experimental equipment. Combined with ultraviolet sterilization and disinfection and a dryer, it ensures that the equipment is kept clean during storage and use in the closed disinfection chamber.

Benefits of technology

It improves experimental efficiency and space utilization, reduces the movement frequency of experimenters, avoids equipment mixing and cross-contamination, and is suitable for emergency detection and field experiment scenarios with limited space.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to an integrated movable intelligent laboratory which comprises a laboratory body, and a moving device is arranged at the bottom of the laboratory body and used for achieving overall movement. The lifting platform is arranged in the laboratory main body, and experimenters can stand on the lifting platform for experiment operation; the operation platform is arranged on the outer side of the lifting platform in a surrounding mode, an annular flange is arranged on the operation platform, and a middle annular operation cavity is formed; the sterilization and disinfection ring is arranged on the outer circular surface of the laboratory main body, and a plurality of opening windows are arranged between the sterilization and disinfection ring and the annular operation cavity; the expansion storage devices are used for storing various experimental apparatuses, each expansion storage device is installed on the push-pull plate, and when the expansion storage devices are not used, the expansion storage devices and the push-pull plate can be stored in the sterilization and disinfection ring together. According to the invention, centralized storage, automatic unfolding and disinfection drying treatment of a plurality of groups of experiment apparatuses are realized, the experiment operation efficiency is improved, the space utilization rate is optimized, and the intelligent mobile experiment apparatus is suitable for intelligent mobile experiment application under emergency, field or multi-scene conditions.
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Description

Technical Field

[0001] The present invention relates to a laboratory, in particular to an integrated movable intelligent laboratory. Background Art

[0002] With the growing demands of modern scientific research and emergency response, mobile laboratories are demonstrating their unique advantages in many fields. Compared to traditional fixed laboratories, mobile laboratories offer advantages such as increased mobility, rapid deployment, a wide range of applications, and flexible configuration. They are particularly well-suited for field surveys, biological sample testing, emergency response, disease prevention and control, and post-disaster on-site testing. By integrating various testing and analysis equipment and experimental operation functions, mobile laboratories can rapidly complete various experimental testing tasks without relying on a fixed location, significantly improving experimental response speed and on-site processing capabilities.

[0003] However, existing mobile laboratories still have significant limitations in their structural design. Especially when faced with multiple experimental groups or various experimental projects, in order to ensure the completeness of the experimental equipment required for each experimental project, it is usually necessary to arrange multiple sets of laboratory tables and corresponding equipment racks in the experimental cabin, resulting in a large amount of experimental space being occupied. Experimental personnel need to frequently move to different areas to complete operations, which not only affects the efficiency of the experiment, but also increases the overall size of the mobile laboratory due to low space utilization, limiting its flexible mobilization and transportation capabilities. Especially in space-constrained vehicle or cabin application environments, traditional laboratory layout methods are very likely to cause problems such as internal congestion, disordered equipment stacking, and cross-contamination.

[0004] Furthermore, it's difficult to achieve centralized, unified sterilization, disinfection, and drying of laboratory equipment when switching between different experimental groups. This often requires the use of separate sterilization cabinets or auxiliary equipment, further occupying space and increasing operational complexity. This is especially true in fields like biology, medicine, and chemistry, which require high cleanliness levels in the laboratory environment. Without unified and efficient disinfection management, laboratory equipment can easily lead to cross-contamination or experimental errors, compromising overall experimental quality.

[0005] Therefore, there is an urgent need for a new type of smart laboratory structure with high structural integration, efficient equipment management, reasonable space utilization and strong mobility to solve the problems existing in the existing technology, such as large space occupied by experimental equipment, cumbersome operation, uncentralized disinfection and low experimental efficiency. Summary of the Invention

[0006] In order to solve the above problems, the present invention provides an integrated mobile smart laboratory that can effectively solve the shortcomings of the existing technology.

[0007] The present invention is realized by the following technical solutions: an integrated mobile smart laboratory, comprising:

[0008] A laboratory body, wherein a moving device is provided at the bottom of the laboratory body, and the laboratory body is displaced by the moving device;

[0009] A lifting platform is provided in the laboratory body, and an experimenter performs an experimental operation on the lifting platform;

[0010] An operating platform is arranged in the laboratory body and surrounds the outer side of the lifting platform. The operating platform has an annular rib, and the annular rib forms an annular operating cavity in the middle of the operating platform;

[0011] A sterilization and disinfection ring is arranged on the outer circumferential surface of the laboratory body, and a plurality of opening windows are opened between the sterilization and disinfection ring and the annular operation chamber;

[0012] An expansion storage device for storing various types of laboratory equipment, which is mounted on a push-pull plate. When not in use, the expansion storage device and the push-pull plate are located within the sterilization ring;

[0013] The expansion and storage device is inflated so that the expansion and storage device can be expanded in a ring shape along the annular operating cavity when located in the annular operating cavity.

[0014] As a preferred technical solution, the expansion storage device includes more than one storage box arranged side by side, each storage box is provided with a storage cavity, and the experimental equipment is stored through the storage cavity. Adjacent storage boxes are elastically connected by an elastic connecting section, and the elastic connecting section has an inflatable cavity inside. The back parts of adjacent elastic connecting sections are connected and conductive.

[0015] As a preferred technical solution, the elastic connecting section is in an elastically contracted state when not inflated, and the accommodating boxes are arranged closely to each other.

[0016] As a preferred technical solution, each of the expansion and storage devices is provided with an air charging and discharging pump, and the air charging and discharging pump is connected to the elastic connecting section via a connecting pipe, and a solenoid valve is installed on the connecting pipe.

[0017] As a preferred technical solution, a push-pull cylinder is installed on the outer end of each push-pull plate, and the push-pull cylinder is fixedly installed on the outside of the sterilization and disinfection ring.

[0018] As a preferred technical solution, a sealing plate is hingedly provided at the position of each opening window, and the top of the sealing plate is hingedly connected to the laboratory body through a hinge shaft.

[0019] As a preferred technical solution, the sterilization and disinfection ring is provided with a dryer and a plurality of ultraviolet sterilization and disinfection boxes for sterilizing and drying the experimental equipment in the sterilization and disinfection cavity. The sterilization and disinfection ring is also provided with exhaust holes.

[0020] As a preferred technical solution, the lifting platform includes an electric lifting rod and a seat installed on the electric lifting rod.

[0021] As a preferred technical solution, the moving device includes a plurality of moving wheels arranged at the bottom of the laboratory body.

[0022] As a preferred technical solution, the laboratory body is also provided with an entry and exit door.

[0023] The beneficial effects of the present invention are as follows: by integrating multiple expansion storage devices and push-pull plates into the sterilization and disinfection ring of the laboratory body, each group of experimental equipment can be compactly stored in a sealed sterilization and disinfection chamber when not in use, which not only saves internal space but also realizes real-time disinfection and drying of the equipment;

[0024] When a specific group of experimental equipment is needed, the corresponding push-pull plate can be pushed out by the push-pull cylinder, and the elastic connecting section can be inflated, so that the experimental equipment of this group is automatically unfolded along the annular operating cavity, avoiding equipment mixing and space conflicts, and providing a clear and orderly operating interface for the experimenter; each group of experimental equipment can be unfolded to form an effective distance, and combined with the setting of the central lifting platform, the experimenter can complete the operation of different experimental groups at a fixed position, reducing movement and reducing the overall volume. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0026] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0027] Figure 2 Schematic diagram of the internal cross section of the present invention Figure 1 ;

[0028] Figure 3 Schematic diagram of the internal cross section of the present invention Figure 2 ;

[0029] Figure 4 It is a structural schematic diagram of the expansion and storage device of the present invention;

[0030] Figure 5 is an external top view of the present invention;

[0031] Description of reference numerals:

[0032] 1. Laboratory body; 8. Annular rib; 11. Annular operating chamber; 3. Sterilization ring; 13. Sealing plate; 12. Expansion storage device; 7. Push-pull plate; 122. Container; 121. Elastic connecting section; 5. Air pump; 4. Push-pull cylinder; 15. Dryer; 16. UV sterilization box; 10. Electric lifting rod; 9. Seat; 2. Moving wheels; 6. Entry and exit door; 14. Sterilization chamber. DETAILED DESCRIPTION

[0033] All features disclosed in this specification, or all steps in the disclosed methods or processes, except mutually exclusive features and / or steps, can be combined in any manner.

[0034] Any feature disclosed in this specification (including any appended claims, abstract and drawings), unless otherwise stated, may be replaced by other equivalent or similar features. That is, unless otherwise stated, each feature is only an example of a series of equivalent or similar features.

[0035] like Figure 1-Figure 5 As shown, the present invention provides an integrated movable smart laboratory, which aims to solve the problems of existing mobile laboratory structures, such as large space occupation, chaotic stacking of experimental equipment, and low efficiency caused by frequent moving during use. Through the innovative design of structural integration and annular space layout, the centralized storage, orderly deployment and in-situ operation of experimental equipment are realized, which improves the laboratory's use efficiency and space utilization. It is particularly suitable for emergency detection, field experiments and other scenarios where space is limited and rapid deployment is required.

[0036] The main body of the smart laboratory is a compact laboratory shell, with a mobile device consisting of multiple moving wheels 2 at its bottom, which is used to achieve the overall mobility of the laboratory. The laboratory body 1 is provided with an entry and exit door 6 to facilitate the free entry and exit of experimenters. Inside the body, a lifting platform is installed to carry experimenters to perform experimental operations. This lifting platform is driven by an electric lifting rod 10, and a seat 9 is installed on the lifting rod. This allows experimenters to complete a series of experimental tasks in a seated position without frequent movement, effectively improving the comfort and continuity of operation.

[0037] An operating platform is arranged around the outside of the lifting platform. The operating platform surrounds the lifting platform in a circumferential direction and is provided with an annular rib 8, so that a closed annular operating chamber 11 is formed in the middle of the operating platform. The operating chamber is the main deployment area of ​​the experimental equipment of the present invention. Through the annular layout design, the experimental equipment can be distributed in a ring around the operator, and the operator is located in the center of the operating chamber. When operating, there is no need to leave the original position, and various types of experimental equipment can be easily obtained or manipulated, which effectively solves the problem of the experimenter having to move back and forth between different workbenches in traditional experiments.

[0038] A sterilization ring 3 is provided on the periphery of the annular operating chamber 11, and a plurality of opening windows are provided between the sterilization ring 3 and the operating chamber. A sealing plate 13 is installed at the position of the opening window by a hinged manner. The top of the sealing plate 13 is connected to the laboratory body 1 through a hinge axis. It can be opened to form a channel when in use, so that the experimental equipment can be pushed out of the sterilization ring 3 and into the operating chamber for use. After completion, it can also be pushed back into the sterilization ring 3 and the sealing plate 13 can be closed to achieve sealed isolation.

[0039] The experimental equipment is stored in a number of expansion storage devices 12, which are uniformly installed inside the sterilization and disinfection ring 3 with the push-pull plate 7 as a carrier. Each expansion storage device 12 includes a plurality of storage boxes 122 arranged side by side, and each storage box 122 forms a storage cavity for placing the experimental equipment. Adjacent storage boxes 122 are connected to each other by elastic connecting sections 121, and the elastic connecting sections 121 have an inflatable cavity inside. The elastic connecting sections 121 are in a naturally contracted state when not inflated, so that the storage boxes 122 fit together and tighten, thereby realizing compact storage of the equipment and taking up very little space. When in use, the expansion storage device 12 is inflated by the provided inflation and deflation pump 5, and the air enters the elastic connecting section 121 through the connecting pipe and the solenoid valve, causing it to expand, thereby driving the entire storage box 122 structure to be deployed along the annular operating cavity 11. Since the elastic connecting section 121 has a controllable expansion capability, the accommodating box 122 can be pulled open to a set distance and distributed along the edge of the operating cavity to form multiple independently partitioned equipment operating positions, which not only improves the operational convenience but also avoids interference between different equipment, thereby ensuring the orderliness and safety of the experimental environment.

[0040] A push-pull cylinder 4 is installed on the outside of each push-pull plate 7, and the push-pull cylinder 4 is fixed to the outside of the sterilization and disinfection ring 3. When the experimental equipment needs to be put into use, the push-pull cylinder 4 is started, driving the push-pull plate 7 and the expansion storage device 12 installed thereon to slide out of the sterilization and disinfection ring 3 as a whole, and the equipment is expanded into the operating cavity through the above-mentioned inflation step; after the experiment is completed, the structure of the storage box 122 is contracted by exhaust, and is pushed back into the sterilization and disinfection ring 3 by the push-pull cylinder 4, thereby realizing the rapid return and sealed isolation of the experimental equipment.

[0041] To ensure that laboratory equipment remains clean during storage, the sterilization ring 3 is equipped with multiple UV sterilization boxes 16 and a dryer 15. UV light effectively sterilizes and disinfects the equipment, while the dryer 15 removes surface moisture to prevent mold and cross-contamination. Vents are also provided on the sterilization ring 3 to exhaust the hot and humid gases generated during the sterilization process, maintaining a dry and clean internal environment.

[0042] The present invention realizes the unified storage, intelligent deployment, centralized disinfection and in-situ operation of multiple experimental equipment groups, which not only significantly improves the experimental efficiency, but also avoids the space occupation problem caused by the multi-area layout of traditional mobile laboratories, making the entire smart laboratory more advantageous in volume control and convenient for deployment and use in limited space.

[0043] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any changes or substitutions that are not conceived through creative work should be included within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be based on the scope of protection defined in the claims.

Claims

1. An integrated mobile smart laboratory, characterized by: include: A laboratory main body (1), wherein a moving device is provided at the bottom of the laboratory main body (1), and the laboratory main body (1) is displaced by the moving device; A lifting platform is provided in the laboratory body (1), and an experimenter performs an experiment operation on the lifting platform; An operating platform is arranged in the laboratory body (1) and surrounds the outside of the lifting platform, the operating platform has an annular rib (8), and an annular operating chamber (11) is formed in the middle of the operating platform by the annular rib (8); A sterilization and disinfection ring (3) is arranged on the outer circumferential surface of the laboratory body (1), and a plurality of opening windows are provided between the sterilization and disinfection ring (3) and the annular operating chamber (11); An expansion storage device (12) is used to store various types of laboratory equipment, which are all installed on a push-pull plate (7). When not in use, the expansion storage device (12) and the push-pull plate (7) are both located in the sterilization ring (3); The expansion and storage device (12) is inflated so that the expansion and storage device (12) can be expanded in a ring shape along the annular operating chamber (11) when located in the annular operating chamber (11).

2. The integrated mobile smart laboratory according to claim 1, characterized in that: The expansion storage device (12) includes more than one storage box (122) arranged side by side, each storage box (122) is provided with a storage cavity, and the experimental equipment is stored through the storage cavity. Adjacent storage boxes (122) are elastically connected by an elastic connecting section (121), and the elastic connecting section (121) has an inflatable cavity inside. The back parts of adjacent elastic connecting sections (121) are connected and conductive.

3. The integrated mobile smart laboratory according to claim 2, characterized in that: The elastic connecting section (121) is in an elastically contracted state when not inflated, and the accommodating boxes (122) are arranged closely to each other.

4. The integrated mobile intelligent laboratory according to claim 3, characterized in that: Each of the expansion and storage devices (12) is provided with an air charging and discharging pump (5), and the air charging and discharging pump (5) is connected to the elastic connecting section (121) via a connecting pipe, and a solenoid valve is installed on the connecting pipe.

5. The integrated mobile smart laboratory according to claim 1, characterized in that: A push-pull cylinder (4) is installed at the outer end of each push-pull plate (7), and the push-pull cylinder (4) is fixedly installed on the outside of the sterilization ring (3).

6. The integrated mobile smart laboratory according to claim 1, characterized in that: A sealing plate (13) is hingedly provided at the position of each opening window, and the top of the sealing plate (13) is hingedly connected to the laboratory body (1) via a hinge shaft.

7. The integrated mobile smart laboratory according to claim 1, characterized in that: The sterilization and disinfection ring (3) is provided with a dryer (15) and a plurality of ultraviolet sterilization and disinfection boxes (16) for sterilizing and disinfecting the experimental equipment in the sterilization and disinfection cavity (14) and drying the experimental equipment. The sterilization and disinfection ring (3) is also provided with an exhaust hole.

8. The integrated mobile smart laboratory according to claim 1, characterized in that: The lifting platform comprises an electric lifting rod (10) and a seat (9) mounted on the electric lifting rod (10).

9. The integrated mobile smart laboratory according to claim 1, characterized in that: The moving device comprises a plurality of moving wheels (2) arranged at the bottom of the laboratory body (1).

10. The integrated mobile smart laboratory according to claim 1, characterized in that: The laboratory body (1) is also provided with an entry and exit door (6).