Visual anti-toppling all-directional protection medical instrument transfer case

By designing a visually-oriented, anti-tipping, all-around protective medical device transport box, the problems of device damage and inconvenience in handling caused by the simple structure of transport boxes have been solved. It achieves multi-angle opening and internal stability, improving transportation safety and convenience.

CN116788662BActive Publication Date: 2025-10-24ZHEJIANG UNIV
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
CN202310976070.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-08-04
Publication Date
2025-10-24
Estimated Expiration
2043-08-04

AI Technical Summary

Technical Problem

The existing transfer box has a simple structure, which makes the medical devices easily vibrate and rub due to shaking during transportation, which may cause them to fall over and damage the devices, and it is inconvenient to take them in and out.

Method used

A visual anti-tipping all-around protective medical device transport box was designed, which adopts a retractable main frame, a flip-up side cover, an anti-tipping internal storage frame and a magnetic control stabilization device, combined with a camera component to collect video information, and realizes multi-angle opening and internal stability.

Benefits of technology

It improves the safety and convenience of medical device transportation, prevents tipping through visual monitoring and magnetic stabilization devices, enhances shock absorption, and facilitates the handling of devices.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN116788662B_ABST
    Figure CN116788662B_ABST
Patent Text Reader

Abstract

The application relates to the technical field of medical instrument transportation, in particular to a visual anti-toppling omnibearing protective medical instrument transfer box, which comprises a main frame body and a camera assembly used for collecting video information. The visual anti-toppling omnibearing protective medical instrument transfer box can change the internal and external structures of the transfer box according to different use requirements through the structure-adjustable design, so that the application range is wider and the use is more convenient. The opening is larger through the turning opening and closing mode to control the opening of the turning lateral cover, so that the medical instruments in the box are conveniently taken and placed. The camera assembly installed at the inner top corner position of the lateral cover can record the whole transfer process of the medical instruments, so that the state of the medical instruments is conveniently recorded and monitored.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of medical instrument transportation, and in particular to a visual anti-toppling omnidirectional protective medical instrument transfer box. BACKGROUND

[0002] Medical instruments include medical devices and medical consumables. It refers to instruments, equipment, appliances, in vitro diagnostic reagents and calibrators, materials and other similar or related items that are directly or indirectly used for the human body, including the required computer software.

[0003] Because of the limitations of economic development and population density in different places, it is impossible for a single medical institution to have all the required medical instruments, so in the event of special circumstances, such as special circumstances, the required medical instruments need to be transferred from other institutions in advance or temporarily. In order to improve the safety of medical instruments during transportation, a special transfer box needs to be used for packaging and transportation. The internal structure of the current transfer box is single, and can only be loaded in a stacked and placed manner. During transportation, the medical instruments will vibrate and rub due to shaking, and the internal medical instruments will also topple over, resulting in damage to the instruments and limited protection capability. In addition, the current transfer box has a single way of taking, and the opening angle is limited, making it difficult to take and place. SUMMARY

[0004] The technical problem to be solved by the present application is that the internal structure of the current transfer box is single, and can only be loaded in a stacked and placed manner. During transportation, the medical instruments will vibrate and rub due to shaking, and the internal medical instruments will also topple over, resulting in damage to the instruments and limited protection capability. In addition, the current transfer box has a single way of taking, and the opening angle is limited, making it difficult to take and place.

[0005] The technical solution adopted by the present application to solve the technical problem is: a visual anti-toppling omnidirectional protective medical instrument transfer box, comprising a main frame and a camera assembly for collecting video information, the lower end of the two side walls of the main frame is provided with a flip side cover for installing the camera assembly through a side movable support, and the inside of the main frame is movably provided with an anti-toppling internal storage frame for storing medical instruments, and a magnetic control stabilizing device is installed between the lower surface of the flip side cover and the inner bottom surface of the anti-toppling internal storage frame.

[0006] The main frame is of a telescopic structure, comprising a u-shaped lower support frame, side sliding rails fixed on the outer walls of the two sides of the lower support frame, and an n-shaped upper carrying frame slidingly inserted into the inside of the side sliding rails, a rectangular control port is formed in the lower end of the outer side surface of the upper carrying frame, a reversible lock is elastically assembled in the inside of the rectangular control port, and an inner side limiting slot matched with the reversible lock is formed in the upper inner side surface of the side sliding rails.

[0007] The inside of the lower support frame is symmetrically provided with a lateral assembly shaft hole, the anti-toppling internal storage frame comprises an inside assembly frame provided with lateral assembly shafts on both sides, an upper support platform, a middle support platform and a lower support platform elastically assembled in the inside assembly frame.

[0008] The upper support platform and the lower support platform are both provided with a turnover pull-out type extension plate slidingly assembled on the two side walls.

[0009] The inside assembly frame is symmetrically provided with a bottom side control frame at the lower end of both sides, the magnetic control stabilizing device comprises an upper permanent magnet installed at the lower end of the bottom side control frame and a lower permanent magnet installed on the inner bottom surface of the turnover lateral shell.

[0010] The turnover lateral shell comprises a first shell body movably installed on the left side wall of the main frame body through a side movable support and a second shell body movably installed on the right side wall of the main frame body through a side movable support.

[0011] The first shell body and the second shell body are provided with a lateral storage groove matched with the main frame body on the assembly surface, and are provided with an elastic lock catch and a lateral lock groove matched with the elastic lock catch in a staggered manner on the assembly surface.

[0012] The inside assembly frame is symmetrically provided with a lateral telescopic groove for assembling the upper support platform, the middle support platform and the lower support platform on the inner walls of both sides, the upper support platform, the middle support platform and the lower support platform are slidingly connected with the inside assembly frame by inserting the assembly plates on both sides into the lateral telescopic groove, and the inner bottom surface of the lateral telescopic groove is provided with extruded elastic sheets for improving damping performance.

[0013] The first shell body and the second shell body are fixedly provided with a transversely arranged adjusting screw rod at the inner top corner position, and a lateral assembly frame for fixing the camera assembly is threadedly connected outside the transversely arranged adjusting screw rod.

[0014] The bottom side control frame is provided with a bottom adjusting plate for fixing the upper permanent magnet at the lower end through an adjusting bolt, and the adjusting bolt changes the gap between the upper permanent magnet and the lower permanent magnet by rotating.

[0015] The beneficial effects of the present application are:

[0016] (1) The visual anti-toppling omnibearing protective medical instrument transfer box of the present application can change the internal and external structures of the transfer box according to different use needs by adopting a structure adjustable design, so that the application range is wider and the use is more convenient.

[0017] (2) The turnover lateral shell is opened in a way of turning to both sides, so that the opening is larger and it is convenient to take and place the internal medical instruments.

[0018] (3) The camera assembly with adjustable installation position is installed at the inner top corner position of the lateral cover, the whole transfer process of the internal medical instrument can be recorded, so that the state of the medical instrument can be recorded and monitored conveniently;

[0019] (4) The detachable upper support platform, middle support platform and lower support platform are elastically assembled in the inner assembly frame, the number of the support platforms can be increased or decreased according to the needs of different medical instruments, the internal space of the transfer box can be effectively utilized, and the shock resistance is greatly improved;

[0020] (5) The turnover pull-out type extension plates are slidably assembled on the two side walls of the upper support platform and the lower support platform, which can be used in cooperation for anti-toppling, and the lateral support force can be improved;

[0021] (6) The anti-toppling type internal storage frame for storing medical instruments is movably assembled in the main frame body, which can keep stable inside when the transfer box is overturned, and improve the safety of the internal medical instruments;

[0022] (7) The permanent magnet is installed at the bottom, which can quickly adjust the stability of the anti-toppling type internal storage frame under slight shaking. BRIEF DESCRIPTION OF DRAWINGS

[0023] The application will be further described below in conjunction with the drawings and embodiments.

[0024] Figure 1 is a structure schematic view in the closed state of the application.

[0025] Figure 2 is a structure schematic view in the expanded state of the application.

[0026] Figure 3 is an internal structure schematic view in the closed state of the application. DETAILED DESCRIPTION

[0027] The application will be further described below in conjunction with the drawings and embodiments.

[0028] In the description of the application, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected", "connected" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the application can be understood according to the specific circumstances.

[0029] Figure 1 、 Figure 2 and Figure 3 The shown embodiment shows a visual anti-dumping all-round protective medical device transfer box, comprising a main frame 1 and a camera assembly 2 for collecting video information. The lower ends of both side walls of the main frame 1 are equipped with a flip-type side cover 3 for installing the camera assembly 2 through side movable brackets. The main frame 1 is internally equipped with a movably anti-dumping internal storage frame 4 for storing medical devices. A magnetically controlled stabilization device is installed between the lower surface of the flip-type side cover 3 and the inner bottom surface of the anti-dumping internal storage frame 4.

[0030] The camera assembly 2 is a prior art, and functions through a prior art solar panel installed on the upper end of the outer surface of the flip-type side cover 3 and a rechargeable battery installed on the inner top corner of the other side of the flip-type side cover 3, and then transmits the video data to the remote monitoring terminal through the prior art wireless data transmission module.

[0031] In order to adjust the length of the main frame 1, the main frame 1 is a telescopic structure. The main frame 1 includes a U-shaped lower support frame 101, side slide rails 102 fixed on the outer walls on both sides of the lower support frame 101, and an N-shaped upper carrying frame 103 slidably inserted into the side slide rails 102. A rectangular control opening is provided at the lower end of the outer side surface of the upper carrying frame 103, and a reversible lock buckle 104 is elastically assembled inside the rectangular control opening. An inner limit slot 105 that cooperates with the reversible lock buckle 104 is provided on the inner side surface of the side slide rail 102.

[0032] The reversible lock 104 is an elastic lever movably installed inside the rectangular control port. By pressing the upper end of the reversible lock 104, the lower end of the reversible lock 104 is separated from the inner limit slot 105, thereby facilitating the lifting and lowering adjustment of the upper carrying frame 103 along the side slide rail 102. The inner limit slot 105 can limit the upper carrying frame 103 from rising, but cannot limit the upper carrying frame 103 from falling.

[0033] In order to cooperate with assembly and support, lateral assembly axis holes are symmetrically opened on the inner side of the lower support frame 101, and the anti-dumping internal storage frame 4 includes an inner assembly frame 401 with lateral assembly axes on both sides, an upper support platform 402 elastically assembled inside the inner assembly frame 401, a middle support platform 403 and a lower support platform 404.

[0034] In order to adjust the size of the support surface, both side walls of the upper support platform 402 and the lower support platform 404 are slidably equipped with flip-pull extension plates 5.

[0035] The flip-pull type extension board 5 comprises a support plate 501 arranged on the upper surface of the upper support platform 402 and the lower support platform 404, side guide supports 502 movably arranged on both sides of the connecting end of the support plate 501, and a bottom limiting buckle 503 fixed on the lower end of the support plate 501, a plurality of bottom limiting holes are arranged on the upper surface of the upper support platform 402 and the lower support platform 404, and the support plate 501 is fixed by being inserted into the bottom limiting holes at different positions through the bottom limiting buckle 503.

[0036] In order to cooperate with the bottom magnetic control, the bottom side control frame 6 is symmetrically arranged at the lower end of the inner assembly frame 401, the magnetic control stabilizing device comprises an upper permanent magnet 7 arranged at the lower end of the bottom side control frame 6 and a lower permanent magnet 8 arranged on the inner bottom surface of the flip type lateral cover 3.

[0037] In order to cooperate with the lateral sealing and lateral protection, the flip type lateral cover 3 comprises a first shell 301 movably arranged on the left side wall of the main frame 1 through a side movable support and a second shell 302 movably arranged on the right side wall of the main frame 1 through a side movable support.

[0038] In order to cooperate with the opening and closing, the lateral receiving grooves 9 matched with the main frame 1 are arranged on the assembly surface of the first shell 301 and the second shell 302, and the elastic lock catch 10 and the lateral lock groove 11 matched with the elastic lock catch 10 are arranged on the assembly surface of the first shell 301 and the second shell 302.

[0039] After the first shell 301 and the second shell 302 are flipped upward, the lateral receiving grooves 9 are sleeved on the outer side of the main frame 1 to improve the sealing performance, then the elastic lock catch on the first shell 301, the lateral lock groove and the elastic lock catch on the second shell 302 are arranged in a staggered manner, the elastic lock catch on the first shell 301 is inserted into the inside of the lateral lock groove of the second shell 302, and the elastic lock catch on the second shell 302 is inserted into the inside of the lateral lock groove of the first shell 301, an external pressing opening is arranged on the top surface of the lateral lock groove, and people can separate the first shell 301 and the second shell 302 by pressing the elastic lock catch downward through the external pressing opening.

[0040] In order to cooperate with the assembly and elastic shock absorption, the lateral telescopic grooves 12 for assembling the upper support platform 402, the middle support platform 403 and the lower support platform 404 are symmetrically arranged on the inner walls of both sides of the inner assembly frame 401, the upper support platform 402, the middle support platform 403 and the lower support platform 404 are slidably connected with the inner assembly frame 401 by being inserted into the inside of the lateral telescopic grooves 12 through the assembly plates on both sides, and the extrusion spring 13 for improving the shock absorption is arranged on the inner bottom surface of the lateral telescopic groove 12.

[0041] The upper end of the lateral telescopic groove 12 is provided with a loading and unloading gap, and the upper supporting platform 402, the middle supporting platform 403 and the lower supporting platform 404 are inserted into the lateral telescopic groove 12 from the loading and unloading gap through the two lateral outward protruding assembling plates, so as to facilitate loading and unloading. The arc-shaped protrusions are arranged at the positions of the loading and unloading gap, which can avoid the accidental falling of the assembling plates from the lateral telescopic groove 12 to a certain extent without affecting the installation.

[0042] In order to cooperate with the assembly and adjustment of the camera assembly 2, the horizontal adjustment lead screw 14 is fixedly arranged at the inner top corner of the first shell 301 and the second shell 302, and the lateral assembling frame 15 for fixing the camera assembly 2 is threadedly connected to the outer side of the horizontal adjustment lead screw 14.

[0043] The outer side of the horizontal adjustment lead screw 14 is axially connected with an outer hexagonal control sleeve, and the lateral assembling frame 15 is adjusted to translate along the horizontal adjustment lead screw 14 by rotating the outer hexagonal control sleeve through the outer wrench.

[0044] In order to improve the magnetic control strength, the bottom adjusting plate 166 for fixing the upper permanent magnet 7 is arranged at the lower end of the bottom side control frame 6 through the adjusting bolt 16, the height of the bottom adjusting plate 166 is changed by rotating the adjusting bolt 16, and the gap between the upper permanent magnet 7 and the lower permanent magnet 8 is changed by lifting the bottom adjusting plate 166.

[0045] The magnetic attraction effect between the upper permanent magnet 7 and the lower permanent magnet 8 changes with the gap between the upper permanent magnet 7 and the lower permanent magnet 8, when the gap between the upper permanent magnet 7 and the lower permanent magnet 8 becomes larger, the magnetism becomes weaker, and vice versa, when the gap between the upper permanent magnet 7 and the lower permanent magnet 8 becomes smaller, the magnetism becomes stronger.

[0046] When the anti-toppling internal storage frame 4 needs to be kept stable and unchanged with the main frame 1, only the adjusting bolt 16 needs to be rotated to make the upper permanent magnet 7 close to the lower permanent magnet 8, and at this time, the position of the anti-toppling internal storage frame 4 is fixed by the magnetic attraction of the bottom;

[0047] Conversely, when the anti-toppling internal storage frame 4 does not need to be kept stable, and needs to be kept perpendicular to the ground according to the action of gravity, the adjusting bolt 16 needs to be reversely rotated to make the upper permanent magnet 7 start to move away from the lower permanent magnet 8, so that the strength of the magnetism can be selected and controlled as needed.

[0048] Based on the above ideal embodiments according to the present application, through the above description, relevant personnel can make various changes and modifications without deviating from the technical idea of the present application. The technical scope of the present application is not limited to the contents in the specification, and must be determined according to the scope of the claims.

Claims

1. A visual anti-toppling omnidirectional protective medical instrument transfer box, comprising a main frame (1) and a camera assembly (2) for collecting video information, characterized in that: The lower end of the two side walls of the main frame (1) is provided with a flip side cover (3) for installing a camera assembly (2) through a side movable support, the inside of the main frame (1) is movably provided with an anti-toppling internal storage frame (4) for storing medical instruments, and a magnetic control stabilizing device is installed between the lower surface of the flip side cover (3) and the inner bottom surface of the anti-toppling internal storage frame (4). The main frame (1) is of a telescopic structure, the main frame (1) comprises a u-shaped lower support frame (101), side sliding rails (102) fixed on the outer walls of the two sides of the lower support frame (101), and an n-shaped upper carrying frame (103) slidingly inserted into the inside of the side sliding rails (102), a rectangular control opening is formed in the lower end of the outer side surface of the upper carrying frame (103), a flip lock (104) is elastically arranged in the inside of the rectangular control opening, and an inner side limiting clamping groove (105) matched with the flip lock (104) is formed in the upper inner side surface of the side sliding rails (102). Symmetrical side assembly shaft holes are formed in the inner side surface of the lower support frame (101), the anti-toppling internal storage frame (4) comprises two inner assembly frames (401) with side assembly shafts on the two sides, an upper support platform (402) elastically arranged in the inside of the inner assembly frame (401), a middle support platform (403), and a lower support platform (404).

2. The visual anti-topple omnibearing protective medical instrument transfer case according to claim 1, characterized in that: Flip pull-out extension plates (5) are slidingly arranged on the two side walls of the upper support platform (402) and the lower support platform (404).

3. The visual anti-topple omnidirectional protective medical instrument transfer case according to claim 1, characterized in that: The inner assembly frame (401) is provided with bottom side control frames (6) symmetrically arranged at the lower ends of the two sides, the magnetic control stabilizing device comprises an upper permanent magnet (7) installed at the lower end of the bottom side control frame (6) and a lower permanent magnet (8) installed on the inner bottom surface of the flip side cover (3).

4. The visual anti-topple omnidirectional protective medical instrument transfer case according to claim 1, characterized in that: The flip side cover (3) comprises a first shell (301) movably installed on the left side wall of the main frame (1) through a side movable support and a second shell (302) movably installed on the right side wall of the main frame (1) through a side movable support.

5. The visual anti-topple omnidirectional protective medical instrument transfer case according to claim 4, characterized in that: Side storage grooves matched with the main frame (1) are formed in the assembly surfaces of the first shell (301) and the second shell (302), and elastic locks (10) and side locking grooves (11) matched with the elastic locks (10) are arranged in a staggered manner on the assembly surfaces of the first shell (301) and the second shell (302).

6. The visual anti-topple omnidirectional protective medical instrument transfer case according to claim 1, characterized in that: Symmetrical side telescopic grooves (12) for assembling the upper support platform (402), the middle support platform (403), and the lower support platform (404) are formed in the inner walls of the two sides of the inner assembly frame (401), the upper support platform (402), the middle support platform (403), and the lower support platform (404) are inserted into the inside of the side telescopic grooves (12) through the assembly plates on the two sides and are slidingly connected with the inner assembly frame (401), and extrusion elastic sheets (13) for improving damping performance are arranged on the inner bottom surfaces of the side telescopic grooves (12).

7. The visual anti-topple omnidirectional protective medical instrument transfer case according to claim 4, characterized in that: The inner top corner of the first shell (301) and the second shell (302) is fixedly provided with a transversely arranged adjusting screw rod (14), and the outer side of the adjusting screw rod (14) is threadedly sleeved with a lateral assembling frame (15) for fixing a camera assembly (2).

8. The visual anti-topple omnidirectional protective medical instrument transfer case according to claim 3, characterized in that: The bottom end of the bottom-side control frame (6) is provided with a bottom adjusting plate (166) for fixing the upper permanent magnet (7) through an adjusting bolt (16), and the adjusting bolt (16) changes the gap between the upper permanent magnet (7) and the lower permanent magnet (8) by rotating.

Citation Information

Patent Citations

  • Container for medical instrument transportation

    CN107310871A

  • Medical kit convenient to take for medical treatment

    CN212952110U

  • A bearing storage box

    CN215205973U