Safe transportation and storage box for instruments

Through the design of magnet adsorption box door and foot pedal mechanism, the automatic opening and closing of the instrument storage box is realized, solving the problem of accidental closing of the box door in the prior art, improving operational safety and efficiency, and protecting the instrument.

CN223200666UActive Publication Date: 2025-08-08WUHAN CITY NATURAL GAS HIGH PRESSURE PIPELINE NETWORK CO
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Patent Information

Application Number
CN202422080538.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-26
Publication Date
2025-08-08
Estimated Expiration
2034-08-26

AI Technical Summary

Technical Problem

The existing instrument storage box is prone to accidental closing during opening, resulting in instrument damage and safety risks, and is complex in operation.

Method used

The magnet adsorption box door design and foot pedal mechanism are adopted to automatically open and close the box door. Combined with the linkage mechanism of the slide bar, top plate, upper plate, connecting plate and ejection rod, it prevents the box door from reclosing and stabilizes the box position through rubber strips.

Benefits of technology

It simplifies the operation process, improves work efficiency, enhances safety and stability, protects the instrument from damage, and reduces the risk of misoperation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a safe transportation and storage box for instruments, which relates to the technical field of instrument storage boxes and comprises a box body, a rubber interlayer is fixedly mounted on the inner wall of the box body, a storage groove is formed in the top surface of the rubber interlayer, a box door is rotatably connected to the surface of the box body, and a side shell is fixedly mounted on the side surface of the box body. A sliding rod is arranged on the bottom face of the side shell in a penetrating mode, and a top plate is fixedly installed at the top end of the sliding rod. By means of the design that the box door is attracted by the magnet, the box door is very easy to close and only needs to be closed manually, an additional lock catch device is not needed, meanwhile, by means of the design of the pedal mechanism, a worker can open the box door easily only by stepping on the pedal, manual operation is not needed, the two hands are liberated, and the working efficiency is improved; and through a linkage mechanism of a sliding rod, a top plate, an upper plate, a connecting plate, a sliding block and an ejection rod, the function of automatically ejecting out the box door is achieved, the box door can be completely opened, and instruments can be conveniently taken and placed.
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Description

Technical Field

[0001] The utility model relates to the technical field of instrument storage boxes, in particular to an instrument safe transportation storage box. Background Art

[0002] Instruments (pressure gauges, thermometers, etc.) may encounter many problems during disassembly, storage, and inspection, causing damage. For example, during the inspection and transportation of pressure gauges, collisions may occur, causing damage to the pressure gauge. This requires the use of storage boxes for protection and transportation.

[0003] However, in existing storage boxes, the door is often prone to reclosing due to gravity or external forces during opening. This not only increases the difficulty of operation but also poses a potential risk of damage to the instruments stored within. Without a stabilizing mechanism, the door can accidentally close, causing impact or crushing of the delicate instruments within, impacting their proper function or even causing irreparable damage. Furthermore, an accidentally closed door can pinch the operator's hand, increasing safety risks during use. Therefore, improvements are needed. Utility Model Content

[0004] The purpose of this utility model is to solve the technical problems raised in the above background technology.

[0005] The utility model adopts the following technical scheme: an instrument safe transportation storage box, comprising a box body, an inner wall of the box body is fixedly installed with a rubber interlayer, a top surface of the rubber interlayer is provided with a storage groove, a surface of the box body is rotatably connected with a box door, a side shell is fixedly installed on the side of the box body, a sliding rod is provided through the bottom surface of the side shell, a top plate is fixedly installed on the top end of the sliding rod, an upper plate is fixedly installed on the bottom surface of the top plate, a sliding groove is provided on the inner wall of the box body, a slider is slidably connected to the inner wall of the sliding groove, a connecting plate is rotatably connected between the slider and the upper plate, an ejection rod is fixedly installed on the surface of the slider, and a friction plate is fixedly installed on the side of the slider.

[0006] Preferably, the bottom surface of the box is rotatably connected to pulleys, and the pulleys are evenly distributed at the four corners of the bottom surface of the box, so that it can be easily moved.

[0007] Preferably, a magnet is fixedly mounted on the surface of the box body, and the box door is made of ferritic stainless steel.

[0008] Preferably, the sliding rod is slidably connected to the side shell, and an observation window is fixedly installed on the surface of the box door, which can facilitate observation of the internal situation.

[0009] Preferably, the friction plate is made of natural rubber, and the friction plate fits the inner side of the slide groove.

[0010] Preferably, the bottom end of the slide bar is provided with an anti-movement mechanism, comprising a pedal fixedly mounted on the bottom end of the slide bar, a vertical plate fixedly mounted on the bottom end of the pedal, a bottom block fixedly mounted on the bottom end of the vertical plate, and a rubber strip fixedly mounted on the bottom surface of the bottom block. This can prevent the box from shifting.

[0011] Preferably, the rubber strips are arranged at equal distances on the bottom surface of the bottom block.

[0012] Compared with the prior art, the advantages and positive effects of the present invention are:

[0013] 1. The utility model adopts the design of magnet adsorption of the box door, which makes it very simple to close the box door. It only needs to be closed manually and no additional locking device is required. At the same time, through the design of the foot pedal mechanism, the staff can easily open the box door by stepping on the pedal. No manual operation is required, which frees up their hands and improves work efficiency. The linkage mechanism of the slide rod, top plate, upper plate, connecting plate, slide block and ejector rod realizes the function of automatic ejection of the box door, so that the box door can be fully opened, which is convenient for taking and placing instruments. At the same time, the friction design between the friction plate and the inner wall of the slide groove can limit the ejector rod to a certain extent, preventing the box door from closing again during the opening process, protecting the instruments in the box from damage, increasing safety and having high practicality.

[0014] 2. The utility model drives the vertical plate and the bottom block to move when stepping on the pedal, so that the rubber strip is against the ground, which can effectively stabilize the position of the box and prevent the box from moving or tipping over during the door opening operation, thereby improving the safety and stability of operation. At the same time, after the rubber strip is against the ground, the friction between the box and the ground is increased, reducing the probability of the box sliding on the ground, especially on uneven or smooth ground, which more significantly improves the stability of the box. When the pedal is stepped on to open the door, the rubber strip is against the ground at the same time, realizing the synchronous operation of opening the door and stabilizing the box, simplifying the operation process and enhancing the user experience. Stabilizing the position of the box can effectively prevent the box from moving during the door opening process, avoiding the potential risk of collision or falling of the staff during operation, and improving the safety of the overall operation. At the same time, after the box is stabilized, the misoperation caused by the movement of the box during transportation is reduced, ensuring that the opening and closing process of the box door is smoother and more controllable. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 The utility model provides a schematic diagram of an instrument safe transportation storage box;

[0016] Figure 2 The utility model provides a cross-sectional view of an instrument safe transport storage box;

[0017] Figure 3 This utility model proposes a safe transport storage box for instruments Figure 2 Enlarged view of point A in the middle;

[0018] Figure 4 The utility model provides a bottom view of an instrument safe transportation storage box.

[0019] Legend:

[0020] 1. Box body; 2. Rubber interlayer; 3. Storage slot; 4. Box door; 5. Pulley; 6. Side shell; 7. Slide rod; 8. Top plate; 9. Upper plate; 10. Slide groove; 11. Slider; 12. Connecting plate; 13. Ejector rod; 14. Friction plate; 15. Magnet; 16. Pedal; 17. Vertical plate; 18. Bottom block; 19. Rubber strip. DETAILED DESCRIPTION

[0021] In order to more clearly understand the above-mentioned purpose, features and advantages of the present invention, the present invention is further described below with reference to the accompanying drawings and embodiments. It should be noted that the embodiments of the present application and the features therein can be combined with each other without conflict.

[0022] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways than those described herein. Therefore, the present invention is not limited to the specific embodiments disclosed in the following specification.

[0023] Example 1

[0024] See also Figure 1-4The present invention provides a technical solution: a safe instrument transport and storage box, comprising a box body 1, with pulleys 5 rotatably connected to the bottom of the box body 1, and the pulleys 5 are evenly distributed at the four corners of the bottom of the box body 1. The pulleys 5 can be rotatably connected to the bottom of the box body 1 using a bearing connection or a pin connection. This connection method not only ensures smooth rotation of the pulleys 5 but also facilitates subsequent maintenance and replacement. The bearing connection provides low-friction rotation, making the pulley 5 move more smoothly, while the pin connection has a simple structure and is easy to disassemble. The pulleys 5 can be made of high-strength nylon or rubber. High-strength nylon is wear-resistant and has a strong load-bearing capacity, while rubber pulleys provide better shock absorption and are suitable for bumpy surfaces. Magnets 15 are fixedly mounted on the surface of the box body 1. The magnets 15 can be made of neodymium iron boron or samarium cobalt. Neodymium iron boron magnets have high magnetic force and good stability, effectively attracting the box door 4, while samarium cobalt magnets perform better in high-temperature environments. The magnet 15 can be installed on the surface of the box body 1 by screw fixation or adhesive bonding. This fixing method is not only stable but also easy to adjust and replace. The material of the box door 4 is ferritic stainless steel. This material not only has good corrosion resistance but can also be adsorbed by the magnet 15, thereby achieving automatic closing. Ferritic stainless steel is sturdy and durable, suitable for long-term use, while maintaining a beautiful and neat appearance. A rubber interlayer 2 is fixedly installed on the inner wall of the box body 1, and a storage slot 3 is provided on the top surface of the rubber interlayer 2. The material of the rubber interlayer 2 can be natural rubber or synthetic rubber. Natural rubber has good elasticity and wear resistance, while synthetic rubber can provide better aging resistance and chemical corrosion resistance. The rubber interlayer 2 is fixed to the inner wall of the box body 1 by adhesive or snap fasteners. This fixing method is not only stable but also easy to disassemble and clean. The storage slot 3 can be customized according to the shape and size of the instrument to ensure that the instrument does not shake during storage and provide better protection. The surface of the box body 1 is rotatably connected to the box door 4, and the box door 4 is connected to the box body 1 by means of a hinge or a rotating shaft. The hinge connection can provide a good opening and closing angle and stability, which is convenient for opening and closing the box door 4, while the rotating shaft connection can provide a more flexible rotation effect. The material of the hinge can be stainless steel or high-strength alloy. Stainless steel has good corrosion resistance and strength, while high-strength alloy can provide better wear resistance. A side shell 6 is fixedly installed on the side of the box body 1, and a sliding rod 7 is provided through the bottom surface of the side shell 6, and the sliding rod 7 is slidably connected to the side shell 6. The sliding rod 7 can achieve smooth sliding by means of a guide rail or bearing sliding. The guide rail can provide good guidance and stability, while the bearing sliding can reduce friction and improve sliding efficiency and durability. The material of the sliding rod 7 can be stainless steel or aluminum alloy. Stainless steel has good strength and corrosion resistance, while aluminum alloy has the advantages of light weight and high strength.An observation window is fixedly installed on the surface of the door 4. The material of the observation window can be selected from tempered glass or polycarbonate. Tempered glass has high strength and impact resistance, while polycarbonate has lightweight and good chemical corrosion resistance. The observation window is fixed to the door 4 by sealing strips and bolts to ensure the stability and sealing of its installation and prevent dust and moisture from entering. A top plate 8 is fixedly installed on the top of the sliding rod 7, and an upper plate 9 is fixedly installed on the bottom surface of the top plate 8. The upper plate 9 can be connected to the top plate 8 by welding or screwing. The welded connection can provide higher strength and sealing, while the screw fixation is easy to disassemble and maintain. The material of the top plate 8 and the upper plate 9 can be selected from aluminum alloy or stainless steel. Aluminum alloy has the characteristics of light weight and high strength, while stainless steel has good corrosion resistance.

[0025] See also Figure 1-4 The inner wall of the housing 1 is formed with a slot 10, to which a slider 11 is slidably connected. Slider 11 can be constructed using a sliding guide or bearing to ensure smooth sliding within the slot 10. Slider 11 can be made of either high-strength plastic or metal. High-strength plastic offers excellent wear resistance and self-lubricating properties, while metal sliders offer greater strength and durability. A connecting plate 12 is rotatably connected between slider 11 and upper plate 9. Connecting plate 12 can be connected to the slider 11 and upper plate 9 using a hinge or a rotating shaft. A hinge connection provides stable rotation, while a rotating shaft offers more flexible movement. An ejector rod 13 is fixedly mounted on the surface of slider 11. This rod 13 can be secured by threading or welding. Threading facilitates adjustment of its length, while welding provides greater strength and stability. A friction plate 14 is fixedly mounted on the side of slider 11. Friction plate 14 is made of natural rubber, which has excellent elasticity and wear resistance, providing appropriate friction. The friction plate 14 fits against the inner side of the slide groove 10 and limits the position of the slider 11 by friction force, thereby preventing the slider 11 from shifting during movement and ensuring that the ejection rod 13 can accurately push open the door 4.

[0026] Example 2

[0027] See also Figure 4 The bottom end of the slide bar 7 is provided with an anti-movement mechanism, which includes a pedal 16. Pedal 16 is fixedly mounted to the bottom end of the slide bar 7. Pedal 16 can be mounted by welding or screws to ensure its stability and durability. A vertical plate 17 is fixedly mounted to the bottom end of the pedal 16. A bottom block 18 is fixedly mounted to the bottom end of the vertical plate 17. Rubber strips 19 are fixedly mounted to the bottom surface of the bottom block 18. The rubber strips 19 are arranged at equal distances on the bottom surface of the bottom block 18. The rubber strips 19 can be made of natural rubber or synthetic rubber. Natural rubber has good elasticity and wear resistance, while synthetic rubber provides better resistance to aging and chemical corrosion.

[0028] Working principle: You only need to put the instrument into the storage slot 3 on the rubber interlayer 2 to store the instrument. At the same time, since the rubber interlayer 2 is made of a soft material, it can effectively protect the instrument. At the same time, the pulley 5 provided can be easily moved. When the box door 4 is closed, you only need to manually close the box door 4, and then the magnet 15 can absorb the ferritic stainless steel box door 4, thereby limiting the box door 4. At the same time, when the box door 4 needs to be opened, the staff only needs to step on the pedal 16 downward, and the pedal 16 can then drive the slide bar 7 to move downward, and the slide bar 7 can then drive the top plate 8 to move downward, and the top plate 8 can then drive the upper plate 9 to move downward, and the upper plate 9 can then drive the slider 11 to slide in the slide groove 10 toward the box door 4 through the connecting plate 12, and the slider 11 will move with After that, it can drive the ejection rod 13 to move, and the ejection rod 13 can push the box door 4 open at this time, so as to completely open the box door 4. At the same time, due to the friction between the friction plate 14 and the inner wall of the slide groove 10, the position of the ejection rod 13 can be limited, which can prevent the box door 4 from closing again and preventing the box door 4 from closing suddenly and hitting the instrument during the transportation process. The utility model uses the design of the magnet 15 to absorb the box door 4, which makes it very simple to close the box door 4. It only needs to be closed manually and no additional locking device is required. At the same time, through the design of the foot pedal 16 mechanism, the staff only needs to step on the pedal 16 to easily open the box door 4. No manual operation is required, which frees both hands and improves work efficiency. 12. The linkage mechanism of the slider 11 and the ejector rod 13 realizes the function of automatically ejecting the box door 4, so that the box door 4 can be fully opened, which is convenient for taking and placing instruments. At the same time, the friction design of the friction plate 14 and the inner wall of the slide groove 10 can limit the ejector rod 13 to a certain extent, preventing the box door 4 from closing again during the opening process, and the instruments in the box body 1 are not damaged, which increases safety. When the staff steps on the pedal 16 downward to open the box door 4, the pedal 16 can synchronously drive the vertical plate 17 downward to move, and the vertical plate 17 can then drive the bottom block 18 to move downward, and the bottom block 18 can then drive the rubber strip 19 to resist the ground. At this time, the position of the box body 1 is stabilized by the contact of the rubber strip 19, which can reduce the probability of the box body 1 moving. The utility model drives the vertical plate 17 and the bottom block 18 to move when stepping on the pedal 16, so that the rubber strip 19 is against the ground, which can effectively stabilize the position of the box body 1 and prevent the box body 1 from moving or tipping over during the door opening operation, thereby improving the safety and stability of the operation. At the same time, after the rubber strip 19 is against the ground, the friction between the box body 1 and the ground is increased, and the probability of the box body 1 sliding on the ground is reduced, especially on uneven or smooth ground, which more significantly improves the stability of the box body 1. When the pedal 16 is stepped on to open the door, the rubber strip 19 is synchronously against the ground, realizing the synchronous operation of opening the door and stabilizing the box body 1, simplifying the operation process and enhancing the user experience. Stabilizing the position of the box body 1 can effectively prevent the box body 1 from moving during the door opening process.This prevents workers from potential collisions or falls during operation, improving overall operational safety. Furthermore, after the box 1 is stabilized, misoperation due to movement of the box 1 during transportation is reduced, ensuring smoother and more controllable opening and closing of the door 4.

[0029] The above description is only a preferred embodiment of the present invention and does not limit the present invention in any other form. Any technician familiar with the profession may use the technical content disclosed above to change or modify it into an equivalent embodiment with equivalent changes for application in other fields. However, any simple modification, equivalent change and modification of the above embodiment made according to the technical essence of the present invention without departing from the content of the technical solution of the present invention shall still fall within the scope of protection of the technical solution of the present invention.

Claims

1. An instrument safe transport storage box, comprising a box body (1), characterized in that: The inner wall of the box body (1) is fixedly installed with a rubber interlayer (2), the top surface of the rubber interlayer (2) is provided with a storage groove (3), the surface of the box body (1) is rotatably connected with a box door (4), the side of the box body (1) is fixedly installed with a side shell (6), the bottom surface of the side shell (6) is penetrated by a slide rod (7), the top end of the slide rod (7) is fixedly installed with a top plate (8), the bottom surface of the top plate (8) is fixedly installed with an upper plate (9), the inner wall of the box body (1) is provided with a slide groove (10), the inner wall of the slide groove (10) is slidably connected with a slider (11), a connecting plate (12) is rotatably connected between the slider (11) and the upper plate (9), the surface of the slider (11) is fixedly installed with an ejection rod (13), and the side of the slider (11) is fixedly installed with a friction plate (14).

2. The instrument safe transport storage box according to claim 1, characterized in that: The bottom surface of the box body (1) is rotatably connected to a pulley (5), and the pulleys (5) are evenly distributed at the four corners of the bottom surface of the box body (1).

3. The instrument safe transport storage box according to claim 1, characterized in that: A magnet (15) is fixedly mounted on the surface of the box body (1), and the material of the box door (4) is ferritic stainless steel.

4. The instrument safe transport storage box according to claim 1, characterized in that: The sliding rod (7) is slidably connected to the side shell (6), and an observation window is fixedly installed on the surface of the box door (4).

5. The instrument safe transport storage box according to claim 1, characterized in that: The friction plate (14) is made of natural rubber, and the friction plate (14) is in contact with the inner side of the slide groove (10).

6. The instrument safe transport storage box according to claim 1, characterized in that: The bottom end of the slide bar (7) is provided with an anti-movement mechanism, and the anti-movement mechanism includes a pedal (16), the pedal (16) is fixedly mounted on the bottom end of the slide bar (7), the bottom end of the pedal (16) is fixedly mounted with a vertical plate (17), the bottom end of the vertical plate (17) is fixedly mounted with a bottom block (18), and the bottom surface of the bottom block (18) is fixedly mounted with a rubber strip (19).

7. The instrument safe transport storage box according to claim 6, characterized in that: The rubber strips (19) are arranged at equal distances on the bottom surface of the bottom block (18).