Carbon fiber material storage box

By using a connecting rod mechanism of the threaded rod driven by the servo motor in the carbon fiber material storage box, flexible adjustment of the spacing between the plates is achieved, solving the problem of unreasonable space utilization in the prior art, and improving the stability and safety of the material.

CN222922026UActive Publication Date: 2025-05-30CHONGQING XUNCHANG NEW MATERIALS TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421971319.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-14
Publication Date
2025-05-30
Estimated Expiration
2034-08-14

AI Technical Summary

Technical Problem

Existing carbon fiber material storage devices cannot flexibly adjust the spacing between the plates according to the material size, resulting in wasted space or congestion in storage, and unreasonable space utilization.

Method used

A carbon fiber material storage box is designed, using a servo motor to drive the threaded rod, and the connecting rod mechanism allows the placement plate to flexibly adjust the spacing under the guidance of the guide rod to improve the space utilization rate.

Benefits of technology

The flexibly adjusts the spacing of the placement plates according to the size of the carbon fiber material, improves the utilization rate of the storage box, and ensures the stability and safety of the material during storage.

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Abstract

The utility model belongs to the technical field of carbon fiber material preservation, and particularly relates to a carbon fiber material preservation box which comprises a box body, a servo motor is installed on the edge of the top side of the box body, a threaded rod is installed at the output end of the servo motor, a connecting block is in threaded connection with the outer wall of the threaded rod, and a first connecting rod is installed on one side of the connecting block in a matched mode through a pin shaft. A servo motor is started to drive a threaded rod to rotate, so that the connecting block moves up and down along the threaded rod, the first connecting rod connected through a pin shaft drives the first connecting rod to move, and the first connecting rod is driven to move through a rotating shaft. The movement of the first connecting rod is transmitted to the second connecting rod through the supporting rod, so that the second connecting rod correspondingly moves, along with the movement of the connecting rod mechanism, the space between the placing plates can be flexibly adjusted under the guide of the guide rod according to the size of the carbon fiber material, and the utilization rate of the internal space of the storage box is increased.
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Description

Technical Field

[0001] The utility model relates to the technical field of carbon fiber material preservation, and particularly relates to a preservation box for carbon fiber materials. Background Art

[0002] Carbon fiber is a new fiber material with high strength and high modulus fibers containing more than 90% carbon. The outer shell of mobile phones has been made of carbon fiber materials. In order to ensure that the performance and quality of carbon fiber materials are not damaged during storage, a preservation box is needed.

[0003] A Chinese patent with the publication number CN111137734A discloses a preservation device for activated carbon fiber products, including a motor box. A first motor is arranged inside the motor box. The output end of the first motor is connected to a motor cylinder through a first telescopic rod. A third motor is arranged inside the motor cylinder. The output end of the third motor is connected to a storage shaft through a first connecting shaft. A clamping plate groove is formed inside the storage shaft. The present invention facilitates the sealing of the box body through a first magnetic strip and a second sealing plate to prevent moisture in the air from entering the box body and contaminating the activated carbon fiber.

[0004] However, there are still some problems with the above-mentioned preservation device. In practical applications, the distance between the placement plates cannot be flexibly adjusted according to the size of the carbon fiber material, resulting in wasted space or crowded storage, thus leading to unreasonable utilization of space. Therefore, a preservation box for carbon fiber materials is proposed for the above problems. Summary of the Utility Model

[0005] In order to make up for the deficiencies of the prior art and solve the problems raised in the background art, the utility model proposes a preservation box for carbon fiber materials.

[0006] The technical solution adopted by the utility model to solve its technical problems is as follows: A carbon fiber material storage box of the utility model includes a box body. A servo motor is installed at the top side edge of the box body. The output end of the servo motor is installed with a threaded rod. A connecting block is threadedly connected to the outer wall of the threaded rod. One side of the connecting block is installed with a connecting rod one through a pin shaft. One end of the connecting rod one is installed with a connecting rod one through a pin shaft. One end of the connecting rod one is installed with a support rod through a pin shaft. One end of the support rod is installed with a connecting rod two through a pin shaft. At the middle positions of the connecting rod one, the support rod and the connecting rod two, hollow blocks are installed through connecting shafts. The hollow blocks are sleeved on the outer wall of the threaded rod. One end of the connecting rod two is installed with a connecting rod two through a pin shaft. One end of the connecting rod two is installed with a fixed block through a rotating shaft. The fixed block is fixedly installed on the bottom inner wall of the box body. One side of the connecting block, the hollow block and the fixed block are all installed with placing plates. Three guide rods are equidistantly fixedly connected between the two sides at one end of the box body. One end of each placing plate is slidably installed on the outer wall of the guide rod. The space between the placing plates can be flexibly adjusted according to the size of the carbon fiber material, improving the utilization rate of the internal space of the storage box.

[0007] Preferably, six placing grooves are equidistantly opened inside the placing plate. Two springs are fixedly connected to one side inside each placing groove. One end of each spring is fixedly connected to a limiting plate. The limiting plates are slidably installed inside the placing grooves, limiting and fixing the carbon fiber materials, effectively preventing the materials from shaking and shifting significantly during the storage process, and improving the safety and stability of the materials.

[0008] Preferably, through grooves are opened inside the guide rods. Seven dust suction grooves are equidistantly arranged on the outer wall of the guide rods. The dust suction grooves are communicated with the through grooves. The bottom side of the box body is connected with a cavity. The through grooves are communicated with the cavity, effectively maintaining the clean environment inside the storage box and extending the service life of the carbon fiber materials.

[0009] Preferably, a filter plate is assembled between the two sides of the cavity. A negative pressure motor is installed on the bottom inner wall of the cavity. Five fan blades are equidistantly installed at the output end of the negative pressure motor. An exhaust pipe is installed through one side inside the cavity, improving the dust suction efficiency and ensuring the air purification quality.

[0010] Preferably, a rod hole is arranged at the central position of the hollow block. The threaded rod passes through the rod hole and is rotatably installed inside the fixed block, improving the stability of the movement of the hollow block.

[0011] Preferably, a movable door is installed on one side of the box body through a hinge. A handle is fixedly connected to one side of the movable door, facilitating the taking and placing of carbon fiber materials.

[0012] The advantages of the present utility model are as follows:

[0013] 1. When the present utility model starts the servo motor to drive the threaded rod to rotate, the connecting block will move up and down along the threaded rod. The connecting rod 1 connected by the pin shaft drives the connecting rod 1 to move. The movement of the connecting rod 1 is transmitted to the connecting rod 2 through the support rod, so that the connecting rod 2 also moves accordingly. With the movement of the above connecting rod mechanism, the placement plate will be guided by the guide rod and flexibly adjust the space between the placement plates according to the size of the carbon fiber material, improving the utilization rate of the internal space of the storage box;

[0014] 2. When the present utility model starts the negative pressure motor and the fan blade rotates, negative pressure is generated in the cavity chamber. The dust inside the storage box will enter the through groove through the dust suction groove and then be sucked into the cavity chamber. When passing through the filter plate, the dust is blocked and collected by the filter plate, and the filtered air is discharged through the exhaust pipe, effectively maintaining the clean environment inside the storage box and prolonging the service life of the carbon fiber material. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0016] Figure 1 It is an isometric perspective structural schematic diagram of the present utility model;

[0017] Figure 2 It is a schematic diagram of the main internal structure of the storage box;

[0018] Figure 3 It is a schematic diagram of the equidistant adjustment component structure between the placement plates;

[0019] Figure 4 It is a schematic diagram of the carbon fiber material limiting component structure;

[0020] Figure 5 It is a schematic diagram of the internal ash cleaning component structure of the box body.

[0021] In the figure: 1, box body; 2, servo motor; 3, threaded rod; 4, connecting block; 5, connecting rod 1; 6, connecting rod 1; 7, hollow block; 8, support rod; 9, connecting rod 2; 10, connecting rod 2; 11, fixed block; 12, placement plate; 13, guide rod; 14, placement groove; 15, spring; 16, limiting plate; 17, through groove; 18, dust suction groove; 19, cavity chamber; 20, filter plate; 21, negative pressure motor; 22, fan blade; 23, exhaust pipe; 24, movable door; 25, handle. Detailed implementation mode

[0022] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without making creative efforts belong to the scope of protection of the present utility model.

[0023] Please refer to Figures 1-5 As shown, a carbon fiber material storage box includes a box body 1. A servo motor 2 is installed at the top side edge of the box body 1. A threaded rod 3 is installed at the output end of the servo motor 2. A connecting block 4 is threadedly connected to the outer wall of the threaded rod 3. One side of the connecting block 4 is installed with a connecting rod one 5 through a pin shaft. One end of the connecting rod one 5 is installed with a connecting rod one 6 through a pin shaft. One end of the connecting rod one 6 is installed with a support rod 8 through a pin shaft. One end of the support rod 8 is installed with a connecting rod two 9 through a pin shaft. The middle positions of the connecting rod one 6, the support rod 8, and the connecting rod two 9 are all installed with a hollow block 7 through a connecting shaft. The hollow block 7 is sleeved on the outer wall of the threaded rod 3. One end of the connecting rod two 9 is installed with a connecting rod two 10 through a pin shaft. One end of the connecting rod two 10 is installed with a fixed block 11 through a rotating shaft. The fixed block 11 is fixedly installed on the bottom inner wall of the box body 1. One side of the connecting block 4, the hollow block 7, and the fixed block 11 are all installed with a placing plate 12. Three guide rods 13 are equidistantly fixedly connected between the two sides at one end edge of the box body 1. One end of the placing plate 12 is slidably installed on the outer wall of the guide rod 13;

[0024] Six placement grooves 14 are evenly arranged inside the placement plate 12. Two springs 15 are fixedly connected to one side inside each of the placement grooves 14. One end of each spring 15 is fixedly connected to a limiting plate 16. The limiting plate 16 is slidably installed inside the placement groove 14. One side of the box body 1 is equipped with a movable door 24 through hinge cooperation. A handle 25 is fixedly connected to one side of the movable door 24. During operation, in practical applications, it is impossible to flexibly adjust the distance between the placement plates 12 according to the size of the carbon fiber material, resulting in wasted space or crowded storage, thus leading to unreasonable utilization of space. When the servo motor 2 is started, the output end drives the threaded rod 3 to rotate, causing the connecting block 4 to move up and down along the threaded rod 3. When the connecting block 4 moves, the connecting rod 5 connected by a pin shaft drives the connecting rod 6 to move. The movement of the connecting rod 6 is transmitted to the connecting rod 9 through the support rod 8, causing the connecting rod 9 to move accordingly. With the movement of the above connecting rod mechanism, the placement plates 12 can be flexibly adjusted according to the size of the carbon fiber material under the guidance of the guide rods 13, improving the utilization rate of the internal space of the storage box. It should be noted that after adjusting the distance between the placement plates 12, the hollow block 7 needs to be fixed in the current position through a fastener. Subsequently, the movable door 24 is opened through the handle 25, and the item is placed in the placement groove 14, which will compress the spring 15 and push the limiting plate 16 against the surface of the item, playing a role in fixing the item and preventing the item from shaking significantly.

[0025] Please refer to Figures 1-5 As shown, through grooves 17 are formed inside each of the guide rods 13. Seven dust suction grooves 18 are evenly arranged on the outer wall of the guide rods 13. The dust suction grooves 18 are communicated with the through grooves 17. The bottom side of the box body 1 is connected to a cavity 19. The through grooves 17 are communicated with the cavity 19.

[0026] A filter plate 20 is assembled between the two sides of the cavity 19. A negative pressure motor 21 is installed on the bottom inner wall of the cavity 19. Five fan blades 22 are equidistantly installed at the output end of the negative pressure motor 21. An exhaust pipe 23 is installed through one side inside the cavity 19. During operation, in practical applications, when the carbon fiber material is stored in the box body 1 for a long time, dust will be generated. To avoid dust contaminating or damaging the carbon fiber material, the negative pressure motor 21 is started, and the fan blades 22 rotate, causing a negative pressure to be generated in the cavity 19. The dust inside the storage box will enter the through grooves 17 through the dust suction grooves 18 and then be sucked into the cavity 19. The air entering the cavity 19 carries dust. When passing through the filter plate 20, the dust is blocked and collected by the filter plate 20, and the filtered air continues to flow under the action of negative pressure and is discharged through the exhaust pipe 23, effectively maintaining the clean environment inside the storage box and extending the service life of the carbon fiber material.

[0027] Working principle: When the servo motor 2 is started, the output end drives the threaded rod 3 to rotate, causing the connecting block 4 to move up and down along the threaded rod 3. When the connecting block 4 moves, the connecting rod one 5 connected by the pin shaft drives the connecting rod one 6 to move. The movement of the connecting rod one 6 is transmitted to the connecting rod two 9 through the support rod 8, causing the connecting rod two 9 to move accordingly. With the movement of the above connecting rod mechanism, the placement plate 12 can be flexibly adjusted according to the size of the carbon fiber material under the guidance of the guide rod 13, improving the utilization rate of the internal space of the storage box. It should be noted that after adjusting the distance between the placement plates 12, the hollow block 7 needs to be fixed in the current position through fasteners. Subsequently, the movable door 24 is opened through the handle 25, and the item is placed in the placement groove 14, which will compress the spring 15 and push the limit plate 16 against the surface of the item, playing a role in fixing the item and preventing the item from shaking significantly;

[0028] Start the negative pressure motor 21, and the fan blade 22 rotates, generating negative pressure in the cavity chamber 19. The dust inside the storage box will enter the through groove 17 through the dust suction groove 18 and then be sucked into the cavity chamber 19. The air entering the cavity chamber 19 carries dust. When passing through the filter plate 20, the dust is blocked and collected by the filter plate 20. The filtered air continues to flow under the action of negative pressure and is discharged through the exhaust pipe 23, effectively maintaining the clean environment inside the storage box and extending the service life of the carbon fiber material.

[0029] In the description of this specification, the description with reference to terms such as "one embodiment", "example", "specific example", etc. means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in a suitable manner in any one or more embodiments or examples.

[0030] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art of this industry should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification only illustrate the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed.

Claims

1. A carbon fiber material storage box, characterized in that: The invention comprises a box body (1), a servo motor (2) is installed at the top side edge of the box body (1), a threaded rod (3) is installed at the output end of the servo motor (2), a connecting block (4) is threadedly connected to the outer wall of the threaded rod (3), a connecting rod (5) is installed on one side of the connecting block (4) through a pin, a connecting rod (6) is installed on one end of the connecting rod (5) through a pin, a support rod (8) is installed on one end of the connecting rod (6) through a pin, a connecting rod (9) is installed on one end of the support rod (8) through a pin, and the middle ends of the connecting rod (6), the support rod (8) and the connecting rod (9) are all connected through a A hollow block (7) is installed in cooperation with the connecting shaft, and the hollow block (7) is sleeved on the outer wall of the threaded rod (3). One end of the connecting rod (9) is installed with a connecting rod (10) through a pin shaft, and one end of the connecting rod (10) is installed with a fixed block (11) through a rotating shaft. The fixed block (11) is fixedly installed on the bottom inner wall of the box body (1). A placement plate (12) is installed on one side of the connecting block (4), the hollow block (7) and the fixed block (11). Three guide rods (13) are fixedly connected between the two sides of one end edge of the box body (1) at equal distances, and one end of the placement plate (12) is slidably installed on the outer wall of the guide rod (13).

2. A carbon fiber material storage box according to claim 1, characterized in that: The placement plate (12) is provided with six placement grooves (14) at equal intervals inside, two springs (15) are fixedly connected to one side of the placement groove (14), one end of the spring (15) is fixedly connected to a limit plate (16), and the limit plate (16) is slidably installed inside the placement groove (14).

3. A carbon fiber material storage box according to claim 2, characterized in that: The guide rod (13) is provided with a through groove (17) inside, and the outer wall of the guide rod (13) is provided with seven dust suction grooves (18) at equal intervals, and the dust suction grooves (18) are connected to the through grooves (17). The bottom side of the box body (1) is connected to a cavity (19), and the through groove (17) is connected to the cavity (19).

4. A carbon fiber material storage box according to claim 3, characterized in that: A filter plate (20) is installed between the two sides of the cavity (19), a negative pressure motor (21) is installed on the inner wall of the bottom side of the cavity (19), five fan blades (22) are installed at equal distances at the output end of the negative pressure motor (21), and an exhaust pipe (23) is installed through the inside of one side of the cavity (19).

5. A carbon fiber material storage box according to claim 4, characterized in that: A rod hole is provided at the center of the hollow block (7), and the threaded rod (3) passes through the rod hole and is rotatably mounted inside the fixed block (11).

6. The carbon fiber material storage box according to claim 1, characterized in that: A movable door (24) is installed on one side of the box body (1) via a hinge, and a handle (25) is fixedly connected to one side of the movable door (24).

Citation Information

Patent Citations

  • Activated carbon fiber finished product storage device

    CN111137734A