Integrated moisture-proof storing and quick taking device for bar code thermal transfer ribbons

By using a separate storage space, humidity sensor and pipeline control system in the barcode carbon tape storage device, combined with rotary shelves and support components, the moisture and air circulation problems during the storage of barcode carbon tape are solved, and efficient moisture-proof and rapid access are achieved.

CN120397475APending Publication Date: 2025-08-01福建鸣友新材料科技有限公司
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Patent Information

Application Number
CN202510773732.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-11
Publication Date
2025-08-01

AI Technical Summary

Technical Problem

Existing barcode carbon tapes are prone to moisture during storage, especially local moisture problems caused by differences in air humidity at different heights, and poor air circulation during storage affects the use effect.

Method used

The storage cylinder is divided into multiple independent sealed storage spaces, combined with the humidity sensor and pipeline control system, precise monitoring and directional drying are achieved through the drying equipment, and combined with the rotary shelf assembly and sliding support assembly to ensure the orderly arrangement and uniform ventilation of the barcode carbon tape, and the support assembly can be adjusted to adapt to different specifications of carbon tapes.

Benefits of technology

It effectively solves the problem of local moisture in barcode carbon tapes, achieves uniform ventilation and rapid access, is compatible with different specifications of carbon tapes, and improves storage effect.

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Abstract

The invention discloses an integrated bar code thermal transfer ribbon moisture-proof storage and rapid taking device, and relates to the technical field of printing consumable storage, the integrated bar code thermal transfer ribbon moisture-proof storage and rapid taking device comprises a base, and a drying device is fixed on the upper end face of the base; the display is mounted on the upper end surface of the base; the storage barrel is fixed to the upper end face of the base and connected with the drying equipment through a plurality of pipelines, and control valves are installed on the multiple pipelines; the sealing bin door is hinged to the side wall of the storage barrel; the isolating layer is fixed on the upper end surface of the storage cylinder and is of a hollow structure; the storage assembly is fixed to the base, and one end of the storage assembly extends into the storage cylinder.
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Description

Technical Field

[0001] The present invention relates to the technical field of printing consumable storage, and particularly to an integrated bar code ribbon moisture-proof storage and quick access device. Background Art

[0002] A bar code ribbon is a new type of bar code printing consumable with ink coated on one side of a polyester film and a lubricant for preventing print head wear coated on the other side. It mainly uses thermal transfer technology and is used in conjunction with bar code printers. Through the heat and pressure of the print head of the bar code printer, the ribbon transfers the corresponding text and bar code information to the label.

[0003] Existing bar code ribbons are generally stacked on shelves during storage, which will cause the bar code ribbons to be affected by moisture over a long time and affect the use. Some storage methods place them in a relatively enclosed storage bin to reduce the influence of moisture, but they are also stacked during storage, resulting in poor air circulation and poor moisture-proof effect. Moreover, there are differences in the air humidity at different heights in the storage bin, and it is not possible to effectively perform moisture-proof operations on bar code ribbons at different positions.

[0004] In view of the above problems, the present invention provides an integrated bar code ribbon moisture-proof storage and quick access device to solve the above problems. Summary of the Invention[[ID=!7]]

[0005] To achieve the above object, the present invention provides the following technical solution: An integrated bar code ribbon moisture-proof storage and quick access device, characterized in that it includes:

[0006] A base, on the upper end surface of which a drying device is fixed;

[0007] A display, installed on the upper end surface of the base;

[0008] A storage cylinder, fixed on the upper end surface of the base and connected to the drying device by a plurality of pipelines, and control valves are installed on each of the plurality of pipelines; [[ID=!9]]

[0009] A sealed door, hinged on the side wall of the storage cylinder;

[0010] An isolation layer, fixed on the upper end surface of the storage cylinder and having a hollow structure;

[0011] A storage component, fixed on the base and extending into the storage cylinder at one end.

[0012] Further, preferably, the storage component includes:

[0013] A fixing frame, fixed on the base;

[0014] A driving motor, fixed on the lower end surface of the fixing frame;

[0015] The shelf assembly is rotatably arranged on the fixed frame, located inside the storage cylinder, and connected to the output end of the driving motor;

[0016] The support assemblies are configured to be multiple, all slidably arranged inside the shelf assembly, and a barcode ribbon is respectively installed on each of the multiple support assemblies.

[0017] Furthermore, preferably, the shelf assembly includes:

[0018] A rotating shaft rotatably arranged on the fixed frame;

[0019] A plurality of storage trays are equidistantly fixed on the rotating shaft;

[0020] A plurality of sliding grooves are circumferentially formed on the storage tray, and the support assemblies are slidably arranged in the sliding grooves.

[0021] Furthermore, preferably, the inside of the storage cylinder is divided into a plurality of storage spaces by the plurality of storage trays, the plurality of storage spaces are in a sealed state with each other, and a humidity sensor is arranged in each of the plurality of storage spaces, and the plurality of pipes respectively correspond to the plurality of storage spaces one by one.

[0022] Furthermore, preferably, the support assembly includes:

[0023] A support column, with a sliding block fixed at its bottom, and the sliding block is slidably arranged in the sliding groove;

[0024] A fixed column fixed at the middle position of the support column;

[0025] A limiting column fixed inside the support column and located directly above the fixed column;

[0026] Two pressing columns are symmetrically arranged inside the support column, and at least three hinge plates are fixed on the outer wall thereof;

[0027] An adjusting column is slidably arranged inside the support column and penetrates through the fixed column, the limiting column and the pressing column;

[0028] A pressing spring is sleeved on the outer wall of the adjusting column and located between the fixed column and the lower pressing column;

[0029] A plurality of connecting rods, one end of each is hinged to the hinge plate, and the other end is hinged to a support plate, and one of the support plates is hinged by two connecting rods.

[0030] Furthermore, preferably, both the sliding groove and the sliding block are of T-shaped structures.

[0031] Further, preferably, the pressing column located above is fixed on the limiting column, and the pressing column located below is fixed on the adjusting column.

[0032] Further, preferably, an adjusting rod is slidably arranged inside the adjusting column, and one end of the adjusting rod is provided with a thread, and the thread is threadedly connected with the adjusting column. A limiting disk is fixed at the lower end of the adjusting rod, and a plurality of balls are rotatably arranged at the bottom of the limiting disk. An adjusting disk is fixed at the upper end of the adjusting rod.

[0033] Compared with the prior art, the present invention provides an integrated barcode carbon ribbon moisture-proof storage and quick access device, which has the following beneficial effects:

[0034] In the present invention, by dividing the storage cylinder into a plurality of independent and sealed storage spaces, and cooperating with the humidity sensor and the pipeline control system, the accurate monitoring and directional drying of the humidity difference in different height regions are realized, and the high-humidity partition can be strengthened for dehumidification specifically, avoiding the local moisture problem caused by uneven temperature and humidity between layers. The rotary shelf assembly and the sliding support assembly are designed in cooperation. By controlling the rotation and positioning of the storage tray by the driving motor, the barcode carbon ribbons are arranged in a radial and orderly manner, ensuring a uniform ventilation gap is reserved between each barcode carbon ribbon. Cooperating with the air circulation system of the drying equipment, the problem of blocked air circulation is effectively solved. The support assembly realizes the telescopic adaptability of the support plate through the cooperation of the adjusting column and the pressing spring, and can be compatible with barcode carbon ribbon mandrels of different specifications. BRIEF DESCRIPTION OF THE DRAWINGS

[0035] Figure 1 is a schematic diagram of the overall structure of the integrated barcode carbon ribbon moisture-proof storage and quick access device;

[0036] Figure 2 is a schematic diagram of the structure of the storage component of the integrated barcode carbon ribbon moisture-proof storage and quick access device;

[0037] Figure 3 is an unfolded schematic diagram of the shelf component of the integrated barcode carbon ribbon moisture-proof storage and quick access device;

[0038] Figure 4 is a schematic diagram of the structure of the support component of the integrated barcode carbon ribbon moisture-proof storage and quick access device;

[0039] In the figure: 1. Base; 2. Drying component; 3. Display; 4. Storage cylinder; 5. Pipeline; 6. Sealed bin door; 7. Isolation layer; 8. Storage component; 81. Fixed frame; 82. Driving motor; 83. Shelf component; 84. Support component; 85. Barcode ribbon; 831. Rotating shaft; 832. Storage tray; 833. Sliding groove; 841. Support column; 842. Sliding block; 843. Fixed column; 844. Limit column; 845. Pressing column; 846. Adjusting column; 847. Support spring; 848. Connecting rod; 849. Support plate; 8461. Adjusting rod; 8462. Limit disc; 8463. Adjusting disc. Detailed implementation mode

[0040] Refer to Figures 1 - 4 , the present invention provides a technical solution: an integrated barcode ribbon moisture-proof storage and quick access device, including:

[0041] Base 1, on the upper end surface of which a drying device 2 is fixed;

[0042] Display 3, installed on the upper end surface of the base 1;

[0043] Storage cylinder 4, fixed on the upper end surface of the base 1, and connected to the drying device 2 by a plurality of pipelines 5, and control valves are installed on each of the plurality of pipelines 5;

[0044] Sealed bin door 6, hinged on the side wall of the storage cylinder 4;

[0045] Isolation layer 7, fixed on the upper end surface of the storage cylinder 4, and it is a hollow structure;

[0046] Storage component 8, fixed on the base 1, and one end extends into the storage cylinder 4.

[0047] It should be noted that the opening and closing degree of the pipeline 5 can be controlled through the control valves on the plurality of pipelines 5, so as to perform different degrees of dehumidification and moisture-proof operations on the inside of the storage cylinder 4.

[0048] Through the isolation layer, the direct contact between the top of the storage cylinder 4 and the air can be blocked, reducing the formation of condensed water caused by the temperature difference inside and outside the top of the storage cylinder 4, and avoiding the condensed water dripping and polluting the goods.

[0049] In this embodiment, the storage component 8 includes:

[0050] Fixed frame 81, fixed on the base 1;

[0051] Driving motor 82, fixed on the lower end surface of the fixed frame 81;

[0052] The shelf assembly 83 is rotatably arranged on the fixed frame 81, located inside the storage cylinder 4, and connected to the output end of the drive motor 82;

[0053] The support assemblies 84 are configured in multiple numbers, all slidably arranged inside the shelf assembly 83, and a barcode ribbon 85 is respectively installed on each of the multiple support assemblies 84. <U+ <U+

[0054] That is to say, through the rotation positioning of the shelf assembly 83 controlled by the drive motor 82 and the coordinated action of the multiple support assemblies 84, the barcode ribbons 85 are arranged radially and orderly, ensuring a uniform ventilation gap is reserved between each barcode ribbon 85. Cooperating with the air circulation system of the drying device 2, the problem of blocked air circulation is effectively solved. <U+ <U+

[0055] As a preferred embodiment, the shelf assembly 83 includes: <U+ <U+

[0056] A rotating shaft 831, rotatably arranged on the fixed frame 81; <U+ <U+

[0057] Storage trays 832, configured in multiple numbers, and equidistantly fixed on the rotating shaft 831; <U+ <U+

[0058] Sliding grooves 833, configured in multiple numbers, circumferentially opened on the storage trays 832, and the support assemblies 84 are slidably arranged in the sliding grooves 833. <U+ <U+

[0059] As a preferred embodiment, the inside of the storage cylinder 4 is divided into multiple storage spaces by the multiple storage trays 832. The multiple storage spaces are in a sealed state with each other, and a humidity sensor is arranged in each of the multiple storage spaces. The multiple pipelines 5 respectively correspond to the multiple storage spaces one by one. <U+ <U+

[0060] Among them, by dividing the storage cylinder 4 into multiple independent and sealed storage spaces, cooperating with the humidity sensor and the pipeline control system, precise monitoring of the humidity difference in different height areas and directional drying are realized. The dehumidification of high - humidity areas can be strengthened specifically, avoiding the problem of local moisture due to uneven temperature and humidity between layers. <U+ <U+

[0061] As a preferred embodiment, the support assembly 84 includes: <U+ <U+

[0062] A support column 841, with a sliding block 842 fixed at its bottom, and the sliding block 842 is slidably arranged in the sliding groove 833; <U+ <U+

[0063] A fixed column 843, fixed at the middle position of the support column 841; <U+ <U+

[0064] A limit column 844, fixed inside the support column 841 and located directly above the fixed column 843; <U+ <U+

[0065] The pressing columns 845 are configured to be two, symmetrically arranged within the support column 841, and at least three hinge plates are fixed to their outer walls;

[0066] The adjusting column 846 is slidably disposed within the support column 841 and penetrates through the fixed column 843, the limiting column 844, and the pressing column 845;

[0067] The pressing spring 847 is sleeved on the outer wall of the adjusting column 846 and is located between the fixed column 843 and the lower pressing column 845;

[0068] The connecting rods 848 are configured to be multiple. One end of each connecting rod is hinged to the hinge plate, and the other end is hinged to a support plate 849. Moreover, two connecting rods 848 are used to hinge one support plate 849.

[0069] As a preferred embodiment, both the sliding groove 833 and the sliding block 842 are T-shaped structures.

[0070] As a preferred embodiment, the upper pressing column 845 is fixed to the limiting column 844, and the lower pressing column 845 is fixed to the adjusting column 846.

[0071] That is to say, when storing the barcode ribbon 85, at this time, the support assembly 84 is not on the storage tray 832. First, put the barcode ribbon 85 on the support assembly 84. Then, press the adjusting column 846 to move the lower pressing column 845 upward, so that the support plate 849 moves toward the inner wall of the core shaft of the barcode ribbon 85 to support the barcode ribbon 85. After that, slide the support assembly 84 into the storage tray 832 to complete the storage. When it is necessary to take out the barcode ribbon 85, directly slide the support assembly 84 out of the storage tray 832. At this time, the support assembly 84 automatically disengages from the barcode ribbon 85 through the pressing spring 847 to complete the quick taking.

[0072] It should be noted that when storing the barcode ribbon 85, it is necessary to ensure that the barcode ribbon 85 is in the middle position of the support column 841 to avoid the top and bottom of the barcode ribbon 85 contacting the storage tray 832, making it in a suspended state, which is helpful for air circulation.

[0073] As a preferred embodiment, an adjusting rod 8461 is slidably disposed inside the adjusting column 846. One end of the adjusting rod 8461 is provided with a thread, and the thread is threadedly connected to the adjusting column 846. A limiting disk 8462 is fixed to the lower end of the adjusting rod 8461. A plurality of balls are rollably disposed at the bottom of the limiting disk 8462. An adjusting disk 8463 is fixed to the upper end of the adjusting rod 8461.

[0074] That is to say, multiple balls facilitate the sliding of the limit disk 8462 in the sliding groove 833. When the support assembly 84 slides into the storage disk 832, the bottom of the limit disk 8462 contacts the bottom of the sliding groove 833 at this time, thereby limiting the pressing column 845 and enabling the support plate 849 to provide a stable supporting force for the barcode ribbon 85.

[0075] It should be noted that after the support for the barcode ribbon 85 is completed, the bottom of the limit disk 8462 is flush with the bottom of the support column 841, which is convenient for sliding into the sliding groove 833. When supporting barcode ribbons 85 with different diameters, the distance of the limit disk 8462 can be adjusted through the adjustment disk 8463, so that the pressing column 845 below can slide a greater or smaller distance, improving the compatibility of the device.

[0076] Specifically, first, install multiple barcode ribbons 85 on the support assembly 84 in sequence, slide the support assembly 84 onto the storage disk 832, close the sealed bin door 6 after placing the barcode ribbons 85, then monitor the air humidity in multiple storage spaces through the humidity sensor, thereby controlling the opening and closing of the control valves of the pipelines to perform moisture-proof and dehumidification operations in different areas, and the humidity in each storage space can be observed in real time through the display 3. When the barcode ribbon 85 needs to be taken, open the sealed bin door 6 at this time, and then directly slide the support assembly 84 out of the storage disk 832. At this time, the support assembly 84 automatically detaches from the barcode ribbon 85 through the pressing spring 847, completing the quick access.

[0077] The above-mentioned is only the preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and all should be covered within the protection scope of the present invention.

Claims

1. An integrated bar code carbon ribbon moisture-proof storage and quick access device, characterized in that: Comprising: A base (1) with a drying device (2) fixed on its upper end face; A display (3) installed on the upper end face of the base (1); A storage cylinder (4) fixed on the upper end face of the base (1) and connected to the drying device (2) by a plurality of pipes (5), and control valves are installed on each of the plurality of pipes (5); A sealed hatch door (6) hinged to the side wall of the storage cylinder (4); An isolation layer (7) fixed on the upper end face of the storage cylinder (4) and having a hollow structure; A storage component (8) fixed on the base (1) with one end extending into the storage cylinder (4).

2. The integrated barcode carbon ribbon moisture-proof storage and quick access device according to claim 1, wherein: The storage component (8) includes: A fixing frame (81) fixed on the base (1); A driving motor (82) fixed on the lower end face of the fixing frame (81); A shelf component (83) rotatably arranged on the fixing frame (81), located inside the storage cylinder (4), and connected to the output end of the driving motor (82); A plurality of support components (84) configured to be slidably arranged inside the shelf component (83), and a barcode ribbon (85) is installed on each of the plurality of support components (84).

3. The integrated barcode carbon ribbon moisture-proof storage and quick access device according to claim 2, characterized in that: The shelf component (83) includes: A rotating shaft (831) rotatably arranged on the fixing frame (81); A plurality of storage trays (832) configured to be equidistantly fixed on the rotating shaft (831); A plurality of sliding grooves (833) configured to be circumferentially formed on the storage tray (832), and the support component (84) is slidably arranged in the sliding groove (833).

4. The integrated barcode ribbon moisture-proof storage and quick access device according to claim 3, wherein: The inside of the storage cylinder (4) is divided into a plurality of storage spaces by the plurality of storage trays (832), the plurality of storage spaces are in a sealed state between them, and a humidity sensor is provided in each of the plurality of storage spaces, and the plurality of pipes (5) respectively correspond to the plurality of storage spaces one by one.

5. The integrated barcode carbon ribbon moisture-proof storage and rapid access device according to claim 3, characterized in that: The support component (84) includes: A support column (841) with a sliding block (842) fixed at its bottom, and the sliding block (842) is slidably arranged in the sliding groove (833); A fixing column (843) fixed at the middle position of the support column (841); A limiting column (844) fixed inside the support column (841) and located directly above the fixing column (843); Two pressing columns (845) configured to be symmetrically arranged inside the support column (841), and at least three hinge plates are fixed on the outer wall thereof; An adjusting column (846) slidably arranged inside the support column (841) and passing through the fixing column (843), the limiting column (844) and the pressing column (845); A pressing spring (847) sleeved on the outer wall of the adjusting column (846) and located between the fixing column (843) and the lower pressing column (845); A plurality of connecting rods (848) configured such that one end is hinged to the hinge plate and the other end is hinged to a support plate (849), and one support plate (849) is hinged by two connecting rods (848).

6. The integrated barcode carbon ribbon moisture-proof storage and rapid access device according to claim 5, characterized in that: Both the sliding groove (833) and the sliding block (842) are T-shaped structures.

7. The integrated barcode carbon ribbon moisture-proof storage and quick access device according to claim 5, characterized in that: The pressing column (845) located at the top is fixed on the limiting column (844), and the pressing column (845) located at the bottom is fixed on the adjusting column (846).

8. The integrated barcode carbon ribbon moisture-proof storage and quick access device according to claim 5, characterized in that: An adjusting rod (8461) is slidingly provided inside the adjusting column (846), and a thread is provided at one end of the adjusting rod (8461), and the thread is threadedly connected to the adjusting column (846). A limiting plate (8462) is fixed at the lower end of the adjusting rod (8461), and a plurality of balls are rollingly provided at the bottom of the limiting plate (8462), and an adjusting plate (8463) is fixed at the upper end of the adjusting rod (8461).

Citation Information

Patent Citations

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