Liquid crystal protection module

By designing a liquid crystal protection module with a deformable buffer positioning structure, the problem that the prior art cannot adapt to the liquid crystal modules of different sizes is solved, and effective protection and cost reduction of the liquid crystal modules are achieved.

CN222954215UActive Publication Date: 2025-06-06GUANGDONG DUANG TECH HLDG CO LTD
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Patent Information

Application Number
CN202421649420.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-12
Publication Date
2025-06-06
Estimated Expiration
2034-07-12

AI Technical Summary

Technical Problem

The packaging devices of existing LCD displays cannot adapt to different sizes of liquid crystal modules, resulting in susceptibility to damage during transportation and are costly.

Method used

A liquid crystal protection module is designed, including a box body and a box cover. The box body is formed with a storage tank for installing the liquid crystal module. The storage tank is provided with a buffer positioning structure formed by a flexible material that can be deformed by force, including a first buffer block and a second snap-off slot, allowing the installation and replacement of liquid crystal modules of different sizes.

Benefits of technology

The liquid crystal protection module can effectively buffer and support the liquid crystal module, prevent collision and damage during transportation, and does not require additional mold opening. It is suitable for liquid crystal modules of different sizes, reducing costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of screen protection, in particular to a liquid crystal protection module which comprises a box body and a box cover, a storage groove used for installing a liquid crystal module is formed in the box body, and the storage groove is provided with a buffer positioning structure which is used for installing the liquid crystal module and is formed by processing a flexible material which can deform under stress. The buffer positioning structure comprises a first buffer block arranged on the side wall of the storage groove and a first clamping groove used for installing the first buffer block in an inserted and pulled mode. Second clamping grooves are further formed in the corners of the storage groove, and second clamping blocks are installed in the second clamping grooves in a pluggable mode. After the liquid crystal modules with different sizes are replaced, the first buffer block can be taken down from the first clamping groove, and the second clamping block can also be taken down from the second clamping groove and replaced with the first clamping block and the second clamping block with different sizes, so that the liquid crystal modules with different sizes can be adapted; the liquid crystal modules with different sizes can be buffered, supported and positioned in the same box body; the box body and the box cover do not need to be additionally opened, and cost is greatly reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of screen protection, in particular to a liquid crystal protection module. Background Art

[0002] Liquid Crystal Display (LCD) is a common flat panel display technology that is widely used in electronic devices, televisions, computer monitors, smartphones, and various other devices. After the LCD is produced, it needs to be transported from the manufacturing plant to the sales channel, distribution center, or end-user location. Transportation is a necessary step to get the product from the production site to the destination, and the LCD needs to be packaged during transportation to prevent damage caused by collision and vibration.

[0003] The existing patent publication number is: CN214731206U. A packaging device for a liquid crystal display screen comprises a hollow box body, a liquid crystal display screen arranged in the box body, shock-absorbing corner sleeves are respectively provided on the four corners of the liquid crystal display screen, and shock-absorbing pads are respectively provided on the front and back sides of the liquid crystal display screen; in actual application, the liquid crystal display screen is placed in the box body, the shock-absorbing corner sleeves are clamped on the four corners of the liquid crystal display screen, and the shock-absorbing pads are padded on the front and back sides of the liquid crystal display screen, when the front or back side of the liquid crystal display screen is subjected to a violent impact or bump, the spring between the first shock-absorbing plate and the second shock-absorbing plate is subjected to pressure and deformed to offset the impact force; when the corners of the liquid crystal display screen are subjected to a violent impact or bump, the pressure on the hard plastic shell is offset by deformation through the first soft silicone layer; when encountering a violent impact or bump, the front, back and corners of the liquid crystal display screen can be fully protected.

[0004] Most of the existing shock-absorbing structures are fixed. In order to reduce costs, they are usually formed integrally with the cabinet. Due to the integrated structure, only one size of LCD modules can be positioned and installed, and it is not suitable for LCD modules of different sizes, and additional mold production is required. Utility Model Content

[0005] The purpose of the utility model is to provide a liquid crystal protection module to address the deficiencies of the prior art.

[0006] To achieve the above purpose, the technical solution of the utility model is as follows:

[0007] The liquid crystal protection module comprises a box body and a box cover. A storage groove for installing the liquid crystal module is formed in the box body. The storage groove is provided with a buffer positioning structure for installing the liquid crystal module, which is formed by a soft material that can be deformed under force. The buffer positioning structure comprises a first buffer block arranged on a side wall of the storage groove and a first clamping groove for plugging and removing the first buffer block; a second clamping groove is also formed at the corner of the storage groove, and a second clamping block is pluggably installed in the second clamping groove.

[0008] Further: the first buffer block includes a contact portion for buffering contact with the liquid crystal module and an engaging portion for engaging and connecting with the first clamping groove.

[0009] Furthermore: the first buffer block is in an I-shape.

[0010] Furthermore: the buffer positioning structure also includes a dividing strip which divides the storage slot into two, and the two ends of the dividing strip are respectively formed with engaging blocks, and two opposite side walls of the storage slot are formed with engaging grooves for installing the engaging blocks.

[0011] Furthermore: the bottom surface of the second positioning groove is lower than the top surface of the storage groove.

[0012] Furthermore: the cross-sectional shapes of the second clamping groove and the second clamping block are both matched rectangles.

[0013] Furthermore: the cross-sectional shapes of the second clamping slot and the second clamping block are both matched squares.

[0014] Furthermore: a raised connecting ring strip is formed on the top end surface of the box body, and a connecting ring groove matching with the connecting ring strip is formed on the bottom of the box cover.

[0015] Furthermore: the top and side walls of the box cover are respectively formed with connected top surrounding grooves, and the bottom and sides of the box body are respectively formed with connected bottom surrounding grooves. When the box body and the box cover are connected, the top surrounding groove and the bottom surrounding groove are connected.

[0016] Furthermore: an anti-slip ring is nested between the top surrounding groove and the bottom surrounding groove.

[0017] The beneficial effects of the utility model are as follows: according to the transportation requirements, the liquid crystal module is placed in the storage slot of the box body, and the first buffer block arranged in the first clamping slot contacts the outer side wall of the liquid crystal module, so that the liquid crystal module can be buffered and supported to prevent bumps during transportation, thereby effectively protecting the liquid crystal module; in addition, when replacing the liquid crystal module with a different size, the first buffer block can be removed from the first clamping slot, and the second clamping block can also be removed from the second clamping slot, and replaced with the first clamping block and the second clamping block of different sizes to adapt to liquid crystal modules of different sizes, thereby ensuring that liquid crystal modules of different sizes can be buffered and supported and positioned in the same box body; there is no need to additionally open molds for the box body and the box cover, and the cost is greatly reduced. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic diagram of the structure when the box body and the box cover are combined.

[0019] Figure 2 It is a schematic diagram of the structure when the box body and the box cover are separated.

[0020] Figure 3This is a schematic diagram of the box body and the box cover when separated from another perspective.

[0021] Reference numerals include:

[0022] 1-Box body,

[0023] 11-storage slot, 12-first buffer block, 13-contact portion, 14-fitting portion, 15-first positioning slot,

[0024] 16-second card slot, 17-second card block,

[0025] 2-Box cover,

[0026] 21-separator bar, 22-fitting block, 23-fitting groove, 24-connecting ring bar, 25-connecting ring groove,

[0027] 26-top surrounding groove, 27-bottom surrounding groove. DETAILED DESCRIPTION

[0028] The utility model is described in detail below with reference to the accompanying drawings.

[0029] like Figure 1-3 As shown, the liquid crystal protection module comprises a box body 1 and a box cover 2, wherein a storage slot 11 for installing the liquid crystal module is formed in the box body 1, and the storage slot 11 is provided with a buffer positioning structure for installing the liquid crystal module, which is formed by a force-deformable soft material, and the buffer positioning structure comprises a first buffer block 12 arranged on a side wall of the storage slot 11 and a first clamping slot 15 for plugging and removing the first buffer block 12;

[0030] A second locking groove 16 is formed at the corner of the storage groove 11 , and a second locking block 17 is pluggably installed in the second locking groove 16 .

[0031] According to the transportation requirements, the LCD module is placed in the storage slot 11 of the box body 1. The first buffer block 12 arranged in the first positioning slot 15 contacts the outer wall of the LCD module, so as to provide buffer support for the LCD module to prevent bumps during transportation, thereby effectively protecting the LCD module. In addition, when replacing LCD modules of different sizes, the first buffer block 12 can be removed from the first positioning slot 15, and the second positioning block 17 can be removed from the second positioning slot 16, and replaced with first positioning blocks and second positioning blocks 17 of different sizes to adapt to LCD modules of different sizes, thereby ensuring that LCD modules of different sizes can be buffered, supported and positioned in the same box body 1. There is no need to open molds for the box body 1 and the box cover 2, thereby greatly reducing the cost.

[0032] Preferably, the first buffer block 12 includes a contact portion 13 for buffering contact with the liquid crystal module and an engaging portion 14 engaged with the first positioning groove 15. The first buffer block 12 slidably cooperates with the first positioning groove 15 through the engaging portion 14, and the first buffer block 12 can be installed and disassembled, thereby further improving practicality.

[0033] Preferably, the first buffer block 12 is in an I-shape, with one end of the I-shape being an engaging portion 14 and the other end being a contact portion 13, which can prevent the first buffer block 12 embedded in the first positioning groove 15 from shifting, thereby improving its installation stability and further improving the stability of the liquid crystal module support.

[0034] Furthermore, the bottom surface of the second positioning groove 16 is lower than the top surface of the storage groove 11, and the second buffer block embedded in the second positioning groove 16 will not shift on the bottom surface of the storage groove 11, thereby ensuring the installation stability of the second buffer block. The second buffer block can provide buffering support for the corners of the liquid crystal module.

[0035] Furthermore, the cross-sectional shapes of the second locking groove 16 and the second locking block 17 are both matched rectangles.

[0036] Furthermore, the cross-sectional shapes of the second locking groove 16 and the second locking block 17 are both matched squares.

[0037] Furthermore, the buffer positioning structure also includes a dividing bar 21 that divides the storage slot 11 into two parts, and the dividing bar 21 divides the storage slot 11 into two parts; when the size of some liquid crystal modules is half of the original size, two flush liquid crystal modules can be separated by the dividing bar 21 and placed in the corresponding storage slots 11 at the same time for buffer positioning, thereby improving space utilization.

[0038] Furthermore, the two ends of the dividing strip 21 are respectively formed with an interlocking block 22, and two opposite side walls of the storage groove 11 are formed with an interlocking groove 23 for installing the interlocking block 22. The interlocking block 22 and the interlocking portion 14 of the first buffer block 12 have a similar structure. Similarly, the interlocking groove 23 and the first locking groove 15 have a similar structure. The dividing strip 21 can be disassembled and installed through the interlocking connection between the interlocking groove 23 and the interlocking block 22.

[0039] Furthermore, a raised connecting ring strip 24 is formed on the top end face of the box body 1, and a connecting ring groove 25 that cooperates with the connecting ring strip 24 is formed on the bottom of the box cover 2. After the box body 1 and the box cover 2 are connected, the connecting ring strip 24 and the connecting ring groove 25 are engaged with each other, which can prevent the box body 1 and the box cover 2 from lateral displacement and improve the stability of the connection.

[0040] The top and side walls of the box cover 2 are respectively formed with connected top surrounding grooves 26, and the bottom and sides of the box body 1 are respectively formed with connected bottom surrounding grooves 27. When the box body 1 and the box cover 2 are connected, the top surrounding groove 26 and the bottom surrounding groove 27 are connected, and an anti-slip ring is nested between the top surrounding groove 26 and the bottom surrounding groove 27. The anti-slip ring can be nested in the top surrounding groove 26 and the bottom surrounding groove 27. After the box body 1 and the box cover 2 are combined, the box cover 2 is prevented from falling off, thereby improving the stability of the closed cover.

[0041] In summary, it can be seen that the utility model has the above-mentioned excellent characteristics, which can enhance the performance unprecedented in the prior art and become a product with great practical value.

[0042] The above contents are only preferred embodiments of the present invention. For ordinary technicians in this field, according to the concept of the present invention, there will be changes in the specific implementation methods and application scopes. The contents of this specification should not be understood as limiting the present invention.

Claims

1. A liquid crystal protection module, comprising a box body and a box cover, characterized in that: The box body is formed with a storage groove for installing the liquid crystal module, and the storage groove is provided with a buffer positioning structure for installing the liquid crystal module, which is formed by a soft material that can be deformed under force, and the buffer positioning structure includes a first buffer block arranged on the side wall of the storage groove and a first clamping groove for plugging and removing the first buffer block; A second clamping slot is also formed at the corner of the storage slot, and a second clamping block is pluggably installed in the second clamping slot.

2. The liquid crystal protection module according to claim 1, characterized in that: The first buffer block includes a contact portion for buffering contact with the liquid crystal module and an engaging portion for engaging and connecting with the first clamping groove.

3. The liquid crystal protection module according to claim 2, characterized in that: The first buffer block is in an I-shape.

4. The liquid crystal protection module according to claim 1, characterized in that: The buffer positioning structure also includes a dividing strip which divides the storage slot into two, and the two ends of the dividing strip are respectively formed with engaging blocks, and two opposite side walls of the storage slot are formed with engaging slots for installing the engaging blocks.

5. The liquid crystal protection module according to claim 1, characterized in that: The bottom surface of the second positioning groove is lower than the top surface of the storage groove.

6. The liquid crystal protection module according to claim 1, characterized in that: The cross-sectional shapes of the second locking groove and the second locking block are both matched rectangles.

7. The liquid crystal protection module according to claim 6, characterized in that: The cross-sectional shapes of the second locking groove and the second locking block are both matched squares.

8. The liquid crystal protection module according to claim 1, characterized in that: The top end surface of the box body is formed with a raised connecting ring strip, and the bottom of the box cover is formed with a connecting ring groove matched with the connecting ring strip.

9. The liquid crystal protection module according to claim 1, characterized in that: The top and side walls of the box cover are respectively formed with connected top surrounding grooves, and the bottom and sides of the box body are respectively formed with connected bottom surrounding grooves. When the box body and the box cover are connected, the top surrounding groove and the bottom surrounding groove are connected.

10. The liquid crystal protection module according to claim 9, characterized in that: An anti-slip ring is nested between the top surrounding groove and the bottom surrounding groove.

Citation Information

Patent Citations

  • Packaging device for liquid crystal display screen

    CN214731206U