Shirt packaging lining plate

By designing a highly adaptable shirt packaging liner, the problem of poor compatibility between single-layer stand-up collars and foldable collars was solved, ensuring that the shirts maintain their shape during transportation and are easy to handle, thus reducing production costs and inventory pressure.

CN224146679UActive Publication Date: 2026-04-21NINGBO PEILUOCHENG GROUP CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NINGBO PEILUOCHENG GROUP CO LTD
Filing Date
2025-04-28
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing packaging linings cannot effectively adapt to single-layer stand-up collars and foldable collars, resulting in collar collapse and deformation, poor versatility, and increased production costs and inventory pressure.

Method used

Design a shirt packaging liner that includes a liner body, an extension, an elastic support, and a fixing component. The elastic support adapts to different collar types by allowing the liner to be stowed or unfolded. Combined with magnetic patches, Velcro, and other fixing methods, a ring-shaped support structure is formed to enhance the support and fixing effect.

Benefits of technology

To ensure that shirt collars maintain their ideal shape during transportation, reduce production costs, improve ease of handling and packaging efficiency, reduce the risk of deformation and damage, and enhance versatility and stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a shirt packaging lining plate which comprises a lining plate body, an extending part, an elastic supporting piece, a first fixing assembly and a second fixing assembly, and the lining plate body serves as a base body of shirt packaging; the extension part and the lining plate main body are integrally formed through a line pressing process, and a foldable crease is formed through the line pressing process; the two elastic supporting pieces are arranged on the two sides of the extending part and connected with the extending part through folding lines. The first fixing assembly is arranged between the elastic supporting piece and the extending part and used for fixing the elastic supporting piece to the surface of the extending part in an attached mode in the storage state. The second fixing assembly is arranged at the ends, away from the extending part, of the two elastic supporting pieces, the two elastic supporting pieces are interlocked in the unfolding state to form an annular supporting structure, and the annular supporting structure is used for meeting the collar type supporting requirement of the stand collar shirt. The utility model solves the problems that the existing collar type structure can only adapt to a turned shirt collar type, but is poor in adaptability to a stand collar and cannot be attached to the stand collar, and the collar is deformed due to insufficient support for a turnable collar type.
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Description

Technical Field

[0001] This utility model relates to the field of clothing packaging technology, and more specifically, to a shirt packaging liner. Background Technology

[0002] In garment packaging, packaging linings serve as crucial components for supporting and protecting shirts, directly impacting product transport safety and display appearance. Traditional packaging linings often employ a single flat structure to support foldable shirt collars, but they cannot conform to single-layer stand-up collars, leading to collar collapse and deformation after packaging, affecting the shirt's crisp appearance. Secondly, while foldable shirt collars are supported at the back, they lack specific support tailored to the collar's contour, making parts of the collar susceptible to compression and deformation, and difficult to maintain their three-dimensional shape during transport. Furthermore, existing linings with fixed creases cannot be adjusted according to collar type, resulting in poor lining versatility and requiring custom-made linings for different shirt styles, increasing production costs and inventory pressure. Utility Model Content

[0003] The problem solved by this utility model is that the existing collar structure can only be adapted to folded shirt collars, but it has poor adaptability to single-layer stand collars and cannot fit them properly. In addition, it does not provide enough support for foldable collars, which leads to deformation of the shirt collar.

[0004] To address the aforementioned problems, this utility model provides a shirt packaging liner, comprising: a liner body, an extension, elastic support members, a first fixing component, and a second fixing component. The liner body serves as the base for the shirt packaging. The extension is integrally formed with the liner body using a stitching process, which creates foldable creases. Two elastic support members are disposed on both sides of the extension and connected to it via fold lines. The first fixing component is disposed between the elastic support members and the extension, used to secure the elastic support members to the surface of the extension in the folded state. The second fixing component is disposed at the end of the two elastic support members furthest from the extension, interlocking the two elastic support members in the unfolded state to form a ring-shaped support structure, adapting to the collar support requirements of stand-up collar shirts.

[0005] The technical effects achieved by adopting this solution are as follows: The main body of the lining serves as the base for shirt packaging, while the extension is integrally formed with the main body, acting as a support for the shirt collar. The elastic supports on both sides of the extension have two states: retracted and extended. In the retracted state, the two elastic supports fit snugly against the extension, supporting the foldable shirt collar during packaging. In the extended state, the ends of the two elastic supports interlock to form a ring-shaped support structure, wrapping around the stand-up collar and providing fixation and support, adapting to the collar support requirements of stand-up collar shirts. The design of the elastic supports provides better support during shirt packaging, ensuring the shirt collar maintains its ideal shape during transportation and reducing collar deformation caused by insufficient support. Because this design can accommodate both foldable and single-layer stand-up collars, there is no need to design multiple different linings, reducing production costs and alleviating inventory management pressure.

[0006] Furthermore, the first fixing component is a magnetic patch, including a flexible magnetic strip disposed on the surface of the elastic support member and an iron sheet corresponding to the extension; or the first fixing component is a Velcro structure, including a rough surface layer disposed on the surface of the elastic support member and a hook surface layer corresponding to the extension.

[0007] The technical effects achieved by adopting this solution are as follows: The combination of flexible magnetic strips and iron sheets provides a stable fixation effect. Simultaneously, the presence of flexible magnetic strips ensures a certain degree of flexibility and adaptability on the surface of the elastic support, resulting in a tighter fit and preventing detachment. Furthermore, the magnetic patches are easy to operate; they automatically adhere simply by being brought close, improving ease of use. Both solutions significantly enhance the user experience when setting up and removing the backing plate. Whether it's the magnetic patches that fix the plate by simply bringing it close, or the Velcro structure that snaps together with a light press and is easy to separate, both reduce operational difficulty, making the entire process smoother and more efficient. Both the magnetic patches and Velcro are proven durable components that can withstand multiple cycles of fixing and releasing under normal use conditions. This increases the overall lifespan of the structure and ensures long-term stable performance.

[0008] Furthermore, the second fixing component includes: a slot disposed on the side of any one elastic support away from the extension, and a connector disposed on the other elastic support away from the extension; the connector can be inserted into the slot and locked to form a closed ring structure.

[0009] The technical effects achieved by adopting this solution are as follows: By forming a closed-loop structure through slots and connectors between two elastic supports, stronger physical support is provided, ensuring that stand-up collar shirts or other collar types requiring support maintain their ideal shape during transportation and storage. The closed-loop structure provides stable frame support, reducing deformation caused by external pressure or prolonged storage. This design makes the operation of the second fixing component more intuitive and simple; installation is completed simply by inserting the connector on one elastic support into the slot on the other elastic support and locking it, greatly simplifying the assembly process and improving work efficiency.

[0010] Furthermore, the shirt packaging liner also includes a horizontal insert plate with protruding cards at both ends, which are fixedly connected to the liner body.

[0011] The technical effects achieved by adopting this solution are as follows: The horizontal insert plate is fixedly connected to the main body of the liner plate through the protruding clips at both ends, increasing the overall rigidity and stability of the entire packaging liner plate. The design of the horizontal insert plate can, to a certain extent, increase the fixation and protection of other parts of the shirt, reducing the risk of wrinkles and damage, thereby improving the overall protective performance of the packaging and ensuring the quality and appearance of the shirt. The design with protruding clips makes the installation between the horizontal insert plate and the main body of the liner plate more convenient and faster; simply insert the protruding clips into the corresponding slots or reserved positions to complete the fixation, without additional tools or complicated steps, improving assembly efficiency. A well-designed horizontal insert plate helps to better fill the space inside the packaging, preventing the shirt from moving within the box, thus reducing wear or deformation caused by movement. At the same time, the compact design also helps to save storage and transportation space, reducing logistics costs.

[0012] Furthermore, the lining body includes: a buckle, which interlocks with a raised clip to secure the shirt hem.

[0013] The technical effects achieved by adopting this solution are as follows: The interlocking mechanism of the buckles and raised cards effectively secures the shirt hem, preventing displacement during transportation or storage. This design ensures the shirt remains neat and wrinkle-free throughout the entire logistics chain. The quick interlocking of the buckles and raised cards simplifies the operation, reduces the need for manual adjustments, and improves packaging efficiency.

[0014] Furthermore, the lining body also includes a serrated section, which is located at the edge of the lining body to increase friction and secure the packaged shirt.

[0015] The technical effects achieved by adopting this solution are as follows: The serrated design increases the friction between the lining and the shirt, making the shirt more securely fixed to the lining. This helps prevent the shirt from slipping or shifting during transportation and storage, ensuring that the shirt remains flat and wrinkle-free. The serrations also help maintain the shape of the packaged shirt, ensuring a neat and attractive appearance.

[0016] Furthermore, the liner body also includes a support plate, which is located in the middle area of ​​the liner body to increase the overall rigidity of the liner body.

[0017] The technical effects achieved by adopting this solution are as follows: The support plate significantly enhances the overall rigidity of the lining body, making the entire packaging structure more stable. This enhanced structural stability helps prevent deformation or wrinkles during transportation and storage. By providing additional support, the support plate can better protect the shirt from external pressure, ensuring the shirt's quality.

[0018] Furthermore, the liner body is provided with a first alignment opening fixed to the extension portion away from the liner body, and a second alignment opening provided to the liner body away from the extension portion, for positioning during shirt packaging.

[0019] The technical effects achieved by adopting this solution are as follows: A first alignment opening located on the side of the extension furthest from the liner body, and a second alignment opening located on the side of the liner body furthest from the extension body, provide clear positioning points during shirt packaging. This helps ensure that shirts are accurately placed in their corresponding positions during packaging, avoiding problems such as uneven or asymmetrical packaging due to inaccurate positioning. The clear alignment opening design makes the packaging process more intuitive and simple, allowing operators to quickly and accurately complete the positioning and packaging of shirts without relying on experience, improving work efficiency and reducing training costs.

[0020] Furthermore, the folding angle between the extension and the main body of the liner is 30º to 45º.

[0021] The technical benefits of this solution include: by setting specific folding angles (30º to 45º), it can better adapt to different types of collar structures, providing appropriate support. This design avoids insufficient support due to an angle that is too small, and unnecessary stiffness or mismatch issues due to an angle that is too large, ensuring good support for both foldable collars and single-layer stand-up collars. Clear folding angle guidelines standardize the packaging process, reduce operational difficulty, and allow even non-professionals to quickly learn, reducing training costs and improving work efficiency.

[0022] Furthermore, the extension is equipped with anti-slip strips that fit snugly against the shirt collar to reduce slippage of the shirt collar during transportation.

[0023] The technical effects achieved by adopting this solution are as follows: The anti-slip strip design increases the friction between the extension and the shirt collar, effectively preventing the shirt collar from slipping during transportation. This helps maintain the integrity of the shirt collar shape, avoiding collar deformation or wrinkles caused by slippage. By fixing the position of the shirt collar, not only is collar movement reduced, but the stability of the entire packaging structure is also enhanced. This is crucial for ensuring the shirt remains in optimal condition during transportation and storage. Effective anti-slip measures ensure that the shirt arrives at the consumer's hands still neat and wrinkle-free, improving the product's display effect and overall appearance quality, thereby enhancing consumer confidence and satisfaction.

[0024] In summary, the various technical solutions described above in this application can have one or more of the following advantages or beneficial effects: i) By adopting a design including a lining body, extensions, elastic support components, etc., and a specific folding angle (30º to 45º), it can effectively adapt to foldable collar types and single-layer stand-up collar types, providing appropriate support and ensuring that the shirt collar maintains its ideal shape during transportation and storage. ii) Using magnetic patches or Velcro as fixing components, interlocking of buckles and raised cards, and alignment port design simplifies the operation steps in the packaging process, allowing for quick fixing without additional tools and improving work efficiency. iii) Raised cards at both ends of the horizontal insert, edge design with serrated edges, anti-slip strips, and other elements increase friction, reducing the movement of the shirt within the packaging, thereby reducing the risk of damage caused by external pressure or collision. iv) By reducing the need for additional fixing materials and making rational use of space, production costs are reduced, and the effective use of resources is promoted, which is in line with the concept of green environmental protection. v) The elastic support has two different states, which can be adjusted according to specific needs. It is suitable for shirts with fold-down collars and single-layer stand-up collars, increasing the versatility and flexibility of the entire packaging system. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of the structure of a shirt packaging liner in an embodiment of the present invention. Figure 1 ;

[0026] Figure 2 This is a schematic diagram of the structure of the shirt packaging liner in an embodiment of the present invention. Figure 2 ;

[0027] Figure 3 This is a schematic diagram of the elastic support member of the shirt packaging liner in the unfolded state in an embodiment of this utility model.

[0028] Figure 4 This is a schematic diagram of the elastic support member of the shirt packaging liner in the storage state according to an embodiment of the present utility model.

[0029] Figure 5 for Figure 2 Enlarged schematic diagram;

[0030] Figure 6 This is a schematic diagram of the structure of the shirt packaging liner in an embodiment of the present invention. Figure 3 ;

[0031] Figure 7 This is a schematic diagram of the horizontal insert structure of the shirt packaging liner in this embodiment of the present utility model;

[0032] Figure 8 This is a schematic diagram of the structure of the shirt packaging liner in an embodiment of the present invention. Figure 4 ;

[0033] Figure 9 This is a schematic diagram of the collar structure of a stand-up collar shirt.

[0034] Explanation of reference numerals in the attached figures:

[0035] 1- Liner body; 11- Extension; 111- Anti-slip strip; 12- Elastic support; 13- Second fixing component; 131- Groove; 132- Connector; 14- Horizontal insert plate; 141- Protruding card; 15- Buckle; 16- Support plate; 17- First alignment port; 18- Second alignment port. Detailed Implementation

[0036] The purpose of this utility model is to provide a shirt packaging liner that can support different shirt collar types while taking into account production costs, ease of operation and durability.

[0037] To make the above-mentioned objectives, features and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings.

[0038] The foldable shirt collar described in this application is a conventional collar type, such as a square collar or turn-down collar, which requires folding the collar to achieve its desired shape. The single-layer stand-up collar is a more unique shirt collar shape, meaning it is a single-layer collar that does not require folding. Therefore, it lacks a support structure for the extension, but a ring-shaped support structure formed by two elastic supports and the extension can wrap around the stand-up collar to protect the shirt from deformation during transportation. See also... Figure 9 There are two stand-up collar styles.

[0039] See Figure 1 , Figure 3 and Figure 4This utility model provides a shirt packaging liner, comprising: a liner body 1, an extension 11, elastic support members 12, a first fixing component, and a second fixing component 13. The liner body 1 serves as the base for the shirt packaging. The extension 11 is integrally formed with the liner body 1 through a stitching process, which creates foldable creases. Two elastic support members 12 are disposed on both sides of the extension 11 and connected to it via fold lines. The first fixing component is disposed between the elastic support members 12 and the extension 11, used to fix the elastic support members 12 to the surface of the extension 11 in the folded state. The second fixing component 13 is disposed at the end of the two elastic support members 12 away from the extension 11, and in the unfolded state, interlocks the two elastic support members 12 to form a ring support structure, used to adapt to the collar support requirements of stand-up collar shirts.

[0040] The folding angle between the extension 11 and the liner body 1 is 30º to 45º.

[0041] Specifically, the lining body 1 serves as the main body of the shirt packaging, and the extension 11 secures the shirt collar. The extension 11 is integrally formed with the lining body 1 and can be folded from 30º to 45º, suitable for shirt packaging with different needs. Two elastic support members 12 are symmetrically arranged on both sides of the extension 11 and can be folded. The elastic support members 12 have two states. In the folded state, the two elastic support members 12 are folded and attached to the surface of the extension 11 by the first fixing component. When the two elastic support members 12 are attached to the surface of the extension 11, the support effect on the foldable collar is enhanced. In the unfolded state, the ends of the two elastic support members 12 are connected, that is, the connector 132 and the slot 131 interlock, so that the two elastic support members 12 and the extension 11 form a ring support structure, which is used to support single-layer stand-up collars with high requirements for shirt collar shape.

[0042] See Figure 1 and Figure 4 The first fixing component is a magnetic patch, including a flexible magnetic strip disposed on the surface of the elastic support member 12 and an iron sheet corresponding to the extension 11; or the first fixing component is a Velcro structure, including a textured surface layer disposed on the surface of the elastic support member 12 and a hook surface layer corresponding to the extension 11.

[0043] Specifically, the first fixing component is a magnetic patch. When the two elastic support members 12 are in the stored state, they are folded close to the extension 11, and the flexible magnetic strips on the two elastic support members 12 are attracted to the corresponding iron sheet on the extension 11. The first fixing component is a Velcro structure, with a textured surface layer and a hook surface layer that adhere to each other between the two elastic support members 12, and a textured surface layer and a hook surface layer that adhere to each other between one of the elastic support members 12 and the extension 11.

[0044] Preferably, the first fixing component can be replaced with a snap fastener made of plastic or paper, which is fixed by pressing.

[0045] See Figure 3 and Figure 5 The second fixing component 13 includes: a slot 131 disposed on the side of any one elastic support 12 away from the extension 11, and a connector 132 disposed on the other elastic support 12 away from the extension 11; the connector 132 can be inserted into the slot 131 and locked to form a closed ring structure.

[0046] Specifically, the second fixing component 13 includes a slot 131 at the end of one elastic support member 12 and a connector 132 at the end of another elastic support member 12. When the connector 132 is inserted into the slot 131, it forms an interlock, so that the two elastic supports 12 and the extension 11 form a ring support structure.

[0047] See Figure 7 and Figure 8 The shirt packaging lining also includes: a horizontal insert plate 14, with protruding cards 141 at both ends of the horizontal insert plate 14, which are fixedly connected to the lining body 1.

[0048] The lining body 1 includes: a buckle 15, which interlocks with a protruding card 141 to secure the hem of the shirt.

[0049] Specifically, the horizontal insert plate 14 is locked to the lining body 1 by the protruding cards 141 at both ends and the buckles 15, so that the horizontal insert plate 14 is fixed on the lining body 1 and the shirt hem is fixed.

[0050] See Figure 4 The lining body 1 also includes a serrated part, which is located on the edge of the lining body 1 to increase friction and fix the packaged shirt.

[0051] Specifically, the two sides and the bottom edge of the lining body 1 are provided with serrated parts to fix the shirt to the lining; the serrated parts are wavy and raised to reduce damage to the fabric.

[0052] See Figure 2 The liner body 1 also includes a support plate 16, which is disposed in the middle area of ​​the liner body 1 to increase the overall rigidity of the liner body 1.

[0053] Specifically, the middle area of ​​the liner body 1 is provided with a thickened support plate 16, and the inside of the support plate 16 is a honeycomb paper core to improve compressive strength.

[0054] See Figure 1The liner body 1 is provided with a first alignment opening 17 fixed to the extension 11 away from the liner body 1, and a second alignment opening 18 provided to the liner body 1 away from the extension 11, for positioning during shirt packaging.

[0055] Specifically, the first alignment opening 17 at the top of the extension 11 and the second alignment opening 18 at the bottom of the liner body 1 facilitate the quick and accurate packaging of shirts by packaging personnel.

[0056] See Figure 6 The extension 11 is provided with an anti-slip strip 111, which fits snugly against the shirt collar to reduce the slippage of the shirt collar during transportation.

[0057] Specifically, the extension 11 is provided with an anti-slip strip 111 at the position where it fits against the shirt collar. This strip is applicable to different shirts in both the folded and unfolded states, preventing the shirt from wrinkling during transportation.

[0058] While the present invention has been disclosed above, it is not limited thereto. Any person skilled in the art can make various modifications and alterations without departing from the spirit and scope of the present invention; therefore, the scope of protection of the present invention should be determined by the scope defined in the claims.

Claims

1. A shirt packaging dunnage, characterized by, include: The lining body (1) serves as the base for the shirt packaging; The extension (11) is integrally formed with the liner body (1) by a pressing process, and the pressing process forms a foldable crease; Elastic support member (12), two elastic support members (12) are disposed on both sides of the extension (11) and connected to the extension (11) by a fold line; The first fixing component is disposed between the elastic support (12) and the extension (11) for attaching and fixing the elastic support (12) to the surface of the extension (11) in the stored state. The second fixing component (13) is located at one end of the two elastic support members (12) away from the extension (11). In the unfolded state, the two elastic support members (12) are interlocked to form a ring support structure to adapt to the collar support requirements of stand-up collar shirts.

2. The shirt packaging lining according to claim 1, characterized in that, The first fixing component is a magnetic patch, including a flexible magnetic strip disposed on the surface of the elastic support (12) and an iron sheet corresponding to the extension (11); or The first fastening component is a Velcro structure, including a textured surface layer on the surface of the elastic support (12) and a hook surface layer corresponding to the extension (11).

3. The shirt packaging lining according to claim 1, characterized in that, The second fixing component (13) includes: A slot (131) is provided on the side of any one of the elastic support members (12) away from the extension (11), and a connector (132) is provided on the other elastic support member (12) away from the extension (11); the connector (132) can be inserted into the slot (131) and locked to form a closed ring structure.

4. The shirt packaging lining according to claim 1, characterized in that, Also includes: A horizontal insert plate (14) is provided with protruding cards (141) at both ends, which are fixedly connected to the liner body (1).

5. The shirt packaging lining according to claim 4, characterized in that, The liner body (1) includes: The buckle (15) interlocks with the protruding card (141) to secure the hem of the shirt.

6. The shirt packaging lining according to claim 5, characterized in that, The liner body (1) also includes: The serrated part is located on the edge of the liner body (1) to increase friction and fix the packaged shirt.

7. The shirt packaging lining according to claim 6, characterized in that, The liner body (1) also includes: Support plate (16) is disposed in the middle area of ​​the liner body (1) to increase the overall rigidity of the liner body (1).

8. The shirt packaging lining according to claim 7, characterized in that, The lining body (1) is provided with a first alignment port (17) fixed to the extension (11) away from the lining body (1) and a second alignment port (18) provided to the lining body (1) away from the extension (11) for positioning during shirt packaging.

9. The shirt packaging lining according to claim 1, characterized in that, The folding angle between the extension (11) and the liner body (1) is 30º to 45º.

10. The shirt packaging lining according to claim 1, characterized in that, The extension (11) is provided with an anti-slip strip (111), which fits against the shirt collar to reduce the slippage of the shirt collar during transportation.