Glasses packaging blister structure

By designing the first and second grooves of the blister packaging structure to support the lens ring, embedding the temple groove into the temple, protecting the bridge of the nose with a barrier, and setting corrugated ribs or elastic protrusions on the inner wall, the problem of damage to eyeglasses during transportation in traditional packaging methods is solved, achieving a more efficient protection effect.

CN224131566UActive Publication Date: 2026-04-17SHENZHEN HUIMING EYEGLASSES CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN HUIMING EYEGLASSES CO LTD
Filing Date
2025-06-03
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Traditional eyeglass packaging methods are prone to causing lens scratches and frame deformation during transportation due to friction, stacking pressure, and vibration, and the filling effect of paper cards is limited.

Method used

The glasses use a blister packaging structure with a first and second groove symmetrically distributed to support the lens rim. The temple groove is embedded in the temple, the barrier protects the bridge and nose pads, and the inner wall is provided with corrugated ribs or elastic protrusions to enhance fixation and cushioning.

Benefits of technology

It effectively disperses the impact force during transportation, ensuring that the glasses remain stable and stationary, reducing lens scratches and frame deformation, and improving protection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a glasses packaging blister structure which is used for fixing folded glasses, a first groove and a second groove are formed in the front face of the glasses packaging blister structure, and glasses leg grooves are formed in the back face of the glasses packaging blister structure; the first groove and the second groove are symmetrically distributed about the center line of the glasses packaging blister structure; when the glasses are used, the edge of the first groove is used for supporting one glasses ring of the glasses, the edge of the second groove is used for supporting the other glasses ring of the glasses, and two glasses legs are embedded in the glasses leg grooves after the glasses are folded. According to the glasses packaging blister structure, the glasses can be protected in the transportation process, and the problems that in the transportation process, due to vibration and collision caused by jolting, the glasses are damaged, lenses are scratched, and a glasses frame deforms are solved.
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Description

Technical Field

[0001] This application relates to the field of eyeglass packaging technology, and in particular to an eyeglass packaging blister structure. Background Technology

[0002] Traditional eyeglasses packaging involves placing folded glasses directly into transparent bags or boxes for shipment. However, during transportation, eyeglasses are easily damaged due to friction with other items, pressure from stacking, and vibrations and collisions caused by transportation, resulting in scratches on the lenses and deformation of the frames.

[0003] Most current solutions use paper cards for filling, which involves filling the space with flat paper cards. However, paper cards are mostly flat and cannot fully conform to the folding contours of glasses, especially complex areas such as the temple bends and nose pads. In addition, the paper card material is relatively soft and cannot effectively disperse the impact force during transportation. When glasses are stacked, they may still deform due to vibration and collision, resulting in limited protection. Utility Model Content

[0004] In order to reduce damage caused by vibration and collision during transportation, such as scratches on lenses and deformation of frames, this application provides a blister packaging structure for eyeglasses.

[0005] The blister packaging structure for eyeglasses provided in this application adopts the following technical solution:

[0006] A blister packaging structure for eyeglasses is provided for securing folded eyeglasses. The front of the blister packaging structure has a first groove and a second groove, and the back of the blister packaging structure has a temple groove. The first groove and the second groove are symmetrically distributed around the center line of the blister packaging structure. In use, the edge of the first groove supports one lens ring of the eyeglasses, and the edge of the second groove supports the other lens ring of the eyeglasses. The two temples of the eyeglasses, when folded, are fitted into the temple grooves.

[0007] Preferably, the two mirror rings can be embedded in the first groove and the second groove.

[0008] Preferably, the first groove and the second groove are separated by a barrier portion, the height of which is lower than the inner wall height of the first groove and the second groove, thereby forming a channel between the first groove and the second groove for accommodating the nose bridge and nose pads of the glasses.

[0009] Preferably, the temple groove is divided into a first curved groove and a second curved groove that are interconnected, and the first curved groove and the second curved groove are symmetrically distributed around the center line of the eyeglass packaging blister structure.

[0010] Preferably, the inner wall of one side of the temple groove is straight, and the middle area of ​​the inner wall of the other side of the temple groove is straight while the edge area is an arc that matches the shape of the temple.

[0011] Preferably, the width of the temple groove gradually increases from the center of the temple groove towards both ends.

[0012] Preferably, the depth of the temple groove gradually increases from the center of the temple groove towards both ends.

[0013] Preferably, the blister packaging structure for eyeglasses integrally extends a support bracket from the edges of the first groove and the second groove, respectively. The positions of the two support brackets correspond one-to-one with the ends of the two temples and are used to protect the ends of the temples.

[0014] Preferably, the inner walls of the first groove, the second groove, and the temple groove are each provided with corrugated ribs or elastic protrusions.

[0015] In summary, this application includes at least one of the following beneficial technical effects:

[0016] 1. The first and second grooves and temple grooves in the blister packaging structure of the eyeglasses support and fix the lens rims and temples of the eyeglasses, ensuring that the eyeglasses can be stably placed in the blister packaging structure during transportation. This effectively disperses the impact force during transportation, thereby solving problems such as lens scratches and frame deformation caused by transportation.

[0017] 2. The two lens rings are embedded in the first and second grooves. The pre-tightening force on the lens rings is applied through the first and second grooves, which not only provides shape support for the lens rings, but also fixes their position. In addition, the temple grooves that fix the temples further improve the protection of the glasses and can effectively resist the impact and vibration during transportation.

[0018] 3. The nose bridge and nose pads are housed in the barrier, which better protects the nose bridge and nose pads of the glasses, further improving the protection of the glasses. Attached Figure Description

[0019] Figure 1 This is an overall schematic diagram of the blister packaging structure for eyeglasses in an embodiment of this application.

[0020] Figure 2 This is a schematic diagram of the glasses being folded and placed in the blister packaging structure of the glasses in an embodiment of this application.

[0021] Figure 3 This is a schematic diagram of two eyeglass lens rings embedded in the first groove and the second groove in an embodiment of this application.

[0022] Figure 4 This is an overall schematic diagram of the blister packaging structure for eyeglasses from another perspective in an embodiment of this application.

[0023] Figure 5 This is a schematic diagram of another perspective of the glasses being folded and placed in the blister packaging structure of the glasses, as described in the embodiments of this application.

[0024] Explanation of reference numerals in the attached drawings: 1. First groove; 2. Second groove; 3. Temple groove; 31. First curved groove; 32. Second curved groove; 4. Barrier part; 5. Support bracket; 100. Eyeglasses. Detailed Implementation

[0025] The following is in conjunction with the appendix Figure 1-5 This application will be described in further detail.

[0026] This application discloses a blister packaging structure for eyeglasses, used to fix folded eyeglasses. The front of the blister packaging structure is provided with a first groove 1 and a second groove 2, and the back of the blister packaging structure is provided with a temple groove 3. The first groove 1 and the second groove 2 are symmetrically distributed around the center line of the blister packaging structure. In use, the edge of the first groove 1 is used to support one lens ring of the eyeglasses 100, and the edge of the second groove 2 is used to support the other lens ring of the eyeglasses 100. The two temples of the eyeglasses 100 after folding are embedded in the temple groove 3.

[0027] For details, please refer to Figure 1 and Figure 2 This embodiment discloses a blister packaging structure for eyeglasses, which is consistent with the symmetrical structure of the eyeglass frame 100. The first groove 1 and the second groove 2 are axially symmetrically distributed about the center line of the blister packaging structure. When the eyeglasses 100 is folded and placed in the blister packaging structure, the first groove 1 and the second groove 2 respectively abut against the two lens rings to provide shape support for the two lens rings. The two temples are embedded in the temple grooves 3 to provide shape support and position fixation for the two lens rings.

[0028] The first groove 1, the second groove 2, and the temple groove 3 in the blister packaging structure support and fix the lens rim and temple of the eyeglasses 100, ensuring that the eyeglasses 100 can be stably placed in the blister packaging structure during transportation. This effectively disperses the impact force during transportation, thereby solving problems such as lens scratches and frame deformation caused by transportation.

[0029] Reference Figure 3To ensure that the glasses 100 can be securely fixed in the blister packaging structure and further enhance the protection of the glasses 100, preventing damage from vibration and collision during transportation, the first groove 1 and the second groove 2 are slightly larger than the lens ring of the glasses 100. The two lens rings can be correspondingly embedded in the first groove 1 and the second groove 2, that is, the lens rings abut against the inner walls of the first groove 1 and the second groove 2, and the inner walls of the first groove 1 and the second groove 2 apply a certain pre-tightening force to the lens rings due to elastic deformation. The specific implementation method is as follows: the two lens rings can be embedded in the first groove 1 and the second groove 2.

[0030] The above technical solution embeds two lens rings into the first groove 1 and the second groove 2. By applying a pre-tightening force to the lens rings through the first groove 1 and the second groove 2, not only can the lens rings be shaped and supported, but their positions can also be fixed. In addition, the temple grooves 3 for fixing the temples further improve the protection of the glasses 100 and can effectively resist the impact and vibration during transportation.

[0031] Most eyeglasses have nose pads located between two lens rings. Since the nose pads themselves are relatively fragile and easily damaged, they need to be protected during transportation to prevent them from colliding with other objects and causing deformation or even damage. The specific implementation method is as follows: the first groove 1 and the second groove 2 are separated by a barrier part 4. The height of the barrier part 4 is lower than the height of the inner wall of the first groove 1 and the second groove 2, thereby forming a channel between the first groove 1 and the second groove 2 to accommodate the nose bridge and nose pads of the eyeglasses 100.

[0032] Specifically, refer to Figure 1 and Figure 2 The first groove 1 and the second groove 2 are separated by a barrier part 4. The height of the barrier part 4 is lower than the height of the inner wall of the first groove 1 and the second groove 2. The barrier part 4 is mainly used to protect the nose bridge and nose pad of the glasses 100. Different shapes and sizes of barrier parts 4 can be designed according to the structure of the nose pad.

[0033] By using the above technical solution, the nose bridge and nose pads are housed in the barrier part 4, which can better protect the nose bridge and nose pads of the glasses 100 and further improve the protection of the glasses 100.

[0034] In one specific embodiment, the temple groove 3 is divided into a first curved groove 31 and a second curved groove 32 that are interconnected, and the first curved groove 31 and the second curved groove 32 are symmetrically distributed around the center line of the eyeglass packaging blister structure.

[0035] refer to Figure 2 A direct perspective Figure 2 At this time, the left side is the first curved groove 31 of the temple groove 3, and the right side is the second curved groove 32 of the temple groove 3. The first curved groove 31 and the second curved groove 32 are connected to each other. The temples of the two glasses 100 are inserted into the first curved groove 31 and the second curved groove 32 in sequence. Specifically, for example, when folding the temples of the glasses, the left temple is folded first and inserted into the first curved groove 31 and the second curved groove 32 in sequence. Then the right temple is folded again and inserted into the second curved groove 31 and the first curved groove 32 in sequence. The right temple is close to the left temple.

[0036] Through the above technical solution, the temples of the two eyeglasses 100 are sequentially embedded in the first curved groove 31 and the second curved groove 32, which prevents the temples from shaking during transportation and can effectively disperse the impact force of the temples during transportation, thereby further improving the protection of the eyeglasses 100.

[0037] In one specific embodiment, the inner wall of one side of the temple groove 3 is straight, and the middle area of ​​the inner wall of the other side of the temple groove 3 is straight while the edge area is an arc that matches the shape of the temple.

[0038] For details, please refer to Figure 4 and Figure 5 The temples of the glasses 100 have a certain curvature at the end. In order to make the temples fit tightly against the blister packaging structure of the glasses, the inner wall of one side of the temple groove 3 is straight, the middle area of ​​the other side is straight, and the edge area is an arc that matches the shape of the temples of the glasses 100.

[0039] Through the above technical solution, the temple of the glasses 100 is embedded into the temple groove 3 by morphological coupling rather than simple mechanical pressure. At the same time, the pre-tightening force of the inner wall of the temple groove 3 on the temple allows the temple to be embedded into the groove more stably, avoiding shaking or displacement during transportation, and further improving the protection of the glasses 100.

[0040] In one specific embodiment, the width of the temple groove 3 gradually increases from the center of the temple groove 3 towards both ends.

[0041] Specifically, refer to Figure 4 and Figure 5 The temples of the two eyeglasses 100 are sequentially embedded into the temple grooves 3. In order to conform to the curvature of the temple ends, the width of the temple grooves 3 gradually increases from the center of the temple grooves 3 towards both ends, and the curvature of the inner walls at both ends corresponds to the curvature of the temple. That is, the temple grooves 3 adapt to the shape characteristics of different sections of the temple through the gradual change in width, and achieve a balanced distribution of stress on the contact surface by matching the curvature. Under the premise of ensuring that the temple body is fully embedded, the risk of deformation caused by local pressure concentration is avoided, thereby ensuring the stability of the temple when embedded in the temple grooves 3, and further improving the protection of the eyeglasses 100.

[0042] In one specific embodiment, the depth of the temple groove 3 gradually increases from the center of the temple groove 3 towards both ends.

[0043] The temples of eyeglasses of type 100 are generally curved, meaning that when the glasses are folded, the middle section of the temple is slightly higher than the end of the temple closest to the frame hinge and the end furthest from the frame hinge. (See reference...) Figure 4 and Figure 5 The depth of the temple groove 3 gradually increases from the center to both ends. Correspondingly, when the temple of the eyeglasses 100 is inserted into the temple groove, the end of the temple closer to the hinge and the other end of the temple farther from the hinge are inserted into the temple groove 3 more deeply. This makes the fit of the temple when it is inserted into the temple groove 3 better, and the temple can be more stably fixed in the temple groove 3, avoiding the risk of shaking caused by local gaps during transportation.

[0044] In one specific embodiment, the eyeglass packaging blister structure integrally extends a support bracket 5 from the edges of the first groove 1 and the second groove 2 respectively. The positions of the two support brackets 5 correspond one-to-one with the ends of the two temples and are used to protect the ends of the temples.

[0045] Specifically, refer to Figure 4 and Figure 5 When the glasses 100 are folded and placed in the blister packaging structure, a support bracket is set at each of the two positions on the left and right sides of the temple groove 3 to protect the ends of the two temples. During transportation, the support brackets 5 cooperate with the temple groove 3 to better protect the temples of the glasses 100. After transportation, the two temples can be lifted out one by one from the two support brackets 5. Optionally, the support brackets 5 can be triangular, arc-shaped, or other shapes.

[0046] In another embodiment, the length of the temple groove 3 can be increased to ensure that the temple is fully embedded in the temple groove 3, thereby protecting the end part of the temple of the eyeglasses 100.

[0047] Through the above technical solution, the support bracket 5 and the temple groove 3 can effectively protect the temple of the glasses 100, avoiding the risk of collision during transportation because the end of the temple is not embedded in the temple groove 3. Moreover, compared with the solution of directly lengthening the temple groove 3 to make the temple fully embedded in the temple groove 3, the solution of using the support bracket 5 avoids the interference problem that may be caused by lengthening the temple groove 3 when taking out the glasses 100. After transportation, the two temples can be lifted out one by one from the two support brackets 5.

[0048] In one specific embodiment, the inner walls of the first groove 1, the second groove 2, and the temple groove 3 are each provided with corrugated ribs or elastic protrusions.

[0049] The inner walls of the first groove 1, the second groove 2, and the temple groove 3 are each provided with corrugated ribs or elastic protrusions, which can increase the friction coefficient of the contact surface and effectively suppress the slippage of the lens rim and temple of the eyeglasses 100 in the grooves. In addition, the elastic protrusions can absorb the vibration energy during transportation through flexible deformation and generate progressive deformation buffer under impact load, avoiding damage to the lens rim and temple caused by rigid contact, thereby further improving the protection of the eyeglasses 100.

[0050] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. An eye glass package blister structure for securing a folded eye glass, characterized by, The front of the eyeglasses packaging blister structure is provided with a first groove (1) and a second groove (2), and the back of the eyeglasses packaging blister structure is provided with a temple groove (3); the first groove (1) and the second groove (2) are symmetrically distributed about the center line of the eyeglasses packaging blister structure; in use, the edge of the first groove (1) is used to support one lens ring of the eyeglasses (100), the edge of the second groove (2) is used to support the other lens ring of the eyeglasses (100), and the two temples of the eyeglasses (100) after folding are embedded in the temple groove (3).

2. The blister structure for packaging eyeglasses according to claim 1, wherein: The two lens rings can be embedded in the first groove (1) and the second groove (2).

3. The blister structure of claim 1, wherein: The first groove (1) and the second groove (2) are separated by a barrier (4), the height of which is lower than the height of the inner wall of the first groove (1) and the second groove (2), thereby forming a channel between the first groove (1) and the second groove (2) for accommodating the nose bridge and nose pads of the glasses (100).

4. The blister structure of claim 1, wherein: The temple groove (3) is divided into a first curved groove (31) and a second curved groove (32) that are interconnected. The first curved groove (31) and the second curved groove (32) are symmetrically distributed around the center line of the eyeglass packaging blister structure.

5. The blister structure of claim 4, wherein: One side of the inner wall of the temple groove (3) is straight, and the middle area of ​​the other side of the inner wall of the temple groove (3) is straight while the edge area is an arc that matches the shape of the temple.

6. The blister pack structure for eyeglasses according to claim 4, wherein: The width of the temple groove (3) gradually increases from the center of the temple groove (3) towards both ends.

7. The blister pack structure for eyeglasses according to claim 4, wherein: The depth of the temple groove (3) gradually increases from the center of the temple groove (3) towards both ends.

8. The blister structure of claim 1, wherein: The eyeglass packaging blister structure extends integrally from the edges of the first groove (1) and the second groove (2) to form a support bracket (5). The positions of the two support brackets (5) correspond one-to-one with the ends of the two temples and are used to protect the ends of the temples.

9. The blister structure of claim 1, wherein: The inner walls of the first groove (1), the second groove (2) and the temple groove (3) are each provided with corrugated ribs or elastic protrusions.