A box for holding raised paste

CN224612123UActive Publication Date: 2026-08-11NAGU (HANGZHOU) LIFE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-10
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0003]针对背景技术中提到的现有技术存在无法保证凸起膏体稳定性的问题,本实用新型提供了一种用于承载凸起膏体的盒体,能够提高凸起膏体的放置可靠性,保证对于凸起各个不同厚度区域上的均匀支撑效果,提高使用和运输过程中的稳定性

Benefits of technology

(1)能够应对中心凸起的膏体结构,保证膏体在运输和使用过程中的稳定性,形成有效的内部支撑效果;

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Abstract

This utility model discloses a box for holding raised paste, including a bottom shell, a support bracket connected to the bottom shell, a top shell connected to the support bracket, and a connecting side plate connecting the bottom shell and the top shell. The connecting side plate has several extended vertical edges, which are staggered. A support plate is connected to each extended vertical edge, and a hollow portion is provided between each extended vertical edge and the support plate. The raised paste completely covers the extended vertical edges and the support plate. The height of the extended vertical edges near the center of the box is higher than the height near the edge of the box. This utility model provides a box for holding raised paste, which can improve the reliability of placing the raised paste, ensure uniform support for different thickness areas of the raised paste, and improve stability during use and transportation.
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Description

Technical Field

[0001] This utility model relates to the field of ointment box technology, and in particular to a box for carrying raised ointment. Background Technology

[0002] For example, publication number "CN220777663U" discloses a "replaceable inner liner cream jar," comprising an inner jar, an outer jar, and a lid. The lid is fitted onto the top of the outer jar. A locking block is connected to the outer wall of the inner jar, and a notch is provided on the side wall of the outer jar for the locking block to be inserted. The locking block slides vertically into the notch. However, in practical applications, this type of jar can only hold creams with flat surfaces and cannot hold creams with raised surfaces. If the cream has a raised structure in the middle, the thickness of different parts of the raised cream is not uniform, resulting in poor stability of the cream during use or transportation. Summary of the Invention

[0003] In view of the problem mentioned in the background art that the existing technology cannot guarantee the stability of raised paste, this utility model provides a box for carrying raised paste, which can improve the placement reliability of raised paste, ensure uniform support effect on different thickness areas of the raised paste, and improve stability during use and transportation.

[0004] To achieve the above objectives, the present invention adopts the following technical solution.

[0005] A box for holding a raised paste includes a bottom shell, a support bracket connected to the bottom shell, a top shell connected to the support bracket, the support bracket including a connecting side plate connecting the bottom shell and the top shell, a plurality of extended vertical edges provided on the connecting side plate, the extended vertical edges being staggered, a support plate connected to the extended vertical edges, a cutout between each extended vertical edge and the support plate, the raised paste completely enclosing the extended vertical edges and the support plate, the height of the extended vertical edges near the center of the box being higher than the height near the edge of the box.

[0006] In the current technology, consumers have increasingly diverse demands for product packaging. For lipstick products, users no longer simply require the product to be placed in a spiral-screwed tube; many consumers also prefer the convenience of spherical or near-spherical raised lipstick structures. In the current technology, because the raised lipstick needs to protrude from the bottom shell, a support structure is required to ensure the stability of the raised lipstick. However, the existing support is a grid-type support with an internal flat surface. If the raised lipstick is placed on this type of support, the heavier raised portion of the lipstick is prone to cutting and falling off during application.

[0007] Therefore, to address the aforementioned issues, this application employs interconnected extended vertical edges, supplemented by supporting plates, to ensure effective support for the ointment. Furthermore, perforations are provided between the connecting side plates and the supporting plates, connecting the cavity space between the top and bottom shells. This allows the ointment to reside within the shell spaces of both the top and bottom shells, and the perforations in the middle connect the upper and lower parts of the ointment, creating a unified structure that ensures the stability and integrity of the ointment. The ointment completely encloses the extended vertical edges and supporting plates, and because these components are enclosed within the ointment, a reinforcing rib structure is formed inside, ensuring the stability of the ointment. The overall structural strength of the product is crucial. The cream itself is typically a wax-based unit, possessing a certain shape and structural strength. Internal support is provided by extended vertical edges and a supporting plate. Because the cream has a raised structure, its center is thicker than its edges. The raised portion is generally spherical. Therefore, the height of the extended vertical edge near the center of the box is set larger, while the height near the edge is smaller. This provides a larger contact area for the raised cream at the center, resulting in more stable support and mitigating some of the offset caused by the greater weight of the raised cream at the center during use. The extended vertical edges and the supporting plate are vertically positioned, providing support in two directions. During use and transportation, the cream is not subjected to forces in a fixed single direction; this design improves the cream's stability under varying directional forces. The supporting plate can be circular, hexagonal, or triangular, and can be replaced according to actual usage to ensure stability. A regular hexagonal structure is generally used.

[0008] Preferably, each of the extended vertical edges is connected at the center of the box body. The extended vertical edges extend from the center of the connecting side plate towards the edge, and the height of the extended vertical edges gradually decreases from the center towards the edge. The extended vertical edges converge and connect at the center of the box body, thus forming an extended vertical edge structure that radiates from the center towards the edge. This results in better support at the center of the box body, with more extended vertical edge areas effectively supporting the cream at the center. Furthermore, because the extended vertical edges radiate from the center towards the edge, they can provide limiting support for the cream in various directions at the center. During use, the cream at the center is used relatively frequently and experiences more complex force directions, thus allowing for a more precise adaptation to the raised shape of the cream.

[0009] Preferably, a support plate is connected at the intersection of each of the extended vertical sides. The support plate at the center intersection of the extended vertical sides improves the interrelationship between them, enhances their structural strength, and improves overall integrity. Simultaneously, the support plate provides vertical support for the paste in the center, preventing the risk of collapse in the central area of ​​the paste during use and reducing the risk of the paste slipping off the support frame when the box is inverted or tilted.

[0010] Preferably, each of the extended vertical sides is individually connected to a support plate. The support plates provided on each extended vertical side can provide support for the paste area other than the center, ensuring the stability and uniformity of the support.

[0011] Preferably, the extended vertical edge has an "S"-shaped curved structure. Setting the extended vertical edge in an S-shape increases the contact area between the extended vertical edge and the paste, improving the reliability of the support. Furthermore, the S-shaped curved structure forms several arched mechanisms, enhancing lateral impact resistance and ensuring the stability and impact resistance of the paste's support. The extended vertical edge is made of a flexible material similar to PE resin, further improving impact resistance. Moreover, its S-shaped structure results in a smoother surface and better structural flexibility.

[0012] Preferably, the support bracket includes an upper support area and a lower support area, with the lower support area having a larger cross-sectional dimension than the upper support area. A hooked step surface is formed between the lower and upper support areas. By setting the support bracket with different upper and lower cross-sections, the lower support area has a larger cross-sectional dimension, and a hooked step surface is formed at the junction of the lower and upper support areas. After the ointment is placed in the support bracket, because the lower support area has a larger cross-section, the ointment inside will not easily fall out when the entire ointment box is inverted, ensuring the stability of the ointment placed between the ointment pieces. Combined with the support plate, this improves the anti-falling effect of the ointment in various areas.

[0013] Preferably, the support plate is positioned on the side of the extended vertical edge near the bottom shell. Normally, the portion of the paste used is closer to the top shell, while the portion inside the bottom shell is generally smaller, only serving to connect and wrap the extended vertical edge and the support plate, thus ensuring the integrity and connection strength of the paste. Therefore, positioning the support plate closer to the bottom shell increases the proportion of usable (and convenient) paste, improving utilization during use.

[0014] Preferably, the connecting side plate is provided with a threaded wire, and the end of the threaded wire is provided with a limiting strip. The top shell is provided with a connecting wire, and the end of the connecting wire is provided with a locking groove. When the threaded connecting wire moves to the locking groove and abuts against the limiting strip, the locking groove can engage the limiting strip. The threaded wire on the connecting side plate and the connecting wire on the top shell allow for a threaded connection, facilitating quick connection and separation during use. The locking groove is provided on the connecting wire, and the limiting strip is provided on the threaded wire. Both the limiting strip and the locking groove are located at the ends. During the threaded connection of the connecting wire and the threaded wire, the connection between the limiting strip and the locking groove secures the connection, and the tactile feedback between the locking groove and the limiting strip provides feedback to the user.

[0015] Preferably, the bottom shell is provided with a retaining strip, and the connecting side plate is provided with a retaining groove, which engages with the retaining strip. The retaining strip on the bottom shell is fixed in position relative to the bottom shell, while the retaining groove on the connecting side plate is provided to connect the retaining strip, thereby fixing the position of the connecting side plate relative to the bottom shell, which facilitates ensuring that the position of the paste relative to the bottom shell is fixed during the threaded connection process.

[0016] Preferably, the connecting side plate is provided with a raised strip, and the top shell and / or bottom shell is provided with a locking part capable of engaging the raised strip. The raised strip on the connecting side plate allows for the locking part to be provided on the top and bottom shells according to actual conditions. The locking part can be a raised strip structure or a recessed groove structure, achieving both misalignment and engagement effects, further improving the relative stability between the connecting side plate and the top or bottom shells. This enhances the ease of installation and disassembly of the connecting side plate and the top or bottom shells, making it more convenient to use.

[0017] Preferably, the connecting side plate has an extended surface, the bottom shell has a top surface, and the top shell has a bottom surface. When the connecting side plate is connected to the bottom shell, the extended surface is flush with the top surface. When the top shell is connected to the connecting side plate, the bottom surface simultaneously abuts against both the top surface and the extended surface. The extended surface on the connecting side plate, flush with the top surface, allows the bottom surface to contact both the extended surface and the top surface simultaneously. This ensures that the extended surface is flush with the top surface each time the top shell is closed, thus maintaining a fixed relative position between the connecting side plate and the bottom shell and reducing the risk of the connecting side plate detaching from the bottom shell during repeated use.

[0018] The beneficial effects of this utility model are as follows: (1) It can cope with the central protrusion of the ointment structure, ensure the stability of the ointment during transportation and use, and form an effective internal support effect; (2) The S-shaped extended vertical plate can provide a certain degree of flexible impact resistance. The connection between the paste and the plate can buffer part of the impact force and ensure stability. (3) By extending the vertical plate from the center to the edge, the segmentation effect of the grid structure on the paste can be reduced, the integrity of the paste can be improved, and the risk of the paste breaking and falling off can be reduced. Attached Figure Description

[0019] Figure 1 This is an exploded view of the present invention.

[0020] Figure 2 This is a cross-sectional view of the present invention.

[0021] Figure 3 This is a perspective exploded view of this utility model.

[0022] Figure 4 This is a vertical sectional view of the present invention.

[0023] Figure 5 This is an isometric view of the load-bearing bracket in this utility model.

[0024] Figure 6 This is an isometric view of the top shell in this utility model.

[0025] In the picture: 1. Bottom shell; 11. Locking strip; 12. Locking part; 13. Top surface; 2. Bearing bracket, 21. Connecting side plate, 211. Threaded line, 212. Limiting strip, 213. Slot, 214. Protruding strip, 22. Extended vertical edge, 23. Support plate, 24. Hollowed-out part, 25. Outer surface, 26. Upper bearing area, 27. Lower bearing area, 28. Hooked step surface. 3. Top shell, 31. Connecting wire, 32. Engaging groove, 33. Bottom surface. Detailed Implementation

[0026] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0027] Example 1: like Figure 1 , 2As shown, a box for holding a raised paste includes a bottom shell 1, a support bracket 2 connected to the bottom shell 1, and a top shell 3 connected to the support bracket 2. The support bracket 2 includes a connecting side plate 21 connecting the bottom shell 1 and the top shell 3. The connecting side plate 21 is provided with a plurality of extended vertical edges 22, which are staggered. A support plate 23 is connected to the extended vertical edges 22. A hollow part 24 is provided between each extended vertical edge 22 and the support plate 23. The raised paste completely covers the extended vertical edges 22 and the support plate 23. The height of the extended vertical edges 22 near the center of the box is higher than the height near the edge of the box.

[0028] In the current technology, consumers have increasingly diverse demands for product packaging. For lipstick products, users no longer simply require the product to be placed in a spiral-screwed tube; many consumers also prefer convenient spherical or near-spherical protruding structures. In the current technology, because the protruding lipstick needs to protrude from the bottom shell 1, a support structure is required to ensure the stability of the protruding lipstick. However, the existing support is a grid-type support with an internal flat surface. The center of the existing support is a flat structure. If the protruding lipstick is placed on this type of support, the heavier protruding part in the center is prone to cutting and falling off during application.

[0029] Therefore, to address the aforementioned issues, this application addresses these problems by interconnecting the extended vertical edges 22 and supplementing them with a supporting plate 23, thereby ensuring effective support for the ointment. Furthermore, a perforated portion 24 is provided between each connecting side plate 21 and the supporting plate 23, connecting the cavity space between the top shell 3 and the bottom shell 1. This allows the ointment to be positioned within the shell spaces of both the top shell 3 and the bottom shell 1. The perforated portion 24 connects the upper and lower parts of the ointment, creating a unified structure that ensures the stability and integrity of the ointment. This allows the ointment to fully enclose the extended vertical edges 22 and the supporting plate 23. Since the extended vertical edges 22 and the supporting plate 23 are enclosed within the ointment, they create a reinforcing layer within the ointment. The ribbed structure ensures the overall structural strength of the cream. The cream, typically a wax-based unit, possesses a certain shape and structural strength, supported internally by the extended vertical edge 22 and the supporting plate 23. Because the cream has a raised structure, its center is thicker than its edges. The raised portion is generally spherical; therefore, the height of the extended vertical edge 22 near the center of the box is set larger, while the height near the edge is set smaller. This provides a larger contact area for the raised cream at the center, resulting in more stable support and mitigating some of the offset caused by the greater weight of the raised cream at the center during use. The extended vertical edge 22 and the supporting plate 23 are vertically aligned, providing support in two directions. During use and transportation, the cream is not subjected to forces in a fixed single direction; this design improves the cream's stability under forces from different directions.

[0030] like Figure 2 As shown, each of the extended vertical edges 22 is connected at the center of the box body. The extended vertical edges 22 extend from the center of the connecting side plate 21 towards the edge, and the height of the extended vertical edges 22 gradually decreases from the center towards the edge. The extended vertical edges 22 converge and connect at the center of the box body, thus forming an extended vertical edge 22 structure that radiates from the center towards the edge. This results in better support at the center of the box body, with more extended vertical edge 22 areas that effectively support the cream at the center. Furthermore, since the extended vertical edges 22 radiate from the center towards the edge, they can provide limiting support for the cream in various directions at the center. During use, the cream at the center is used relatively frequently and experiences more complex force directions, thus allowing for a more precise adaptation to the raised shape of the cream.

[0031] like Figure 2As shown, a support plate 23 is connected at the intersection of each of the extended vertical edges 22. The support plate 23 is connected at the center intersection of the extended vertical edges 22, which can improve the correlation between the extended vertical edges 22, improve the structural strength of the extended vertical edges 22, and improve the integrity. At the same time, the support plate 23 can also provide vertical support for the paste in the center, avoiding the risk of the central area of ​​the paste collapsing during use.

[0032] like Figure 2 As shown, each of the extended vertical edges 22 is individually connected to a support plate 23. The support plate 23 provided on each extended vertical edge 22 can provide support for the paste area except for the center, ensuring the stability and uniformity of the support.

[0033] like Figure 2 As shown, the extended vertical edge 22 has an "S"-shaped curved structure. Setting the extended vertical edge 22 into an S-shape increases the contact area between the extended vertical edge 22 and the paste, improving the reliability of the support. Furthermore, the S-shaped curved structure forms several arched mechanisms, enhancing lateral impact resistance and ensuring the stability and impact resistance of the paste's support. The extended vertical edge 22 is made of a flexible material similar to PE resin, further improving impact resistance. Moreover, its S-shaped structure results in a smoother surface and better structural flexibility.

[0034] like Figure 1 As shown, the support plate 23 is disposed on the side of the extending vertical edge 22 near the bottom shell 1. Normally, the portion of the paste used is closer to the top shell 3, while the portion inside the bottom shell 1 is generally smaller, only serving to connect and wrap the extending vertical edge 22 and the support plate 23, thus ensuring the integrity and connection strength of the paste. Therefore, disposing of the support plate 23 near the bottom shell 1 increases the proportion of usable (convenient to use) paste, improving utilization during use.

[0035] Example 2: like Figure 3 , 5As shown in Figure 6, the connecting side plate 21 is provided with a threaded wire 211, and the end of the threaded wire 211 is provided with a limiting strip 212. The top shell 3 is provided with a connecting wire 31, and the end of the connecting wire 31 is provided with a locking groove 32. When the connecting wire 31 is threaded to the threaded wire 211 and moves to the locking groove 32 to abut against the limiting strip 212, the locking groove 32 can lock and connect the limiting strip 212. A threaded wire 211 is provided on the connecting side plate 21, and a connecting wire 31 is provided on the top shell 3. The connecting wire 31 and the threaded wire 211 can be threadedly connected, which facilitates quick connection and separation during use. A locking groove 32 is provided on the connecting wire 31, and a limiting strip 212 is provided on the threaded wire 211. The limiting strip 212 and the locking groove 32 are both located at the end. That is, during the threaded connection of the connecting wire 31 and the threaded wire 211, the connection between the limiting strip 212 and the locking groove 32 can fix the limiting connection state. At the same time, the tactile feedback between the locking groove 32 and the limiting strip 212 provides feedback to the user.

[0036] like Figure 3 , 4 As shown, a retaining strip 11 is provided on the bottom shell 1, and a retaining groove 213 is provided on the connecting side plate 21. The retaining groove 213 engages with the retaining strip 11. The retaining strip 11 is fixed in position relative to the bottom shell 1, while the retaining groove 213 on the connecting side plate 21 is provided to connect the retaining strip 11. This makes the position of the connecting side plate 21 relatively fixed relative to the bottom shell 1, which facilitates ensuring that the position of the paste relative to the bottom shell 1 is fixed during the threaded connection process.

[0037] like Figure 3 , 4 As shown, the connecting side plate 21 is provided with a protruding strip 214, and the bottom shell 1 is provided with a locking part 12 that can engage with the protruding strip 214. The protruding strip 214 on the connecting side plate 21 and the locking part 12 on the bottom shell 1 can be either a protruding strip structure or a recessed groove structure, achieving the effects of misalignment and engagement respectively. This further improves the relative stability between the connecting side plate 21 and the top shell 3 and the bottom shell 1, thereby enhancing the ease of installation and disassembly between the connecting side plate 21 and the top shell 3 or the bottom shell 1, making it convenient to use.

[0038] like Figure 3 , 4As shown, the connecting side plate 21 is provided with an extension surface 25, the bottom shell 1 is provided with a top surface 13, and the top shell 3 is provided with a bottom surface 33. When the connecting side plate 21 is connected to the bottom shell 1, the extension surface 25 is flush with the top surface 13. When the top shell 3 is connected to the connecting side plate 21, the bottom surface 33 simultaneously abuts against the top surface 13 and the extension surface 25. The extension surface 25 on the connecting side plate 21, which is flush with the top surface 13, allows the bottom surface 33 to simultaneously contact the extension surface 25 and the top surface 13. This ensures that the extension surface 25 is flush with the top surface 13 each time the top shell 3 is closed, thus maintaining a fixed relative position between the connecting side plate 21 and the bottom shell 1 and reducing the risk of the connecting side plate 21 detaching from the bottom shell 1 during repeated use.

[0039] The support bracket 2 includes an upper support area 26 and a lower support area 27. The cross-sectional dimension of the lower support area 27 is larger than that of the upper support area 26. A barbed step surface 28 is formed between the lower support area 27 and the upper support area 26. By setting the support bracket 2 with different upper and lower cross-sections, the cross-sectional dimension of the lower support area 27 becomes larger. A barbed step surface 28 is formed at the junction of the lower support area 27 and the upper support area 26. After the paste is placed in the support bracket 2, because the cross-section of the lower support area 27 is larger, the paste inside will not easily fall out when the entire paste box is inverted, ensuring the stability of the paste placed between the pastes. Combined with the support plate 23, this improves the anti-falling effect of the paste in various areas.

[0040] In addition to the above structure, this embodiment also includes a bottom shell 1, on which a support bracket 2 is connected, and on which a top shell 3 is connected. The support bracket 2 includes a connecting side plate 21 connecting the bottom shell 1 and the top shell 3. The connecting side plate 21 has several extending vertical edges 22, which are staggered. A supporting plate 23 is connected to each extending vertical edge 22, and a hollow portion 24 is provided between each extending vertical edge 22 and the supporting plate 23. The protruding paste completely covers the extending vertical edges 22 and the supporting plate 23. The height of the extending vertical edges 22 near the center of the box is higher than the height near the edge of the box. Each extending vertical edge 22 is connected to the center of the box, extending from the center of the connecting side plate 21 towards the edge, and the height of the extending vertical edge 22 gradually decreases from the center towards the edge. A supporting plate 23 is connected at the intersection of each extending vertical edge 22. Each extending vertical edge 22 is individually connected to a supporting plate 23. The extended vertical side 22 has an "S"-shaped curved structure. The support plate 23 is located on the side of the extended vertical side 22 near the bottom shell 1.

[0041] By connecting the various extended vertical edges 22 and supplementing them with supporting plates 23, the support effect for the ointment is ensured. A perforated section 24 is provided between each connecting side plate 21 and the supporting plate 23, thus connecting the cavity space between the top shell 3 and the bottom shell 1. This allows the ointment to be located within the shell spaces of the top shell 3 and the bottom shell 1 respectively. The perforated section 24 connects the upper and lower parts of the ointment, making them a unified whole, ensuring the stability and integrity of the ointment. The ointment completely encloses the extended vertical edges 22 and the supporting plate 23. Because the extended vertical edges 22 and the supporting plate 23 are enclosed within the ointment, a reinforcing rib structure is formed inside the ointment, ensuring... The overall structural strength of the cream, which is generally a wax-based cream, possesses a certain shape and structural strength. Internal support is provided by the extended vertical edge 22 and the supporting plate 23. Because the cream has a raised structure, its center is thicker than its edges. The raised portion is generally spherical. Therefore, the height of the extended vertical edge 22 near the center of the box is set larger, while the height near the edge is set smaller. This provides a larger contact area for the raised cream at the center, resulting in more stable support and mitigating some of the offset caused by the greater weight of the raised cream at the center during use. The extended vertical edge 22 and the supporting plate 23 are vertically positioned, providing support in two directions. During use and transportation, the cream is not subjected to forces in a fixed single direction; this design improves the cream's stability under forces from different directions.

Claims

1. A cartridge for carrying a raised paste, characterized by, The container includes a bottom shell, a support bracket connected to the bottom shell, and a top shell connected to the support bracket. The support bracket includes a connecting side plate connecting the bottom shell and the top shell. The connecting side plate has several extended vertical edges that are staggered. A support plate is connected to each extended vertical edge. A hollow portion is provided between each extended vertical edge and the support plate. The protruding paste completely covers the extended vertical edges and the support plate. The height of the extended vertical edges near the center of the container is higher than the height near the edge of the container.

2. A cartridge for carrying a raised paste as claimed in claim 1, wherein, Each of the extended vertical edges is connected to the center of the box body. The extended vertical edges extend from the center of the connecting side plate toward the edge, and the height of the extended vertical edges gradually decreases from the center toward the edge.

3. A box for carrying raised paste as described in claim 1, characterized in that, A support plate is connected at the intersection of each of the extended vertical sides.

4. A box for carrying raised paste as described in claim 1, characterized in that, Each of the extended vertical sides is individually connected to a supporting plate.

5. A box for carrying raised paste as described in claim 1, characterized in that, The extended vertical side has an "S" shaped curved structure.

6. A box for carrying raised paste as described in claim 1, characterized in that, The support bracket includes an upper support area and a lower support area. The cross-sectional dimension of the lower support area is larger than that of the upper support area. A barbed step surface is formed between the lower support area and the upper support area.

7. A box for carrying raised paste as described in claim 1, characterized in that, The connecting side plate is provided with a threaded wire, and the end of the threaded wire is provided with a limit strip. The top shell is provided with a connecting wire, and the end of the connecting wire is provided with a locking groove. When the threaded connecting wire moves to the locking groove and abuts against the limit strip, the locking groove can engage the limit strip.

8. A box for carrying raised paste as described in claim 1, characterized in that, The bottom shell is provided with a retaining strip, and the connecting side plate is provided with a retaining groove, which engages with the retaining strip.

9. A box for carrying raised paste according to any one of claims 1-8, characterized in that, The connecting side plate is provided with a raised strip, and the top shell and / or bottom shell are provided with a locking part that can engage the raised strip.

10. A box for carrying raised paste according to any one of claims 1-8, characterized in that, The connecting side plate is provided with a stepped surface, the bottom shell is provided with a top surface, and the top shell is provided with a bottom surface. When the connecting side plate is connected to the bottom shell, the stepped surface is flush with the top surface. When the top shell is connected to the connecting side plate, the bottom surface simultaneously abuts against the top surface and the stepped surface.

Citation Information

Patent Citations

  • Cream pot with replaceable inner container

    CN220777663U