A honeycomb-type cushioning anti-compression release strip

The design of the honeycomb buffer-type anti-compression demolding strip solves the problem that existing strips are difficult to adapt to different molds, achieving efficient cleaning and mold protection, and reducing production costs.

CN224426164UActive Publication Date: 2026-06-30GUANGDONG PUHONG SEMICON CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG PUHONG SEMICON CO LTD
Filing Date
2025-08-05
Publication Date
2026-06-30

AI Technical Summary

Technical Problem

Existing mold cleaning strips are difficult to adapt to molds of different sizes and specifications, resulting in large molds needing to be spliced ​​multiple times, poor cleaning effect, and easy damage to the mold.

Method used

A honeycomb-type cushioning and pressure-resistant demolding strip is designed, which adopts a slidingly connected outer shell and an internal honeycomb strip structure, combined with hollow rubber blocks and groove design, to achieve rapid splicing and uniform adhesion to the mold.

Benefits of technology

It enables the rapid adaptation of the adhesive strip to molds of different sizes, improves the cleaning effect, protects the integrity of the mold surface, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model relates to the field of mold cleaning and discloses a honeycomb-type cushioning anti-pressure demolding strip, comprising two strip shells. A first connecting plate is fixedly connected to the left side of the strip shell, and two fixing blocks are fixedly connected to the right side of the first connecting plate. A second connecting plate is fixedly connected to the right side of the strip shell, and two rectangular grooves are formed on the left side of the second connecting plate. Multiple honeycomb strips are fixedly connected inside the strip shell, and multiple hollow rubber blocks are fixedly connected to the top of the strip shell. Multiple grooves are formed on the top of the strip shell. The first connecting plate is L-shaped, and the second connecting plate is L-shaped. In this utility model, the sliding cooperation between the first and second connecting plates enables the splicing of multiple strip shells, solving the problem that fixed strip sizes require multiple splicing for large molds, leading to difficulty in thoroughly removing residual dirt and ultimately affecting the cleaning effect.
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Description

Technical Field

[0001] This utility model relates to the field of mold cleaning, and in particular to a honeycomb-type cushioning anti-pressure demolding strip. Background Technology

[0002] In mold cleaning, traditional tools such as hard-bristled brushes and scrapers can easily scratch the surface of the mold cavity or leave debris. They are also difficult to clean complex textures, mold release agent residues, plastic residues and dirt in narrow gaps. These impurities can affect the molding accuracy and surface quality of subsequent products. Therefore, mold cleaning strips that can adsorb dirt with adhesiveness, fit the complex structure of the mold and do not damage the surface have emerged.

[0003] Mold cleaning strips are usually made of polymeric colloid materials with a certain degree of elasticity and viscosity. They are mostly strip or sheet-shaped structures. The colloid may contain fine adsorption particles to enhance the cleaning ability. The working principle is that by contacting the complex structure of the mold, the debris adheres to the surface of the strip. At the same time, the elasticity of the colloid avoids scratching the precision cavity of the mold, thus achieving non-destructive cleaning of the mold.

[0004] The mold cleaning strips used for cleaning molds have obvious drawbacks. Their fixed size makes it difficult to adapt to molds of different sizes and specifications. For large molds, they need to be spliced ​​multiple times. However, simple splicing not only leads to cleaning omissions due to poor adhesion at the joints, but also reduces the overall toughness of the strip after splicing, making it unable to evenly adhere to the complex cavity of the mold, making it difficult to completely remove residual dirt and ultimately affecting the cleaning effect. To address these issues, a honeycomb buffer-type pressure-resistant mold release strip is proposed. Utility Model Content

[0005] To overcome the above shortcomings, this utility model provides a honeycomb buffer type anti-compression demolding strip, which aims to improve the problem that the fixed size of the strip in the prior art makes it difficult to adapt to molds of different sizes and specifications, and requires multiple splicing for large molds, resulting in the inability to completely remove residual dirt and ultimately affecting the cleaning effect.

[0006] To achieve the above objectives, the present invention adopts the following technical solution:

[0007] A honeycomb-type buffer-type anti-compression demolding strip includes two strip shells. A first connecting plate is fixedly connected to the left side of the strip shell, and two fixing blocks are fixedly connected to the right side of the first connecting plate. A second connecting plate is fixedly connected to the right side of the strip shell, and two rectangular grooves are formed on the left side of the second connecting plate.

[0008] As a further description of the above technical solution:

[0009] Multiple honeycomb adhesive strips are fixedly connected inside the outer shell of the adhesive strip, and multiple hollow adhesive blocks are fixedly connected to the top of the outer shell of the adhesive strip. Multiple grooves are provided on the top of the outer shell of the adhesive strip.

[0010] As a further description of the above technical solution:

[0011] The first connecting plate is L-shaped;

[0012] As a further description of the above technical solution:

[0013] The second connecting plate is L-shaped;

[0014] As a further description of the above technical solution:

[0015] The first connecting plate is slidably connected to the right side of another rubber strip housing;

[0016] As a further description of the above technical solution:

[0017] The first connecting plate is slidably connected to the right side of the second connecting plate;

[0018] As a further description of the above technical solution:

[0019] The second connecting plate is slidably connected to the left side of another rubber strip housing;

[0020] As a further description of the above technical solution:

[0021] The hollow rubber blocks are evenly distributed on the top of the rubber strip shell.

[0022] This utility model has the following beneficial effects:

[0023] 1. In this utility model, the sliding cooperation between the first connecting plate and the second connecting plate enables the quick and convenient splicing of multiple rubber strip shells, thus meeting the cleaning needs of molds of different sizes. This solves the problem in the prior art where the fixed size of the rubber strip makes it difficult to adapt to molds of different sizes and specifications, and multiple splicing is required for large molds, resulting in the inability to completely remove residual dirt and ultimately affecting the cleaning effect.

[0024] 2. In this utility model, when the mold is cleaned, the hollow rubber block is deformed by compression, which, together with the internal honeycomb rubber strip, prevents the mold from being scratched or deformed due to impact, thus protecting the mold's precision. The hollow rubber block wraps around the mold protrusions with its elasticity and flexibility, increasing the contact area and improving the cleaning effect of dirt on the protrusions. The groove on the top of the rubber strip shell reduces the amount of adhesive material used while ensuring the structural cleaning strength, thereby reducing production costs. Attached Figure Description

[0025] Figure 1 This is a three-dimensional schematic diagram of a honeycomb-type cushioning anti-compression release strip proposed in this utility model;

[0026] Figure 2This is a schematic diagram of the outer shell of a honeycomb buffer type anti-compression release strip proposed in this utility model;

[0027] Figure 3 This is a schematic diagram of the structure of the first connecting plate of a honeycomb buffer type anti-compression demolding strip proposed in this utility model;

[0028] Figure 4 This is a schematic diagram of the structure of a fixing block for a honeycomb buffer type anti-compression release strip proposed in this utility model;

[0029] Figure 5 This is a schematic diagram of the structure of the second connecting plate of a honeycomb buffer type anti-compression demolding strip proposed in this utility model.

[0030] Legend:

[0031] 1. Adhesive strip outer shell; 2. Honeycomb adhesive strip; 3. First connecting plate; 4. Fixing block; 5. Second connecting plate; 6. Rectangular groove; 7. Hollow adhesive block; 8. Groove. Detailed Implementation

[0032] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0033] Reference Figures 1-5 This utility model provides an embodiment of a honeycomb buffer-type anti-compression demolding strip, comprising two strip shells 1. The strip shell 1 serves as a basic load-bearing structure, providing installation space and support for subsequent components. A first connecting plate 3 is fixedly connected to the left side of the strip shell 1, and two fixing blocks 4 are fixedly connected to the right side of the first connecting plate 3. The fixing blocks 4 are used to cooperate with rectangular grooves 6 during splicing, serving as positioning and reinforcement. A second connecting plate 5 is fixedly connected to the right side of the strip shell 1. The second connecting plate 5 works in conjunction with the first connecting plate 3 to construct a splicing adaptation structure. Two rectangular grooves 6 are opened on the left side of the second connecting plate 5, which are adapted to the fixing blocks 4. Through embedded cooperation, the spliced ​​strip shells 1 are stably connected. The first connecting plate 3 is L-shaped, the second connecting plate 5 is L-shaped, the first connecting plate 3 is slidably connected to the right side of the other strip shell 1, the first connecting plate 3 is slidably connected to the right side of the second connecting plate 5, and the second connecting plate 5 is slidably connected to the left side of the other strip shell 1.

[0034] Reference Figure 1 and Figure 2Multiple honeycomb adhesive strips 2 are fixedly connected inside the outer shell 1 of the adhesive strip. The honeycomb adhesive strips 2, with their honeycomb structure, can effectively disperse the impact force generated during the cleaning process and play a buffering and protective role. Multiple hollow adhesive blocks 7 are fixedly connected to the top of the outer shell 1. The hollow adhesive blocks 7 utilize their own elasticity and flexibility to conform to the mold protrusions during cleaning and absorb impact force, thereby improving the cleaning effect and mold protection. Multiple grooves 8 are provided on the top of the outer shell 1 of the adhesive strip. The grooves 8 reduce the use of adhesive material while ensuring that the adhesive strip structure strength meets the cleaning requirements. They can also adapt to the complex texture of the mold and help improve the cleaning flexibility. The hollow adhesive blocks 7 are evenly distributed on the top of the outer shell 1 of the adhesive strip. The even distribution allows the hollow adhesive blocks 7 to clean and protect various parts of the mold more evenly.

[0035] Working principle: When adapting to molds of different sizes, the first connecting plate 3 on the left side of the outer shell 1 and the second connecting plate 5 on the right side of another outer shell 1 slide together to slide the first connecting plate 3 into the corresponding connecting part, so that the fixing block 4 is embedded in the rectangular groove 6. This allows multiple outer shells 1 to be quickly spliced ​​together, and the overall length can be flexibly adjusted to adapt to the cleaning needs of molds of different sizes. When cleaning the mold, the hollow rubber block 7 is deformed by compression. In conjunction with the internal honeycomb rubber strip 2, the impact force is dispersed and absorbed, reducing scratches and deformation damage to the mold caused by external impact. The hollow rubber block 7, with its own elasticity and flexibility, fits and wraps the raised parts of the mold, increasing the contact area and efficiently removing and cleaning dirt from the raised parts. The groove 8 on the top of the outer shell 1 reduces the use of adhesive material while ensuring the structural cleaning strength. At the same time, it makes the surface of the rubber strip form a concave-convex shape to adapt to the complex texture of the mold and help improve the cleaning flexibility.

[0036] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A honeycomb-type cushioning anti-compression release strip, comprising two strip shells (1), characterized in that: The outer shell (1) of the adhesive strip is fixedly connected to a first connecting plate (3) on the left side, and two fixing blocks (4) are fixedly connected to the right side of the first connecting plate (3). The outer shell (1) of the adhesive strip is fixedly connected to a second connecting plate (5) on the right side, and two rectangular grooves (6) are opened on the left side of the second connecting plate (5).

2. The honeycomb-type cushioning anti-compression release strip according to claim 1, characterized in that: Multiple honeycomb adhesive strips (2) are fixedly connected inside the adhesive strip shell (1), and multiple hollow adhesive blocks (7) are fixedly connected to the top of the adhesive strip shell (1). Multiple grooves (8) are opened on the top of the adhesive strip shell (1).

3. The honeycomb-type cushioning anti-compression release strip according to claim 1, characterized in that: The first connecting plate (3) is L-shaped.

4. The honeycomb-type cushioning anti-compression release strip according to claim 1, characterized in that: The second connecting plate (5) is L-shaped.

5. The honeycomb-type cushioning anti-compression release strip according to claim 1, characterized in that: The first connecting plate (3) is slidably connected to the right side of another rubber strip shell (1).

6. The honeycomb-type cushioning anti-compression release strip according to claim 1, characterized in that: The first connecting plate (3) is slidably connected to the right side of the second connecting plate (5).

7. The honeycomb-type cushioning anti-compression release strip according to claim 1, characterized in that: The second connecting plate (5) is slidably connected to the left side of another rubber strip shell (1).

8. A honeycomb-type cushioning anti-compression release strip according to claim 2, characterized in that: The hollow rubber blocks (7) are evenly distributed on the top of the rubber strip shell (1).