Open milling equipment for sealing strip production

By designing an open mill for sealing strip production with multi-stage cooling and uniform heating, the problem of insufficient improvement in material properties during the heating process in existing equipment has been solved, thereby improving the quality and efficiency of material forming.

CN223630685UActive Publication Date: 2025-12-05GUIZHOU XINGHUI RUBBER & PLASTIC MATERIALS TECH CO LTD
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Patent Information

Application Number
CN202422706788.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-07
Publication Date
2025-12-05
Estimated Expiration
2034-11-07

AI Technical Summary

Technical Problem

Existing open milling equipment used in the production of sealing strips heats the material during compaction, which is not conducive to improving the physical properties of the material and affects the molding quality and efficiency of the material.

Method used

An open mixing equipment for producing sealing strips was designed, including components such as a support base, transmission assembly, feed hopper, compaction pipe, heating assembly, cooling pool and cooling box. The material is processed through multi-stage cooling and uniform heating to ensure that the material is heated evenly and the temperature is reduced during the compaction process.

Benefits of technology

It improves the molding quality and efficiency of materials, ensures the improvement of physical properties of materials during compaction and heating, and meets the requirements of subsequent processing and storage.

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Abstract

The utility model relates to the technical field of sealing strip production, and discloses an open milling device for sealing strip production, which comprises a support seat, the left end of the support seat is fixedly connected with a transmission component, the left end of the transmission component is fixedly connected with a feed hopper I, and the front surface of the feed hopper I is fixedly connected with a material guide port. According to the utility model, the cooling tank is arranged at the left end of the connecting box, the cooling box is arranged at the left end of the cooling tank, and the conveying rollers in the cooling tank are arranged between the connecting box and the cooling box, so that the heated and compacted materials can be conveniently cooled through the layout; and then the materials can enter the cooling box to be further cooled, and the temperature of the materials can be effectively reduced through the multi-stage cooling mode, so that the materials reach a proper temperature state, and subsequent processing or storage is facilitated.
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Description

TECHNICAL FIELD

[0001] The utility model relates to sealing strip production technical field especially sealing strip production is with open mill equipment. BACKGROUND

[0002] Sealing strip plasticization refers to the process of softening and filling the specific shape of the mold by heating and applying pressure to the sealing material (such as rubber, plastic, etc.) during the production of sealing strips. This process is crucial for the final shape and performance of the sealing strip. Plasticization can improve the elasticity, temperature resistance and aging resistance of the sealing strip, ensuring its good sealing effect under various environmental conditions. In the automotive and construction industries, sealing strips are widely used in doors, windows, vehicle bodies, etc. to provide good sealing performance, prevent moisture, dust, etc. from entering, and also play a certain role in shock absorption and sound insulation. The materials and techniques used in the plasticization process will affect the final quality of the sealing strip, so this step is very important in the production of sealing strips.

[0003] The existing sealing strip production open mill equipment performs heating treatment while compacting, which is not convenient for improving the physical properties of the material and affects the molding quality and efficiency of the material. SUMMARY

[0004] To solve the above technical problems, the utility model provides sealing strip production open mill equipment.

[0005] The utility model discloses the following technical scheme is realized: sealing strip production open mill equipment, including support seat, the left end fixed connection of support seat has transmission assembly, the left end fixed connection of transmission assembly has feeding hopper no.

[0006] Through the above technical scheme, the existence of feeding hopper no. and feeding hopper no. 2 is convenient for the input of material, and the material guide port on feeding hopper no. is located at the left end of transmission assembly and above feeding hopper no. 2 on the top of compacting pipe. This layout is conducive to the shunting and guiding of the material.

[0007] As a further improvement of the above scheme, the material guide port is located at the left end of the transmission assembly, and the feeding hopper no. 2 is located at the bottom of the material guide port.

[0008] Through the technical scheme, the transmission assembly connecting support seat and the feeding hopper one can effectively transmit power to the feeding hopper one and related components, ensure normal transmission and processing of materials in the feeding hopper one and subsequent components, and ensure the continuity of the material conveying link of the whole equipment.

[0009] As a further improvement of the above scheme, the feeding hopper two is located at the left end of the support seat, and the compaction pipe is located at the bottom of the guide inlet.

[0010] As a further improvement of the above scheme, the number of the heating assemblies is set to several, and the several heating assemblies are symmetrically distributed around the compaction pipe.

[0011] As a further improvement of the above scheme, the heater is located at the rear end of the support seat, and the air cylinder is located at the left end of the support seat.

[0012] As a further improvement of the above scheme, the conveying roller is located at the right end of the cooling box, and the conveying roller is located at the left end of the connecting box.

[0013] Compared with the prior art, the utility model has the beneficial effects that:

[0014] The cooling pool is located at the left end of the connecting box, the cooling box is located at the left end of the cooling pool, and the conveying roller in the cooling pool is located between the connecting box and the cooling box, so that the material after heating and compaction can be conveniently cooled, the material can be preliminarily cooled in the cooling pool, and then the material can enter the cooling box for further cooling, and the multi-stage cooling mode can more effectively reduce the temperature of the material and make the material reach a suitable temperature state, so that subsequent processing or storage can be carried out.

[0015] The air cylinder is located at the left end of the support seat and at the top of the connecting box, so that the air cylinder can provide power for related operations in the connecting box, for example, plays a role in the transfer and pushing of the material, and ensures the smooth flow of the material in the equipment, the compaction pipe is located at the bottom of the guide inlet and can compact the entering material, the several heating assemblies are symmetrically distributed around the compaction pipe, and the compaction pipe has a heater at the rear end, so that the symmetrically distributed heating assemblies and the heater can uniformly heat the material in the compaction pipe, the material is compacted and heated at the same time, which helps to improve the physical properties of the material and improve the forming quality and efficiency of the material. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a whole structure schematic view of the utility model;

[0017] Figure 2 It is a bottom view structure schematic view of the utility model;

[0018] Figure 3 It is a rear view structure schematic view of the utility model;

[0019] Figure 4 It is right view structure schematic diagram of the utility model.

[0020] Main symbol explanation:

[0021] 1, support seat; 2, transmission assembly; 3, feed hopper one; 4, material guide; 5, feed hopper two; 6, compaction tube; 7, heating assembly; 8, heater; 9, connection box; 10, air cylinder; 11, cooling pool; 12, conveying roller; 13, cooling box; 14, fan. DETAILED DESCRIPTION

[0022] Next, the utility model is further described in conjunction with the drawings and specific embodiments, it should be noted that in the absence of conflict, the following described embodiments or between various technical features between can be arbitrarily combined to form new embodiments.

[0023] Embodiment:

[0024] Please combine Figures 1-4 The sealing strip production of the present embodiment with the opening equipment, including support seat 1, the left end of support seat 1 is fixedly connected with transmission assembly 2, the left end of transmission assembly 2 is fixedly connected with feed hopper one 3, the front of feed hopper one 3 is fixedly connected with material guide 4, the left end of support seat 1 is fixedly connected with compaction tube 6, the top of compaction tube 6 is fixedly connected with feed hopper two 5, the surface of compaction tube 6 is fixedly connected with heating assembly 7, the rear end of compaction tube 6 is fixedly connected with heater 8, the left end of support seat 1 is fixedly connected with connection box 9, the top of connection box 9 is fixedly connected with air cylinder 10, the left end of connection box 9 is fixedly connected with cooling pool 11, the inner wall of cooling pool 11 is fixedly connected with conveying roller 12, the left end of cooling pool 11 is fixedly connected with cooling box 13, the left end of feed hopper one 3 is fixedly connected with fan 14, by setting cooling pool 11 at the left end of connection box 9, cooling box 13 is at the left end of cooling pool 11, the conveying roller 12 in cooling pool 11 is between connection box 9 and cooling box 13, such layout is convenient for the material after heating and compaction to carry out cooling treatment, cooling pool 11 first carries out preliminary cooling to the material, then the material can enter cooling box 13 and is further cooled, this multistage cooling mode can more effectively reduce the material temperature, so that it reaches the appropriate temperature state, in order to carry out subsequent processing or storage.

[0025] The existence of feed hopper one 3 and feed hopper two 5 facilitates the input of material, the material guide 4 on feed hopper one 3 is located at the left end of transmission assembly 2 and is above feed hopper two 5 at the top of compaction tube 6, this layout is conducive to the diversion and guidance of material.

[0026] The material guide 4 is located at the left end of transmission assembly 2, and the feed hopper two 5 is located at the bottom of the material guide 4.

[0027] The transmission assembly 2 connects the support base 1 and the feeding hopper 3, and can effectively transmit power to the components of the feeding hopper 3, ensure the normal transmission and processing of the material in the feeding hopper 3 and the subsequent components, and ensure the continuity of the material conveying link of the entire device.

[0028] The feeding hopper 2 is located at the left end of the support base 1, and the compaction pipe 6 is located at the bottom of the material guide port 4.

[0029] The heating assembly 7 is arranged in a plurality of numbers and is symmetrically distributed around the compaction pipe 6.

[0030] The heater 8 is located at the rear end of the support base 1, and the air cylinder 10 is located at the left end of the support base 1. By arranging the air cylinder 10 at the left end of the support base 1 and at the top of the connecting box 9, the air cylinder 10 can provide power for the relevant operations in the connecting box 9, such as material transfer, pushing, etc., to ensure the smooth flow of the material in the device. The compaction pipe 6 is located at the bottom of the material guide port 4 and can compact the entering material. The plurality of heating assemblies 7 are symmetrically distributed around the compaction pipe 6, and the compaction pipe 6 has the heater 8 at the rear end. The symmetrically distributed heating assemblies 7 and the heater 8 can uniformly heat the material in the compaction pipe 6, compact the material, and heat the material at the same time, which is helpful to improve the physical properties of the material and improve the forming quality and efficiency of the material.

[0031] The conveying roller 12 is located at the right end of the cooling box 13, and the conveying roller 12 is located at the left end of the connecting box 9.

[0032] The implementation principle of the open mill device for producing sealing strips in the embodiment is as follows: The material enters the device through the feeding hopper 3 and the feeding hopper 5. If the material in the feeding hopper 3 is assisted by air flow under the action of the fan 14, part of the material may flow to the lower part through the material guide port 4. The transmission assembly 2 ensures the stable transmission of the material in the feeding hopper 3. The material in the feeding hopper 5 directly enters the area above the compaction pipe 6. In the compaction pipe 6, the material is compacted under the action of gravity and external force such as a pressure device, the detailed structure of which is not mentioned but can be inferred. At the same time, the heating assembly 7 and the heater 8 heat the compaction pipe 6, and the heat is transferred to the material, so that the material is uniformly heated in the compaction process, and the physical properties of the material are changed, such as reducing the viscosity of the material and improving the plasticity of the material. After being compacted and heated, the material enters the connecting box 9, and the air cylinder 10 may push the material and perform other operations, so that the material enters the cooling pool 11. In the cooling pool 11, the material is slowly moved under the driving of the conveying roller 12, and is preliminarily cooled by contacting the cooling medium such as water in the cooling pool 11. Then, the material enters the cooling box 13 for further cooling, and finally obtains the material treated by compaction, heating and cooling, which can be used in subsequent production or processing links.

[0033] The above-mentioned embodiments are only preferred embodiments of the present application, and cannot be used to limit the scope of protection of the present application. Any non-essential changes and replacements made by those skilled in the art on the basis of the present application shall fall within the scope of protection of the present application.

Claims

1. An opening mill for producing a sealing strip, characterized in that, The utility model relates to a kind of compaction machines, including support seat (1), the left end of support seat (1) is fixedly connected with transmission assembly (2), the left end of transmission assembly (2) is fixedly connected with feed hopper one (3), the front of feed hopper one (3) is fixedly connected with guide mouth (4), the left end of support seat (1) is fixedly connected with compaction pipe (6), the top of compaction pipe (6) is fixedly connected with feed hopper two (5), the surface of compaction pipe (6) is fixedly connected with heating assembly (7), the rear end of compaction pipe (6) is fixedly connected with heater (8), the left end of support seat (1) is fixedly connected with connecting box (9), the top of connecting box (9) is fixedly connected with pneumatic cylinder (10), the left end of connecting box (9) is fixedly connected with cooling pool (11), the inner wall of cooling pool (11) is fixedly connected with conveying roller (12), the left end of cooling pool (11) is fixedly connected with cooling box (13), the left end of feed hopper one (3) is fixedly connected with fan (14).

2. The roll mill apparatus for producing a weather strip according to claim 1, wherein: The guide mouth (4) is located at the left end of the transmission assembly (2), and the feed hopper two (5) is located at the bottom of the guide mouth (4).

3. The roll mill apparatus for producing a weather strip according to claim 1, wherein: The feed hopper two (5) is located at the left end of the support seat (1), and the compaction pipe (6) is located at the bottom of the guide mouth (4).

4. The roll mill apparatus for producing a sealing strip according to claim 3, wherein: The number of heating assemblies (7) is several, and the several heating assemblies (7) are symmetrically distributed around the compaction pipe (6).

5. The roll mill apparatus for producing a weather strip according to claim 1, wherein: The heater (8) is located at the rear end of the support seat (1), and the pneumatic cylinder (10) is located at the left end of the support seat (1).

6. The roll mill apparatus for producing a sealing strip according to claim 5, wherein: The conveying roller (12) is located at the right end of the cooling box (13), and the conveying roller (12) is located at the left end of the connecting box (9).