Multi-station water-cooling mold frame

By combining a multi-station water-cooled mold frame with a cold water circulation and vacuum system, the problems of long cooling time and product contamination in blister box production are solved, achieving rapid cooling and efficient production.

CN224028363UActive Publication Date: 2026-03-24宁德聚能动力电源系统技术有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-06
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

The current blister box production process involves a long cooling time, resulting in low production efficiency and the products being easily contaminated by water stains and oil from the vacuum tubes.

Method used

Design a multi-station water-cooled mold frame that combines a cold water circulation system and a vacuum system. The mold is connected to the cold water circulation system through the water inlet and outlet of the upper and lower mold sleeves to achieve rapid cooling of the mold. An oil removal suction cup is installed on the mold to prevent product contamination.

Benefits of technology

It accelerates product cooling time, improves production efficiency, ensures product quality, and prevents water stains and oil contamination in vacuum tubes, making it suitable for mass production.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224028363U_ABST
Patent Text Reader

Abstract

The utility model discloses a multi-station water-cooling die frame which comprises an upper die plate, an upper vacuum channel, a fixing column, an upper die sleeve, a lower die sleeve, a lower vacuum channel, a lower die plate, an oil removing suction cup and a multi-station die, the upper die sleeve is matched with the lower die sleeve, the upper vacuum channel is arranged on the upper die sleeve, the upper die sleeve is connected with the upper die plate through the fixing column, and the lower vacuum channel is arranged on the lower die sleeve. A lower vacuum channel is arranged below the lower die sleeve, and the lower die sleeve is connected with the lower die plate through a fixing column. A water inlet and a water outlet are formed in the side edge of the upper die sleeve and the side edge of the lower die sleeve respectively, a multi-station die is arranged in the lower die sleeve, and an oil removing suction cup is arranged on the multi-station die. Efficient cooling and high-quality forming are achieved through cold water circulation and a vacuum system, the multi-station design and the oil removal suction cup are combined, the production efficiency is remarkably improved, product pollution is prevented, the structure is reasonable, and the application range is wide.
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Description

Technical Field

[0001] This utility model relates to a water-cooled mold frame, specifically a multi-station water-cooled mold frame. Background Technology

[0002] Blister boxes are widely used in the 3C consumer electronics field. Their low cost, environmental friendliness, and high plasticity make them popular with new energy sources. In today's rapidly developing world, production cycle, price, and product quality completely determine market position. The main bottleneck in blister box production depends on the cooling time of the blister box. In order to speed up production and improve production efficiency, a multi-station water-cooled mold frame was designed to accelerate cooling and increase production cycle. Utility Model Content

[0003] To address the shortcomings of existing technologies, the purpose of this utility model is to provide a multi-station water-cooled mold frame that achieves efficient cooling and high-quality molding through a cold water circulation and vacuum system. Combined with a multi-station design and an oil removal suction cup, it significantly improves production efficiency and prevents product contamination. The structure is reasonable and has a wide range of applications.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a multi-station water-cooled mold frame, comprising an upper mold plate, an upper vacuum channel, a fixed column, an upper mold sleeve, a lower mold sleeve, a lower vacuum channel, a lower mold plate, an oil removal suction cup, and a multi-station mold. The upper mold sleeve and the lower mold sleeve cooperate with each other. The upper mold sleeve is provided with an upper vacuum channel and is connected to the upper mold plate via the fixed column. The lower mold sleeve is provided with a lower vacuum channel below it and is connected to the lower mold plate via the fixed column. Both the upper and lower mold sleeves have water inlets and outlets on their sides.

[0005] The mold sleeve contains a multi-station mold, and the multi-station mold is equipped with an oil removal suction cup. Preferably, the upper vacuum channel is connected to the upper mold sleeve.

[0006] Preferably, the lower vacuum channel is connected to the lower mold sleeve.

[0007] Preferably, the inlet and outlet are connected to the cold water circulation system.

[0008] The beneficial effects of this utility model: The structural design of this utility model is reasonable, in order to ensure...

[0009] The mold is in a cooling state, and a cold water circulation system is designed in the upper and lower mold frames to ensure that the mold is in a constant and stable state and accelerate the product cooling time. It is also equipped with an oil removal suction cup to prevent water stains and oil stains from being blown onto the product surface during vacuum blowing and contaminating the product. Attached Figure Description

[0010] The present invention will now be described in detail with reference to the accompanying drawings and specific embodiments; Figure 1 is an exploded view of the present invention;

[0011] Figure 2 is a schematic diagram of the overall structure of this utility model. Detailed Implementation

[0012] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0013] Referring to Figures 1-2, this specific embodiment adopts the following technical solution: a multi-station water-cooled mold frame, including an upper mold plate 1, an upper vacuum channel 2, a fixing column 3, an upper mold sleeve 4, a lower mold sleeve 5, a lower vacuum channel 6, a lower mold plate 7, an oil removal suction cup 8, and a multi-station mold 9. The upper mold sleeve 4 and the lower mold sleeve 5 cooperate with each other. The upper mold sleeve 4 is provided with an upper vacuum channel 2.

[0014] The fixed column 3 is connected to the upper template 1, and a lower vacuum channel 6 is provided below the lower mold sleeve 5.

[0015] The mold sleeve 5 is connected to the lower template 7 via a fixed column; the upper mold sleeve 4 and the lower mold sleeve 5 are both provided with water inlet 10 and water outlet 11 on their sides, and the lower mold sleeve 5 is provided with a multi-station mold 9, and the multi-station mold 9 is provided with an oil removal suction cup 8.

[0016] It is worth noting that the upper vacuum channel 2 is connected to the upper mold sleeve 4.

[0017] It is worth noting that the lower vacuum channel 6 is connected to the lower mold sleeve 5.

[0018] Furthermore, the inlet 10 and outlet 11 are connected to a cold water circulation system because the thermoformed product is formed by heating and softening the sheet material and then vacuum-adsorbing it through a mold under negative pressure.

[0019] Excessive heat can cause the mold temperature to rise, making demolding difficult. To ensure the mold is kept cool, a cold water circulation system is designed in the upper and lower mold frames to keep the mold in a constant state and accelerate the product cooling time.

[0020] The working principle of this specific embodiment: The sides of the upper mold sleeve 4 and the lower mold sleeve 5 are respectively provided with

[0021] It has an inlet 10 and an outlet 11, and is connected to the cold water circulation system. Cold water flows through the inlet 10.

[0022] The water enters the mold sleeve, flows through the cooling channel, and exits from outlet 11, forming a circulating cooling system. This design quickly removes heat from the mold, keeping it at a constant temperature, thus accelerating product cooling and improving production efficiency. The upper mold sleeve 4 has an upper vacuum channel 2, and the lower mold sleeve 5 has a lower vacuum channel 6, both connected to the interior of the mold sleeve. During the molding process, the vacuum system adsorbs air from inside the mold through the vacuum channels, ensuring that the product is free of bubbles or deformation during molding. The oil removal suction cup 8 prevents water stains and oil from the vacuum tube from being blown onto the product surface, avoiding product contamination. The lower mold sleeve 5 contains a multi-station mold 9, which can mold multiple products simultaneously, improving production efficiency. The multi-station mold 9 works in conjunction with the cooling and vacuum systems to ensure that products at each station are cooled quickly and maintain high quality.

[0023] This specific implementation utilizes a cold water circulation system, enabling rapid cooling of the mold, shortening product cooling time, and improving production efficiency. Constant temperature control ensures the stability of product molding quality. The design of the degreasing suction cup 8 effectively prevents water stains and oil contaminants in the vacuum tube from affecting the product surface.

[0024] Contamination is eliminated, ensuring a clean product appearance. The multi-station mold 9 can mold multiple products simultaneously, significantly improving production efficiency and making it suitable for mass production. The upper and lower mold sleeves are connected to the template via fixed pillars, resulting in a stable structure that is easy to install and maintain. The vacuum channel and cooling system are scientifically and rationally designed to meet the requirements of high-precision molding. This mold frame is suitable for production processes requiring rapid cooling and high-precision molding, such as plastic and rubber products.

[0025] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A multi-station water-cooled mold frame, characterized in that, The assembly includes an upper template (1), an upper vacuum channel (2), a fixing column (3), an upper mold sleeve (4), a lower mold sleeve (5), a lower vacuum channel (6), a lower template (7), an oil removal suction cup (8), and a multi-station mold (9). The upper mold sleeve (4) and the lower mold sleeve (5) cooperate with each other. The upper mold sleeve (4) is provided with an upper vacuum channel (2). The upper mold sleeve (4) is connected to the upper template (1) through the fixing column (3). The lower mold sleeve (5) is provided with a lower vacuum channel (6) below it. The lower mold sleeve (5) is connected to the lower template (7) through the fixing column. The upper mold sleeve (4) and the lower mold sleeve (5) are provided with water inlets (10) and water outlets (11) on their sides. The lower mold sleeve (5) is provided with a multi-station mold (9). The multi-station mold (9) is provided with an oil removal suction cup (8).

2. The multi-station water-cooled mold frame according to claim 1, characterized in that, The The upper vacuum channel (2) is connected to the upper mold sleeve (4).

3. A multi-station water-cooled mold frame according to claim 1, characterized in that, The lower vacuum channel (6) is connected to the lower mold sleeve (5).

4. A multi-station water-cooled mold frame according to claim 1, characterized in that, The inlet (10) and outlet (11) are connected to the cold water circulation system.