Cooling forming device for plastic product manufacturing

The plastic products are transported through the conveyor belt and brought into contact with the coolant in a large area in the cooling tank. Combined with the guide assembly and the frosted conveyor belt, the problem of low cooling efficiency of the existing cooling devices is solved and efficient cooling of plastic products is achieved.

CN223161334UActive Publication Date: 2025-07-29TIANJIN FENGHAI PLASTIC TECH CO LTD
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Patent Information

Application Number
CN202422113014.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-07-29
Estimated Expiration
2034-08-29

AI Technical Summary

Technical Problem

The cooling efficiency of existing plastic product cooling devices is low, and the cooling area of spray and air cooling methods is insufficient, resulting in slow cooling speed and low efficiency.

Method used

The conveyor belt is used to transport plastic products through the cooling tank, and a coolant circulation system is installed in the cooling tank. The cooling water pump integrated machine maintains the coolant temperature to ensure that the plastic products are in contact with the coolant on a large area. Combined with the guide components and the frosted conveyor belt, it increases the contact force and achieves efficient cooling.

Benefits of technology

It improves the cooling efficiency of plastic products, ensures large-area contact with coolant, and improves the cooling effect and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cooling forming device for manufacturing plastic products, which comprises a cooling piece, a collecting box is arranged at the bottom of the front side of the cooling piece, a cooling groove is formed in the upper end of the cooling piece, a water inlet is formed in the side wall of one end of the cooling groove, a water outlet is formed in the side wall of the other end of the cooling groove, and a water outlet is formed in the side wall of the other end of the cooling groove. According to the plastic product cooling device, the driving wheel drives the conveying belt to move, the conveying belt can drive plastic products at the upper end of the conveying belt to move, after the plastic products on the conveying belt enter the cooling groove, the plastic products on the conveying belt enter the cooling groove, the conveying belt is driven by the conveying belt to move, and the plastic products on the conveying belt can be cooled. When the plastic product is cooled, the plastic product can be immersed by the cooling liquid, large-area contact between the plastic product and the cooling liquid is ensured, the cooling efficiency of the plastic product is higher, the cooling liquid circularly flows between the cooling tank and the refrigeration water pump all-in-one machine through the water outlet pipe and the water inlet pipe, and the temperature of the cooling liquid in the cooling tank is ensured to be within a proper range.
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Description

Technical Field

[0001] The utility model relates to the technical field of plastic processing, and particularly relates to a cooling and forming device for manufacturing plastic products. Background Technique

[0002] An extruder is the most commonly used processing equipment for plastic products. When plastic products are extruded from the extruder, the temperature is relatively high and the products are soft. Therefore, it is necessary to cool and form the products in time. The most commonly used cooling method in the prior art is the spraying method. However, the structures of some spraying devices are relatively simple, the cooling speed is slow, and cooling needs to be carried out batch by batch, resulting in low efficiency.

[0003] According to a cooling and forming device for manufacturing plastic products disclosed in a Chinese patent document with the publication number CN216300123U, by driving a rotating rod to rotate through a driving motor, a fan blade can be rotated, and then the plastic products on the conveyor table can be cooled by air, so that the device has a good cooling effect. While the rotating rod rotates, it can also drive a water spraying assembly to introduce the water in the water tank into the spray head to spray and cool the plastic products, further improving the cooling effect of the device on the plastic components.

[0004] The above device cools plastic products by a combination of spraying and air cooling. However, the cooling area of the plastic products by this cooling method is still not very large, and there is still room for improvement in the cooling efficiency. Therefore, a cooling and forming device for manufacturing plastic products is proposed. Content of the Utility Model

[0005] The purpose of the utility model is to provide a cooling and forming device for manufacturing plastic products to solve the problems raised in the above background technique.

[0006] To achieve the above purpose, the utility model provides the following technical solution: A cooling and forming device for manufacturing plastic products, including a cooling member. A collection box is arranged at the bottom of the front side of the cooling member. A cooling groove is opened at the upper end of the cooling member. An inlet is opened on the side wall at one end of the cooling groove, and an outlet is opened on the side wall at the other end of the cooling groove. A through groove penetrating the cooling member is opened on the front side wall of the cooling member. An installation groove penetrating the cooling member is opened on the left side wall of the cooling member. A refrigeration water pump integrated machine is installed in the installation groove. The output end of the refrigeration water pump integrated machine is communicated with the inlet through a water inlet pipe, and the input end of the refrigeration water pump integrated machine is communicated with the outlet through a water outlet pipe. A transmission mechanism acting on plastic products is further arranged on the cooling member.

[0007] As a further optimization of the present technical solution, the transmission mechanism is composed of a conveyor belt, fixed side plates, and conveyor rollers. The upper half of the conveyor belt is located on the upper surface of the cooling member. The lower end of the conveyor belt penetrates through the through groove. The front end of the conveyor belt is wound around the outer surface of the conveyor roller. Both ends of the conveyor roller are rotatably connected to the fixed side plates, and the fixed side plates are fixedly connected to the side walls of the cooling member. A driving wheel is provided at the rear end of the conveyor belt.

[0008] As a further optimization of the present technical solution, guiding components are respectively arranged on the front and rear sides of the bottom of the cooling tank. The guiding components are composed of two first guiding wheels. The two first guiding wheels are distributed on both sides of the upper surface of the conveyor belt. One ends of the two first guiding wheels away from each other are respectively rotatably installed on the inner wall of the cooling tank.

[0009] As a further optimization of the present technical solution, a partition plate is arranged between the two first guiding wheels. One ends of the two partition plates away from each other are respectively fixedly connected to the inner wall of the cooling tank through fixing plates.

[0010] As a further optimization of the present technical solution, guiding plates are fixedly connected to one ends of the two partition plates away from the conveyor roller. The two guiding plates are distributed in an inverted V-shaped structure.

[0011] As a further optimization of the present technical solution, second guiding wheels are respectively rotatably installed on the front and rear sides of the opening position of the cooling tank.

[0012] As a further optimization of the present technical solution, the outer surface of the conveyor belt is subjected to frosted treatment.

[0013] The present utility model provides a cooling and forming device for plastic product manufacturing, which has the following

[0014] beneficial effects:

[0015] By driving the conveyor belt through the driving wheel, the conveyor belt will drive the plastic products at its upper end. The guiding plates arranged above the conveyor belt can make the plastic products gather towards the space between the two partition plates. The partition plates can prevent the plastic products from being stuck by the first guiding wheels during transportation. After the plastic products on the conveyor belt enter the cooling tank, they will be immersed in the cooling liquid, ensuring that the plastic products can come into contact with the cooling liquid over a large area, making the cooling efficiency of the plastic products higher. The cooling liquid circulates between the cooling tank and the refrigeration water pump integrated machine through the water outlet pipe and the water inlet pipe. The refrigeration water pump integrated machine can provide power for the flow of the cooling liquid and refrigerate the cooling liquid, ensuring that the temperature of the cooling liquid in the cooling tank is within a suitable range. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a schematic diagram of the overall structure of the present utility model;

[0017] Figure 2 This is a schematic diagram of another perspective of the overall structure of the present utility model;

[0018] Figure 3 This is a sectional view of the cooling member in the present utility model;

[0019] Figure 4 In the present utility model Figure 3 partial structural schematic diagram;

[0020] In the figure: 1, cooling member; 2, cooling tank; 3, conveyor belt; 4, collection box; 5, refrigeration water pump integrated machine; 6, installation groove; 7, water inlet pipe; 8, water outlet pipe; 9, water inlet; 10, water outlet; 11, first guide wheel; 12, partition board; 13, fixing plate; 14, guide plate; 15, through groove; 16, fixed side plate; 17, conveying roller; 18, second guide wheel. Specific embodiments

[0021] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model.

[0022] The present utility model provides a technical solution: as Figures 1 to 4 shown, in this embodiment, a cooling and forming device for plastic product manufacturing includes a cooling member 1. A collection box 4 is arranged at the bottom of the front side of the cooling member 1. A cooling tank 2 is opened at the upper end of the cooling member 1. A water inlet 9 is opened on the side wall of one end of the cooling tank 2. A water outlet 10 is opened on the side wall of the other end of the cooling tank 2. A through groove 15 running through the cooling member 1 is opened on the front side wall of the cooling member 1. An installation groove 6 running through the cooling member 1 is opened on the left side wall of the cooling member 1. A refrigeration water pump integrated machine 5 is installed in the installation groove 6. The output end of the refrigeration water pump integrated machine 5 is communicated with the water inlet 9 through a water inlet pipe 7. The input end of the refrigeration water pump integrated machine 5 is communicated with the water outlet 10 through a water outlet pipe 8. A transmission mechanism for plastic products is further arranged on the cooling member 1.

[0023] Among them, the transmission mechanism is composed of a conveyor belt 3, a fixed side plate 16 and a conveying roller 17. The upper half of the conveyor belt 3 is located on the upper surface of the cooling member 1. The lower half end of the conveyor belt 3 penetrates through the through groove 15. The front end of the conveyor belt 3 is wound around the outer surface of the conveying roller 17. Both ends of the conveying roller 17 are rotatably connected to the fixed side plate 16. The fixed side plate 16 is fixedly connected to the side wall of the cooling member 1. A driving wheel (which can adopt the common driving wheel structure of the conveyor belt, is prior art and will not be described in detail here) is arranged at the rear end of the conveyor belt 3.

[0024] Among them, guiding components are respectively arranged on the front and rear sides of the bottom of the cooling tank 2. The guiding components are composed of two first guiding wheels 11. The two first guiding wheels 11 are distributed on both sides of the upper surface of the conveyor belt 3, and the mutually remote ends of the two first guiding wheels 11 are respectively rotatably installed on the inner wall of the cooling tank 2.

[0025] By arranging the first guiding wheels 11, the conveyor belt 3 can be pressed into the cooling tank 2 to ensure that the plastic products on the conveyor belt 3 can enter the cooling tank 2.

[0026] Among them, a partition plate 12 is arranged between the two first guiding wheels 11, and the mutually remote ends of the two partition plates 12 are respectively fixedly connected to the inner wall of the cooling tank 2 through fixing plates 13.

[0027] By arranging the partition plate 12, the plastic products on the conveyor belt 3 and the first guiding wheels 11 can be separated to prevent the plastic products from being stuck by the first guiding wheels 11 during transportation.

[0028] Among them, guide plates 14 are fixedly connected to the ends of the two partition plates 12 away from the conveying roller 17, and the two guide plates 14 are distributed in an inverted V-shaped structure.

[0029] By arranging the guide plates 14, the plastic products on the conveyor belt 3 can be gathered towards the space between the two partition plates 12.

[0030] Among them, second guiding wheels 18 are respectively rotatably installed on the front and rear sides of the opening position of the cooling tank 2.

[0031] With such an arrangement, friction between the conveyor belt 3 and the cooling member 1 can be avoided.

[0032] Among them, the outer surface of the conveyor belt 3 is subjected to frosted treatment.

[0033] So that the friction force between the plastic products and the conveyor belt 3 is large enough to ensure that the plastic products at the inclined position of the conveyor belt 3 will not slide off.

[0034] The present utility model provides a cooling and forming device for plastic product manufacturing, and the specific working principle is as follows:

[0035] During use, place the plastic product on the conveyor belt 3. Drive the conveyor belt 3 to move through the driving wheel. The conveyor belt 3 will drive the plastic product to move. The guiding plate 14 arranged above the conveyor belt 3 can make the plastic product gather towards the two partition plates 12. The partition plates 12 can prevent the plastic product from being stuck by the first guiding wheel 11 during transportation. The cooling tank 2 is filled with coolant. The coolant circulates between the cooling tank 2 and the refrigeration water pump integrated machine 5 through the water outlet pipe 8 and the water inlet pipe 7. The refrigeration water pump integrated machine 5 can provide power for the flow of the coolant and refrigerate the coolant to ensure that the temperature of the coolant in the cooling tank 2 is within a suitable range. After the plastic product on the conveyor belt 3 enters the cooling tank 2, it will be immersed in the coolant to ensure that the plastic product can come into contact with the coolant over a large area, making the cooling efficiency of the plastic product higher. When the plastic product moves to the position of the conveyor roller 17, it will fall into the collection box 4, thus completing the collection of the plastic product.

[0036] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A cooling and forming device for plastic product manufacturing, comprising a cooling member (1), characterized in that: A collection box (4) is provided at the front bottom of the cooling member (1). A cooling groove (2) is provided at the upper end of the cooling member (1). A water inlet (9) is provided on the side wall at one end of the cooling groove (2), and a water outlet (10) is provided on the side wall at the other end of the cooling groove (2). A through groove (15) penetrating the cooling member (1) is provided on the front side wall of the cooling member (1). An installation groove (6) penetrating the cooling member (1) is provided on the left side wall of the cooling member (1). A refrigeration water pump integrated machine (5) is installed in the installation groove (6). The output end of the refrigeration water pump integrated machine (5) is communicated with the water inlet (9) through a water inlet pipe (7), and the input end of the refrigeration water pump integrated machine (5) is communicated with the water outlet (10) through a water outlet pipe (8). A transmission mechanism for acting on plastic products is further provided on the cooling member (1).

2. The cooling and forming device for plastic product manufacturing according to claim 1, characterized in that: The transmission mechanism is composed of a conveyor belt (3), fixed side plates (16) and conveying rollers (17). The upper half of the conveyor belt (3) is located on the upper surface of the cooling member (1). The lower half end of the conveyor belt (3) penetrates through the through groove (15). The front end of the conveyor belt (3) is wound around the outer surface of the conveying roller (17). Both ends of the conveying roller (17) are rotatably connected with fixed side plates (16). The fixed side plates (16) are fixedly connected to the side wall of the cooling member (1). A driving wheel is provided at the rear end of the conveyor belt (3).

3. A cooling and forming device for plastic product manufacturing according to claim 1, characterized in that: Guide assemblies are respectively provided on the front and rear sides of the bottom of the cooling groove (2). The guide assemblies are composed of two first guide wheels (11). The two first guide wheels (11) are distributed on both sides of the upper surface of the conveyor belt (3). The mutually remote ends of the two first guide wheels (11) are respectively rotatably installed on the inner wall of the cooling groove (2).

4. A cooling and forming device for plastic product manufacturing according to claim 3, characterized in that: A partition plate (12) is provided between the two first guide wheels (11). The mutually remote ends of the two partition plates (12) are respectively fixedly connected to the inner wall of the cooling groove (2) through fixing plates (13).

5. The cooling and forming device for plastic product manufacturing according to claim 4, wherein: Guide plates (14) are fixedly connected to the ends of the two partition plates (12) remote from the conveying roller (17). The two guide plates (14) are distributed in an inverted V-shaped structure.

6. The cooling and forming device for plastic product manufacturing according to claim 1, characterized in that: Second guide wheels (18) are respectively rotatably installed on the front and rear sides of the opening position of the cooling groove (2).

7. A cooling and forming device for plastic product manufacturing according to claim 2, characterized in that: The outer surface of the conveyor belt (3) is subjected to frosting treatment.

Citation Information

Patent Citations

  • Cooling forming device for plastic product manufacturing

    CN216300123U