Granulating device capable of rapidly cooling

By designing a pelletizing device combining air-cooling and water-cooling, the problem of ineffective cooling of existing pelletizing devices is solved, rapid cooling of plastic particles and improved space efficiency of the device, and improved production efficiency and product quality.

CN222904580UActive Publication Date: 2025-05-27JIUJIANG GENERAL PLASTIC PRODUCTS CO LTD
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Patent Information

Application Number
CN202422431668.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-09
Publication Date
2025-05-27
Estimated Expiration
2034-10-09

AI Technical Summary

Technical Problem

The existing pelletizing device lacks an efficient cooling mechanism, which causes the cut plastic particles to be unable to cool quickly, affecting production efficiency and product quality. At the same time, the device has a huge structure and large footprint, which limits its application in a working environment with limited space and is not convenient for movement and maintenance.

Method used

A pelletizing device including a body, a mounting assembly, a cutting assembly and a cooling assembly is designed. The cooling assembly combines air cooling and water cooling, and with the cutting assembly, can quickly cool plastic particles and optimize the mechanical structure, making the overall design of the device smaller and easy to install and move.

Benefits of technology

It realizes rapid cooling of plastic particles, improves production efficiency and product quality, reduces the floor area of ​​the device, improves application adaptability in space-limited environments, and simplifies the movement and maintenance process of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of plastic particle processing, in particular to a particle cutting device capable of cooling quickly. According to the technical scheme, the pelletizing device capable of being rapidly cooled comprises a main body, mounting assemblies are arranged on the left side and the right side of the main body, a cutting assembly is arranged at the front end of the main body, a cooling assembly is arranged at the upper end of the main body, a baffle is connected to the front side of the upper end of the main body, and the cooling assembly comprises an auxiliary plate, an air inlet fan, a water inlet, a water tank and an atomizer; the left side and the right side of the front end of the baffle are connected with two auxiliary plates. By arranging the cooling assembly, air cooling and water cooling and matching with the cutting assembly, plastic particles can be cut into independent individuals, cooling is facilitated, meanwhile, the cooling effect is improved, the mechanical structure of the device is optimized, the overall design is small, the device is matched with the installation assembly, installation is convenient, and the device is matched with an external extrusion device. And the adaptability of the pelletizing device and the extruding device can be improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of plastic particle processing, in particular to a granulating device capable of rapid cooling. Background Art

[0002] A plastic particle granulating device is a mechanical device used to cut molten plastic extrusions into small particles, which are usually used in the next process of plastic processing, such as injection molding, blow molding or other plastic molding processes. The main function of the granulating device is to quickly and evenly cut the extruded plastic strips or sheets into particles for easy storage, transportation and further processing.

[0003] The existing granulating device lacks an efficient cooling mechanism, resulting in the inability to rapidly cool the cut plastic particles, affecting production efficiency and product quality. In addition, the granulating device has a large structure and occupies a large area, restricting its application in a working environment with limited space and being inconvenient for movement and maintenance.

[0004] Therefore, aiming at the problems of the existing granulating device lacking an efficient cooling mechanism, resulting in the inability to rapidly cool the cut plastic particles, affecting production efficiency and product quality, in addition, the granulating device has a large structure and occupies a large area, restricting its application in a working environment with limited space and being inconvenient for movement and maintenance, it is urgently needed to be solved to improve the use scenario of the granulating device capable of rapid cooling. Summary of the Utility Model

[0005] In order to overcome the problems of the existing granulating device lacking an efficient cooling mechanism, resulting in the inability to rapidly cool the cut plastic particles, affecting production efficiency and product quality, in addition, the granulating device has a large structure and occupies a large area, restricting its application in a working environment with limited space and being inconvenient for movement and maintenance.

[0006] The technical solution of the utility model is: a granulating device capable of rapid cooling, including a main body, installation components are arranged on the left and right sides of the main body, a cutting component is arranged at the front end of the main body, a cooling component is arranged at the upper end of the main body, a baffle is connected to the front side of the upper end of the main body, and the cooling component includes an auxiliary plate, a blower, a water inlet, a water tank, and an atomizer; auxiliary plates are connected to the left and right sides of the front end of the baffle, there are two auxiliary plates, blowers are connected to the upper ends of both auxiliary plates, there are two blowers, and the blowers are connected to an external power supply.

[0007] Preferably, by setting up a cooling component, which combines air cooling and water cooling, and cooperating with the cutting component, plastic particles can be cut into individual pieces. This not only facilitates cooling but also enhances the cooling effect. Moreover, the device optimizes the mechanical structure, making the overall design smaller. When combined with the installation component, it is convenient for installation and matching with external extrusion devices, improving the adaptability between the pelletizing device and the extrusion device. This solves the problems of the existing pelletizing device lacking an efficient cooling mechanism, resulting in the inability to rapidly cool the cut plastic particles, affecting production efficiency and product quality. In addition, the structure of the pelletizing device is large, occupying a large area, restricting its application in working environments with limited space, and being inconvenient for movement and maintenance.

[0008] Preferably, a water inlet is provided at the upper end of the main body. The water inlet is interconnected with the interior of the main body and is used to help the cooling mechanism intake water, thereby achieving the effect of water cooling.

[0009] Preferably, a water tank is connected inside the main body. An atomizer is provided at the lower end of the water tank. The atomizer atomizes the water in the water tank and sprays it downward. When cooperating with an external conveyor belt or other transportation equipment, it can conduct water cooling on the plastic particles.

[0010] Preferably, the cutting component includes a motor and a gear. A motor is connected to the upper end of the main body. The output end of the motor extends to the front side of the baffle and is connected to a gear. The motor drives the cutting component to operate through the gear. This design can reduce the power consumption of the motor while facilitating motor maintenance and improving practicability.

[0011] Preferably, the cutting component includes a toothed disc, a cutting wheel, and an arc plate. The toothed disc is rotatably connected to the front end of the main body. The cutting wheel is connected to the front end of the toothed disc. The gear is meshed with the toothed disc. Arc plates are symmetrically connected to the left and right sides of the front end of the main body. There are two arc plates, which are used to block the plastic particles to prevent them from flying out.

[0012] Preferably, the installation component includes a connecting plate, an installation plate, and installation holes. Two connecting plates are symmetrically connected with respect to the vertical center line of the main body. Installation plates are connected to the upper ends of the two connecting plates. Installation holes are opened at the upper ends of the installation plates. The installation plates and installation holes are used to assist the installation component in installation.

[0013] Preferably, two installation holes are opened. The installation holes are threadedly connected with external screws. The external screws are connected to external equipment or walls through the installation holes, thereby fixing the device and improving adaptability.

[0014] The beneficial effects of the present utility model:

[0015] 1. By setting up a cooling component, which combines air cooling and water cooling and cooperates with the cutting component, plastic particles can be cut into individual pieces. This not only facilitates cooling but also enhances the cooling effect. Moreover, the device optimizes the mechanical structure to make the overall design smaller. Combined with the installation component, it is convenient for installation and matching with external extrusion devices, improving the adaptability between the granulation device and the extrusion device. This solves the problems of the existing granulation device lacking an efficient cooling mechanism, resulting in the inability to quickly cool the cut plastic particles, affecting production efficiency and product quality. In addition, the granulation device has a large structure and occupies a large area, restricting its application in working environments with limited space and being inconvenient for movement and maintenance.

[0016] 2. By setting up a cooling component, the cut particles are blown by two air blowers onto the cutting wheel, thus air-cooling the plastic particles while guiding the plastic particles to fall downward onto the external conveyor belt. The arc plate is used to block the plastic particles to prevent them from flying out. Connect the water inlet to an external water pipe or an external water pump to inject water into the water tank. The atomizer atomizes the water in the water tank and sprays it downward. Combined with the external conveyor belt or other transportation equipment, the plastic particles can be water-cooled, thereby increasing the cooling speed. And the overall structure of the device is compact. Use some screws to connect to external equipment or the wall through the installation holes to fix the device, which is convenient for installation and disassembly, improving the flexibility and adaptability of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 Shown is a three-dimensional structural schematic diagram of a granulation device capable of rapid cooling according to the present invention;

[0018] Figure 2 Shown is a three-dimensional bottom view structural schematic diagram of a granulation device capable of rapid cooling according to the present invention;

[0019] Figure 3 Shown is a three-dimensional rear view structural schematic diagram of a granulation device capable of rapid cooling according to the present invention;

[0020] Figure 4 Shown is a three-dimensional side-sectional structural schematic diagram of a granulation device capable of rapid cooling according to the present invention.

[0021] In the figure: 1, main body; 2, installation component; 3, cutting component; 4, cooling component; 5, baffle; 21, connecting plate; 22, mounting plate; 23, mounting hole; 31, motor; 32, gear; 33, toothed disc; 34, cutting wheel; 35, arc plate; 41, auxiliary plate; 42, air blower; 43, water inlet; 44, water tank; 45, atomizer. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0022] The present utility model will be further described below in conjunction with the accompanying drawings and embodiments.

[0023] Please refer to Figures 1-4 , the present utility model provides an embodiment: a pelletizing device capable of rapid cooling, including a main body 1, mounting components 2 are arranged on the left and right sides of the main body 1, a cutting component 3 is arranged at the front end of the main body 1, a cooling component 4 is arranged at the upper end of the main body 1, a baffle 5 is connected to the front side of the upper end of the main body 1, and the cooling component 4 includes an auxiliary plate 41, a blower 42, a water inlet 43, a water tank 44, and an atomizer 45; auxiliary plates 41 are connected to the left and right sides of the front end of the baffle 5, there are two auxiliary plates 41, blowers 42 are connected to the upper ends of both auxiliary plates 41, there are two blowers 42, and the blowers 42 are connected to an external power supply.

[0024] Please refer to Figures 1-4 , in this embodiment, by setting the cooling component 4, air cooling plus water cooling, in cooperation with the cutting component 3, plastic particles can be cut into individual entities, which is convenient for cooling and increases the cooling effect. Moreover, the device optimizes the mechanical structure to make the overall design smaller. In cooperation with the mounting component 2, it is convenient for installation and matching with an external extrusion device, which can improve the adaptability of the pelletizing device and the extrusion device to solve the problems that the existing pelletizing device lacks an efficient cooling mechanism, resulting in the inability to rapidly cool the plastic particles after cutting, affecting production efficiency and product quality. In addition, the structure of the pelletizing device is huge, occupying a large area, restricting its application in a working environment with limited space, and being inconvenient for movement and maintenance. A water inlet 43 is arranged at the upper end of the main body 1, and the water inlet 43 is interconnected with the inside of the main body 1. The water inlet 43 is used to help the cooling mechanism intake water, so as to achieve the effect of water cooling. A water tank 44 is connected inside the main body 1, and an atomizer 45 is arranged at the lower end of the water tank 44. The atomizer 45 atomizes the water in the water tank 44 and sprays it downward. In cooperation with an external conveyor belt or other transportation equipment, water cooling can be carried out on the plastic particles. The cutting component 3 includes a motor 31 and a gear 32; a motor 31 is connected to the upper end of the main body 1, and the output end of the motor 31 extends to the front side of the baffle 5 and is connected to a gear 32. The motor 31 drives the cutting component 3 to operate through the gear 32. This design can reduce the power consumption of the motor 31 while facilitating the maintenance of the motor 31 and improving the practicality.

[0025] Please refer to Figures 2-4, in this embodiment, the cutting assembly 3 includes a toothed disc 33, a cutting wheel 34, and an arc plate 35; a toothed disc 33 is rotatably connected to the front end of the main body 1, a cutting wheel 34 is connected to the front end of the toothed disc 33, the gear 32 is meshed with the toothed disc 33, and arc plates 35 are symmetrically connected to the left and right sides of the front end of the main body 1. There are two arc plates 35, and the arc plates 35 are used to block the plastic particles to prevent the plastic particles from flying out. The installation assembly 2 includes a connecting plate 21, an installation plate 22, and an installation hole 23; two connecting plates 21 are symmetrically connected with respect to the vertical center line of the main body 1, installation plates 22 are connected to the upper ends of the two connecting plates 21, and installation holes 23 are opened at the upper ends of the installation plates 22. The installation plate 22 and the installation hole 23 are used to assist the installation of the installation assembly 2. There are two installation holes 23, and the installation holes 23 are threadedly connected with external screws. The external screws are connected to external equipment or a wall through the installation holes 23, thereby fixing the device and improving the adaptability.

[0026] When working, first match the device with an external extrusion device, and use external screws to connect to external equipment or a wall through the installation holes 23 to fix the device. Start the motor 31, the motor 31 drives the gear 32, and the gear 32 drives the toothed disc 33 to rotate on the main body 1 through meshing with the toothed disc 33. The rotation of the toothed disc 33 drives the rotation of the cutting wheel 34, and the cutting wheel 34 rotates to cut the just-extruded plastic strip. The cut particles are blown by two air blowers 42 to the cutting wheel 34, so while air-cooling the plastic particles, it guides the plastic particles to fall downward onto the external conveyor belt. The arc plates 35 are used to block the plastic particles to prevent the plastic particles from flying out. Connect the water inlet 43 to an external water pipe or an external water pump, inject water into the water tank 44, and the atomizer 45 atomizes the water in the water tank 44 and sprays it downward. Cooperating with an external conveyor belt or other transportation equipment, the plastic particles can be water-cooled.

[0027] Through the above steps, by using the cooling assembly 4, air-cooling plus water-cooling, and cooperating with the cutting assembly 3, the plastic particles can be cut into individual pieces, which is convenient for cooling and increases the cooling effect. Moreover, the device optimizes the mechanical structure to make the overall design smaller. Cooperating with the installation assembly 2, it is convenient to install and match with an external extrusion device, which can improve the adaptability of the granulating device and the extrusion device, so as to solve the problem that the existing granulating device lacks an efficient cooling mechanism, resulting in the inability to quickly cool the cut plastic particles, affecting production efficiency and product quality. In addition, the granulating device has a large structure and occupies a large area, which limits its application in a working environment with limited space and is not convenient for movement and maintenance.

[0028] The embodiments of the present utility model have been described in detail above in conjunction with the accompanying drawings. However, the present utility model is not limited to the above embodiments, and various changes can be made without departing from the spirit of the present utility model within the scope of knowledge possessed by those skilled in the art.

Claims

1. A pelletizing device capable of rapid cooling, comprising a main body (1), characterized in that: Mounting components (2) are arranged on the left and right sides of the main body (1), a cutting component (3) is arranged on the front end of the main body (1), a cooling component (4) is arranged on the upper end of the main body (1), a baffle (5) is connected to the front side of the upper end of the main body (1), and the cooling component (4) comprises an auxiliary plate (41), an air inlet (42), a water inlet (43), a water tank (44), and an atomizer (45); the left and right sides of the front end of the baffle (5) are connected to the auxiliary plates (41), two auxiliary plates (41) are arranged, the upper ends of the two auxiliary plates (41) are connected to the air inlet (42), two air inlet (42) are arranged, and the air inlet (42) is connected to an external power supply.

2. A pelletizing device capable of rapid cooling according to claim 1, characterized in that: A water inlet (43) is provided at the upper end of the main body (1), and the water inlet (43) is connected to the interior of the main body (1).

3. A pelletizing device capable of rapid cooling according to claim 2, characterized in that: The interior of the main body (1) is connected to a water tank (44), and an atomizer (45) is provided at the lower end of the water tank (44).

4. A pelletizing device capable of rapid cooling according to claim 1, characterized in that: The cutting assembly (3) comprises a motor (31) and a gear (32); the upper end of the main body (1) is connected to the motor (31), and the output end of the motor (31) extends to the front side of the baffle (5) and is connected to the gear (32).

5. A pelletizing device capable of rapid cooling according to claim 4, characterized in that: The cutting assembly (3) comprises a toothed disc (33), a cutting wheel (34), and an arc plate (35); the front end of the main body (1) is rotatably connected to the toothed disc (33), the front end of the toothed disc (33) is connected to the cutting wheel (34), the gear (32) is meshingly connected to the toothed disc (33), and the left and right sides of the front end of the main body (1) are symmetrically connected to the arc plates (35), and two arc plates (35) are provided.

6. A pelletizing device capable of rapid cooling according to claim 1, characterized in that: The mounting assembly (2) comprises a connecting plate (21), a mounting plate (22), and a mounting hole (23); the two connecting plates (21) are symmetrically connected with respect to the vertical center line of the main body (1), the upper ends of the two connecting plates (21) are connected to the mounting plates (22), and the upper ends of the mounting plates (22) are provided with a mounting hole (23).

7. A pelletizing device capable of rapid cooling according to claim 6, characterized in that: Two mounting holes (23) are provided, and the mounting holes (23) are threadedly connected to external screws.