Anti-adhesion type plastic particle cooling equipment

By designing cooling and feeding components and conveying and collecting components, and utilizing the combination of rotary air blowing and conveyor belts, the problem of plastic particle adhesion was solved, achieving rapid cooling and effective discharge, thus improving cooling effect and production efficiency.

CN223933943UActive Publication Date: 2026-02-24沧州瑞昌隆塑料制品有限公司
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Patent Information

Application Number
CN202520441639.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-13
Publication Date
2026-02-24
Estimated Expiration
2035-03-13

AI Technical Summary

Technical Problem

Plastic granules have a high surface temperature and are sticky during production, making them prone to adhering to the inside of the equipment. This prevents them from being discharged properly after cooling, resulting in poor cooling performance.

Method used

The design incorporates a cooling and feeding assembly and a conveying and collecting assembly, including structures such as a circular tube, a hollow plate, a blower, a conveyor belt, and a fan. Through the combination of rotating air blowing and the conveyor belt, the plastic particles are cooled in sections and collected in a concentrated manner, thus avoiding adhesion.

Benefits of technology

This technology enables rapid cooling and effective discharge of plastic granules, preventing adhesion and improving cooling efficiency and production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of plastic particle cooling, and provides anti-adhesion type plastic particle cooling equipment which comprises a shell and a driving motor, the driving motor is arranged on the side surface of the shell, a cooling and discharging assembly is arranged in the shell, a conveying belt is arranged in the shell, and a conveying and collecting assembly is arranged at the bottom of the shell. The feeding port is formed in the top of the shell, the cooling discharging assembly comprises a round pipe arranged at the output end of the driving motor, a plurality of cavity plates are arranged on the surface of the round pipe, air holes are formed in the surfaces of the cavity plates, and an air feeder is arranged on one side of the shell. According to the technical scheme, the problems that in the related technology, when plastic particles are produced, the surface temperature of the plastic particles is high, the surfaces of the plastic particles have viscosity, the plastic particles can fall into the device due to the gravity of the plastic particles to be adhered, and the particles cannot be normally discharged after the device is cooled are solved.
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Description

Technical Field

[0001] This utility model relates to the field of plastic particle cooling technology, specifically to an anti-adhesion plastic particle cooling device. Background Technology

[0002] Plastic granule cooling equipment is widely used in the plastics processing industry to rapidly cool and heat plastic granules, ensuring product quality and production efficiency. It is an important piece of equipment for the production of plastic granules.

[0003] When plastic granules are produced, their surface temperature is high and their surface is sticky. Due to their own weight, the plastic granules fall into the device and adhere to it. After the device cools down, the granules cannot be discharged normally. At the same time, the outside of the plastic granules is in contact with the cooling device, while the bottom surface is in contact with the internal mechanism of the device, so they cannot be effectively cooled, resulting in poor cooling effect.

[0004] Therefore, improvements have been made to address the aforementioned issues. Utility Model Content

[0005] This invention proposes an anti-adhesion plastic granule cooling device, which solves the problem in related technologies that when plastic granules are produced, their surface temperature is high and their surface is sticky, causing the plastic granules to fall into the device due to their own weight and adhere to it, and the granules cannot be discharged normally after the device is cooled.

[0006] The technical solution of this utility model is as follows: including...

[0007] The housing and the drive motor, wherein the drive motor is disposed on the side surface of the housing;

[0008] A cooling feeding assembly is disposed inside the housing;

[0009] A conveyor belt and a conveyor-collecting assembly, wherein the conveyor belt is disposed inside the housing and the conveyor-collecting assembly is disposed at the bottom of the housing;

[0010] A feed inlet is located on the top of the housing;

[0011] The cooling and unloading assembly includes a circular tube, which is disposed at the output end of the drive motor. The surface of the circular tube is provided with a plurality of cavity plates, and the surface of the cavity plates is provided with air holes. A blower is disposed on one side of the outer shell.

[0012] As a further technical solution, the output end of the blower is provided with a connecting pipe, one end of which is located inside the outer casing, and the connecting pipe is rotatably connected to one end of the round pipe.

[0013] As a further technical solution, an arc-shaped groove is provided at the bottom of the outer shell, and a pair of telescopic cylinders are provided at the top of the outer shell. The telescopic cylinders are equipped with cleaning frames, which are located on the side surface of the cavity plate.

[0014] As a further technical solution, the conveying and collecting assembly includes an inner trough, which is opened at the bottom of the outer shell, the conveyor belt is located in the inner trough, and a discharge port is opened at the bottom of the inner trough.

[0015] As a further technical solution, a base frame is provided at the bottom of the outer shell, and a number of pulleys are provided on the surface of the base frame. A collection box is placed on the pulleys and the collection box is attached to the bottom of the outer shell.

[0016] As a further technical solution, both the inner and outer surfaces of the housing are provided with outer plates, and a pair of fans are installed in the outer plate located on the outer side of the housing, with the fans blowing air downwards.

[0017] As a further technical solution, the top of the outer casing is provided with several exhaust ports.

[0018] As a further technical solution, a collection cover is provided on the top of the outer shell, and the top of the collection cover has an inclined opening structure.

[0019] As a further technical solution, the outer plates located on both the inner and outer sides of the housing are fixed at an inclined angle.

[0020] The working principle and beneficial effects of this utility model are as follows:

[0021] 1. This utility model is equipped with a cooling feeding component. Through the interaction of structures such as round pipe, cavity plate, air hole, blower, connecting pipe, arc groove, telescopic cylinder and cleaning frame, the incoming plastic particles can be cooled in sections by rotating and blowing air. They can also be cleaned at any time without sticking. The incoming material can be cooled in batches, and it has a very good cooling effect.

[0022] 2. This utility model is equipped with a conveying and collecting component. Through the interaction of structures such as the outlet, base frame, pulley, collection box and fan, the cooled plastic particles can be collected in a concentrated manner. The push-pull installation method is convenient for loading and unloading. Attached Figure Description

[0023] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0024] Figure 1 This is a schematic diagram of the structure of this utility model;

[0025] Figure 2 This is an isometric drawing of the present invention;

[0026] Figure 3 This is an isometric sectional view of the present invention;

[0027] Figure 4 This is an isometric sectional view of the present invention from another perspective;

[0028] In the diagram: 1. Outer shell; 2. Drive motor; 3. Conveyor belt; 4. Feed inlet; 5. Cooling and unloading assembly; 5-1. Round tube; 5-2. Hollow plate; 5-3. Air hole; 5-4. Blower; 5-5. Connecting pipe; 5-6. Arc groove; 5-7. Telescopic cylinder; 5-8. Cleaning frame; 6. Conveying and collecting assembly; 6-1. Inner groove; 6-2. Discharge outlet; 6-3. Base frame; 6-4. Pulley; 6-5. Collection box; 6-6. Outer plate; 6-7. Fan; 7. Exhaust port; 8. Collection cover. Detailed Implementation

[0029] The technical solutions of this utility model will be clearly and completely described below with reference to the embodiments of this utility model. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this utility model.

[0030] like Figures 1-4 As shown, this embodiment proposes an anti-adhesion plastic particle cooling device, including...

[0031] The housing 1 and the drive motor 2 are provided on the side surface of the housing 1;

[0032] Cooling unloading assembly 5 is disposed inside the outer casing 1;

[0033] The conveyor belt 3 and the conveyor collection assembly 6 are provided. The conveyor belt 3 is disposed inside the housing 1 and the conveyor collection assembly 6 is disposed at the bottom of the housing 1.

[0034] Inlet 4 is located on the top of the outer casing 1;

[0035] The cooling and unloading assembly 5 includes a circular tube 5-1, which is located at the output end of the drive motor 2. Several cavity plates 5-2 are provided on the surface of the circular tube 5-1, and air holes 5-3 are opened on the surface of the cavity plates 5-2. A blower 5-4 is provided on one side of the outer shell 1. A connecting pipe 5-5 is provided at the output end of the blower 5-4. One end of the connecting pipe 5-5 is located inside the outer shell 1. The connecting pipe 5-5 is rotatably connected to one end of the circular tube 5-1. An arc-shaped groove 5-6 is opened at the bottom of the inner shell 1. A pair of telescopic cylinders 5-7 are provided at the top of the outer shell 1. A cleaning frame 5-8 is provided on the telescopic cylinders 5-7. The cleaning frame 5-8 is located on the side surface of the cavity plates 5-2.

[0036] In this embodiment, to achieve rapid cooling of the granulated plastic, a cooling and feeding assembly 5 is designed. A circular tube 5-1 is provided at the output end of the drive motor 2, and multiple cavity plates 5-2 are provided on its surface. Air holes 5-3 are opened on the surface of the cavity plates 5-2. A blower 5-4 is provided on the other side of the outer shell 1. A connecting pipe 5-5 is provided at the output end of the blower 5-4. One end of the connecting pipe 5-5 is rotatably connected to the circular tube 5-1, which can supply air into the circular tube 5-1. The supplied air passes through the air holes 5-3. 3 blows air outwards and can rotate continuously, which can quickly cool the incoming plastic by blowing air. The bottom of the inner shell 1 has an arc-shaped groove 5-6 to cooperate with the rotating cavity plate 5-2. There is no gap, so the plastic will not fall off. As it rotates, the cavity plate 5-2 will tilt at an angle, which can make the plastic slide onto the conveyor belt 3. The top of the outer shell 1 is equipped with two telescopic cylinders 5-7. The output end of the telescopic cylinders 5-7 is equipped with a cleaning frame 5-8. The cleaning frame 5-8 can move downwards to clean the surface of the cavity plate 5-2.

[0037] Furthermore, the conveying and collecting assembly 6 includes an inner trough 6-1, which is located at the bottom of the outer shell 1. The conveyor belt 3 is located in the inner trough 6-1. An outlet 6-2 is provided at the bottom of the inner trough 6-1. A base frame 6-3 is provided at the bottom of the outer shell 1. Several pulleys 6-4 are provided on the surface of the base frame 6-3. A collection box 6-5 is placed on the pulleys 6-4. The collection box 6-5 is attached to the bottom of the outer shell 1. An outer plate 6-6 is provided on both the inner and outer surfaces of the outer shell 1. A pair of fans 6-7 are installed in the outer plate 6-6 located on the outer side of the outer shell 1. The fans 6-7 blow air downwards.

[0038] In this embodiment, a conveying and collecting component 6 is designed to collect plastic particles. An inner groove 6-1 is provided at the bottom of the outer shell 1. The conveyor belt 3 is installed in the inner groove 6-1 to receive plastic particles and convey them outward. An outlet 6-2 is provided at the bottom of the inner groove 6-1 to discharge the particles downward. A base frame 6-3 is provided at the bottom of the outer shell 1 and multiple pulleys 6-4 are installed. A collection box 6-5 is placed on the pulleys 6-4. The collection box 6-5 can collect the plastic particles that fall from the outlet 6-2. An outer frame is also provided on the inner and outer surfaces of the outer shell 1. Two fans 6-7 are installed on the outer frame. The fans 6-7 can blow air into the collection box 6-5, which can provide the effect of cooling and blowing away floating dust.

[0039] Furthermore, the top of the outer casing 1 has several exhaust ports 7.

[0040] In this embodiment, by providing an exhaust port 7, the air blown into the outer casing 1 can be discharged outward through the exhaust port 7.

[0041] Furthermore, a collection cover 8 is provided on the top of the outer casing 1, and the top of the collection cover 8 has an inclined opening structure.

[0042] In this embodiment, a collection cover 8 is provided to block falling plastic particles and ensure that they accurately enter the outer shell 1.

[0043] Furthermore, the outer panels 6-6 located on the inner and outer sides of the outer shell 1 are fixed at an inclined angle.

[0044] In this embodiment, by using an inclined angle, the air can be blown as much as possible into the interior of the collection box 6-5, thereby improving the dust removal and cooling effect.

[0045] When needed, the collection cover 8 is located directly below the material unloading point of the molding equipment. The plastic falls into the outer shell 1, the drive motor 2 and the blower 5-4 are started, the round tube 5-1 drives the cavity plate 5-2 to rotate, and at the same time the air hole 5-3 blows air out for cooling. After the cavity plate 5-2 rotates to a vertical angle, the telescopic cylinder 5-7 is started to move downward through the cleaning frame 5-8 to clean the surface of the cavity plate 5-2. After resetting, it continues to rotate. The cooled plastic rolls onto the conveyor belt 3 at an inclined angle. The conveyor belt 3 is started to transport it outward. After being transported to the discharge port 6-2, it falls into the collection box 6-5. The fan 6-7 is started to blow air into the collection box 6-5. After the collection box 6-5 is full, it can be pulled out and is supported by the bottom pulley 6-4 for rolling.

[0046] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A cooling device for anti-adhesion plastic granules, characterized in that, include The housing (1) and the drive motor (2) are disposed on the side surface of the housing (1); Cooling unloading assembly (5), the cooling unloading assembly (5) is disposed inside the housing (1); A conveyor belt (3) and a conveyor collection assembly (6) are provided inside the housing (1) and at the bottom of the housing (1). The feed inlet (4) is located on the top of the outer casing (1); The cooling and feeding assembly (5) includes a round tube (5-1), which is located at the output end of the drive motor (2). The surface of the round tube (5-1) is provided with a plurality of cavity plates (5-2), and the surface of the cavity plates (5-2) is provided with air holes (5-3). A blower (5-4) is provided on one side of the outer shell (1).

2. The anti-adhesion plastic granule cooling device according to claim 1, characterized in that, The blower (5-4) has a connecting pipe (5-5) at its output end. One end of the connecting pipe (5-5) is located inside the outer shell (1), and the connecting pipe (5-5) is rotatably connected to one end of the round pipe (5-1).

3. The anti-adhesion plastic granule cooling device according to claim 2, characterized in that, An arc-shaped groove (5-6) is provided at the bottom of the outer shell (1), and a pair of telescopic cylinders (5-7) are provided at the top of the outer shell (1). The telescopic cylinders (5-7) are provided with a cleaning frame (5-8), and the cleaning frame (5-8) is located on the side surface of the cavity plate (5-2).

4. The anti-adhesion plastic granule cooling device according to claim 1, characterized in that, The conveying and collecting assembly (6) includes an inner groove (6-1), which is located at the bottom of the outer shell (1). The conveyor belt (3) is located in the inner groove (6-1), and an outlet (6-2) is provided at the bottom of the inner groove (6-1).

5. The anti-adhesion plastic granule cooling device according to claim 4, characterized in that, The bottom of the outer shell (1) is provided with a base frame (6-3), and the surface of the base frame (6-3) is provided with a plurality of pulleys (6-4). A collection box (6-5) is placed on the pulleys (6-4), and the collection box (6-5) is attached to the bottom of the outer shell (1).

6. The anti-adhesion plastic granule cooling device according to claim 5, characterized in that, The inner and outer surfaces of the outer shell (1) are provided with outer plates (6-6). A pair of fans (6-7) are installed in the outer plates (6-6) located on the outer side of the outer shell (1), and the fans (6-7) blow air downwards.

7. The anti-adhesion plastic granule cooling device according to claim 1, characterized in that, The top of the outer casing (1) has several exhaust ports (7).

8. The anti-adhesion plastic granule cooling device according to claim 1, characterized in that, The top of the outer shell (1) is provided with a collection cover (8), and the top of the collection cover (8) has an inclined opening structure.

9. The anti-adhesion plastic granule cooling device according to claim 6, characterized in that, The outer plates (6-6) located on the inner and outer sides of the outer shell (1) are fixed at an inclined angle.