Cooling device for foamed plastic product processing

By designing a foam cooling device including hydraulic rods, agitating plates and mechanically driven filter cartridges, the existing cooling tanks are slow and difficult to remove liquids, achieving more efficient cooling and a cleaner product removal process.

CN222832192UActive Publication Date: 2025-05-06CANGZHOU FANFAN PLASTIC PROD CO LTD
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Patent Information

Application Number
CN202421444903.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-24
Publication Date
2025-05-06
Estimated Expiration
2034-06-24

AI Technical Summary

Technical Problem

The existing foam plastic cooling tanks have slow cooling speed and poor results, which affect production efficiency and product quality. At the same time, the liquid adhered to the product surface after cooling is difficult to remove, affecting environmental sanitation.

Method used

A cooling device for processing foam plastic products is designed, including a barrel body with a water outlet pipe at the bottom, and a group of arches and hydraulic rods are arranged on the side wall of the barrel body. The hydraulic rod drives the filter cartridge to rotate, driving the agitating plate and the stirring paddle to agitate the liquid, and accelerates the cooling efficiency; after cooling, the hydraulic rod drives the product upward and rotates the product through mechanical drive to achieve rapid separation and drainage of the liquid.

Benefits of technology

The mechanically driven cooling device significantly accelerates the cooling speed and effect of foam plastics, reduces the problem of liquid adhesion when product is removed, improves production efficiency and product quality, and improves the environmental sanitation on site.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222832192U_ABST
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Abstract

The utility model relates to a cooling device for foamed plastic product processing, which comprises a barrel body, the side wall of the barrel body is concavely provided with multiple groups of arched parts, hydraulic rods are arranged in openings of the arched parts, output shafts of the multiple groups of hydraulic rods are connected with an annular seat located in the barrel body above the arched parts, and a circular ring is arranged in an opening of the annular seat. Wherein a circle of arc-shaped grooves are correspondingly formed in the outer side wall of the circular ring and the inner side wall of the annular seat, a plurality of metal balls are uniformly arranged in the two groups of arc-shaped grooves, a filter cartridge is further arranged at the bottom of the circular ring, an outer gear ring is arranged at the top of the filter cartridge, and a stirring plate is axially arranged on the outer wall of the filter cartridge below the outer gear ring. A gear meshed with the outer gear ring is further arranged on the outer gear ring, the gear is driven by a motor at the top of the annular seat, a limiting mechanism is arranged at the top in the filter cartridge, a stirring mechanism is arranged at the bottom end of the filter cartridge, and a plurality of supporting mechanisms are further arranged at the corner of the bottom of the filter cartridge. The device is simple in structure and convenient to use.
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Description

Technical Field

[0001] The invention relates to the technical field of foam plastic production, in particular to a cooling device for processing foam plastic products. Background Art

[0002] A foam box is a box-type packaging container made of foam plastic (porous plastic). Foam plastic is a plastic with many tiny pores inside. It has the advantages of light specific gravity, impact resistance, easy molding, beautiful shape, bright color, high efficiency and energy saving, low price and wide range of uses. It is mainly used for food, beverages and other products that require low-temperature refrigerated transportation, as well as bathroom and household appliances industries.

[0003] During the production process of foam plastics, it is necessary to cool them. Usually, the foam plastics are placed in a cooling tank for static cooling. However, the cooling speed of the existing cooling tank is slow and the effect is poor, which seriously affects the production efficiency and quality of the foam plastics. At the same time, the products taken out after cooling adhere to a large amount of liquid, resulting in a large amount of liquid adhered to the surface of the product dripping on the ground after the product is taken out, affecting the environmental sanitation on site. Summary of the invention

[0004] The object of the present invention is to provide a cooling device for processing foam plastic products.

[0005] The technical problem of the present invention is mainly solved by the following technical solutions:

[0006] A cooling device for processing foam plastic products, comprising a barrel with a water outlet pipe at the bottom:

[0007] The side wall of the barrel body is recessed inwardly with multiple groups of vertically arranged arched parts, wherein hydraulic rods are arranged in the openings of the arched parts, and the output shafts of the multiple groups of hydraulic rods are connected to the annular seat located in the barrel body above the arched parts, and a circular ring is arranged in the opening of the annular seat, wherein a circle of arc grooves are correspondingly arranged on the outer wall of the circular ring and the inner wall of the annular seat, and a number of metal balls are evenly arranged in the two groups of arc grooves, and a filter cartridge is also arranged at the bottom of the circular ring, wherein an outer tooth ring is arranged at the top of the filter cartridge, and an agitating plate is axially arranged on the outer wall of the filter cartridge below the outer tooth ring, and a gear meshing with the outer tooth ring is also arranged on the outer tooth ring, wherein the gear is driven by the motor at the top of the annular seat, and a limiting mechanism is arranged at the top of the filter cartridge, wherein an agitating mechanism is arranged at the bottom of the filter cartridge, and multiple groups of supporting mechanisms are also arranged at the turning corners of the bottom of the filter cartridge;

[0008] The stirring mechanism comprises a vertical rod arranged at the bottom end of the filter cartridge, wherein a stirring paddle is arranged on the vertical rod.

[0009] Preferably, the supporting mechanism comprises an L-shaped seat buckled at the bottom corner of the filter cartridge, wherein the L-shaped seat is fixed in the barrel body by a mounting rod, and a receiving groove with a major arc cross-section is provided on the inner side wall of the vertical end and the top surface of the horizontal end of the L-shaped seat, wherein a ball is provided in the receiving groove, one end of which extends to the outside thereof and abuts against the corresponding side wall and bottom wall of the filter cartridge.

[0010] Preferably, the bottom end of the side wall and the edge of the bottom wall of the filter cartridge are both solid structures.

[0011] Preferably, an inlet and an outlet staggered from the stirring plate are arranged on the side wall of the lower half of the filter cartridge, wherein a switch door is arranged at the inlet and the outlet.

[0012] Preferably, the limiting mechanism comprises a mounting plate radially arranged at the top opening of the filter cartridge, wherein a screw tube threadedly connected to the screw is arranged on the mounting plate, and a filter plate sealing the filter cartridge is fixed to the bottom end of the screw via a bearing.

[0013] The beneficial effect of the present invention is as follows: the present invention drives the filter cartridge to rotate through the motor-driven gear and the outer gear ring, and when the filter cartridge rotates, it drives the stirring plate and the stirring paddle to stir the liquid in the barrel body, so that the fluctuating liquid can fully contact the product to accelerate its cooling efficiency and effect, and when the cooling is completed, the hydraulic rod drives the filter cartridge to drive the internal product to move up and slowly slide out of the liquid, and the motor also indirectly drives the product in the filter cartridge to rotate through the gear and the outer gear ring, so that the liquid on the surface of the product in the filter cartridge is quickly separated from the product under the influence of the rotational force, and then falls back into the barrel body, so that the liquid of the product is quickly drained during the removal process by mechanically driving the filter cartridge to rotate. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a structural schematic diagram of the present invention.

[0015] In the figure: 1, barrel body, 2, arched part, 3, hydraulic rod, 4, annular seat, 5, circular ring, 6, metal ball, 7, filter cartridge, 8, outer gear ring, 9, stirring plate, 10, gear, 11, motor, 12, limit mechanism, 121, mounting plate, 122, screw tube, 123, screw, 124, filter plate, 13, stirring mechanism, 131, vertical rod, 132, stirring paddle, 14, supporting mechanism, 141, L-shaped seat, 142, mounting rod, 143, ball bearing, 15, switch door. DETAILED DESCRIPTION

[0016] The technical solution of the present invention is further specifically described below through embodiments and in conjunction with the accompanying drawings.

[0017] A cooling device for processing foam plastic products, comprising a barrel 1 with a water outlet pipe at the bottom:

[0018] The side wall of the barrel body 1 is recessed inwardly with multiple groups of vertically arranged arched parts 2, wherein hydraulic rods 3 are arranged in the opening of the arched parts 2, and the output shafts of the multiple groups of hydraulic rods 3 are connected to the annular seat 4 located in the barrel body 1 above the arched parts 2, and a circular ring 5 is arranged in the opening of the annular seat 4, wherein a circle of arc grooves are correspondingly arranged on the outer side wall of the circular ring 5 and the inner side wall of the annular seat 4, and a number of metal balls 6 are evenly arranged in the two groups of arc grooves, and a filter cartridge 7 is also arranged at the bottom of the circular ring 5, wherein an outer tooth ring 8 is arranged at the top of the filter cartridge 7, and an agitating plate 9 is axially arranged on the outer wall of the filter cartridge 7 below the outer tooth ring 8, and a gear 10 meshing with it is also arranged on the outer tooth ring 8, wherein the gear 10 is driven by a motor 11 at the top of the annular seat 4;

[0019] A limiting mechanism 12 is provided at the top of the filter cartridge 7, and the limiting mechanism 12 comprises a mounting plate 121 radially arranged at the top opening of the filter cartridge 7, wherein a screw tube 122 threadedly connected to a screw rod 123 is provided on the mounting plate 121, and a filter plate 124 sealing the filter cartridge 7 is fixed to the bottom end of the screw rod 123 through a bearing;

[0020] The bottom end of the filter cartridge 7 is provided with a stirring mechanism 13, and the stirring mechanism 13 comprises a vertical rod 131 provided at the bottom end of the filter cartridge 7, wherein a stirring paddle 132 is provided on the vertical rod 131;

[0021] A plurality of supporting mechanisms 14 are also provided at the turning corners at the bottom of the filter cartridge 7, and the supporting mechanisms 14 include an L-shaped seat 141 buckled at the turning corners at the bottom of the filter cartridge 7, wherein the L-shaped seat 141 is fixed in the barrel body 1 through a mounting rod 142, and a receiving groove with a major arc cross-section is provided on the inner side wall of the vertical end and the top end surface of the horizontal end of the L-shaped seat 141, wherein a ball 143 is provided in the receiving groove, one end of which extends to the outside thereof and abuts against the corresponding side wall and bottom wall of the filter cartridge 7.

[0022] In this embodiment, the bottom end of the side wall and the edge of the bottom wall of the filter cartridge 7 are both solid structures.

[0023] like Figure 1 As shown, an inlet and an outlet are arranged on the side wall of the lower half of the filter cylinder 7 and are staggered with the stirring plate 9, wherein a switch door 15 is arranged at the inlet and outlet.

[0024] like Figure 1As shown, the hydraulic rod 3 drives the annular seat 4 to move upward, and the annular seat 4 drives the filter cartridge 7 to move upward to the outside of the barrel body 1 through the metal ball 6 and the ring 5, then the worker can place the product at the bottom of the filter cartridge 7 through the open switch door 15, and then the hydraulic rod 3 drives the product in the filter cartridge 7 to slide into the liquid in the barrel body 1 through the above components to immerse and cool, at this time, the screw 123 in the screw tube 122 is rotated as required to drive the filter plate 124 to move, thereby limiting the product in the filter cartridge 7 to prevent the product in the filter cartridge 7 from floating on the liquid surface, and the turning point at the bottom of the filter cartridge 7 is located in the corresponding L-shaped seat 141 and abuts against the ball 143, which can support the filter cartridge 7, and secondly, when the filter cartridge 7 rotates, it will also drive the ball 143 to rotate in the corresponding receiving groove, so that it will not affect the rotation of the filter cartridge 7;

[0025] Then the motor 11 drives the gear 10 and the outer gear ring 8 to drive the filter cartridge 7 to rotate, wherein the filter cartridge 7 drives the arc groove on the ring 5 to rotate on the metal ball 6, and when the filter cartridge 7 rotates, it will drive the stirring plate 9 and the stirring paddle 132 to stir the liquid in the barrel body 1, so that the fluctuating liquid can fully contact with the product to accelerate its cooling efficiency and effect, and when the cooling is completed, the hydraulic rod 3 drives the filter cartridge 7 to drive the internal product to move up and slowly slide out of the liquid, and the motor 11 will also indirectly drive the product in the filter cartridge 7 to rotate through the gear 10 and the outer gear ring 8, so that the surface liquid of the product in the filter cartridge 7 is quickly separated from the product under the influence of the rotational force, and then falls back into the barrel body 1, so that the liquid of the product is quickly drained during the removal process by mechanically driving the filter cartridge 7 to rotate.

[0026] The present invention is described in detail above, but the contents are only preferred embodiments of the present invention and cannot be considered to limit the scope of implementation of the present invention. All equivalent changes and improvements made according to the scope of application of the present invention should still fall within the scope of the patent coverage of the present invention.

Claims

1. A cooling device for processing foam plastic products, comprising a barrel with a water outlet pipe at the bottom, characterized in that: The side wall of the barrel body is recessed inwardly with multiple groups of vertically arranged arched parts, wherein hydraulic rods are arranged in the openings of the arched parts, and the output shafts of the multiple groups of hydraulic rods are connected to the annular seat located in the barrel body above the arched parts, and a circular ring is arranged in the opening of the annular seat, wherein a circle of arc grooves are correspondingly arranged on the outer wall of the circular ring and the inner wall of the annular seat, and a number of metal balls are evenly arranged in the two groups of arc grooves, and a filter cartridge is also arranged at the bottom of the circular ring, wherein an outer tooth ring is arranged at the top of the filter cartridge, and an agitating plate is axially arranged on the outer wall of the filter cartridge below the outer tooth ring, and a gear meshing with the outer tooth ring is also arranged on the outer tooth ring, wherein the gear is driven by the motor at the top of the annular seat, and a limiting mechanism is arranged at the top of the filter cartridge, wherein an agitating mechanism is arranged at the bottom of the filter cartridge, and multiple groups of supporting mechanisms are also arranged at the turning corners of the bottom of the filter cartridge; The stirring mechanism comprises a vertical rod arranged at the bottom end of the filter cartridge, wherein a stirring paddle is arranged on the vertical rod.

2. A cooling device for foam plastic product processing according to claim 1, characterized in that: The support mechanism includes an L-shaped seat buckled at the bottom corner of the filter cartridge, wherein the L-shaped seat is fixed in the barrel body by a mounting rod, and a receiving groove with a major arc cross-section is provided on the inner side wall of the vertical end and the top surface of the horizontal end of the L-shaped seat, wherein a ball is provided in the receiving groove, one end of which extends to the outside thereof and abuts against the corresponding side wall and bottom wall of the filter cartridge.

3. A cooling device for foam plastic product processing according to claim 1, characterized in that: The bottom end of the side wall and the edge of the bottom wall of the filter cartridge are both solid structures.

4. A cooling device for foam plastic product processing according to claim 1, characterized in that: The side wall of the lower half of the filter cartridge is provided with an inlet and outlet staggered with the stirring plate, wherein a switch door is provided at the inlet and outlet.

5. A cooling device for foam plastic product processing according to claim 1, characterized in that: The limiting mechanism comprises a mounting plate radially arranged at the top opening of the filter cartridge, wherein a screw tube threadedly connected to the screw is arranged on the mounting plate, and a filter plate sealing the filter cartridge is fixed to the bottom end of the screw via a bearing.