A cooling device for wax water paste

By designing a cooling device with a screw, central hole, and rotating block structure, the problem of uneven cooling of the wax paste block was solved, achieving uniform cooling of the wax paste block and improving cooling efficiency and quality stability.

CN224327443UActive Publication Date: 2026-06-05UNITED LASHING PRECISION CASTING

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
UNITED LASHING PRECISION CASTING
Filing Date
2025-05-28
Publication Date
2026-06-05

AI Technical Summary

Technical Problem

In the existing technology, when wax paste blocks are cooled by water in the pool, the cooling rate in the middle is slow and the cooling is uneven, which affects the overall quality and performance stability of the wax paste blocks.

Method used

A cooling device including a base, a placement mechanism, a moving mechanism, and a limiting mechanism was designed. Through the cooperation of a screw, a central hole, and a rotating block structure, the impact force of cooling water is used to drive the rotating block to rotate, thereby agitating and adjusting the position of the wax paste block. Combined with the partition design of the frame and the partition plate, the wax paste block is ensured to be cooled evenly.

Benefits of technology

This improves the contact efficiency between the wax paste block and the cooling water, reduces uneven cooling caused by accumulation, enhances the uniformity and efficiency of the cooling process, and ensures the stability and performance consistency of the wax paste block.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of cooling devices of wax water preparation paste, it is related to cooling device technical field, to solve the technical problem of slow cooling speed in middle position when multiple wax paste blocks are stacked in pool body water cooling, uneven cooling, including base, the upper surface of the base is arranged with placing mechanism, moving mechanism is arranged above the placing mechanism, limit mechanism is arranged below the moving mechanism. The utility model is by designing screw rod, center hole and rotating block structure, when pressing plate enters pool body A with frame A, cooling water impact pressing plate makes it rise and drive screw rod to move, the flat mouth structure of center hole is used to drive rotating block to rotate, and then stirring plate is rotated in frame A by shaft rod, the wax paste block in cavity is agitated, so that its position dynamic adjustment, promote wax paste block and cooling water fully contact, reduce the problem of activity restriction caused by multiple accumulation, improve the heat dissipation uniformity in cooling process, reduce the situation of cooling efficiency due to accumulation dense influence occurs.
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Description

Technical Field

[0001] This utility model relates to the field of cooling device technology, and more specifically, to a cooling device for wax-based ointment making. Background Technology

[0002] Wax paste is a substance widely used in industry and other fields. It is usually made from a series of complex processes using raw materials such as molten wax in a specific ratio. Among these processes, wax paste preparation is a crucial step. Molten wax is mixed, heated, and treated to form a paste-like substance, which is then molded into wax paste blocks. The molded wax paste blocks need to be cooled to stabilize their properties and meet subsequent usage requirements.

[0003] Currently, the cooling process for wax paste blocks mostly involves stacking multiple blocks together in a pool for water cooling. However, this method has certain shortcomings. During the cooling process, due to the stacking arrangement, the wax paste blocks located in the middle of the pool are surrounded by other blocks, limiting their contact with the cooling water. Compared to the blocks at the edges of the pool, their cooling rate is slower, easily leading to uneven cooling and affecting the overall quality and performance stability of the wax paste blocks. Therefore, we propose a cooling device for wax paste preparation. Utility Model Content

[0004] The purpose of this utility model is to overcome the shortcomings of the existing technology, adapt to the needs of reality, and provide a cooling device for wax paste making, so as to solve the technical problem of slow cooling speed and uneven cooling in the middle position when multiple wax paste blocks are stacked in the pool for water cooling.

[0005] To solve the above technical problems, the present invention provides the following technical solution: a cooling device for wax paste preparation, including a base, a placement mechanism arranged on the upper surface of the base, a moving mechanism arranged above the placement mechanism, a limiting mechanism arranged below the moving mechanism, the limiting mechanism including a frame A, a partition arranged inside the frame A, a cavity arranged on the side of the partition, and a stirring unit arranged inside the cavity.

[0006] The stirring unit includes a partition screen, a shaft is rotatably mounted in the middle of the partition screen, a bracket is connected to the upper end of the shaft, a rotating block is connected to the upper end of the bracket, a central hole is opened through the rotating block, the central hole has a flat opening shape, and a screw is inserted into the central hole, with a pressure plate arranged at the upper end of the screw.

[0007] Preferably, the placement mechanism includes pool A and pool B, with pool A arranged in the middle of pool B. Both pool A and pool B have a square structure shape, and the inner diameter of pool A matches the outer diameter of frame A.

[0008] Preferably, the moving mechanism includes a frame B fixed to the pool body B, a hydraulic cylinder is installed through the middle of the upper end of the frame B, and a pressure plate is connected to the output end of the hydraulic cylinder.

[0009] Preferably, push rods are arranged on both sides of the upper end of the frame B, and the lower end of the push rods is tangent to the surface of the pressure plate.

[0010] Preferably, the partition is in the shape of a cross, and both the partition and the lower end of the frame A are in the shape of a ramp.

[0011] Preferably, the lower end of the shaft is connected to both sides of the stirring plate, the pressure plate is fitted with a sliding sleeve through the four corners, a sliding rod is inserted into the sliding sleeve, and the sliding rod is arranged at the four corners inside the cavity.

[0012] Compared with the prior art, the beneficial effects of this utility model are:

[0013] 1. This utility model designs a screw, a central hole, and a rotating block structure. The rotating block has a flat central hole at its upper end. When the pressure plate descends into the pool A along with the frame A, the cooling water in the pool A impacts the pressure plate, causing it to move upward within the frame A. This, in turn, drives the screw to rise synchronously. Due to the flat central hole design, the screw will rotate during its ascent. The rotating block, through the bracket, drives the shaft and the lower stirring plate to rotate within the frame A, agitating the wax paste blocks in the cavity and dynamically adjusting their position. This design helps the wax paste blocks to fully contact the cooling water, reducing the problem of restricted movement caused by multiple blocks accumulating, improving the heat dissipation uniformity during the cooling process, and reducing the occurrence of situations where dense accumulation affects cooling efficiency.

[0014] 2. This utility model designs a frame A and a partition structure. The internal cross-shaped partition divides the space into four cavities. When the frame A is lowered into the pool A under the drive of the hydraulic cylinder, most of the wax paste blocks in the pool can be placed into the four cavities respectively, reducing the accumulation phenomenon and reducing the problem of insufficient heat dissipation and cooling efficiency caused by the stacking of wax paste blocks in the middle position. At the same time, the lower end of the frame A and the partition adopts a slope design. When the frame A is lowered, the slope structure can guide the wax paste blocks to enter the cavity smoothly, improving the convenience and stability of the partitioned placement.

[0015] 3. This utility model designs a push rod structure. When the hydraulic cylinder drives the frame A to descend into the pool body A and then rises again, the push rod is inserted into the cavity, pushing the pressure plate that has been raised by the water flow back to the lower end of the cavity. This design allows the cooling water in the pool to re-impact the pressure plate and raise it when the frame A descends again. Through the reset action of the push rod, the stirring plate is guaranteed to continuously obtain rotational power, improving the stability of the stirring function during the cooling process. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the main appearance structure of this utility model;

[0017] Figure 2 This is a schematic diagram of the placement mechanism of this utility model;

[0018] Figure 3 This is a schematic diagram of the moving mechanism structure of this utility model;

[0019] Figure 4 This is a schematic diagram of the limiting mechanism structure of this utility model;

[0020] Figure 5 This is a cross-sectional view of the limiting mechanism of this utility model;

[0021] Figure 6 This is a schematic diagram of the structure of the pressure plate of this utility model when it is not raised;

[0022] Figure 7 This is a schematic diagram of the raised pressure plate structure of this utility model;

[0023] Figure 8 This is a schematic diagram of the screw and rotating block structure of this utility model.

[0024] Explanation of the labels in the diagram:

[0025] 1. Base; 2. Placement mechanism; 201. Pool A; 202. Pool B; 3. Moving mechanism; 301. Frame B; 302. Hydraulic cylinder; 303. Push rod; 4. Limiting mechanism; 401. Frame A; 402. Partition plate; 403. Cavity; 404. Agitator unit; 4041. Partition mesh; 4042. Shaft; 4043. Bracket; 4044. Rotary block; 4045. Center hole; 4046. Screw; 4047. Pressure plate; 4048. Stirring plate; 4049. Sliding sleeve; 4050. Sliding rod. Detailed Implementation

[0026] like Figures 1 to 8 As shown, the present invention relates to a cooling device for wax paste preparation, including a base 1, a placement mechanism 2 arranged on the upper surface of the base 1, a moving mechanism 3 arranged above the placement mechanism 2, a limiting mechanism 4 arranged below the moving mechanism 3, the limiting mechanism 4 including a frame A401, a partition 402 arranged inside the frame A401, a cavity 403 arranged on the side of the partition 402, and a stirring unit 404 arranged inside the cavity 403.

[0027] The stirring unit 404 includes a partition screen 4041, a shaft 4042 rotatably mounted in the middle of the partition screen 4041, a bracket 4043 connected to the upper end of the shaft 4042, a swivel block 4044 connected to the upper end of the bracket 4043, a central hole 4045 penetrating through the swivel block 4044, the central hole 4045 having a flat opening shape, and a screw 4046 inserted into the central hole 4045, with a pressure plate 4047 arranged on the upper end of the screw 4046. This invention utilizes a design featuring a screw 4046, a central hole 4045, and a rotating block 4044. The rotating block 4044 has a flat central hole 4045 at its upper end. When the pressure plate 4047 descends into the pool A201 along with the frame A401, the cooling water in the pool A201 impacts the pressure plate 4047, causing it to move upward within the frame A401. This, in turn, drives the screw 4046 to rise synchronously. Due to the flat design of the central hole 4045, the screw 4046 rotates the rotating block 4044 during its ascent. The rotating block 4044, through the bracket 4043, drives the shaft 4042 and the lower stirring plate 4048 to rotate within the frame A401, agitating the wax paste blocks in the cavity 403 and dynamically adjusting their position. This design helps the wax paste blocks to fully contact the cooling water, reducing the problem of restricted movement caused by multiple blocks accumulating, improving the uniformity of heat dissipation during the cooling process, and reducing the occurrence of situations where dense accumulation affects cooling efficiency.

[0028] In an embodiment of this utility model, the placement mechanism 2 includes a pool A201 and a pool B202. Pool A201 is arranged in the middle of pool B202. Both pool A201 and pool B202 have a square structure. The inner diameter of pool A201 matches the outer dimensions of frame A401. The design of pool A201 allows the wax block to be cooled and the water used for cooling to be placed inside, providing a placement location. The installation of pool B202 allows water that accidentally overflows from frame A401 when it is inserted into pool A201 to be temporarily stored inside, preventing it from flowing directly onto the ground and causing pollution, and also facilitating subsequent unified treatment. The square structure design of both pools is to match the equally square structure of frame A401, thus reducing water leakage from the gaps between them when frame A401 is inserted into pool A201.

[0029] In an embodiment of this utility model, the moving mechanism 3 includes a frame B301 fixed to the pool body B202. A hydraulic cylinder 302 is installed through the middle of the upper end of the frame B301, and a pressure plate 4047 is connected to the output end of the hydraulic cylinder 302. The installation of the hydraulic cylinder 302 in this utility model enables the frame A401 to move up and down within the pool body A201, providing a power output point.

[0030] In an embodiment of this invention, push rods 303 are arranged on both sides of the upper end of frame B301, with the lower end of the push rods 303 tangent to the surface of pressure plate 4047. By designing the push rod 303 structure, when the hydraulic cylinder 302 drives frame A401 to descend into pool A201 and then rises again, the push rod 303 inserts into cavity 403, pushing the pressure plate 4047, which has been raised by the water flow, back to the lower end of cavity 403. This design allows the cooling water in the pool to re-impact the pressure plate 4047 and raise it when frame A401 descends again. Through the resetting action of the push rod 303, the stirring plate 4048 continuously receives rotational power, improving the stability of the stirring function during cooling.

[0031] In this embodiment of the invention, the partition 402 has a cross-shaped structure, and both the partition 402 and the lower end of the frame A401 adopt a sloping structure. By designing the structure of the frame A401 and partition 402, the cross-shaped partition 402 divides the space into four cavities 403. When the frame A401 descends into the pool A201 under the drive of the hydraulic cylinder 302, most of the wax paste blocks in the pool can be placed into the four cavities 403 respectively, reducing accumulation and mitigating the problem of insufficient heat dissipation and cooling efficiency caused by the stacking of wax paste blocks in the middle position. Simultaneously, the sloping design at the lower ends of the frame A401 and partition 402 guides the wax paste blocks smoothly into the cavities 403 when the frame A401 descends, improving the convenience and stability of the separated placement.

[0032] In an embodiment of this utility model, a stirring plate 4048 is connected to both sides of the lower end of the shaft 4042, and a sliding sleeve 4049 is installed through the four corners of the pressure plate 4047. A sliding rod 4050 is inserted into the sliding sleeve 4049, and the sliding rod 4050 is arranged at the four corners inside the cavity 403. The installation of the stirring plate 4048 in this utility model allows the frame A401 to be inserted into the pool body A201. The stirring plate 4048 rotates in conjunction with the pressure plate 4047, which can agitate the wax block placed there, allowing it to move and change position. This improves the cooling efficiency of a single wax block and prevents multiple wax blocks from piling up and remaining stationary, which would cause different cooling rates between the outer and inner wax blocks and thus reduce cooling efficiency. By designing the sliding sleeve 4049 and sliding rod 4050 structure, the pressure plate 4047 can be restricted to move up and down within the cavity 403, preventing the pressure plate 4047 from tilting after being impacted by water. This stabilizes the parallel lifting and lowering movement of the pressure plate 4047 after being impacted by water, and indirectly stabilizes the rotation of the stirring plate 4048.

[0033] Working Principle: This embodiment provides a cooling device for wax paste making. When using it, the operator needs to first connect an external power supply to the device and control its operation via the control panel. The operator first needs to fill the pool A201 with water, supplying cooling water to the pool A201 through a water pipe. After supplying a suitable amount, the supply is stopped. The operator then pours the wax paste block to be cooled into the pool A201. After pouring, the operator starts the hydraulic cylinder 302, which begins to push the frame A4 connected to the output end. 01. Frame A401 begins to descend and insert into pool A201. After insertion, the wax block placed inside pool A201 enters cavity 403. The wax block entering cavity 403 is blocked by mesh 4041, while water passes through mesh 4041 and impacts the upper part of cavity 403, impacting the pressure plate 4047 placed there. This causes pressure plate 4047 to rise and move within cavity 403. After pressure plate 4047 rises, it carries the lower surface of the installed... The screw 4046 rises together with the shaft 4042. After the screw 4046 rises, the rotating block 4044 mounted on its surface will rotate due to the thread. The rotating block 4044 will rotate together with the shaft 4042 through the bracket 4043. After the shaft 4042 rotates, the agitator 4048 mounted on its side will also rotate. At this time, the rotating agitator 4048 will agitate the wax block at this time, so that it can be fully cooled by the water in the pool A201. When the hydraulic cylinder 302 pushes the frame A401 down to the bottom, its hydraulic... The cylinder 302 will lift the frame A401 again. After the frame A401 is pulled up by the hydraulic cylinder 302, the push rod 303 installed on its frame B301 will push the pressure plate 4047 in the cavity 403, pushing the pressure plate 4047 downward to its original position. When the hydraulic cylinder 302 presses down the frame A401 again, its pressure plate 4047 will be impacted by the water in the pool A201, which will drive the stirring plate 4048 to stir the wax block again, making it move and allowing it to be fully cooled by the water.

[0034] The embodiments disclosed herein are preferred embodiments, but are not limited thereto. Those skilled in the art can readily grasp the spirit of this utility model based on the above embodiments and make different extensions and variations. However, as long as they do not depart from the spirit of this utility model, they are all within the protection scope of this utility model.

Claims

1. A cooling device for wax-based ointment preparation, comprising a base (1), characterized in that: The base (1) has a placement mechanism (2) arranged on its upper surface. A moving mechanism (3) is arranged above the placement mechanism (2). A limiting mechanism (4) is arranged below the moving mechanism (3). The limiting mechanism (4) includes a frame A (401). A partition (402) is arranged inside the frame A (401). A cavity (403) is arranged on the side of the partition (402). A stirring unit (404) is arranged inside the cavity (403). The stirring unit (404) includes a partition screen (4041), a shaft (4042) is rotatably mounted in the middle of the partition screen (4041), a bracket (4043) is connected to the upper end of the shaft (4042), a swivel block (4044) is connected to the upper end of the bracket (4043), a central hole (4045) is provided through the swivel block (4044), the central hole (4045) is flat and a screw (4046) is inserted into the central hole (4045), and a pressure plate (4047) is arranged on the upper end of the screw (4046).

2. The cooling device for wax paste preparation according to claim 1, characterized in that: The placement mechanism (2) includes a pool body A (201) and a pool body B (202). The pool body A (201) is arranged in the middle of the pool body B (202). Both the pool body A (201) and the pool body B (202) are square in shape. The inner diameter of the pool body A (201) matches the outer diameter of the frame A (401).

3. The cooling device for wax-based ointment preparation according to claim 2, characterized in that: The moving mechanism (3) includes a frame B (301) fixed on the pool body B (202), a hydraulic cylinder (302) is installed through the middle of the upper end of the frame B (301), and a pressure plate (4047) is connected to the output end of the hydraulic cylinder (302).

4. The cooling device for wax paste preparation according to claim 3, characterized in that: Push rods (303) are arranged on both sides of the upper end of the frame B (301), and the lower end of the push rods (303) is tangent to the surface of the pressure plate (4047).

5. A cooling device for wax paste preparation according to claim 4, characterized in that: The partition (402) has a cross-shaped structure, and the lower ends of both the partition (402) and the frame A (401) have a sloping structure.

6. A cooling device for wax paste preparation according to claim 5, characterized in that: The shaft (4042) is connected to two sides of the lower end with stirring plates (4048), and the pressure plate (4047) is fitted with sliding sleeves (4049) through the four corners. A sliding rod (4050) is inserted into the sliding sleeve (4049), and the sliding rod (4050) is arranged at the four corners inside the cavity (403).