Steel mold surface cleaning device

This steel mold surface cleaning device, which combines ultrasonic cleaning and gas drying with detergent recycling, solves the problem of existing devices requiring manual replacement of cleaning agents and drying, thus improving cleaning efficiency and reducing costs.

CN223932138UActive Publication Date: 2026-02-24YUNNAN SHENGBOLONG PIPE CO LTD
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Patent Information

Application Number
CN202520358820.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2026-02-24
Estimated Expiration
2035-03-04

AI Technical Summary

Technical Problem

Existing steel mold surface cleaning devices require manual replacement of cleaning agents and additional drying after cleaning, which is time-consuming, labor-intensive, costly, and affects efficiency.

Method used

A steel mold surface cleaning device was designed, comprising an ultrasonic module, a drying component, and a circulation component. Through ultrasonic cleaning, gas drying, and cleaning agent recycling, automated cleaning and drying are achieved, reducing manual intervention.

Benefits of technology

It enables the recycling of cleaning agents, saves costs, improves the efficiency of cleaning steel mold surfaces, simplifies the operation process, and reduces the intensity of manual labor.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223932138U_ABST
    Figure CN223932138U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of steel mold cleaning, in particular to a steel mold surface cleaning device. The utility model provides a steel mold surface cleaning device which can recycle a cleaning agent, can dry a steel mold, saves the cost and improves the steel mold surface cleaning efficiency. A steel mold surface cleaning device comprises a shell, electric telescopic rods, a cleaning frame and the like, the cleaning frame is connected into the shell, and the multiple electric telescopic rods are connected between the cleaning frame and the shell. According to the cleaning device, the first water pump is started, so that the liquid guide pipe conveys a cleaning agent in the cleaning frame into the liquid box, the filter filters the cleaning agent, after filtering is completed, the second water pump is started, the filtered cleaning agent is conveyed into the cleaning frame again, the purposes that the cleaning agent can be recycled, cost is saved, and the cleaning efficiency is improved are achieved. And the surface cleaning efficiency of the steel mold is improved.
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Description

Technical Field

[0001] This utility model relates to the field of steel mold cleaning technology, and in particular to a steel mold surface cleaning device. Background Technology

[0002] Steel molds are widely used in manufacturing, especially in processes such as stamping, injection molding, and casting. However, after long-term use, dirt, rust, and residues easily accumulate on the surface of the molds, affecting product quality and production efficiency, thus requiring surface cleaning.

[0003] Existing steel mold surface cleaning devices typically involve placing the steel mold into a cleaning tank for cleaning. However, since the impurities on the steel mold will contaminate the cleaning agent in the cleaning tank after being removed, the cleaning agent needs to be replaced manually. Furthermore, after cleaning, the steel mold needs to be dried using another device, which is time-consuming and labor-intensive, affecting the efficiency of steel mold surface cleaning and is also costly.

[0004] Therefore, a steel mold surface cleaning device has now been developed that can recycle cleaning agents, dry steel molds, save costs, and improve the efficiency of steel mold surface cleaning. Utility Model Content

[0005] To overcome the shortcomings of existing steel mold surface cleaning devices, which require manual replacement of cleaning agents and the use of additional equipment for drying after cleaning, which is time-consuming, labor-intensive, affects the efficiency of steel mold surface cleaning, and is also costly, this utility model provides a steel mold surface cleaning device that can recycle cleaning agents and dry steel molds, thereby saving costs and improving the efficiency of steel mold surface cleaning.

[0006] The technical solution of this utility model is: a steel mold surface cleaning device, comprising a shell, a top cover, electric telescopic rods, a cleaning frame, a liquid tank, a controller, a liquid inlet pipe, connecting rods, an ultrasonic module, a tray, a drying component, and a circulation component. The cleaning frame is connected inside the shell, and multiple electric telescopic rods are connected between the cleaning frame and the shell. The top cover is connected between the telescopic ends of the electric telescopic rods. The liquid tank is connected to the right side of the shell, and the controller is connected to the front of the liquid tank. All electric telescopic rods are electrically connected to the controller. A liquid inlet pipe is connected to the upper right side of the liquid tank. Multiple connecting rods are connected to the lower side of the top cover. Multiple ultrasonic modules are connected inside the cleaning frame, and all ultrasonic modules are electrically connected to the controller. A tray is connected between the lower parts of the connecting rods. The liquid tank is equipped with a drying component for drying the steel mold, and a circulation component for recycling the cleaning agent.

[0007] Furthermore, the controller is equipped with a display screen.

[0008] Furthermore, the liquid addition tube is conical.

[0009] Furthermore, the drying assembly includes an air pump, an air pipe, and a nozzle. The air pump is connected to the upper rear side of the liquid tank and is electrically connected to the controller. An air pipe is connected to the upper side of the air pump, and a nozzle is connected to the top cover. The air pipe is connected to the nozzle.

[0010] Furthermore, multiple nozzles are provided on the lower side of the nozzle.

[0011] Furthermore, the circulation assembly includes a liquid guide pipe, a filter, a first water pump, and a second water pump. The liquid guide pipe is connected to the lower side of the cleaning frame, and the filter is connected to the lower inner side of the liquid tank. The filter is electrically connected to the controller. The first water pump is connected to the lower side of the liquid tank and is electrically connected to the controller. The outlet of the first water pump is connected to the liquid tank, and the inlet of the first water pump is connected to the liquid guide pipe. The second water pump is connected to the upper side of the liquid tank and is electrically connected to the controller. The inlet of the second water pump is connected to the liquid tank, and the outlet of the second water pump is connected to the cleaning frame.

[0012] The beneficial effects are as follows: 1. By starting the first water pump, the liquid guide pipe transports the cleaning agent in the cleaning frame to the liquid tank, and the filter filters the cleaning agent. After filtration, the second water pump is started to transport the filtered cleaning agent back to the cleaning frame, thus achieving the effect of recycling the cleaning agent, saving costs, and improving the cleaning efficiency of steel mold surface.

[0013] 2. After the steel mold is cleaned, the pallet is moved upward and the air pump is started. Air is delivered through the air pipe and the nozzle sprays air, which can dry the steel mold and improve the surface cleaning efficiency of the steel mold. Attached Figure Description

[0014] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0015] Figure 2 This is a three-dimensional structural diagram of the outer shell and liquid tank of this utility model.

[0016] Figure 3 This is a three-dimensional structural diagram of the pallet and ultrasonic module of this utility model.

[0017] Figure 4 This is a three-dimensional structural diagram of the filter and air pump components of this utility model.

[0018] Figure 5 This is a three-dimensional structural diagram of the liquid guide tube and the first water pump of this utility model.

[0019] In the attached diagram, the following are the reference numerals: 1_outer shell, 2_top cover, 3_electric telescopic rod, 4_cleaning frame, 5_liquid tank, 6_controller, 7_liquid filling pipe, 8_air pump, 9_air pipe, 10_connecting rod, 11_ultrasonic module, 12_nozzle, 13_plate, 14_liquid guide pipe, 15_filter, 16_first water pump, 17_second water pump. Detailed Implementation

[0020] The present invention will now be described in detail with reference to the accompanying drawings and specific embodiments.

[0021] A steel mold surface cleaning device, such as Figures 1-5 As shown, the device includes a housing 1, a top cover 2, electric telescopic rods 3, a cleaning frame 4, a liquid tank 5, a controller 6, a liquid filling pipe 7, a connecting rod 10, an ultrasonic module 11, a tray 13, a drying assembly, and a circulation assembly. The cleaning frame 4 is connected inside the housing 1. Four electric telescopic rods 3 are connected between the cleaning frame 4 and the housing 1. The top cover 2 is connected between the telescopic ends of the electric telescopic rods 3. The liquid tank 5 is connected to the right side of the housing 1. The controller 6 is connected to the front of the liquid tank 5. The controller 6 is equipped with a display screen. For ease of operation, the electric telescopic rods 3 are all electrically connected to the controller 6. The upper right side of the liquid tank 5 is connected to the liquid filling pipe 7, which is tapered for easy liquid filling. Four connecting rods 10 are connected to the lower side of the top cover 2. Six ultrasonic modules 11 are connected to the inner side of the cleaning frame 4, and all ultrasonic modules 11 are electrically connected to the controller 6. A support plate 13 is connected between the lower parts of the connecting rods 10. A drying assembly is provided on the liquid tank 5, including an air pump 8, an air pipe 9, and a spray pipe 12. The air pump 8 is connected to the upper rear side of the liquid tank 5. The air pump 8 is electrically connected to the controller 6. The air pipe 9 is connected to the upper side of the air pump 8. The nozzle 12 is connected to the top cover 2. Four nozzles are provided on the lower side of the nozzle 12 for easy air spraying. The air pipe 9 is connected to the nozzle 12. The liquid tank 5 is equipped with a circulation assembly, which includes a liquid guide pipe 14, a filter 15, a first water pump 16, and a second water pump 17. The liquid guide pipe 14 is connected to the lower side of the cleaning frame 4. The filter is connected to the lower inner side of the liquid tank 5. 15. The filter 15 is electrically connected to the controller 6. The first water pump 16 is connected to the lower side of the liquid tank 5. The first water pump 16 is electrically connected to the controller 6. The outlet of the first water pump 16 is connected to the liquid tank 5. The inlet of the first water pump 16 is connected to the liquid guide pipe 14. The second water pump 17 is connected to the upper side of the liquid tank 5. The second water pump 17 is electrically connected to the controller 6. The inlet of the second water pump 17 is connected to the liquid tank 5. The outlet of the second water pump 17 is connected to the cleaning frame 4.

[0022] When using this invention, first place the outer shell 1 on the surface cleaning area of ​​the steel mold, then activate the electric telescopic rod 3 to push the top cover 2 upward, which in turn drives the pallet 13 upward via the connecting rod 10. Add the cleaning agent to the cleaning frame 4, then place the steel mold on the pallet 13. Subsequently, move the top cover 2 downward to close it with the outer shell 1, immersing the steel mold in the cleaning agent. Activate the ultrasonic module 11 via the controller 6 to clean the steel mold. After cleaning, move the pallet 13 upward and activate the air pump 8 to deliver air through the air pipe 9. The nozzle 12 sprays air onto the steel mold, thereby drying the steel mold and improving the surface cleaning efficiency. Then, the first water pump 16 is started, and the cleaning agent in the cleaning frame 4 is transported to the liquid tank 5 through the liquid guide pipe 14, so that the filter 15 filters the cleaning agent. After filtration, the second water pump 17 is started to transport the filtered cleaning agent back to the cleaning frame 4, thereby enabling the recycling of the cleaning agent, saving costs, and improving the surface cleaning efficiency of the steel mold. When the cleaning agent needs to be replenished, it can be added to the liquid tank 5 through the liquid addition pipe 7.

[0023] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A steel mold surface cleaning device, characterized in that: The system includes an outer shell (1), a top cover (2), an electric telescopic rod (3), a cleaning frame (4), a liquid tank (5), a controller (6), a liquid filling pipe (7), a connecting rod (10), an ultrasonic module (11), a tray (13), a drying assembly, and a circulation assembly. The cleaning frame (4) is connected inside the outer shell (1). Multiple electric telescopic rods (3) are connected between the cleaning frame (4) and the outer shell (1). The top cover (2) is connected between the telescopic ends of the electric telescopic rods (3). The liquid tank (5) is connected to the right side of the outer shell (1). The controller (6) is connected to the front of the liquid tank (5). The device (6) and the electric telescopic rod (3) are electrically connected to the controller (6). The upper right side of the liquid tank (5) is connected to the liquid filling pipe (7). The lower side of the top cover (2) is connected to multiple connecting rods (10). The inner side of the cleaning frame (4) is connected to multiple ultrasonic modules (11). The ultrasonic modules (11) are all electrically connected to the controller (6). The lower parts of the connecting rods (10) are connected to the support plate (13). The liquid tank (5) is equipped with a drying component that can dry the steel mold. The liquid tank (5) is equipped with a circulation component that can recycle the cleaning agent.

2. The steel mold surface cleaning device according to claim 1, characterized in that: The controller (6) is equipped with a display screen.

3. The steel mold surface cleaning device according to claim 1, characterized in that: The liquid addition tube (7) is conical.

4. The steel mold surface cleaning device according to claim 1, characterized in that: The drying assembly includes an air pump (8), an air pipe (9), and a nozzle (12). The air pump (8) is connected to the upper rear side of the liquid tank (5). The air pump (8) is electrically connected to the controller (6). The air pipe (9) is connected to the upper side of the air pump (8). The nozzle (12) is connected to the top cover (2). The air pipe (9) is connected to the nozzle (12).

5. The steel mold surface cleaning device according to claim 4, characterized in that: Multiple nozzles are provided on the lower side of the nozzle (12).

6. The steel mold surface cleaning device according to claim 1, characterized in that: The circulation assembly includes a liquid guide pipe (14), a filter (15), a first water pump (16), and a second water pump (17). The liquid guide pipe (14) is connected to the lower side of the cleaning frame (4). The filter (15) is connected to the lower inner side of the liquid tank (5). The filter (15) is electrically connected to the controller (6). The first water pump (16) is connected to the lower side of the liquid tank (5). The first water pump (16) is electrically connected to the controller (6). The outlet of the first water pump (16) is connected to the liquid tank (5). The inlet of the first water pump (16) is connected to the liquid guide pipe (14). The second water pump (17) is connected to the upper side of the liquid tank (5). The second water pump (17) is electrically connected to the controller (6). The inlet of the second water pump (17) is connected to the liquid tank (5). The outlet of the second water pump (17) is connected to the cleaning frame (4).