Automatic cleaning equipment for rubber mold

By using a glass door panel and hollow joint design, combined with an electric telescopic rod to adjust the angle and position of the cleaning spray nozzles, the problems of sealing, uniformity, and adaptability of the rubber mold cleaning equipment are solved, achieving efficient and safe cleaning results.

CN223545573UActive Publication Date: 2025-11-14KUNSHAN ZHENGYI ELECTRONICS CO LTD
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Patent Information

Application Number
CN202423220968.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-11-14
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

Existing rubber mold cleaning equipment has shortcomings in terms of sealing, uniform distribution of cleaning fluid, ease of operation, adaptability, and cleaning efficiency, resulting in poor cleaning effect, safety hazards, and waste of resources.

Method used

The glass door design enhances sealing, while the liquid flow connectivity and freely rotating hollow joints ensure even spraying of the cleaning solution. Combined with an electric telescopic rod, the angle and position of the cleaning nozzles can be adjusted for precise cleaning.

Benefits of technology

It improves cleaning efficiency and effectiveness, avoids water pollution and resource waste, ensures thorough and uniform cleaning, and reduces operational complexity and safety hazards.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223545573U_ABST
    Figure CN223545573U_ABST
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Abstract

The utility model discloses an automatic rubber mould cleaning device which comprises a cleaning frame, a cleaning tank, a glass cover, a top sealing plate, a cleaning water tank, a water supply assembly, an angle adjusting assembly and a cleaning water spray nozzle, and the cleaning tank is fixedly installed in the middle of the cleaning frame. Due to the design of the glass door plate, the closeness and the safety of equipment are improved, and the pollution of water splashed out in the cleaning process to the external environment is avoided; through the connectivity of liquid flowing and the hollow joint capable of freely rotating, the cleaning liquid can be uniformly sprayed in the whole rubber mold groove, so that the cleaning effect is more thorough and uniform; and each electric telescopic rod is adjusted according to different telescopic quantities and angles, so that the cleaning water spray nozzle can flexibly adjust the direction and accurately position the cleaning position. In this way, all parts of the rubber mold groove can be directionally cleaned, the cleaning efficiency and effect are greatly improved, and the situation of neglected cleaning or excessive cleaning is avoided.
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Description

Technical Field

[0001] This utility model relates to the field of rubber mold cleaning technology, and in particular to an automatic rubber mold cleaning device. Background Technology

[0002] With increasingly stringent requirements for mold cleaning in industrial production, especially in the cleaning of rubber molds, traditional cleaning methods are gradually revealing their inability to meet the demands for efficient and precise cleaning. Rubber molds, due to their complex structure and shape, often present numerous challenges during cleaning. While existing cleaning equipment can perform basic cleaning tasks, it still has many shortcomings in terms of cleaning effect, efficiency, and ease of operation.

[0003] Traditional cleaning equipment often lacks effective sealing designs, leading to easy splashing of water during the cleaning process and contamination of the working environment. This is especially problematic when cleaning complex or large molds; splashing not only affects the external environment but also poses safety hazards to nearby operators. For example, the cleaning fluid may contain chemicals or hot water, which, without proper protection, could cause burns or other adverse reactions. However, existing equipment typically lacks this design, failing to effectively prevent water leakage and splashing during cleaning, thus creating potential dangers for users.

[0004] While some existing cleaning equipment can perform basic spraying functions, the distribution of the cleaning fluid is often uneven, resulting in some parts of the mold not being thoroughly cleaned. This uneven cleaning effect is usually due to insufficient precision in equipment design, failing to effectively control the flow direction and flow rate of the cleaning fluid. Especially for irregularly shaped rubber molds with complex internal structures, precise liquid spraying and a precise cleaning angle are often required to ensure thorough cleaning of every part of the mold. However, traditional cleaning devices often rely on a single water spray method, unable to flexibly adjust the angle and spray range, leading to inadequate cleaning of some areas, or even over-cleaning due to excessive water flow, thus increasing water waste.

[0005] Many existing cleaning devices are cumbersome to operate, requiring manual intervention to adjust the cleaning angle and liquid flow. Due to the lack of intelligent control systems, the cleaning efficiency and accuracy are limited. Operators often need to manually adjust the nozzle angle and water flow rate according to the different shapes and requirements of the molds. This not only increases the complexity of operation but also easily leads to human error, affecting cleaning quality and efficiency. Moreover, during the cleaning process, operators need to constantly observe and adjust, increasing their workload and reducing work efficiency. For large-volume, continuous cleaning tasks, this traditional method clearly cannot meet the demands for high efficiency, precision, and automation.

[0006] Existing cleaning equipment often lacks sufficient adaptability, especially when handling molds of different types, sizes, or structures, frequently requiring nozzle replacement or equipment configuration adjustments. Due to this lack of flexibility, cleaning equipment is often only suitable for certain specific types of molds, failing to achieve "one machine for multiple uses." This limits the equipment's applicability in diverse production environments, particularly in industrial settings where various mold shapes and sizes are frequently required; poor equipment adaptability significantly impacts production line flexibility.

[0007] Therefore, how to provide an automatic cleaning device for rubber molds is a problem that urgently needs to be solved by those skilled in the art. Utility Model Content

[0008] One objective of this invention is to provide an automatic cleaning device for rubber molds. This invention enhances the sealing and safety of the equipment through the design of a glass door, preventing water splashes during cleaning from polluting the external environment. The interconnectedness of the liquid flow and the freely rotating hollow joints allow the cleaning fluid to be evenly sprayed throughout the entire rubber mold groove, ensuring a more thorough and uniform cleaning effect. Each electric telescopic rod can be adjusted according to different extension amounts and angles, allowing the cleaning nozzles to flexibly adjust their direction and precisely position the cleaning area. This enables targeted cleaning of various parts of the rubber mold groove, greatly improving cleaning efficiency and effectiveness, and avoiding missed or over-cleaning.

[0009] An automatic cleaning device for rubber molds according to an embodiment of the present invention includes a cleaning frame, a cleaning tank, a glass cover, a top sealing plate, a cleaning water tank, a water supply component, an angle adjustment component, and cleaning spray nozzles. The cleaning tank is fixedly installed in the middle of the cleaning frame, the glass cover is fixedly installed on the top of the cleaning frame, the bottom of the top sealing plate is fixedly installed on the top of the cleaning frame, the cleaning water tank is fixedly installed on the bottom of the cleaning frame, the water supply component is fixedly installed on the top sealing plate, the angle adjustment component is installed on the top sealing plate, and the cleaning spray nozzles are fixedly installed on the bottom of the water supply component.

[0010] Furthermore, a hinge is fixedly installed on the outer surface of the glass cover, and a glass door panel is installed on the outer surface of the glass cover. The hinge is fixedly installed on the glass door panel, and a door handle is fixedly installed on the side of the glass door panel away from the hinge. A return pipe is fixedly installed between the cleaning tank and the cleaning water tank.

[0011] Furthermore, the water supply assembly includes a water supply pump, a pumping pipe, and an outlet pipe. The pump base of the water supply pump is fixedly installed on the top of the top sealing plate, the top of the pumping pipe is fixedly installed on the water supply pump, the bottom of the pumping pipe extends into the cleaning water tank, and the top of the outlet pipe is fixedly installed on the water supply pump.

[0012] Furthermore, a filter core column is fixedly installed at the bottom of the water pumping pipe.

[0013] Furthermore, the water supply assembly also includes a fixed plate, a semi-circular sleeve, and a hollow joint, wherein the top of the fixed plate is fixedly installed on the bottom of the top sealing plate, the non-open end of the semi-circular sleeve is fixedly installed on the bottom of the fixed plate, the semi-circular sleeve is fixedly installed on the bottom of the water outlet pipe, and the hollow joint is rotatably embedded in the semi-circular sleeve.

[0014] Furthermore, the water supply assembly also includes a hollow cone and a swing tube. The top of the hollow cone is fixedly installed on the non-open end of the hollow joint. The swing tube is located inside the hollow cone. The top of the swing tube is fixedly installed on the non-open end of the hollow joint. The bottom of the swing tube is fixedly installed on the water inlet end of the cleaning nozzle.

[0015] Furthermore, the angle adjustment assembly includes a first rotating base and a second rotating base, wherein the base of the first rotating base is fixedly installed on the bottom of the fixed plate, and the base of the second rotating base is fixedly installed on the outer surface of the hollow cone.

[0016] Furthermore, the angle adjustment assembly also includes an electric telescopic rod, a first rotating head, and a second rotating head, wherein one end of the first rotating head is fixedly mounted on one end of the electric telescopic rod, and the other end of the first rotating head is rotatably mounted on a first rotating base, one end of the second rotating head is rotatably mounted on the other end of the electric telescopic rod, and the other end of the second rotating head is rotatably mounted on a second rotating base.

[0017] The beneficial effects of this utility model are:

[0018] This invention enhances the sealing and safety of the equipment through the design of the glass door panel, preventing water splashes during cleaning from polluting the external environment. The interconnectedness of the liquid flow and the freely rotating hollow joints allow the cleaning fluid to be evenly sprayed throughout the entire rubber mold tank, ensuring a more thorough and uniform cleaning effect. Each electric telescopic rod can be adjusted according to different extension amounts and angles, allowing the cleaning nozzles to flexibly adjust their direction and precisely locate the cleaning position. This enables targeted cleaning of various parts of the rubber mold tank, greatly improving cleaning efficiency and effectiveness, and avoiding missed or over-cleaning. Attached Figure Description

[0019] The accompanying drawings are provided to further illustrate the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention, but do not constitute a limitation thereof. In the drawings:

[0020] Figure 1This is a schematic diagram of the overall structure of an automatic cleaning device for rubber molds proposed in this utility model;

[0021] Figure 2 This is a schematic diagram of the cleaning tank of an automatic cleaning device for rubber molds proposed in this utility model.

[0022] In the diagram: 1. Cleaning rack; 2. Cleaning tank; 3. Glass cover; 3.1. Hinge; 3.2. Glass door panel; 3.3. Door handle; 4. Top sealing plate; 5. Cleaning water tank; 6. Water supply assembly; 6.1. Water supply pump; 6.2. Water suction pipe; 6.3. Water outlet pipe; 6.4. Filter core column; 6.5. Fixing plate; 6.6. Semicircular sleeve; 6.7. Hollow joint; 6.8. Hollow cone; 6.9. Swing pipe; 7. Angle adjustment assembly; 7.1. First rotating seat; 7.2. Second rotating seat; 7.3. Electric telescopic rod; 7.4. First rotating head; 7.5. Second rotating head; 8. Hot water cleaning spray nozzle; 9. Return pipe. Detailed Implementation

[0023] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the present invention, and therefore only show the components relevant to the present invention.

[0024] Please refer to Figure 1 and Figure 2 This utility model provides an automatic cleaning device for rubber molds, including a cleaning frame 1, a cleaning tank 2, a glass cover 3, a top sealing plate 4, a cleaning water tank 5, a water supply component 6, an angle adjustment component 7, and cleaning spray nozzles 8. The cleaning tank 2 is fixedly installed in the middle of the cleaning frame 1, the glass cover 3 is fixedly installed on the top of the cleaning frame 1, the bottom of the top sealing plate 4 is fixedly installed on the top of the cleaning frame 1, the cleaning water tank 5 is fixedly installed on the bottom of the cleaning frame 1, the water supply component 6 is fixedly installed on the top sealing plate 4, the angle adjustment component 7 is installed on the top sealing plate 4, and the cleaning spray nozzles 8 are fixedly installed on the bottom of the water supply component 6. A hinge 3.1 is fixedly installed on the outer surface of the glass cover 3, and a glass door panel 3.2 is provided on the outer surface of the glass cover 3. The hinge 3.1 is fixedly installed on the glass door panel 3.2, and a door handle 3.3 is fixedly installed on the side of the glass door panel 3.2 away from the hinge 3.1. A return pipe 9 is fixedly installed between the cleaning tank 2 and the cleaning water tank 5.

[0025] Specifically, the water supply assembly 6 includes a water supply pump 6.1, a water suction pipe 6.2, and a water outlet pipe 6.3. The pump base of the water supply pump 6.1 is fixedly installed on the top of the top sealing plate 4. The top of the water suction pipe 6.2 is fixedly installed on the water supply pump 6.1, and the bottom of the water suction pipe 6.2 extends into the cleaning water tank 5. The top of the water outlet pipe 6.3 is fixedly installed on the water supply pump 6.1, and a filter core column 6.4 is fixedly installed at the bottom of the water suction pipe 6.2.

[0026] The water supply assembly 6 also includes a fixed plate 6.5, a semi-circular sleeve 6.6, and a hollow joint 6.7. The top of the fixed plate 6.5 is fixedly installed on the bottom of the top sealing plate 4. The non-open end of the semi-circular sleeve 6.6 is fixedly installed on the bottom of the fixed plate 6.5. The semi-circular sleeve 6.6 is fixedly installed on the bottom of the water outlet pipe 6.3. The hollow joint 6.7 is rotatably embedded in the semi-circular sleeve 6.6. The water supply assembly 6 also includes a hollow cone 6.8 and a swing pipe 6.9. The top of the hollow cone 6.8 is fixedly installed on the non-open end of the hollow joint 6.7. The swing pipe 6.9 is located inside the hollow cone 6.8. The top of the swing pipe 6.9 is fixedly installed on the non-open end of the hollow joint 6.7. The bottom of the swing pipe 6.9 is fixedly installed on the water inlet end of the cleaning spray nozzle 8.

[0027] More specifically, the angle adjustment assembly 7 includes a first rotating base 7.1 and a second rotating base 7.2, wherein the base of the first rotating base 7.1 is fixedly installed on the bottom of the fixed plate 6.5, and the base of the second rotating base 7.2 is fixedly installed on the outer surface of the hollow cone 6.8. The angle adjustment assembly 7 also includes an electric telescopic rod 7.3, a first rotating head 7.4 and a second rotating head 7.5, wherein one end of the first rotating head 7.4 is fixedly installed on one end of the electric telescopic rod 7.3, and the other end of the first rotating head 7.4 is rotatably installed on the first rotating base 7.1, one end of the second rotating head 7.5 is rotatably installed on the other end of the electric telescopic rod 7.3, and the other end of the second rotating head 7.5 is rotatably installed on the second rotating base 7.2.

[0028] Furthermore, by pulling the glass door panel 3.2 through the door handle 3.3, the glass door panel 3.2 rotates along the axis of the hinge 3.1, opening the glass door panel 3.2. The rubber mold is placed at the bottom of the cleaning tank 2. The water supply pump 6.1 is started, and the water supply pump 6.1 supplies the cleaning fluid inside the cleaning water tank 5 to the outlet pipe 6.3 through the water suction pipe 6.2. The outlet pipe 6.3 then supplies the cleaning fluid to the semi-circular sleeve 6.6. The cleaning fluid in the semi-circular sleeve 6.6 enters the hollow joint 6.7, which can freely rotate within the semi-circular sleeve 6.6. The cleaning fluid then enters the swing pipe 6.9, which supplies the cleaning spray nozzle 8, cleaning the rubber mold groove through the cleaning spray nozzle 8.

[0029] The eight electric telescopic rods 7.3 are activated. The eight electric telescopic rods 7.3 drive the hollow cone 6.8 to swing at different angles according to their extension and retraction. The angle of the cleaning spray nozzle 8 is precisely controlled by the eight electric telescopic rods 7.3, thereby effectively cleaning the rubber mold groove.

[0030] The glass door panel 3.2 enhances the equipment's sealing and safety, preventing water splashes during cleaning from polluting the external environment. The interconnectedness of the liquid flow and the freely rotating hollow joint 6.7 ensure that the cleaning fluid is evenly sprayed throughout the entire rubber mold tank, guaranteeing a more thorough and uniform cleaning effect. Each electric telescopic rod 7.3 is adjustable according to different extension amounts and angles, allowing the cleaning nozzles 8 to flexibly adjust their direction and precisely position the cleaning area. This enables targeted cleaning of all parts of the rubber mold tank, significantly improving cleaning efficiency and effectiveness, and preventing missed or over-cleaning.

[0031] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. An automatic cleaning device for rubber molds, characterized in that, The system includes a cleaning rack (1), a cleaning tank (2), a glass cover (3), a top sealing plate (4), a cleaning water tank (5), a water supply assembly (6), an angle adjustment assembly (7), and a cleaning spray nozzle (8). The cleaning tank (2) is fixedly installed in the middle of the cleaning rack (1), the glass cover (3) is fixedly installed on the top of the cleaning rack (1), the bottom of the top sealing plate (4) is fixedly installed on the top of the cleaning rack (1), the cleaning water tank (5) is fixedly installed on the bottom of the cleaning rack (1), the water supply assembly (6) is fixedly installed on the top sealing plate (4), the angle adjustment assembly (7) is installed on the top sealing plate (4), and the cleaning spray nozzle (8) is fixedly installed on the bottom of the water supply assembly (6).

2. The automatic cleaning equipment for rubber molds according to claim 1, characterized in that, A hinge (3.1) is fixedly installed on the outer surface of the glass cover (3), and a glass door panel (3.2) is installed on the outer surface of the glass cover (3). The hinge (3.1) is fixedly installed on the glass door panel (3.2), and a door handle (3.3) is fixedly installed on the side of the glass door panel (3.2) away from the hinge (3.1). A return pipe (9) is fixedly installed between the cleaning tank (2) and the cleaning water tank (5).

3. The automatic cleaning equipment for rubber molds according to claim 1, characterized in that, The water supply assembly (6) includes a water supply pump (6.1), a water suction pipe (6.2), and a water outlet pipe (6.3). The pump base of the water supply pump (6.1) is fixedly installed on the top of the top sealing plate (4). The top of the water suction pipe (6.2) is fixedly installed on the water supply pump (6.1). The bottom of the water suction pipe (6.2) extends into the cleaning water tank (5). The top of the water outlet pipe (6.3) is fixedly installed on the water supply pump (6.1).

4. The automatic cleaning equipment for rubber molds according to claim 3, characterized in that, A filter core column (6.4) is fixedly installed at the bottom of the water pumping pipe (6.2).

5. The automatic cleaning equipment for rubber molds according to claim 3, characterized in that, The water supply assembly (6) further includes a fixed plate (6.5), a semi-circular sleeve (6.6), and a hollow joint (6.7). The top of the fixed plate (6.5) is fixedly installed on the bottom of the top sealing plate (4). The non-open end of the semi-circular sleeve (6.6) is fixedly installed on the bottom of the fixed plate (6.5). The semi-circular sleeve (6.6) is fixedly installed on the bottom of the water outlet pipe (6.3). The hollow joint (6.7) is rotatably embedded in the semi-circular sleeve (6.6).

6. The automatic cleaning equipment for rubber molds according to claim 5, characterized in that, The water supply assembly (6) also includes a hollow cone (6.8) and a swing tube (6.9). The top of the hollow cone (6.8) is fixedly installed on the non-open end of the hollow joint (6.7). The swing tube (6.9) is located inside the hollow cone (6.8). The top of the swing tube (6.9) is fixedly installed on the non-open end of the hollow joint (6.7). The bottom of the swing tube (6.9) is fixedly installed on the water inlet end of the cleaning spray nozzle (8).

7. The automatic cleaning equipment for rubber molds according to claim 1, characterized in that, The angle adjustment assembly (7) includes a first rotating base (7.1) and a second rotating base (7.2), wherein the base of the first rotating base (7.1) is fixedly installed on the bottom of the fixed plate (6.5), and the base of the second rotating base (7.2) is fixedly installed on the outer surface of the hollow cone (6.8).

8. The automatic cleaning equipment for rubber molds according to claim 7, characterized in that, The angle adjustment assembly (7) further includes an electric telescopic rod (7.3), a first rotating head (7.4), and a second rotating head (7.5). One end of the first rotating head (7.4) is fixedly installed on one end of the electric telescopic rod (7.3), and the other end of the first rotating head (7.4) is rotatably installed on a first rotating seat (7.1). One end of the second rotating head (7.5) is rotatably installed on the other end of the electric telescopic rod (7.3), and the other end of the second rotating head (7.5) is rotatably installed on a second rotating seat (7.2).