Cleaning device for machining table

By designing a cleaning device for machining tables, and utilizing the combined structure of voltage regulators A and B, automated cleaning is achieved, solving the problems of low efficiency and missed cleaning in existing cleaning methods, and improving cleaning speed and production efficiency.

CN224254850UActive Publication Date: 2026-05-19HUAERFU AUTOMATION EQUIPMENT (SUZHOU) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUAERFU AUTOMATION EQUIPMENT (SUZHOU) CO LTD
Filing Date
2025-04-16
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

The existing cleaning methods for machining tables are inefficient, prone to missing areas, labor-intensive, and affect production continuity.

Method used

A cleaning device for a machining table was designed. It adopts a modular structure, including a support base, guide rod, support frame, sliding frame, pressure stabilizing pipe, nozzle, booster pump, servo motor, etc., to achieve automated cleaning. Through the cooperation of pressure stabilizing pipes A and B, two cleaning processes are performed to ensure comprehensive coverage.

Benefits of technology

It improved cleaning speed and efficiency, reduced the area missed during cleaning, reduced labor intensity, and increased production efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224254850U_ABST
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Abstract

The utility model relates to the technical field of machining matched auxiliary devices, in particular to a machining table cleaning device which comprises a supporting seat, a guide rod, a supporting frame, a sliding frame, a pressure stabilizing pipe A, a pressure stabilizing pipe B, a spray head, a booster pump, a liquid inlet pipe, a pressure hose, a lead screw, a servo motor and a communicating pipe. The guide rods are symmetrically and fixedly connected to the upper end of the supporting base, the supporting frame is in an F shape, the upper ends of the supporting frame are fixedly connected with the guide rods respectively, the middle of the sliding frame is slidably connected with the guide rod on one side, and the two ends of the pressure stabilizing pipe A are fixedly connected with the upper ends of the sliding frames on the two sides respectively. And the two ends of the pressure stabilizing pipe B are fixedly connected with the positions, close to the upper ends, of the sliding frames on the two sides correspondingly. The cleaning device has the advantages that cleaning is thorough, missing cleaning parts are not likely to occur, the cleaning speed is higher compared with manual cleaning, and the production efficiency can be improved.
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Description

Technical Field

[0001] This application relates to the technical field of auxiliary devices for machining, and in particular to a cleaning device for machining tables. Background Technology

[0002] During machining, machine tools generate a significant amount of metal shavings, sludge, and other contaminants. Cleaning is necessary after each machining operation. Current cleaning methods often involve manual cleaning, and while handheld air guns or water guns are used to improve efficiency, this remains inefficient for larger worktables with uneven surfaces. Personnel need to move around the worktable and adjust the angle of the water gun, making it prone to missing areas. Furthermore, this method is physically demanding and disrupts continuous production. Therefore, improvements to existing cleaning methods and structures are needed to address these issues. Summary of the Invention

[0003] To address the shortcomings of existing technologies, the purpose of this application is to provide a machining table cleaning device that provides thorough cleaning, minimizes missed areas, and offers fast cleaning speed, thereby improving production efficiency.

[0004] The above-mentioned objective of this application is achieved through the following technical solution:

[0005] A cleaning device for a machining table includes: a support base, guide rods, a support frame, a sliding frame, pressure stabilizing pipe A, pressure stabilizing pipe B, a nozzle, a booster pump, an inlet pipe, a pressure hose, a lead screw, a servo motor, and a connecting pipe. The support base is U-shaped. The guide rods are symmetrically fixedly connected to the upper end of the support base. The support frame is F-shaped. The upper ends of the support frame are fixedly connected to the guide rods. The middle part of the sliding frame is slidably connected to the guide rods on one side. The two ends of pressure stabilizing pipe A are fixedly connected to the upper ends of the sliding frames on both sides. The two ends of pressure stabilizing pipe B are fixedly connected to the upper ends of the sliding frames on both sides. Two connecting pipes symmetrically connect pressure stabilizing pipes A and B. The nozzles are respectively connected to the surfaces of the pressure stabilizing pipes A and B near their lower ends. The booster pump is fixedly connected to the surface of the support base away from the sliding frame. The input end of the booster pump is connected to the inlet pipe, and the output end of the booster pump is connected to one end of the pressure hose. The other end of the pressure hose is connected to the middle position of the upper end of the pressure stabilizing pipe A. One end of the lead screw is rotatably connected to the middle of the F-shaped support frame, and the other end of the lead screw is rotatably connected to the support base. The lower end of the sliding frame is threadedly connected to the lead screw on the corresponding side. The servo motors are respectively fixedly connected to the surface of the support base away from the sliding frame, and the output shafts of the servo motors are respectively fixedly connected to one end of the lead screw.

[0006] Optionally, a pad is also included, which is fixedly connected to the lower end of the support base and the support frame, and the pad is provided with a connection hole.

[0007] Optionally, it also includes connecting blocks, which are respectively fixedly connected to the sliding frame, and the pressure hoses passing through the sliding frame are respectively fixedly connected to the corresponding connecting blocks.

[0008] Optionally, it also includes scale lines, which are equidistantly spaced on the outer surface of the guide rod.

[0009] Optionally, a guide sleeve is also included, which is fixedly connected to the lower end of the sliding frame at the connection with the lead screw, and the interior of the guide sleeve is threadedly connected to the lead screw.

[0010] Optionally, it also includes a support pad, which is disposed at the lower end of the support frame and is connected to the pad plate at the lower end of the support frame.

[0011] Optionally, it also includes a control module, which is fixedly connected to the surface of the support base away from the sliding frame. The input end of the control module is electrically connected to the output end of an external power supply, and the output end of the control module is electrically connected to the input ends of the booster pump and the servo motor, respectively.

[0012] This machining table cleaning device adopts a modular structure, which can be installed and fixed on the existing machining platform. It will not affect the existing production work when it is not cleaning, and it can realize a continuous automatic cleaning process when cleaning. Compared with manual cleaning, it greatly reduces the area missed in cleaning and cleans more thoroughly.

[0013] This machine tool cleaning device has pressure stabilizing pipes A and B located at different heights and horizontally. It can clean once when pressure stabilizing pipe A is moving and then perform a second cleaning with the nozzle on pressure stabilizing pipe B. After two consecutive cleanings, the attachments on the machine tool can be cleaned more thoroughly.

[0014] Compared with manual cleaning, this machine tool cleaning device greatly improves work efficiency. Moreover, the structure is easy to install, can be used on a variety of processing platforms, has a wide range of applications, and has good application prospects. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the overall structure provided in the embodiments of this application;

[0016] Figure 2 This is a side view diagram provided in an embodiment of this application;

[0017] Figure 3 This is a schematic diagram of the bottom structure provided in an embodiment of this application.

[0018] Reference numerals in the attached diagram: 1. Support base; 2. Guide rod; 3. Support frame; 4. Sliding frame; 5. Pressure stabilizing pipe A; 6. Pressure stabilizing pipe B; 7. Nozzle; 8. Booster pump; 9. Inlet pipe; 10. Pressure hose; 11. Lead screw; 12. Servo motor; 13. Pad; 14. Connecting block; 15. Scale line; 16. Guide sleeve; 17. Support pad; 18. Connecting pipe; 19. Control module. Detailed Implementation

[0019] The present application will be further described in detail below with reference to the accompanying drawings.

[0020] To better understand the technical solutions presented in the embodiments of this application, the existing work of cleaning machining tables will be introduced first.

[0021] In existing machining table cleaning processes, the initial cleaning of debris is done manually, followed by blowing with brooms and air guns to remove the debris from the processing area. However, for some adhering sludge, debris, and other contaminants, water washing is still required. However, in the existing water washing process, for larger machining tables, manual cleaning is prone to missed areas, and the labor intensity is high, the cleaning speed is slow, and it affects subsequent normal production. Therefore, it is necessary to improve the existing cleaning methods and equipment, and the design scheme proposed in this application is proposed.

[0022] Please see Figures 1 to 3This application discloses a cleaning device for a machining table, comprising: a support base 1, a guide rod 2, a support frame 3, a sliding frame 4, a pressure stabilizing pipe A5, a pressure stabilizing pipe B6, a nozzle 7, a booster pump 8, an inlet pipe 9, a pressure hose 10, a lead screw 11, a servo motor 12, and a connecting pipe 18. The support base 1 is U-shaped. The guide rod 2 is symmetrically fixedly connected to the upper end of the support base 1. The support frame 3 is F-shaped. The upper ends of the support frame 3 are fixedly connected to the guide rod 2. The middle part of the sliding frame 4 is slidably connected to one side of the guide rod 2. The two ends of the pressure stabilizing pipe A5 are fixedly connected to the upper ends of the two sliding frames 4. The two ends of the pressure stabilizing pipe B6 are fixedly connected to the upper ends of the two sliding frames 4. Two pipes are symmetrically connected through the pressure stabilizing pipes A5 and B6. A connecting pipe 18 and a nozzle 7 are respectively connected to the surface of the pressure stabilizing pipe A5 and the pressure stabilizing pipe B6 near the lower end. A booster pump 8 is fixedly connected to the surface of the support base 1 away from the sliding frame 4. The input end of the booster pump 8 is connected to the inlet pipe 9, and the output end of the booster pump 8 is connected to one end of the pressure hose 10. The other end of the pressure hose 10 is connected to the middle position of the upper end of the pressure stabilizing pipe A5. One end of the lead screw 11 is rotatably connected to the middle of the F-shaped support frame 3, and the other end of the lead screw 11 is rotatably connected to the support base 1. The lower end of the sliding frame 4 is threadedly connected to the lead screw 11 on the corresponding side. Servo motors 12 are fixedly connected to the surface of the support base 1 away from the sliding frame 4, and the output shafts of the servo motors 12 are fixedly connected to one end of each lead screw 11.

[0023] Specifically, the support base 1 and support frame 3 are installed at the four corners of the processing table to provide stable support and connection positions. The support base 1, as the main connecting component, is preferentially installed at one end of the processing table. The guide rod 2 forms a guide support structure with the support base 1 and support frame 3, thereby enabling the smooth movement of the sliding frame 4. The pressure stabilizing pipes A5 and B6 are connected to the upper sides of the sliding frame 4 at both ends, allowing them to move simultaneously with the sliding frame 4. During installation, the pressure stabilizing pipe A5 is closer to the support base 1 and slightly higher, which allows the nozzle 7 to perform a double cleaning process during the moving process: cleaning first when the pressure stabilizing pipe A5 passes, and a second cleaning when the pressure stabilizing pipe B6 passes. During installation, the nozzle 7 is tilted towards the support base 1, so that the water jet can completely clean oil sludge and other debris to the edge of the processing table. The booster pump 8 can pump water from the inlet pipe 9. The source or cleaning agent is pressurized and introduced into the pressure stabilizing pipe A5 through the pressure hose 10. The connecting pipe 18 can simultaneously introduce pressurized liquid into the pressure stabilizing pipe B6, achieving simultaneous pressurization of both. During use, the servo motor 12 drives the lead screw 11 to rotate. During installation, the two servo motors 12 are adjusted using the same driver to keep the rotation angle synchronized, so that the two lead screws 11 rotate at the same angle. The double-sided drive roller helps to maintain good stability and good firmness during the flushing of pressurized liquid. The cleaning height at the pressure stabilizing pipe B6 is lower and closer to the processing table, resulting in greater flushing force. It can thoroughly clean the missed areas during the first cleaning of the pressure stabilizing pipe A5. This structure can achieve complete coverage and automatic movement and cleaning, achieving a faster cleaning speed. Compared with manual cleaning, it greatly improves work efficiency, and the cleanliness after rinsing is more uniform, which helps to speed up production.

[0024] Please see Figure 1 As another specific embodiment provided in the application, it also includes a pad 13, which is fixedly connected to the lower ends of the support base 1 and the support frame 3 respectively, and the pad 13 is provided with a connection hole.

[0025] Specifically, the pad 13 connects the lower ends of the support base 1 and the support frame 3, making them more stably connected to the processing table.

[0026] Please see Figure 1 As another specific embodiment provided in the application, it also includes a connecting block 14, which is fixedly connected to the sliding frame 4, and the pressure hose 10 passing through the sliding frame 4 is fixedly connected to the corresponding connecting block 14.

[0027] Specifically, the connection block 14 can fix the direction of the pressure hose 10, so that its end can move stably with the sliding frame 4, and prevent the pipe from getting tangled or squeezed.

[0028] Please see Figure 1 As another specific embodiment provided in the application, it also includes scale lines 15, which are equidistantly opened on the outer surface of the guide rod 2.

[0029] Specifically, the setting of scale line 15 makes it easier to manually adjust the cleaning position, improving the convenience during use.

[0030] Please see Figure 2 As another specific embodiment provided in the application, it also includes a guide sleeve 16, which is fixedly connected to the lower end of the sliding frame 4 at the connection with the lead screw 11, and the inside of the guide sleeve 16 is threadedly connected to the lead screw 11.

[0031] Specifically, the guide sleeve 16 reinforces the position where the lead screw 11 passes through the sliding frame 4, making its adjustment process more wear-resistant and stable, and helping to extend its service life. It should be noted that the nozzle 7 is tilted downwards, which can also wash the surface of the lead screw 11 during use, causing some splashed debris to fall off and avoid affecting the movement.

[0032] Please see Figure 3 As another specific embodiment provided in the application, it also includes a support pad 17, which is disposed at the lower end of the support frame 3 and is connected to the pad 13 at the lower end of the support frame 3.

[0033] Specifically, the support pad 17 can raise the lower end of the support frame 3 to cope with uneven installation spaces on some surfaces. The support pad 17 can also be set at the lower end of the support base 1 to facilitate height adjustment.

[0034] Please see Figure 1 As another specific embodiment provided in the application, it also includes a control module 19, which is fixedly connected to the surface of the support base 1 away from the sliding frame 4. The input terminal of the control module 19 is electrically connected to the output terminal of an external power supply, and the output terminal of the control module 19 is electrically connected to the input terminals of the booster pump 8 and the servo motor 12, respectively.

[0035] Specifically, the core component of the control module 19 is a programmable microcontroller, which can realize the automatic cleaning process and adjust the water pressure and travel speed through settings. The two servo motors 12 are driven by the same driver to achieve synchronous movement, avoid jamming, and provide greater driving force.

[0036] The embodiments described in this specific implementation are preferred embodiments of this application and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A cleaning device for a machining table, characterized in that, include: The support base (1), guide rod (2), support frame (3), sliding frame (4), pressure stabilizing pipe A (5), pressure stabilizing pipe B (6), nozzle (7), booster pump (8), inlet pipe (9), pressure hose (10), lead screw (11), servo motor (12), and connecting pipe (18) are arranged in an inverted U-shape. The guide rod (2) is symmetrically fixedly connected to the upper end of the support base (1). The support frame (3) is F-shaped. The upper end of the support frame (3) is fixedly connected to the guide rod (2). The middle part of the sliding frame (4) is slidably connected to the guide rod (2) on one side. The two ends of the pressure stabilizing pipe A (5) are fixedly connected to the upper ends of the sliding frames (4) on both sides. The two ends of the pressure stabilizing pipe B (6) are fixedly connected to the upper ends of the sliding frames (4) on both sides. Two connecting pipes (18) are symmetrically connected between the pressure stabilizing pipe A (5) and the pressure stabilizing pipe B (6). The head (7) is connected to the surface of the pressure stabilizing pipe A (5) and the pressure stabilizing pipe B (6) near the lower end respectively. The booster pump (8) is fixedly connected to the surface of the support base (1) away from the sliding frame (4). The input end of the booster pump (8) is connected to the liquid inlet pipe (9). The output end of the booster pump (8) is connected to one end of the pressure hose (10). The other end of the pressure hose (10) is connected to the middle position of the upper end of the pressure stabilizing pipe A (5). One end of the lead screw (11) is rotatably connected to the middle of the F-shaped support frame (3). The other end of the lead screw (11) is rotatably connected to the support base (1). The lower end of the sliding frame (4) is threadedly connected to the lead screw (11) on the corresponding side respectively. The servo motor (12) is fixedly connected to the surface of the support base (1) away from the sliding frame (4). The output shaft of the servo motor (12) is fixedly connected to one end of the lead screw (11) respectively.

2. The machining table cleaning device according to claim 1, characterized in that: It also includes a pad (13), which is fixedly connected to the lower end of the support base (1) and the support frame (3), and the pad (13) has a connection hole.

3. The machining table cleaning device according to claim 1, characterized in that: It also includes connecting blocks (14), which are fixedly connected to the sliding frame (4), and the pressure hoses (10) passing through the sliding frame (4) are fixedly connected to the corresponding connecting blocks (14).

4. The machining table cleaning device according to claim 1, characterized in that: It also includes scale lines (15), which are equidistantly arranged on the outer surface of the guide rod (2).

5. The machining table cleaning device according to claim 1, characterized in that: It also includes a guide sleeve (16), which is fixedly connected to the lower end of the sliding frame (4) at the connection with the lead screw (11), and the inside of the guide sleeve (16) is threadedly connected to the lead screw (11).

6. A cleaning device for a machining table according to claim 2, characterized in that: It also includes a support pad (17), which is located at the lower end of the support frame (3) and is connected to the pad (13) at the lower end of the support frame (3).

7. A cleaning device for a machining table according to claim 1, characterized in that: It also includes a control module (19), which is fixedly connected to the surface of the support base (1) away from the sliding frame (4). The input end of the control module (19) is electrically connected to the output end of an external power supply, and the output end of the control module (19) is electrically connected to the input ends of the booster pump (8) and the servo motor (12).