A cleaning device for CNC precision machining
The hinge transmission system of the electric rotating seat and hydraulic telescopic frame enables automated cleaning of CNC precision machining equipment, solving the problem of manually adjusting the direction of the spray pipe and improving cleaning efficiency and ease of operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-08
- Publication Date
- 2026-03-27
AI Technical Summary
Existing cleaning devices for CNC precision machining require manual adjustment of the spray nozzle direction, which is difficult to operate and inefficient.
It adopts an electric rotating seat, a hydraulic telescopic frame and a hinge transmission system, and achieves multi-directional angle adjustment through pneumatic clamps. It is combined with a socket base, hose and nozzle for automatic cleaning.
It improves cleaning efficiency, reduces the user's workload, and enhances the cleaning effect of the equipment.
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Figure CN117840808B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of CNC precision machining technology, and in particular to a cleaning device for CNC precision machining. Background Technology
[0002] CNC machining typically refers to computer-controlled precision machining, including CNC lathes, CNC milling machines, and CNC boring and milling machines. CNC lathes are among the most widely used CNC machine tools. They are mainly used for cutting the inner and outer cylindrical surfaces, inner and outer conical surfaces with arbitrary cone angles, complex rotating inner and outer curved surfaces, and cylindrical and conical threads of shaft or disc parts. They can also perform grooving, drilling, reaming, boring, and other operations. After prolonged use, the equipment and parts need to be cleaned using a cleaning device to avoid affecting machining operations.
[0003] Existing cleaning devices, such as the one disclosed in application number CN202220358885.2, which relates to the field of CNC precision machining technology, include a base, a housing, and a storage box. The housing is bolted to the top of the base, and a lower connecting plate is welded to the top of the housing. An upper connecting plate is bolted to the top of the lower connecting plate, and a negative pressure cylinder is welded to the top of the upper connecting plate. A suction fan is installed inside the negative pressure cylinder via a connecting seat. A storage mesh is screwed to the bottom of the upper connecting plate and is located inside the housing. A storage box is bolted to one end of the housing. However, in the above technology, it is still necessary to manually control the direction of the spray pipe, which is difficult to operate and inefficient. Therefore, we propose a cleaning device for CNC precision machining to solve the above problems. Summary of the Invention
[0004] To address the aforementioned problems, this invention proposes a cleaning device for CNC precision machining. This device utilizes the output power from the electric rotary table at the top of the extension frame to drive the output end. This, in turn, causes the hinge transmissions of the electric rotary table, hydraulic telescopic frame, and electric rotary table to operate. The hinge transmissions of the first and second hinge arms, in conjunction with these hinge transmissions, enable the pneumatic clamp to operate, disassemble, and assemble the machine tool. By driving the sleeve base, hose, and nozzle on the cleaning mechanism, cleaning fluid is drawn to clean the dirt on the machine tool. Because it allows for multi-directional angle adjustment, this improves the cleaning efficiency of the equipment and reduces the user's operational burden.
[0005] To achieve the above objectives, the present invention provides the following technical solution:
[0006] A cleaning device for CNC precision machining includes a movable bearing assembly and a driving cleaning mechanism. The movable bearing assembly has collection components installed on both sides below it, and bolt-fitted assembly adjustment mechanisms are provided on the outer periphery of the movable bearing assembly. The driving cleaning mechanism is provided above both ends of the assembly adjustment mechanism.
[0007] As a further technical solution, the mobile load-bearing assembly includes a moving wheel, a shock-absorbing steel pad, a hydraulic cylinder, a pressure-reducing plate, a platform, a support, a trough-shaped load-bearing pool, a tie rod, a trough-shaped pad, an assembly plate, a hydraulic lifting frame, and a movable mounting plate. The top side of the moving wheel is provided with a bolt-assembled shock-absorbing steel pad, and the outer side of the shock-absorbing steel pad is provided with a hydraulic cylinder. The output end of the hydraulic cylinder is provided with a pressure-reducing plate. The top side of the shock-absorbing steel pad is provided with a platform, and the top side of the platform is connected to the trough-shaped load-bearing pool for mounting the tie rod via a support bolt.
[0008] As a further technical solution, a trough-shaped pad is provided on the inner bottom side of the trough-shaped bearing pool, and a bolt-connected assembly plate is provided on the upper periphery of the trough-shaped pad. A hydraulic lifting frame is provided on the top side of the assembly plate, and a movable mounting plate is provided on the top output end of the hydraulic lifting frame.
[0009] As a further technical solution, the collection component includes a leak pipe, a regulating valve block, a cylinder, a movable plug, a central connecting pipe, a carrying tank, a lifting bar, and a discharge port. The leak pipe is sleeved and connected to the side of the trough-shaped carrying tank. The output end of the leak pipe is provided with a regulating valve block, and the interior of the regulating valve block is provided with a movable plug that connects to the output end of the cylinder.
[0010] As a further technical solution, a central connecting pipe is provided on one side of the regulating valve block, and a bearing tank for installing a lifting bar is provided at one end of the central connecting pipe. A discharge port for sleeve installation is provided on the bottom side of the regulating valve block.
[0011] As a further technical solution, the assembly adjustment mechanism includes a bolt side seat, a connecting base, a lifting ring, an extension frame, an electric rotating seat, a hydraulic telescopic frame, an electric rotating table, a first hinge arm, a second hinge arm, and a pneumatic clamp. The bolt side seat is bolted to the outer perimeter of the trough-shaped bearing pool. A connecting base is provided on the outer side of the bolt side seat, and lifting rings are provided at both ends of the connecting base. An extension frame is provided on the top side of the connecting base.
[0012] As a further technical solution, an electric rotating seat is provided above the inner end of the extension frame, and a hydraulic telescopic frame is provided above the electric rotating seat. An electric rotating table is provided at one end of the hydraulic telescopic frame, and a first hinge arm is provided on the top side of the electric rotating table. A second hinge arm is provided at one end of the first hinge arm, and a pneumatic clamp is provided at one end of the second hinge arm.
[0013] As a further technical solution, the drive cleaning mechanism includes a cleaning liquid tank, a refill port, an upper chamber, a drive motor, a mixing rod, an external valve block, a pressurizing pump, a connecting base, a hose, and a nozzle. The cleaning liquid tank is located above both ends of the connecting base. A refill port is provided on one side of the cleaning liquid tank. An upper chamber is provided above the cleaning liquid tank, and a mixing rod connected to the output end of the drive motor is provided inside the upper chamber.
[0014] As a further technical solution, an external valve block is sleeved and installed at the output end of the upper compartment, and a pressurizing pump is sleeved and installed at the output end of the external valve block. A sleeve base is provided at the output end of the pressurizing pump, and a hose is provided at one end of the sleeve base, and a nozzle is provided at the output end of the hose.
[0015] Compared with the prior art, the beneficial effects of the present invention are:
[0016] The invention device mainly utilizes the output power of the electric rotary seat at the top of the extension frame to drive the output end to operate. This causes the hinge transmission of the electric rotary seat, hydraulic telescopic frame, and electric rotary table to operate. In conjunction with the hinge transmission of the first hinge arm and the second hinge arm, the pneumatic clamp can operate, disassemble, and assemble the machine tool. By driving the sleeve base, hose, and nozzle on the cleaning mechanism, cleaning fluid is drawn to clean the dirt on the machine tool. Because it can be adjusted in multiple directions, it can improve the cleaning efficiency of the equipment and reduce the user's operating burden. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of a cleaning device for CNC precision machining.
[0018] Figure 2 This is a schematic diagram of the structure viewed from below in this invention;
[0019] Figure 3 This is a schematic diagram of the structure of the collecting components in this invention;
[0020] Figure 4 This is a schematic diagram of the assembly and adjustment mechanism in this invention;
[0021] Figure 5 This is a schematic diagram of the structure of the driving cleaning mechanism in this invention;
[0022] Figure 6 This is a schematic diagram of the hose and nozzle in this invention.
[0023] In the diagram: 1. Mobile load-bearing component; 101. Moving wheel; 102. Shock-absorbing steel pad; 103. Hydraulic cylinder; 104. Pressure reducing plate; 105. Car platform; 106. Support; 107. Trough-shaped load-bearing tank; 108. Tie rod; 109. Trough-shaped pad; 1010. Assembly plate; 1011. Hydraulic lifting frame; 1012. Movable mounting plate; 2. Collection component; 201. Drain pipe; 202. Adjusting valve block; 203. Cylinder; 204. Movable plug; 205. Central connecting pipe; 206. Load-bearing tank; 207. Lifting bar; 208. Discharge port; 3. Assembly Adjustment mechanism; 301, bolt side seat; 302, connecting base; 303, lifting ring; 304, extension frame; 305, electric rotating seat; 306, hydraulic telescopic frame; 307, electric rotating table; 308, first hinge arm; 309, second hinge arm; 3010, pneumatic clamp; 4. Drive cleaning mechanism; 401, cleaning fluid tank; 402, supply port; 403, upper compartment; 404, drive motor; 405, mixing rod; 406, external valve block; 407, pressurizing pump; 408, sleeve base; 409, hose; 4010, nozzle. Detailed Implementation
[0024] In the description of this invention, it should be understood that the terms "center," "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, are only for the convenience of describing the invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the invention. Furthermore, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined with "first," "second," etc., may explicitly or implicitly include one or more of that feature. In the description of this invention, unless otherwise stated, "a plurality of" means two or more.
[0025] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art will understand the specific meaning of the above terms in this invention based on the specific circumstances.
[0026] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0027] Please see Figure 1-6 In this embodiment of the invention, a cleaning device for CNC precision machining includes a movable bearing assembly 1 and a driving cleaning mechanism 4. The movable bearing assembly 1 has a collection component 2 installed on both sides below it, and a bolt-assembled assembly adjustment mechanism 3 is provided on the outer periphery of the movable bearing assembly 1. The driving cleaning mechanism 4 is provided on the upper ends of both ends of the assembly adjustment mechanism 3.
[0028] The mobile load-bearing assembly 1 includes a moving wheel 101, a shock-absorbing steel pad 102, a hydraulic cylinder 103, a pressure-reducing plate 104, a platform 105, a support 106, a trough-shaped load-bearing pool 107, a tie rod 108, a trough-shaped pad 109, an assembly plate 1010, a hydraulic lifting frame 1011, and a movable mounting plate 1012. The top side of the moving wheel 101 is provided with a bolt-mounted shock-absorbing steel pad 102, and the outer side of the shock-absorbing steel pad 102 is provided with a hydraulic cylinder 103. The output end of the hydraulic cylinder 103 is provided with a pressure-reducing plate 104. The top side of the shock-absorbing steel pad 102 is provided with a platform 105, and the top side of the platform 105 is bolted to the trough-shaped load-bearing pool 107 for mounting the tie rod 108 via the support 106.
[0029] In an embodiment of the present invention, firstly, the user pulls the pull rod 108 installed on the trough-shaped bearing pool 107 so that the equipment moves to the use position via the moving wheels 101 set below the shock-absorbing steel pad 102. After the equipment moves to the use position, the hydraulic cylinder 103 outputs power to drive the output end to run. In this way, after the hydraulic cylinder 103 outputs power to drive the output end to extend and retract, the pressure reducing plate 104 can run to a suitable position.
[0030] The inner bottom side of the trough-shaped support pool 107 is provided with a trough-shaped pad 109, and the upper part of the trough-shaped pad 109 is provided with a bolt-connected assembly plate 1010. The top side of the assembly plate 1010 is provided with a hydraulic lifting frame 1011, and the top output end of the hydraulic lifting frame 1011 is provided with a movable mounting plate 1012 that is movably connected.
[0031] In an embodiment of the present invention, after the equipment is stably supported, the hydraulic lifting frame 1011 outputs power to drive the output end to run, so that the output end of the hydraulic lifting frame 1011 adjusts the movable mounting plate 1012 to a suitable position. After the movable mounting plate 1012 runs to a suitable position, the machine tool that needs to be cleaned is placed on the top side of the movable mounting plate 1012.
[0032] The collecting component 2 includes a drain pipe 201, a regulating valve block 202, a cylinder 203, a movable plug 204, a central connecting pipe 205, a carrying tank 206, a lifting bar 207, and a discharge port 208. The drain pipe 201 is sleeved and connected to the side of the trough-shaped carrying tank 107. The output end of the drain pipe 201 is provided with a regulating valve block 202. The inside of the regulating valve block 202 is provided with a movable plug 204 that connects to the output end of the cylinder 203.
[0033] In an embodiment of the present invention, the machine tool then allows the cleaning wastewater to flow out, which flows through the output end of the trough-shaped support tank 107 into the drain pipe 201, enters the regulating valve block 202, and then enters the support tank 206 at one end of the connecting pipe 205 for storage.
[0034] A central connecting pipe 205 is provided on one side of the regulating valve block 202, and a bearing tank 206 for installing a lifting bar 207 is provided at one end of the central connecting pipe 205. A discharge port 208 for sleeve installation is provided on the bottom side of the regulating valve block 202.
[0035] In an embodiment of the present invention, when the carrying tank 206 is full of wastewater, the cylinder 203 outputs power to drive the movable plug 204 at the output end to open the channel between the regulating valve block 202, the connecting pipe 205, and the outlet 208. After the channel is formed, the wastewater in the carrying tank 206 is discharged from the equipment to reduce the storage volume and thus achieve the cleaning effect.
[0036] The assembly adjustment mechanism 3 includes a bolt side seat 301, a connecting base 302, a lifting ring 303, an extension frame 304, an electric rotating seat 305, a hydraulic telescopic frame 306, an electric rotating table 307, a first hinge arm 308, a second hinge arm 309, and a pneumatic clamp 3010. The bolt side seat 301 is bolted to the outer periphery of the trough-shaped bearing pool 107. The connecting base 302 is provided on the outer side of the bolt side seat 301, and the lifting rings 303 are provided at both ends of the connecting base 302. The extension frame 304 is provided on the top side of the connecting base 302.
[0037] In an embodiment of the present invention, the assembly adjustment mechanism 3 is then bolted to the outer perimeter of the trough-shaped support pool 107 using the bolt side seat 301, and the user uses the lifting ring 303 to effectively lift the connecting base 302 and the outer extension frame 304 to achieve the assembly effect. In this way, the connecting base 302 drives the cleaning mechanism 4 to achieve the assembly effect.
[0038] An electric rotating seat 305 is provided above the inner end of the extension frame 304, and a hydraulic telescopic frame 306 is provided above the electric rotating seat 305. An electric rotating table 307 is provided at one end of the hydraulic telescopic frame 306, and a first hinge arm 308 is provided on the top side of the electric rotating table 307. A second hinge arm 309 is provided at one end of the first hinge arm 308, and a pneumatic clamp 3010 is provided at one end of the second hinge arm 309.
[0039] In an embodiment of the present invention, when settings are required, the electric rotary table 305 outputs power to drive the output end to operate. In this way, the electric rotary table 305 outputs power to drive the hydraulic telescopic frame 306 to a suitable position. Then, with the cooperation of the hydraulic telescopic frame 306 and the electric rotary table 307, the electric rotary table 307 is moved to a suitable position. After the hinge transmission of the first hinge arm 308, the second hinge arm 309 and the pneumatic clamp 3010, the pneumatic clamp 3010 can achieve the effect of operating and cleaning the machine tool.
[0040] The drive cleaning mechanism 4 includes a cleaning liquid tank 401, a replenishment port 402, an upper chamber 403, a drive motor 404, a mixing rod 405, an external valve block 406, a pressurizing pump 407, a connecting base 408, a hose 409, and a nozzle 4010. The cleaning liquid tank 401 is located above both ends of the connecting base 302. A replenishment port 402 is provided on one side of the cleaning liquid tank 401. An upper chamber 403 is provided above the cleaning liquid tank 401, and a mixing rod 405 connected to the output end of the drive motor 404 is provided inside the upper chamber 403.
[0041] In an embodiment of the present invention, after the part is handled by the material, the cleaning agent to be cleaned is input into the cleaning liquid tank 401 through the replenishment port 402. After the cleaning liquid enters the upper chamber 403 through the cleaning liquid tank 401, the output end of the drive motor 404 is started to output power to drive the output end of the drive motor 404 to run. Then, the output end of the drive motor 404 drives the mixing rod 405 to perform the mixing treatment of the cleaning liquid.
[0042] An external valve block 406 is sleeved and installed at the output end of the upper chamber 403, and a pressurizing pump 407 is sleeved and installed at the output end of the external valve block 406. A sleeve base 408 is provided at the output end of the pressurizing pump 407, and a hose 409 is provided at one end of the sleeve base 408. A nozzle 4010 is provided at the output end of the hose 409.
[0043] In an embodiment of the present invention, the external valve block 406 is then activated to open the channel, and then the output of the pressure pump 407 is used to drive the output of the pressure pump 407 to run. This allows the cleaning fluid to be output through the external valve block 406, the pressure pump 407, and the socket base 408 to the hose 409. The output of the hose 409 is then combined with the assembly adjustment mechanism 3 to achieve the goal of spraying the cleaning fluid onto the cleaning position on the machine tool through the nozzle 4010.
[0044] The working principle of this invention is as follows: First, the user pulls the pull rod 108 installed on the trough-shaped support pool 107, causing the equipment to move to the usage position via the moving wheels 101 set under the shock-absorbing steel pad 102. After the equipment moves to the usage position, the hydraulic cylinder 103 outputs power to drive the output end to operate. This allows the pressure reducing plate 104 to move to a suitable position after the hydraulic cylinder 103 outputs power to drive the output end to operate. After the equipment is stably supported, the hydraulic lifting frame 1011 outputs power to drive the output end to operate, causing the output end of the hydraulic lifting frame 1011 to adjust the movable mounting plate 1012 to a suitable position. After the movable mounting plate 1012 moves to the suitable position, the machine tool to be cleaned is placed on the movable mounting plate 1012. On the top side of 012, the assembly adjustment mechanism 3 is then bolted to the outer perimeter of the trough-shaped bearing pool 107 using bolt side seat 301. The user then uses the lifting ring 303 to effectively lift the connecting base 302 and the outer frame 304 to achieve the assembly effect. This allows the connecting base 302 to drive the cleaning mechanism 4 for assembly. When setting is required, the electric rotating seat 305 outputs power to drive the output end. The electric rotating seat 305 outputs power to move the hydraulic telescopic frame 306 to a suitable position. Then, the hydraulic telescopic frame 306 and the electric rotating table 307 work together to move the electric rotating table 307 to a suitable position. This is achieved through the first hinge arm 308 and the second hinge arm 307. After the hinge transmission of 09 and pneumatic clamp 3010, the pneumatic clamp 3010 can achieve the effect of cleaning the machine tool. After the part is handled by the material, the cleaning agent to be cleaned is input into the cleaning fluid tank 401 through the supply port 402. After the cleaning fluid enters the upper chamber 403 through the cleaning fluid tank 401, the output end of the drive motor 404 is started to drive the drive motor 404 to run. Then, the output end of the drive motor 404 drives the mixing rod 405 to mix the cleaning fluid. Then, the external valve block 406 is started to open the channel. Then, the output end of the pressure pump 407 is used to drive the pressure pump 407 to run. In this way, the cleaning fluid passes through the external valve block 406 and the pressure pump 407 to run. Pump 407 and socket base 408 output to hose 409. The output end of hose 409 is connected to adjustment mechanism 3 to spray the cleaning position on the machine tool through nozzle 4010. Then the machine tool allows the cleaning wastewater to flow out, flowing through the output end of trough-shaped carrying tank 107 into drain pipe 201, entering regulating valve block 202 and entering carrying tank 206 at one end of central connecting pipe 205 for storage. When carrying tank 206 is full of wastewater, cylinder 203 outputs power to drive movable plug 204 at the output end to open the channel between regulating valve block 202, central connecting pipe 205 and outlet 208. After the channel is formed, the wastewater in carrying tank 206 is discharged from the equipment to reduce the storage volume, thereby achieving the cleaning effect.
[0045] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0046] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A cleaning device for CNC precision machining, comprising a moving bearing assembly (1) and a driving cleaning mechanism (4), characterized in that: The mobile bearing assembly (1) is provided with a set of collecting members (2) installed below both sides, and a bolted assembly adjusting mechanism (3) is arranged outside the four sides of the mobile bearing assembly (1), and a driving cleaning mechanism (4) is arranged above both ends of the assembly adjusting mechanism (3); The mobile bearing assembly (1) comprises a mobile wheel (101), a shock-absorbing steel pad (102), a hydraulic cylinder (103), a pressure-reducing disc (104), a vehicle plate (105), a bracket (106), a groove-shaped bearing pool (107), a pull rod (108), a groove-shaped pad plate (109), an assembly disc (1010), a hydraulic lifting frame (1011), and a movable loading plate (1012), the top side of the mobile wheel (101) is provided with a bolted shock-absorbing steel pad (102), the outer side of the shock-absorbing steel pad (102) is provided with a hydraulic cylinder (103), the output end of the hydraulic cylinder (103) is provided with a pressure-reducing disc (104), the top side of the shock-absorbing steel pad (102) is provided with a vehicle plate (105), the top side of the vehicle plate (105) is bolted with a groove-shaped bearing pool (107) for mounting a pull rod (108) through a bracket (106), the inner bottom side of the groove-shaped bearing pool (107) is provided with a groove-shaped pad plate (109), and the top side of the groove-shaped pad plate (109) is provided with a bolted assembly disc (1010), the top side of the assembly disc (1010) is provided with a hydraulic lifting frame (1011), and the top side output end of the hydraulic lifting frame (1011) is provided with a movably connected movable loading plate (1012); The assembly adjusting mechanism (3) comprises a bolted side seat (301), a connecting base (302), a lifting ring (303), an extension frame (304), an electric rotating seat (305), a hydraulic telescopic frame (306), an electric rotating table (307), a first hinge arm (308), a second hinge arm (309), and a pneumatic clamp (3010), the bolted side seat (301) is bolted to the outer side of the four sides of the groove-shaped bearing pool (107), the outer side of the bolted side seat (301) is provided with a connecting base (302), both ends of the connecting base (302) are provided with a lifting ring (303), the top side of the connecting base (302) is provided with an extension frame (304), the inner end of the extension frame (304) is provided with an electric rotating seat (305) above, the upper side of the electric rotating seat (305) is provided with a hydraulic telescopic frame (306), one end of the hydraulic telescopic frame (306) is provided with an electric rotating table (307), the top side of the electric rotating table (307) is provided with a first hinge arm (308), one end of the first hinge arm (308) is provided with a second hinge arm (309), and one group of second hinge arms (309) is provided with a pneumatic clamp (3010) at one end. The driving cleaning mechanism (4) comprises a cleaning liquid tank (401), a replenishing port (402), an upper cabin (403), a driving motor (404), a mixing rod (405), an external valve block (406), a pressurizing pump (407), a sleeving base (408), a hose (409) and a nozzle (4010), the cleaning liquid tank (401) is arranged above both ends of the base (302), one side of the cleaning liquid tank (401) is provided with the replenishing port (402), the upper side of the cleaning liquid tank (401) is provided with the upper cabin (403), the inside of the upper cabin (403) is provided with the mixing rod (405) connected with the output end of the driving motor (404), the output end of the upper cabin (403) is sleeved with the external valve block (406), the output end of the external valve block (406) is provided with the pressurizing pump (407) sleeved and installed, the output end of the pressurizing pump (407) is provided with the sleeving base (408), one end of the sleeving base (408) is provided with the hose (409), and the output end of the hose (409) is provided with the nozzle (4010).
2. The cleaning device for CNC precision machining according to claim 1, characterized in that: The collecting member (2) comprises a leakage pipe (201), an adjusting valve block (202), an air cylinder (203), a movable plug (204), a middle connecting pipe (205), a bearing tank (206), a lifting strip (207) and a discharge port (208), the leakage pipe (201) is sleeved and connected at the side of the groove-shaped bearing pool (107), the output end of the leakage pipe (201) is provided with the adjusting valve block (202), the inside of the adjusting valve block (202) is provided with the movable plug (204) connected with the output end of the air cylinder (203).
3. The cleaning device for CNC precision machining according to claim 2, characterized in that: One side of the adjusting valve block (202) is provided with the middle connecting pipe (205), one end of the middle connecting pipe (205) is provided with the bearing tank (206) installing the lifting strip (207), the bottom side of the adjusting valve block (202) is provided with the discharge port (208) sleeved and installed.
Citation Information
Patent Citations
Cleaning device for CNC precision machining
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A cleaning device for the housing of a CNC machine tool
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