Alignment machine for milling cutter machining
By installing unblocking and cleaning components on the alignment machine, the problems of filter clogging and waste residue are solved, achieving filtration stability and effective waste removal, thus improving the practicality of the device.
Patent Information
- Application Number
- CN202520604620.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-05-23
- Filing Date
- 2025-04-02
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-04-02
AI Technical Summary
When using existing alignment machines, waste easily adheres to the filter screen, causing blockage and poor filtration. Furthermore, waste residue remains on the inner wall of the receiving box, affecting its practicality.
The design incorporates unblocking and cleaning components, including a drive channel, drive block, brush, cylinder, cleaning plate, and motor. The cylinder drives the brush to clean the filter screen, while the motor moves the cleaning plate to prevent the filter screen from clogging and remove waste residue.
Effectively clearing the filter screen prevents clogging, ensures filtration stability, and promptly removes waste materials into the waste bin, thus improving the practicality of the device.
Smart Images

Figure CN223917421U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cutting tool processing equipment technology, specifically a positioning machine for milling cutter processing. Background Technology
[0002] A milling cutter is a rotating cutting tool with one or more cutting teeth used for milling. When machining a milling cutter, a metal bar needs to be positioned and fixed by a positioning machine first. Then, it is ground to the appropriate size by a grinding wheel. Finally, the cutting edge of the bar is slotted and the fish tail is cut by the grinding wheel to complete the milling cutter machining.
[0003] Existing patent CN217619979U discloses a high-precision milling cutter alignment machine, belonging to the field of tool processing technology. It includes an alignment machine body and a worktable mounted on the alignment machine body. A drive box is fixedly installed on the top of the worktable, and a lifting plate is slidably mounted on the top of the drive box. The drive box is equipped with a floating component that drives the lifting plate to move up and down. A receiving box with an open top is hinged to the top of the lifting plate. A flexible hose is connected to one end of the receiving box. An inclined filter screen is fixed between the side wall and the bottom inner wall of the receiving box. A slag discharge port is opened at the other end of the receiving box, and an electric telescopic rod is fixed to the other end of the slag discharge port. This application achieves the separation of cooling water and debris, and cleans and collects the processed debris by shaking, achieving thorough cleaning and collection of debris with good cleaning effect and easy promotion.
[0004] Based on the search of the aforementioned patents and the findings of existing alignment machines, it was discovered that while the aforementioned alignment machines can collect waste generated during processing, when the receiving box turns to the left, the waste easily adheres to the filter screen, causing the filter screen to become clogged and affecting the filtration effect. When the receiving box turns to the right, the receiving box shakes, resulting in poor material discharge and waste easily adheres to the inner wall of the receiving box, leading to waste residue and thus insufficient practicality. Utility Model Content
[0005] The purpose of this utility model is to provide a milling cutter alignment machine to solve the problems mentioned in the background art. When the existing alignment machine can collect the waste generated during processing, the waste easily sticks to the filter screen when the receiving box turns to the left, and the filter screen is easily clogged, affecting the filtration effect. When the receiving box turns to the right, the receiving box shakes and the discharge effect is poor, and the waste easily sticks to the inner wall of the receiving box, resulting in waste residue, thus leading to insufficient practicality.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a milling cutter alignment machine, comprising a machine body, a receiving box, and a filter screen connected to the inner wall of the receiving box, wherein the receiving box is provided with a dredging component for preventing the filter screen from clogging, and a cleaning component for preventing waste residue from remaining in the receiving box;
[0007] The unblocking component includes drive slots respectively opened on both sides of the receiving box, drive blocks connected to the drive slots, a first cylinder connected to one side of the drive blocks, brushes connected to the two drive blocks, and a support frame connected to one end of the first cylinder. The support frame is fixedly connected to the receiving box, and the drive blocks are slidably connected to the drive slots.
[0008] Preferably, the cleaning component includes a movable plate disposed above the receiving box, a second cylinder connected to the top of the movable plate, a cleaning plate connected to the output end of the second cylinder, and a power component for moving the cleaning plate, wherein the bottom of the cleaning plate is V-shaped.
[0009] Preferably, the power component includes a first support plate fixedly connected to both sides of the receiving box, a lead screw connected to the first support plate, a first motor connected to one end of the lead screw, and an auxiliary component for improving the stability of the cleaning plate movement. The lead screw is screwed to the moving plate and rotatably connected to the first support plate.
[0010] Preferably, a connecting frame is fixedly connected to the top of the machine body, a rotating shaft is rotatably connected inside the connecting frame, a vertical plate is fixedly connected to the outside of the rotating shaft, a second motor is fixedly connected to one end of the rotating shaft, and the vertical plate is fixedly connected to the receiving box.
[0011] Preferably, the auxiliary component includes a second support plate fixedly connected to both sides of the receiving box, a slide rod connected to the second support plate, and a sliding opening opened on the movable plate. The slide rod and the sliding opening are slidably connected, and the two second support plates are located at the end of the receiving box away from the first support plate.
[0012] Preferably, a drain pipe is fixedly connected to one side of the receiving box, a discharge port is opened on the other side of the receiving box, a horizontal plate is fixedly connected to the other side of the receiving box, an electric telescopic rod is fixedly connected to the top of the horizontal plate, and a baffle is fixedly connected to the top of the electric telescopic rod.
[0013] Preferably, a waste bin is fixedly connected to one side of the machine body, and the waste bin is located below the end of the receiving box away from the drain pipe.
[0014] Compared with the prior art, the beneficial effects of this utility model are:
[0015] 1. By setting up the body, receiving box, filter screen and unblocking components, when the receiving box rotates to the left, the filter screen can filter impurities and facilitate the discharge of cooling water. When the filter screen is clogged, the first cylinder can push the drive block to move in the drive groove. The movement of the drive block can drive the brush to move. The movement of the brush can clean and unblock the surface of the filter screen. The brush can move back and forth repeatedly, which can effectively unblock the filter screen, ensure the stability of the filter screen filtration, and greatly improve the practicality of the device.
[0016] 2. By incorporating a cleaning component, the second cylinder can drive the cleaning plate to move vertically, causing it to contact the bottom of the receiving box. The first motor can drive the lead screw to rotate, thereby causing the moving plate to move laterally, which in turn causes the cleaning plate to move laterally. This allows the waste material to be scraped into the waste bin when the receiving box turns to the right, preventing waste material from remaining in the receiving box and further improving its practicality. Attached Figure Description
[0017] Figure 1 A three-dimensional structural schematic diagram provided for this utility model;
[0018] Figure 2 Front view provided for this utility model;
[0019] Figure 3 Provided by this utility model Figure 2 A three-dimensional cross-sectional view at point AA;
[0020] Figure 4 Provided by this utility model Figure 3 Enlarged view of point D in the middle;
[0021] Figure 5 Provided by this utility model Figure 2 3D cross-sectional view at point BB;
[0022] Figure 6 The left view provided for this utility model;
[0023] Figure 7 Provided by this utility model Figure 6 A three-dimensional cross-sectional view at point CC.
[0024] In the diagram: 1. Machine body; 11. Receiver box; 12. Filter screen; 21. Drive slot; 22. Drive block; 23. First cylinder; 24. Brush; 25. Support frame; 31. Moving plate; 32. Second cylinder; 33. Cleaning plate; 41. First support plate; 42. Lead screw; 43. First motor; 51. Connecting frame; 52. Rotating shaft; 53. Vertical plate; 54. Second motor; 61. Second support plate; 62. Slide rod; 63. Sliding port; 71. Drain pipe; 72. Discharge port; 73. Horizontal plate; 74. Electric telescopic rod; 75. Baffle; 81. Waste bin. Detailed Implementation
[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0026] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 6 as well as Figure 7This utility model provides a technical solution: a milling cutter alignment machine, including a body 1, a receiving box 11, and a filter screen 12 connected to the inner wall of the receiving box 11. The receiving box 11 is provided with a unclogging component to prevent the filter screen 12 from clogging, and a cleaning component to prevent waste residue. The unclogging component includes drive grooves 21 respectively opened on both sides of the receiving box 11, drive blocks 22 connected to the drive grooves 21, a first cylinder 23 connected to one side of the drive block 22, brushes 24 connected to the two drive blocks 22, and a support frame 25 connected to one end of the first cylinder 23. The support frame 25 is fixedly connected to the receiving box 11, and the drive block 22 is slidably connected to the drive groove 21. The receiving box 11 can receive the cooling water and waste generated during processing. The waste can be filtered through the filter screen 12, facilitating the discharge of cooling water. The operation of the first cylinder 23 can push the drive block 22 to slide in the drive groove 21, thereby driving the brush 24 to move. The movement of the brush 24 can clean the filter screen 12, re-unclogging the clogged filter screen 12, facilitating the filtration of waste. The brush 24 can move back and forth, which can improve the unclogging performance. A connecting frame 51 is fixedly connected to the top of the machine body 1. A rotating shaft 52 is rotatably connected inside the receiving box 11. A vertical plate 53 is fixedly connected to the outside of the rotating shaft 52. A second motor 54 is fixedly connected to one end of the rotating shaft 52. The vertical plate 53 is fixedly connected to the receiving box 11. The connecting frame 51 is U-shaped. When the second motor 54 is started, it can drive the rotating shaft 52 to rotate. The rotating shaft 52 can drive the vertical plate 53 to rotate, and the vertical plate 53 can make the receiving box 11 rotate. This allows the receiving box 11 to rotate left and right, facilitating the drainage of cooling water and waste. A drain pipe 71 is fixedly connected to one side of the receiving box 11, and a discharge port 72 is opened on the other side of the receiving box 11. A horizontal plate 73 is fixedly connected to the receiving box 11, and an electric telescopic rod 74 is fixedly connected to the top of the horizontal plate 73. A baffle 75 is fixedly connected to the top of the electric telescopic rod 74. When the receiving box 11 turns to the left, the cooling water can be discharged through the drain pipe 71. When the receiving box 11 turns to the right, the electric telescopic rod 74 can drive the baffle 75 to move upward, exposing the discharge port 72, which facilitates the discharge of waste. A waste bin 81 is fixedly connected to one side of the machine body 1. The waste bin 81 is located below the end of the receiving box 11 away from the drain pipe 71. The waste discharged from the receiving box 11 can fall into the waste bin 81 and be collected through the waste bin 81.
[0027] Please see Figure 1 , Figure 2 , Figure 5 , Figure 6 as well as Figure 7The cleaning component includes a movable plate 31 positioned above the receiving box 11, a second cylinder 32 connected to the top of the movable plate 31, a cleaning plate 33 connected to the output end of the second cylinder 32, and a power component for moving the cleaning plate 33. The bottom of the cleaning plate 33 is V-shaped. Activation of the second cylinder 32 pushes the cleaning plate 33 up and down. When the cleaning plate 33 moves upward, it facilitates the drainage of cooling water from the receiving box 11. When the cleaning plate 33 moves downward, it facilitates the cleaning of impurities from the receiving box 11, preventing impurities from remaining inside. The power component includes a first support plate 41 fixedly connected to both sides of the receiving box 11, a lead screw 42 connected to the first support plate 41, a first motor 43 connected to one end of the lead screw 42, and auxiliary components for improving the stability of the cleaning plate 33's movement. The lead screw 42 and the movable plate 31... 1. A screw thread 42 is rotatably connected to the first support plate 41. When the first motor 43 is started, the screw thread 42 can rotate. The rotation of the screw thread 42 can cause the moving plate 31 to move laterally, which in turn can cause the cleaning plate 33 to move laterally. The lateral movement of the cleaning plate 33 can facilitate the cleaning of the receiving box 11. The auxiliary components include a second support plate 61 fixedly connected to both sides of the receiving box 11, a slide rod 62 connected to the second support plate 61, and a sliding opening 63 opened on the moving plate 31. The slide rod 62 is slidably connected to the sliding opening 63. The two second support plates 61 are located at the end of the receiving box 11 away from the first support plate 41. When the moving plate 31 moves, the slide rod 62 can slide in the sliding opening 63, which can prevent the moving plate 31 from rotating during movement and ensure the lateral movement stability of the moving plate 31 and the cleaning plate 33.
[0028] Working principle: During operation, waste material and cooling water generated from milling cutters fall into the receiving box 11 for collection. The second motor 54 is started, driving the rotating shaft 52 to rotate counterclockwise. The rotating shaft 52 drives the vertical plate 53 to rotate, which in turn drives the receiving box 11 to rotate to the left, allowing the cooling water to drain through the drain pipe 71. The filter screen 12 filters the waste material. The first cylinder 23 is started, pushing the drive block 22 to move within the drive groove 21. The movement of the drive block 22 moves the brush 24, which cleans and unblocks the surface of the filter screen 12, ensuring its filtration stability. After all the cooling water is drained, the second motor 54 is started in reverse, causing... The receiving box 11 rotates to the right, and then the electric telescopic rod 74 is activated to push the baffle 75 upward, exposing the discharge port 72. Then the second cylinder 32 is activated, which pushes the cleaning plate 33 downward, so that the cleaning plate 33 contacts the bottom of the receiving box 11. Then the first motor 43 is activated, which drives the lead screw 42 to rotate. The lead screw 42 drives the moving plate 31 to move laterally, and the moving plate 31 drives the cleaning plate 33 to move laterally, thereby pushing the waste material to move, so that the waste material is discharged into the waste bin 81 through the discharge port 72 for collection. The above is the working process of the entire device. All contents not described in detail in this specification belong to the prior art known to those skilled in the art.
[0029] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A kind of aligner for milling cutter processing, including machine body (1), receiving box (11) and filter screen (12) connected with the inner wall of receiving box (11), it is characterized by: The receiving box (11) is provided with a dredging component for preventing the filter screen (12) from being blocked, and is provided with a cleaning component for preventing waste residues; The dredging component comprises driving grooves (21) respectively formed on the two sides of the receiving box (11), driving blocks (22) connected with the driving grooves (21), first air cylinders (23) connected with one side of the driving blocks (22), a brush (24) connected with the two driving blocks (22), and a support frame (25) connected with one end of the first air cylinder (23), wherein the support frame (25) is fixedly connected with the receiving box (11), and the driving blocks (22) are slidingly connected with the driving grooves (21).
2. The alignment machine for milling cutter processing according to claim 1, characterized in that: The cleaning component comprises a moving plate (31) arranged above the receiving box (11), a second air cylinder (32) connected with the top of the moving plate (31), a cleaning plate (33) connected with the output end of the second air cylinder (32), and a power component for moving the cleaning plate (33), wherein the bottom of the cleaning plate (33) is V-shaped.
3. The alignment machine for milling cutter processing according to claim 2, characterized in that: The power component comprises first support plates (41) respectively fixedly connected with the two sides of the receiving box (11), a lead screw (42) connected with the first support plates (41), a first motor (43) connected with one end of the lead screw (42), and an auxiliary component for improving the moving stability of the cleaning plate (33), wherein the lead screw (42) is screwed with the moving plate (31), and the lead screw (42) is rotationally connected with the first support plates (41).
4. The alignment machine for milling tools according to claim 1, characterized in that: The top of the machine body (1) is fixedly connected with a connecting frame (51), the connecting frame (51) is rotationally connected with a rotating shaft (52), the outer side of the rotating shaft (52) is fixedly connected with a vertical plate (53), one end of the rotating shaft (52) is fixedly connected with a second motor (54), and the vertical plate (53) is fixedly connected with the receiving box (11).
5. The alignment machine for milling cutter processing according to claim 3, characterized in that: The auxiliary component comprises second support plates (61) respectively fixedly connected with the two sides of the receiving box (11), a sliding rod (62) connected with the second support plates (61), and sliding openings (63) formed on the moving plate (31), wherein the sliding rod (62) is slidingly connected with the sliding openings (63), and the two second support plates (61) are located at the end of the receiving box (11) away from the first support plates (41).
6. The alignment machine for milling tools according to claim 1, characterized in that: One side of the receiving box (11) is fixedly connected with a drain pipe (71), the other side of the receiving box (11) is provided with a discharge opening (72), the other side of the receiving box (11) is fixedly connected with a horizontal plate (73), the top of the horizontal plate (73) is fixedly connected with an electric telescopic rod (74), and the top of the electric telescopic rod (74) is fixedly connected with a baffle (75).
7. The alignment machine for milling tools according to claim 1, characterized in that: One side of the machine body (1) is fixedly connected with a waste box (81), and the waste box (81) is located below the end of the receiving box (11) away from the drain pipe (71).