Milling machine with scrap iron cleaning function
By designing a chip collection device and a negative pressure magnetic suction device on the milling machine, the problem of low chip cleaning efficiency on the milling machine is solved, and all-round efficient collection of chips and simple operation are achieved.
Patent Information
- Application Number
- CN202423169959.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2034-12-23
AI Technical Summary
Existing milling machines are inefficient and inconvenient to clean up metal chips, so there is a need for a simple and efficient metal chip cleaning function.
A milling machine with a scrap collection device and a negative pressure magnetic suction device was designed, including a movable guide rail, a connecting cover, a negative pressure magnetic suction device, an electromagnetic chuck, etc. The machine uses a fan to generate suction and electromagnetic adsorption, and manual adjustment to achieve scrap collection without dead angles.
It improves the efficiency and ease of operation of scrap collection, and enables comprehensive collection of scrap near the processing platform.
Smart Images

Figure CN223544172U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a milling machine, and more particularly to a milling machine with a chip removal function. Background Technology
[0002] Milling machines are machine tools that use milling cutters to process various surfaces of workpieces. However, when cleaning iron filings, operators often have to use small brushes to clean them, which is inefficient and inconvenient. Therefore, there is a need for a new type of milling machine that has an iron filings cleaning function and is simple, convenient and efficient to operate. Utility Model Content
[0003] The purpose of this invention is to provide a milling machine with a chip removal function to solve the above-mentioned technical problems.
[0004] To achieve the above objectives, the present invention adopts the following technical solution:
[0005] A milling machine with a chip cleaning function includes a milling machine body, an operation panel, a cutting fluid collection tank, a machining platform, guide grooves, a chip collection device, and a high-pressure dust gun. The operation panel, fixed with screws and connected via a cable, is installed on the top right side of the front end of the milling machine body. A rectangular cutting fluid collection tank is formed at the front top of the milling machine body. A machining platform, fixed with bolts, is installed inside the cutting fluid collection tank. Guide grooves are symmetrically distributed on the left and right sides of the cutting fluid collection tank. A chip collection device, connected by a plug-in connection, is installed inside the guide grooves. An embedded high-pressure dust gun is installed on the right side of the rear end of the cutting fluid collection tank.
[0006] Based on the above technical solution, the iron filings collection device includes a movable guide rail, an upper connecting cover, a connecting base, an iron filings negative pressure magnetic attraction device, a movable insert rod, a movable socket, a slot, a threaded hole, an internal hexagon bolt, and wheels. The upper connecting cover is placed at the top center of the movable guide rail, and the connecting base is fixed with screws at the bottom end of the upper connecting cover. The iron filings negative pressure magnetic attraction device is fixed with screws at the bottom center of the connecting base. Movable insert rods are welded and fixed on both sides of the bottom end of the movable guide rail. The movable insert rods are inserted into the slots at the top of the lower movable socket. The right end of the movable socket has a threaded hole at the top and an internal hexagon bolt with a threaded connection is installed inside. The internal hexagon bolt can pass through the threaded hole and contact the movable insert rod. The movable socket is placed inside the guide groove and can move horizontally. Two sets of wheels with screws are installed at the bottom end of the movable socket.
[0007] Based on the above technical solution, the iron filings negative pressure magnetic suction device includes a fan, a cross-shaped bracket, an annular sponge filter, an annular dust filter, a limiting cover plate, and an electromagnetic chuck. The fan is fitted with a cross-shaped bracket that is bonded and fixed to both sides of its inner top and bottom. The cross-shaped bracket is fitted with an annular sponge filter that is bonded and fixed to both sides of its top and bottom. The annular sponge filter is fitted with an annular dust filter that is bonded and fixed to both sides of its top and bottom. The cross-shaped bracket, the annular sponge filter, and the annular dust filter are all fitted with a limiting cover plate that is bonded and fixed to both sides of their circumferences. An electromagnetic chuck fixed with screws is installed below the fan and at the center of the bottom of the limiting cover plate.
[0008] Compared with the prior art, the present invention has the following advantages: The milling machine of the present invention can achieve the collection of iron chips near the processing platform without dead angles by manually adjusting the iron chip collection device in the front-back direction, left-right direction and height lifting, and in conjunction with the iron chip negative pressure magnetic attraction device. At the same time, the iron chip negative pressure magnetic attraction device generates suction force by rotating the fan and works with the electromagnetic chuck to adsorb and intercept, which effectively improves the iron chip collection efficiency and is simple and convenient to operate. Attached Figure Description
[0009] Figure 1 This is a schematic diagram of the appearance and structure of this utility model.
[0010] Figure 2 This is a schematic diagram of the iron filings collection device of this utility model.
[0011] Figure 3 This is a schematic diagram of the negative pressure magnetic attraction device for iron filings according to this utility model.
[0012] In the diagram: 1. Milling machine body, 2. Control panel, 3. Cutting fluid collection tank, 4. Machining platform, 5. Guide groove, 6. Scrapes collection device, 7. High-pressure dust blower, 8. Movable guide rail, 9. Upper connecting cover, 10. Connecting chassis, 11. Scrapes negative pressure magnetic suction device, 12. Movable insert rod, 13. Movable socket, 14. Slot, 15. Threaded hole, 16. Socket head bolt, 17. Traveling wheel, 18. Fan, 19. Cross-shaped bracket, 20. Annular sponge filter, 21. Annular dust filter, 22. Limiting cover plate, 23. Electromagnetic chuck. Detailed Implementation
[0013] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0014] like Figure 1-3As shown, a milling machine with a chip cleaning function includes a milling machine body 1, an operation panel 2, a cutting fluid collection tank 3, a machining platform 4, guide grooves 5, a chip collection device 6, and a high-pressure dust gun 7. The operation panel 2, which is fixed with screws and connected via a cable, is installed on the top right side of the front end of the milling machine body 1. A rectangular cutting fluid collection tank 3 is opened at the front top of the milling machine body 1. A machining platform 4, which is fixed with bolts, is installed inside the cutting fluid collection tank 3. Guide grooves 5 are symmetrically distributed on the left and right sides of the cutting fluid collection tank 3. A chip collection device 6, which is plugged into the guide grooves 5, is installed inside the guide grooves 5. A high-pressure dust gun 7, which has an embedded structure, is installed on the right side of the rear end of the cutting fluid collection tank 3.
[0015] The scrap collection device 6 includes a movable guide rail 8, an upper connecting cover 9, a connecting base 10, a scrap negative pressure magnetic attraction device 11, a movable insert rod 12, a movable socket 13, a slot 14, a threaded hole 15, an internal hex bolt 16, and wheels 17. The upper connecting cover 9 is placed at the top center of the movable guide rail 8. The connecting base 10 is fixed with screws at the bottom end of the upper connecting cover 9. The scrap negative pressure magnetic attraction device 11 is fixed with screws at the bottom center of the connecting base 10. Movable insert rods 12 are welded and fixed on both sides of the bottom end of the movable guide rail 8. The movable insert rods 12 are inserted into the slot 14 at the top of the lower movable socket 13. The right end of the movable socket 13 has a threaded hole 15 and an internal hex bolt 16 with a threaded connection is installed inside. The internal hex bolt 16 can pass through the threaded hole 15 and contact the movable insert rod 12. The movable socket 13 is placed inside the guide groove 5 and can move horizontally. Two sets of wheels 17 with screws are installed at the bottom end of the movable socket 13.
[0016] The negative pressure magnetic suction device 11 for iron filings includes a fan 18, a cross-shaped bracket 19, an annular sponge filter 20, an annular dust filter 21, a limiting cover plate 22, and an electromagnetic chuck 23. The fan 18 has a cross-shaped bracket 19 installed and fixedly bonded to its inner top and bottom sides. The annular sponge filter 20 is installed and fixedly bonded to its top and bottom sides. The annular dust filter 21 is installed and fixedly bonded to its top and bottom sides. The limiting cover plate 22 is installed and fixedly bonded to the inner and outer sides of the circumference of the cross-shaped bracket 19, the annular sponge filter 20, and the annular dust filter 21. The electromagnetic chuck 23 is fixedly bonded to the bottom center of the limiting cover plate 22 and below the fan 18.
[0017] The working principle of this invention is as follows: First, a powerful suction force is generated by the rotation of a fan. Then, the iron filings attracted by the electromagnetic chuck are magnetically attracted and adsorbed. At the same time, the annular dust filter and annular sponge filter intercept the iron filings that are missed by the electromagnetic adsorption, reducing the probability of iron filings entering the fan. Then, the movable rod can be limited and loosened by manually adjusting the hex bolts, which facilitates the height adjustment and limitation of the movable rod and movable guide rail on the movable socket. Then, the iron filings negative pressure magnetic attraction device is nested on the surface of the movable guide rail through the upper connecting cover and connecting base, and can be manually adjusted in the left and right directions. Finally, the traveling wheels at the bottom of the movable socket, together with the guide groove, can be manually adjusted in the front and back directions of the movable guide rail and the iron filings negative pressure magnetic attraction device, which can effectively collect iron filings in the cutting fluid collection pool and near the machining platform without dead angles.
[0018] The above description is a preferred embodiment of the present utility model. For those skilled in the art, any changes, modifications, substitutions and variations made to the implementation methods without departing from the principles and spirit of the present utility model, based on the teachings of the present utility model, still fall within the protection scope of the present utility model.
Claims
1. A milling machine with a chip cleaning function, comprising a milling machine body (1), an operation panel (2), a cutting fluid collection tank (3), a machining platform (4), a guide groove (5), a chip collection device (6), and a high-pressure dust blower (7), characterized in that: The milling machine body (1) has an operation panel (2) fixed with screws on the top right side of the front end and connected by a cable. The milling machine body (1) has a rectangular cutting fluid collection pool (3) at the front top. The cutting fluid collection pool (3) has a machining platform (4) fixed with bolts installed inside. The cutting fluid collection pool (3) has symmetrically distributed guide grooves (5) on the left and right sides. The cutting fluid collection pool (3) has a chip collection device (6) connected by plug-in on the inside of the guide grooves (5). The cutting fluid collection pool (3) has an embedded high-pressure dust gun (7) installed on the right side of the rear end.
2. A milling machine with a chip removal function according to claim 1, characterized in that: The scrap collection device (6) includes a movable guide rail (8), an upper connecting cover (9), a connecting base (10), a scrap negative pressure magnetic attraction device (11), a movable plug (12), a movable socket (13), a slot (14), a threaded hole (15), an internal hex bolt (16), and a traveling wheel (17). The upper connecting cover (9) is placed at the top center of the movable guide rail (8). The connecting base (10) is fixed with screws at the bottom end of the upper connecting cover (9). The scrap negative pressure magnetic attraction device (11) is fixed with screws at the bottom center of the connecting base (10). The movable guide rail... (8) Two movable plug rods (12) are installed on both sides of the bottom end and welded and fixed. The movable plug rods (12) are connected to the slots (14) at the top of the lower movable socket (13). The right end of the movable socket (13) has a threaded hole (15) and a threaded internal hex bolt (16) is installed on the inside. The internal hex bolt (16) can pass through the threaded hole (15) and contact the movable plug rod (12). The movable socket (13) is placed inside the guide groove (5) and can move horizontally. Two sets of screw-fixed traveling wheels (17) are installed at the bottom end of the movable socket (13).
3. A milling machine with a chip removal function according to claim 2, characterized in that: The negative pressure magnetic suction device (11) for iron filings includes a fan (18), a cross-shaped bracket (19), an annular sponge filter (20), an annular dust filter (21), a limiting cover plate (22), and an electromagnetic chuck (23). The fan (18) is equipped with a cross-shaped bracket (19) that is bonded and fixed to the top and bottom sides. The cross-shaped bracket (19) is equipped with an annular sponge filter (20) that is bonded and fixed to the top and bottom sides. The annular sponge filter (20) is equipped with an annular dust filter (21) that is bonded and fixed to the top and bottom sides. The cross-shaped bracket (19) is equipped with a limiting cover plate (22) that is bonded and fixed to the top and bottom sides, the annular sponge filter (20), and the annular dust filter (21). The limiting cover plate (23) is installed with screws at the bottom center of the limiting cover plate (22) and below the fan (18).