An automated four-station cutter machine
By installing partition plates, water tanks, and cleaning brush rods on a four-station milling machine, the problems of chip splashing and adhesion were solved, achieving cleaning of the processing area and chip recycling, reducing the impact of processing on the equipment, and improving processing quality and resource utilization efficiency.
Patent Information
- Application Number
- CN202311434828.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-01
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2043-11-01
AI Technical Summary
The existing four-station milling cutter machine has poor protection between different processing mechanisms, which leads to chip splashing that affects the processing process, and the chips adhere to the workpiece, affecting the processing quality.
The system employs a structure consisting of a partition plate, a water tank, and a cleaning brush rod. The partition plate moves to prevent debris from splashing, while a water pump and spray head are used to clean and cool the debris. The scraper rod prevents the filter plate from clogging, enabling the recycling of debris and the reuse of water.
It effectively prevents debris from splashing and adhering, ensuring a clean processing area, providing significant cooling, high debris recovery rate, and water resource recycling, thus reducing waste.
Smart Images

Figure CN117444628B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of milling machine technology, and more particularly to an automated four-station milling machine. Background Technology
[0002] A four-station milling cutter machine is a device used to process milling cutters. It typically consists of a loading and unloading mechanism, a grooving mechanism, a grinding mechanism, and a grinding and grooving mechanism, enabling automated production of grooving and grinding of milling cutters.
[0003] In existing technologies, milling cutters generate chips during machining, but the size of the chips varies depending on the process. For example, the chips generated during grooving are larger than those generated during grinding. Furthermore, the protection between different machining mechanisms on a four-station milling cutter machine is inadequate, causing larger chips to easily splash into other surrounding equipment or adhere to the workpiece during machining, thus affecting the milling process. Therefore, an automated four-station milling cutter machine is needed to meet these needs. Summary of the Invention
[0004] The purpose of this invention is to provide an automated four-station milling machine to solve the problem mentioned in the background art of poor protection between different processing mechanisms on the four-station milling machine, which causes large chips to easily splash into other surrounding equipment or adhere to the workpiece during processing, thereby affecting the milling process.
[0005] To achieve the above objectives, the present invention provides the following technical solution: an automated four-station milling cutter machine, comprising a milling cutter machine table, a base fixedly mounted on the milling cutter machine table, a grooving machine, a grinding machine, a feeding machine, and four milling cutter fixtures on the milling cutter machine table. Multiple limiting plates are fixedly mounted on the base. A common movable strip is slidably mounted on the side of two limiting plates located on the same side, close to each other. A partition plate is fixedly mounted on the movable strip. A connecting plate is fixedly mounted on one side of the movable strip. A movable groove is formed in the inner wall of the base, and a connecting shaft is rotatably mounted within the movable groove. A first pulley is fixedly mounted on the connecting shaft. A motor is fixedly mounted on one side of the base, and a second pulley is fixedly mounted at the output end of the motor. The second pulley and the first pulley are driven by the same belt. Multiple mounting grooves are formed in the inner wall of the base, and bearings are fixedly mounted within the mounting grooves. Threaded sleeves are movably mounted on the bearings, and the threaded sleeves are rotatably mounted on the base. Threaded sleeves are threaded onto the inner wall of the threaded sleeves. The device includes a threaded rod, one end of which is fixedly mounted on one side of a connecting plate, and the other end of which is fixedly mounted with a first bevel gear. A second bevel gear is fixedly mounted on a connecting shaft, and the first and second bevel gears mesh with each other. Multiple first mounting rods are fixedly mounted on the milling cutter platform, and multiple second mounting rods are fixedly mounted on the base. Two first mounting rods and two second mounting rods on the same side are fixedly mounted with the same baffle. Multiple support frames are fixedly mounted on the base, and a reciprocating screw is rotatably mounted on each support frame. A cleaning brush rod is threaded onto the reciprocating screw and slidably mounted on the support frame. A linkage gear is fixedly mounted on one end of the reciprocating screw, and a linkage rack is fixedly mounted on the top side of the partition plate, meshing with the linkage gear. A connecting block is fixedly mounted on one side of the support frame, and multiple nozzles are fixedly mounted on one side of the connecting block, with the nozzles corresponding to the partition plate. One end of a conveying pipe is fixedly mounted on the connecting block, and the other end of the conveying pipe is fixedly mounted with a first water pump.
[0006] Preferably, a plurality of support rods are fixedly installed on the lower end of the side of the base, and a water tank is fixedly installed on the end of the support rod away from the base. The water tank is located below the base. A connecting pipe is fixedly installed on the first water pump. The connecting pipe is fixedly installed on the water tank and is connected to the water tank. A filter plate is fixedly installed on the inner wall of the water tank. A guide groove is fixedly installed on the top side of the limiting plate. The guide groove is located on one side of the partition plate. A plurality of connecting pipes are fixedly installed on the water tank. A second water pump is fixedly installed on the connecting pipes. One end of a spray pipe is fixedly installed on the second water pump. A spray head is fixedly installed on the other end of the spray pipe. The spray head is fixedly installed on the bottom side of the baffle.
[0007] Preferably, the support frame has a limiting hole, and the reciprocating lead screw is rotatably installed in the limiting hole.
[0008] Preferably, the cleaning brush rod has a reciprocating screw hole, and the reciprocating screw is threaded into the reciprocating screw hole.
[0009] Preferably, a limiting groove is provided on one side of the cleaning brush rod, and a limiting strip is slidably installed in the limiting groove and fixedly installed on the support frame.
[0010] Preferably, the water tank has multiple connecting holes, and the connecting pipe and the connecting pipe are respectively connected to a corresponding connecting hole, and the connecting hole is located on the bottom side of the filter plate.
[0011] Preferably, a turntable is fixedly installed on the connecting shaft, and multiple scrapers are fixedly installed on the turntable, with the scrapers in contact with the filter plate.
[0012] Preferably, the base has multiple movable holes, and the threaded sleeve is rotatably installed in one of the corresponding movable holes.
[0013] Preferably, the inner wall of the threaded sleeve has a threaded hole, and the threaded rod is threadedly installed in the threaded hole.
[0014] The beneficial effects of this invention are:
[0015] In this invention, by using partition plates, water tanks, and other structures, multiple partition plates can separate the grooving machine, grinding machine, trenching machine, and feeding machine, thereby preventing debris from splashing into the surrounding processing area during the milling process and interfering with or affecting the processing equipment or workpiece. When the direction of the milling cutter fixture on the milling machine table is adjusted, a motor can be driven to control the movement of the partition plates, allowing the milling cutter fixture to have room for adjustment. During the processing, a second water pump can be driven to draw water from the water tank, which is then sprayed onto the processing area through spray nozzles. This can cool the workpiece during processing and wash away the generated debris into the water tank. The water tank is equipped with a filter plate to separate the water from the debris, allowing the water to be recycled and facilitating the recovery of metal debris.
[0016] In this invention, the cleaning brush rod and the first water pump are designed so that the first water pump can be turned on while the partition plate is moving. The first water pump can draw water from the water tank and spray it onto the partition plate. As the partition plate continues to move, the debris adhering to the partition plate can be washed away. During the process, the cleaning brush rod will also brush the partition plate back and forth, resulting in a better cleaning effect. The washed-away metal debris will flow into the water tank with the water flow, making it easy to recycle the metal debris and reducing waste.
[0017] In this invention, the scraper is designed so that the turntable can move the scraper while the motor is driven. The moving scraper scrapes away metal debris on the filter plate, preventing the debris from clogging the mesh on the filter plate. Attached Figure Description
[0018] Figure 1This is a schematic diagram of the structure of an automated four-station milling machine proposed in this invention;
[0019] Figure 2 This is a partial structural schematic diagram of an automated four-station milling machine proposed in this invention;
[0020] Figure 3 This is a schematic diagram of the water tank section of an automated four-station milling machine proposed in this invention;
[0021] Figure 4 This is a schematic diagram of the partition plate portion of an automated four-station milling machine proposed in this invention;
[0022] Figure 5 This is a schematic diagram of the support frame of an automated four-station milling machine proposed in this invention;
[0023] Figure 6 This is a schematic diagram of the scraper section of an automated four-station milling machine proposed in this invention;
[0024] Figure 7 This is a cross-sectional view of the base portion of an automated four-station milling machine proposed in this invention.
[0025] Figure 8 This is a cross-sectional view of the threaded sleeve portion of an automated four-station milling machine proposed in this invention.
[0026] Figure 9 This is a schematic diagram of the connection structure of the connecting plate portion of an automated four-station milling machine proposed in this invention.
[0027] In the diagram: 100, Milling cutter stand; 101, Base; 102, Grooving machine; 103, Grinding machine; 104, Grooving machine; 105, Feeding machine; 106, Milling cutter fixture; 200, Limiting plate; 201, Movable strip; 202, Partition plate; 203, Connecting plate; 204, Movable groove; 205, Connecting shaft; 206, First pulley; 207, Motor; 208, Second pulley; 209, Belt; 210, Mounting groove; 211, Bearing; 212, Threaded sleeve; 213, Threaded rod; 214, First bevel gear; 215, Second bevel gear; 216, Threaded hole; 217, Movable hole; 218, First mounting... 219. Second mounting rod; 220. Baffle; 300. Support rod; 301. Water tank; 302. Support frame; 303. Reciprocating screw; 304. Cleaning brush rod; 305. Linkage gear; 306. Linkage rack; 307. Connecting block; 308. Spray head; 309. Delivery pipe; 310. First water pump; 311. Connecting pipe; 312. Filter plate; 313. Guide groove; 314. Limiting hole; 315. Reciprocating screw hole; 316. Limiting groove; 317. Limiting strip; 400. Connecting pipe; 401. Second water pump; 402. Spray pipe; 403. Spray head; 404. Turntable; 405. Scraper; 406. Connecting hole. Detailed Implementation
[0028] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.
[0029] Reference Figure 1-9An automated four-station milling cutter machine includes a milling cutter stand 100, a base 101 fixedly mounted on the milling cutter stand 100, a grooving machine 102, a grinding machine 103, a channeling machine 104, and a feeding machine 105 mounted on the base 101, four milling cutter clamps 106 mounted on the milling cutter stand 100, multiple limiting plates 200 fixedly mounted on the base 101, two limiting plates 200 on the same side with their sides close to each other have a common movable strip 201 slidably mounted on the movable strip 201, a partition plate 202 fixedly mounted on the movable strip 201, a connecting plate 203 fixedly mounted on one side of the movable strip 201, a movable groove 204 opened in the inner wall of the base 101, a connecting shaft 205 rotatably mounted in the movable groove 204, and a first... A pulley 206 is provided. A motor 207 is fixedly installed on one side of the base 101. A second pulley 208 is fixedly installed at the output end of the motor 207. The second pulley 208 and the first pulley 206 are connected by the same belt 209. The inner wall of the base 101 has multiple mounting grooves 210. A bearing 211 is fixedly installed in the mounting groove 210. A threaded sleeve 212 is movably installed on the bearing 211. The threaded sleeve 212 is rotatably installed on the base 101. A threaded rod 213 is threadedly installed on the inner wall of the threaded sleeve 212. One end of the threaded rod 213 is fixedly installed on one side of the connecting plate 203. A first bevel gear 214 is fixedly installed on the other end of the threaded rod 213. A second bevel gear 214 is fixedly installed on the connecting shaft 205. The milling cutter base 100 has multiple first mounting rods 218 fixedly mounted on it, and multiple second mounting rods 219 fixedly mounted on it. Two first mounting rods 218 and two second mounting rods 219 on the same side are fixedly mounted with the same baffle 220. Multiple partition plates 202 separate the grooving machine 102, grinding machine 103, trenching machine 104, and feeding machine 105, preventing debris from splashing and interfering with each other during processing. When the milling cutter clamp 106 on the milling cutter base 100 adjusts its direction, it drives the motor 207. The output of the motor 207 drives the second pulley 208 to rotate, thereby... The rotating second pulley 208, through its interaction with the belt 209, drives the first pulley 206 to rotate. The rotating first pulley 206, in turn, drives the connecting shaft 205 to rotate. The rotating connecting shaft 205, in turn, drives the second bevel gear 215 to rotate. The rotating second bevel gear 215, through its interaction with the first bevel gear 214, drives the threaded sleeve 212 to rotate. The rotating threaded sleeve 212 rotates within the movable hole 217 on the base 101, enabling its rotation. The mounting groove 210 ensures smoother rotation of the bearing 211. The rotation of the threaded sleeve 212 also drives the threaded hole 216 to rotate.Through the engagement of the threaded hole 216 and the threaded rod 213, when the threaded hole 216 rotates, it causes the threaded rod 213 to slide horizontally. The horizontally sliding threaded rod 213 pushes the connecting plate 203 to move, causing the moving connecting plate 203 to drive the movable bar 201 to slide between the two limiting plates 200. This restricts the movement direction of the connecting plate 203 and the movable bar 201. The continuously moving movable bar 201 then drives the partition plate 202 to move. The continuously moving partition plate 202 moves away from the milling machine table 100, giving the milling cutter fixture 106 room to move, allowing the milling machine table 100 to rotate the milling cutter workpiece on the milling cutter fixture 106 to switch processing areas.
[0030] Reference Figure 1-9Multiple support rods 300 are fixedly installed on the lower side of the base 101. A water tank 301 is fixedly installed on the end of the support rod 300 away from the base 101. The water tank 301 is located below the base 101. Multiple support frames 302 are fixedly installed on the base 101. A reciprocating screw 303 is rotatably installed on the support frame 302. A cleaning brush rod 304 is threaded onto the reciprocating screw 303. The cleaning brush rod 304 is slidably installed on the support frame 302. A linkage gear 305 is fixedly installed on one end of the reciprocating screw 303. A linkage rack 306 is fixedly installed on the top side of the partition plate 202. The linkage rack 306 meshes with the linkage gear 305. A connecting block 307 is fixedly installed on one side of the support frame 302. Multiple nozzles 308 are fixedly installed, each corresponding to a partition plate 202. One end of a delivery pipe 309 is fixedly installed on a connecting block 307, and a first water pump 310 is fixedly installed on the other end of the delivery pipe 309. A connecting pipe 311 is fixedly installed on the first water pump 310 and is fixedly installed on a water tank 301, communicating with the water tank 301. A filter plate 312 is fixedly installed on the inner wall of the water tank 301. A guide groove 313 is fixedly installed on the top side of a limiting plate 200, located on one side of the partition plate 202. Multiple connecting pipes 400 are fixedly installed on the water tank 301, and a second water pump 401 is fixedly installed on each connecting pipe 400. A spray pipe 40 is fixedly installed on each second water pump 401. At one end of the 2, a spray head 403 is fixedly installed at the other end of the water spray pipe 402. The spray head 403 is fixedly installed on the bottom side of the baffle 220, driving the first water pump 310. The first water pump 310 can draw water from the water tank 301 through the connecting pipe 311 and transport it through the conveying pipe 309. Finally, it is sprayed out through the spray head 308 on the connecting block 307. The sprayed water will wash onto the partition plate 202 and flow downwards. In the process, it will wash away the debris and impurities adhering to the partition plate 202. Finally, the washed-down water and impurities will flow back into the water tank 301 through the guide groove 313. At the same time as the partition plate 202 moves, it will drive the linkage rack 306 to move. When the linkage rack 306 moves, it will interact with the linkage gear 305. The reciprocating screw 303 rotates on the support frame 302, and the rotating reciprocating screw 303 rotates within the limiting hole 314, enabling the reciprocating screw 303 to rotate. The continuously rotating reciprocating screw 303, through its engagement with the reciprocating screw hole 315, drives the cleaning brush rod 304 to move back and forth. When the cleaning brush rod 304 moves, it slides on the limiting strip 317 through the limiting groove 316, thereby limiting the direction of movement of the cleaning brush rod 304. This allows the reciprocating cleaning brush rod 304 to clean the partition plate 202, preventing debris and impurities from adhering, and facilitating the cleaning and recycling of debris. Furthermore, the rotation of the connecting shaft 205 drives the turntable 404 to rotate, and the rotating turntable 404 drives the scraper 405 to move.This allows the moving scraper 405 to scrape away debris on the filter plate 312, preventing the filter plate 312 from becoming clogged.
[0031] Reference Figure 5 The support frame 302 has a limiting hole 314, and the reciprocating screw 303 is rotatably installed in the limiting hole 314. The rotating reciprocating screw 303 will rotate within the limiting hole 314, so that the reciprocating screw 303 can achieve the effect of rotation.
[0032] Reference Figure 5 The cleaning brush rod 304 has a reciprocating screw hole 315, and the reciprocating screw 303 is threaded into the reciprocating screw hole 315. The continuously rotating reciprocating screw 303 will drive the cleaning brush rod 304 to move back and forth through the cooperation with the reciprocating screw hole 315.
[0033] Reference Figure 5 A limiting groove 316 is provided on one side of the cleaning brush rod 304. A limiting strip 317 is slidably installed in the limiting groove 316. The limiting strip 317 is fixedly installed on the support frame 302. When the cleaning brush rod 304 moves, it will slide on the limiting strip 317 through the limiting groove 316, thereby limiting the direction of movement of the cleaning brush rod 304.
[0034] Reference Figure 3 The water tank 301 has multiple connecting holes 406. The connecting pipe 311 and the connecting pipe 400 are respectively connected to a corresponding connecting hole 406. The connecting hole 406 is located on the bottom side of the filter plate 312. Water in the water tank 301 is extracted by using the connecting pipe 311, the connecting pipe 400 and the connecting hole 406.
[0035] Reference Figure 2-6 A turntable 404 is fixedly installed on the connecting shaft 205. Multiple scraper rods 405 are fixedly installed on the turntable 404. The scraper rods 405 are in contact with the filter plate 312. The rotating turntable 404 will drive the scraper rods 405 to move, so that the moving scraper rods 405 can scrape the debris on the filter plate 312.
[0036] Reference Figure 8 The base 101 has multiple movable holes 217. The threaded sleeve 212 is rotatably installed in a corresponding movable hole 217. The rotating threaded sleeve 212 will rotate in the movable hole 217 on the base 101, so that the threaded sleeve 212 can achieve the effect of rotation.
[0037] Reference Figure 8 The inner wall of the threaded sleeve 212 is provided with a threaded hole 216, and the threaded rod 213 is threadedly installed in the threaded hole 216. When the threaded sleeve 212 rotates, it will drive the threaded hole 216 to rotate. Through the cooperation between the threaded hole 216 and the threaded rod 213, when the threaded hole 216 rotates, it will drive the threaded rod 213 to slide horizontally.
[0038] Working principle of this invention:
[0039] By setting multiple partition plates 202, the grooving machine 102, the grinding machine 103, the trenching machine 104, and the feeding machine 105 can be separated to prevent the flying debris generated during processing from causing mutual interference. By driving the second water pump 401 around the perimeter, water in the water tank 301 can be drawn out through the connecting pipe 400 and connecting hole 406 and transported through the water spray pipe 402. Finally, it is sprayed out through the spray head 403. The sprayed water can cool down the milling cutter during processing and wash away the debris on the milling cutter stand 100 and the base 101. The washed-away debris and water will flow into the water tank 301. The debris will be filtered out by the filter plate 312, and the water can be reused to achieve recycling. When the milling cutter fixture 10 on the milling cutter stand 100 is in use, the water can be used to clean the milling cutter. 6. When adjusting the direction, the motor 207 can be driven. The output of the motor 207 will drive the second pulley 208 to rotate, which in turn drives the first pulley 206 to rotate through the cooperation of the belt 209. The rotating first pulley 206 will then drive the connecting shaft 205 to rotate. The rotating connecting shaft 205 will drive the second bevel gear 215 to rotate. The rotating second bevel gear 215 will then drive the threaded sleeve 212 to rotate through the cooperation of the first bevel gear 214. The rotating threaded sleeve 212 will rotate within the movable hole 217 on the base 101, thus enabling the threaded sleeve 212 to rotate. This is achieved by setting the mounting groove 2. 10 enables smoother rotation of bearing 211. When threaded sleeve 212 rotates, it drives threaded hole 216 to rotate. Through the cooperation between threaded hole 216 and threaded rod 213, when threaded hole 216 rotates, it drives threaded rod 213 to slide horizontally. The horizontally sliding threaded rod 213 pushes connecting plate 203 to move, causing moving connecting plate 203 to drive movable bar 201 to slide between two limit plates 200, thereby restricting the movement direction of connecting plate 203 and movable bar 201. The continuously moving movable bar 201 drives partition plate 202 to move. The continuously moving partition plate 202 moves away from milling cutter table 100, giving milling cutter fixture 106 room to move, so that milling cutter table 100 can drive the milling cutter fixture 106. The milling cutter rotates to switch machining areas, and while the partition plate 202 moves, it drives the first water pump 310. The first water pump 310 draws water from the water tank 301 through the connecting pipe 311 and delivers it through the conveying pipe 309. Finally, it is sprayed out through the nozzle 308 on the connecting block 307. The sprayed water washes onto the partition plate 202 and flows downwards, washing away the debris and impurities adhering to the partition plate 202. Finally, the washed-down water and impurities flow back into the water tank 301 through the guide groove 313. While the partition plate 202 moves, it also drives the linkage rack 306 to move. When the linkage rack 306 moves, it drives the reciprocating screw 303 to rotate on the support frame 302 through its cooperation with the linkage gear 305.The reciprocating screw 303 rotates within the limiting hole 314, enabling it to rotate. The continuously rotating screw 303, through its engagement with the reciprocating screw hole 315, drives the cleaning brush rod 304 to move reciprocally. As the cleaning brush rod 304 moves, it slides on the limiting strip 317 via the limiting groove 316, thus restricting its direction of movement. This allows the reciprocating cleaning brush rod 304 to clean the separator plate 202, preventing debris and impurities from adhering and facilitating debris collection. Simultaneously, the rotating shaft 205 rotates, causing the turntable 404 to rotate. The rotating turntable 404 then moves the scraper rod 405, which scrapes away debris from the filter plate 312, preventing clogging.
[0040] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
Claims
1. An automatic four-station milling cutter machine, comprising a milling cutter machine table (100), a base (101) is fixedly installed on the milling cutter machine table (100), a slotting machine (102), a knife grinder (103), a groove grinder (104) and a feeding machine (105) are arranged on the base (101), and four milling cutter clamps (106) are arranged on the milling cutter machine table (100), characterized in that: the milling cutter clamps (106) are arranged in a row on the milling cutter machine table (100), and the milling cutter clamps (106) are arranged in a row on the milling cutter machine table (100) in a staggered manner. The base (101) is fixedly installed with a plurality of limiting plates (200), two limiting plates (200) located on the same side are slidably installed with the same movable strip (201) on the side close to each other, the movable strip (201) is fixedly installed with a partition plate (202), one side of the movable strip (201) is fixedly installed with a connecting plate (203), the inner wall of the base (101) is provided with a movable groove (204), the movable groove (204) is rotatably installed with a connecting rotating shaft (205), the connecting rotating shaft (205) is fixedly installed with a first belt pulley (206), one side of the base (101) is fixedly installed with a motor (207), the output end of the motor (207) is fixedly installed with a second belt pulley (208), the second belt pulley (208) and the first belt pulley (206) are rotatably installed with the same belt (209), the inner wall of the base (101) is provided with a plurality of installation grooves (210), the installation grooves (210) are fixedly installed with bearings (211), the bearings (211) are movably installed with threaded sleeves (212), the threaded sleeves (212) are rotatably installed on the base (101), the inner wall of the threaded sleeves (212) is threadedly installed with threaded rods (213), one end of the threaded rods (213) is fixedly installed on one side of the connecting plate (203), the other end of the threaded rods (213) is fixedly installed with a first bevel gear (214), the connecting rotating shaft (205) is fixedly installed with a second bevel gear (215), the first bevel gear (214) is engaged with the second bevel gear (215), the milling machine table (100) is fixedly installed with a plurality of first installation rods (218), the base (101) is fixedly installed with a plurality of second installation rods (219), the same baffle (220) is fixedly installed on two first installation rods (218) and two second installation rods (219) located on the same side, a plurality of supporting frames (302) are fixedly installed on the base (101), a reciprocating screw rod (303) is rotatably installed on the supporting frame (302), a cleaning brush rod (304) is threadedly installed on the reciprocating screw rod (303), the cleaning brush rod (304) is slidably installed on the supporting frame (302), one end of the reciprocating screw rod (303) is fixedly installed with a linkage gear (305), a linkage rack (306) is fixedly installed on the top side of the partition plate (202), the linkage rack (306) is engaged with the linkage gear (305), a communication block (307) is fixedly installed on one side of the supporting frame (302), a plurality of spray heads (308) are fixedly installed on one side of the communication block (307), the spray heads (308) correspond to the partition plate (202), one end of a conveying pipe (309) is fixedly installed on the communication block (307), the other end of the conveying pipe (309) is fixedly installed with a first water pump (310).
2. An automated four-station cutter machine as claimed in claim 1, wherein: The lower end of the side of the base (101) is fixedly installed with a plurality of support rods (300), and the end of the support rod (300) away from the base (101) is fixedly installed with a water tank (301), the water tank (301) is located below the base (101), a first water pump (310) is fixedly installed with a connecting pipe (311), the connecting pipe (311) is fixedly installed on the water tank (301), the connecting pipe (311) is in communication with the water tank (301), a filter plate (312) is fixedly installed on the inner wall of the water tank (301), a guide groove (313) is fixedly installed on the top side of the limiting plate (200), the guide groove (313) is located on one side of the partition plate (202), a plurality of communication pipes (400) are fixedly installed on the water tank (301), a second water pump (401) is fixedly installed on the communication pipe (400), one end of a water spraying pipe (402) is fixedly installed on the second water pump (401), the other end of the water spraying pipe (402) is fixedly installed with a spray head (403), and the spray head (403) is fixedly installed on the bottom side of the baffle (220).
3. An automated four-station cutter machine as claimed in claim 2, wherein: The support frame (302) is provided with a limiting hole (314), and the reciprocating screw rod (303) is rotatably installed in the limiting hole (314).
4. An automated four-station cutter machine as claimed in claim 2, wherein: The cleaning brush rod (304) is provided with a reciprocating screw hole (315), and the reciprocating screw rod (303) is threadedly installed in the reciprocating screw hole (315).
5. An automated four station cutter machine as claimed in claim 2, wherein: The cleaning brush rod (304) is provided with a limiting groove (316) on one side, and a limiting strip (317) is slidably installed in the limiting groove (316).
6. An automated four station cutter machine as claimed in claim 2, wherein: The water tank (301) is provided with a plurality of communication holes (406), and the connecting pipe (311) and the communication pipe (400) are respectively in communication with a corresponding communication hole (406), and the communication hole (406) is located on the bottom side of the filter plate (312).
7. An automated four-station cutter machine as claimed in claim 1, wherein: The connecting shaft (205) is fixedly installed with a rotating disc (404), and a plurality of scraping rods (405) are fixedly installed on the rotating disc (404), and the scraping rods (405) are in contact with the filter plate (312).
8. An automated four-station cutter machine as claimed in claim 1, wherein: The base (101) is provided with a plurality of movable holes (217), and the threaded sleeve (212) is rotatably installed in a corresponding movable hole (217).
9. An automated four-station cutter machine as claimed in claim 1, wherein: The inner wall of the threaded sleeve (212) is provided with a threaded hole (216), and the threaded rod (213) is threadedly installed in the threaded hole (216).
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