Cutter part machining and cutting device
By introducing a guide rail and worm gear motor drive system into the tool component processing and cutting device, the automated movement of the tool material processing table is realized, which solves the safety hazard of the operator's arm entering the cutting wheel range and improves the safety and stability of the equipment.
Patent Information
- Application Number
- CN202520145776.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-22
AI Technical Summary
In existing cutting and machining equipment for cutting tool parts, the operator's arm may enter the cutting wheel area during the loading and unloading process, posing a safety hazard.
By installing guide rails and a worm motor inside the equipment base, the worm drives the worm wheel of the gear shaft to rotate, thereby moving the tool material processing table and preventing the arm from entering the cutting wheel range. Combined with the self-locking function of the worm and worm wheel, the position remains stable.
It improves the safety and stability of the equipment, avoids scraping between the arm and the cutting wheel, and enhances the safety of loading and unloading operations and the stability of the equipment.
Smart Images

Figure CN223733956U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of tool component processing, and in particular to a tool component processing and cutting device. Background Technology
[0002] An existing patent (publication number: CN218694340U) discloses a cutting device for processing cutting tool components. It includes: a worktable, a cutting blade, a drive motor, a clamping part, a first bracket, a water outlet pipe, a nozzle, and a water supply part. The worktable has a first through slot; the cutting blade is rotatably mounted in the first through slot; the drive motor is connected to the cutting blade; the clamping part includes an electric cylinder, and a clamping component is mounted on the telescopic shaft of the electric cylinder. The clamping component has two second brackets, each with a second through slot for mounting the cutting tool material. At least two sets of fastening parts are provided in the second through slots. The first bracket is located at the top of the worktable; the water outlet pipe is mounted on the first bracket and positioned above the cutting blade. However, this device, where "both second brackets have second through slots," relies on the cutting blade inside the worktable to cut the cutting tool material inside the second brackets. During the manual feeding of the cutting tool material into the second brackets, the operator's arm must enter the cutting blade's range, which may result in arm scraping and poses a safety hazard. Summary of the Invention
[0003] This utility model addresses the aforementioned shortcomings of existing technologies by providing a tool material processing and cutting device that uses two sets of guide rails inside the equipment base to position the tool material processing table. A worm motor on the side of the equipment base drives the worm to rotate, causing the worm to rotate the worm wheel on the side of the gear shaft. This, in turn, causes the gear shaft to move the tool material processing table out of the cutting wheel's range for loading and unloading operations. This prevents the operator's arm from entering the cutting wheel's range and causing scraping, thus increasing the safety of the equipment.
[0004] The objective of this utility model is achieved through the following technical solution:
[0005] A cutting tool component processing device includes a base, a bolt table, a guide rail, a hexagonal head, a drive bevel gear, and a lead screw. The rear of the base is fixedly connected to the bolt table. The base has a crossbeam inside, which is fixedly connected to a gear shaft bracket. The gear shaft bracket has a gear shaft positioning cylinder inside. Both the crossbeam and the positioning cylinder have gear shaft grooves that are adapted to the gear shaft. The gear shaft grooves connect to the gear shaft, allowing the gear shaft to rotate within the grooves. The side of the gear shaft is fixedly connected to a gear. The front of the gear shaft is fixedly connected to a worm gear. The side of the base is fixedly connected to a worm gear bracket, which is adapted to the worm and connects to it. The worm rotates within the bracket and meshes with the worm gear on its side. The lower part of the worm gear bracket is fixedly connected to a worm motor, and the worm motor shaft is fixedly connected to the worm. The base is fixedly connected to the guide rail. The lower part of the tool component processing table has a guide rail groove, which is adapted to the guide rail groove and connected to it.
[0006] The guide rail groove slides inside the guide rail. The side of the tool material processing table has a rack, and the gear meshes with the rack at the bottom. The surface of the tool material processing table has a screw groove, which is adapted to a flat-head screw. The screw groove connects to the flat-head screw, and the flat-head screw is threaded inside the screw groove. The upper part of the tool material processing table has a guide groove, which is fixedly connected to a guide rod. The inside of the tool material processing table has a screw groove, which is adapted to a screw. The screw groove connects to the screw, and the screw rotates inside the screw groove.
[0007] The front part of the screw is fixedly connected to the hexagonal head. The side of the movable clamp has a guide seat. The guide rod is adapted to the guide seat and the guide rod is connected to the guide seat. The guide seat slides inside the guide rod. The lower part of the movable clamp has a threaded seat. The threaded seat is threadedly connected inside the screw. The rear part of the tool material processing table and the front part of the movable clamp are both fixedly connected to the positioning pads. The two sets of positioning pads are in corresponding positions. The upper part of the equipment base is fixedly connected to the processing bracket. The front part of the processing bracket is fixedly connected to the bevel gear motor. Beneficial effects
[0008] 1. During the use of this utility model tool component processing and cutting device, the tool material processing table is positioned by two sets of guide rails inside the equipment base. In conjunction with the worm motor on the side of the equipment base, the worm is driven to rotate, which in turn drives the worm wheel on the side of the gear shaft to rotate. This causes the gear shaft to drive the gear to move the tool material processing table out of the cutting wheel range for loading and unloading operations, thus avoiding the operator's arm from entering the cutting wheel range and causing scraping, thereby increasing the safety of the equipment.
[0009] 2. During the use of the cutting tool component processing device of this utility model, the worm motor on the side of the equipment base drives the worm gear to rotate, which in turn drives two sets of gears to move the tool material processing table. Because the transmission principle of the worm and worm gear has a self-locking function, the tool material processing table maintains the adjusted position during loading, unloading or cutting, thereby enhancing the stability of the equipment.
[0010] 3. During the use of the tool component processing and cutting device of this utility model, the worm motor on the side of the equipment base drives the worm wheel to rotate, so that the worm wheel drives the two sets of gears on the side of the gear shaft to move synchronously on both sides of the tool material processing table, avoiding the tool material processing table being blocked by force on one side, thereby further increasing the stability of the equipment. Attached Figure Description
[0011] Figure 1 This is a schematic diagram of the structure of a cutting tool component processing device according to the present invention.
[0012] Figure 2 This is a three-dimensional assembly diagram of a cutting tool component processing device according to the present invention.
[0013] Figure 3 This is a partial cross-sectional three-dimensional assembly diagram of the gear shaft structure of a cutting tool component processing device according to the present invention.
[0014] Figure 4 This is a three-dimensional assembly diagram of the movable clamp structure of a cutting tool component processing device according to the present invention.
[0015] Figure 5 This is a three-dimensional assembly diagram of the tool material processing table structure of the tool component processing and cutting device of the present invention.
[0016] Figure 6 This is a three-dimensional assembly diagram of the working frame structure of a cutting tool component processing device according to the present invention.
[0017] Figure 7 This is a three-dimensional assembly diagram of the angle table structure of the tool component processing and cutting device according to the present invention. Detailed Implementation
[0018] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments:
[0019] Example 1:
[0020] A cutting and machining device for tool components includes a base 01, a bolt table 02, a guide rail 13, a hexagonal head 23, a drive bevel gear 30, and a lead screw 34. The rear of the base 01 is fixedly connected to the bolt table 02. The base 01 has a crossbeam 03 inside, which is fixedly connected to a gear shaft bracket 04. The gear shaft bracket 04 has a gear shaft positioning cylinder 05 inside. Both the crossbeam 03 and the gear shaft positioning cylinder 05 have gear shaft grooves 06 inside. The gear shaft grooves 06 are adapted to a gear shaft 07 and connect to the gear shaft 07. Rotating inside the gear shaft groove 06, the side of the gear shaft 07 is fixedly connected to the gear 08, and the front of the gear shaft 07 is fixedly connected to the worm gear 09. During the use of the tool component processing and cutting device, the worm motor 12 on the side of the equipment base 01 drives the worm 11 to drive the worm gear 09 to rotate, so that the worm gear 09 drives the two sets of gears 08 to move the tool material processing table 14. Because the transmission principle of the worm 11 and the worm gear 09 has a self-locking function, the tool material processing table 14 maintains the adjusted position during loading, unloading or cutting, thereby enhancing the stability of the equipment. The equipment base 01 is fixedly connected to the worm gear frame 10 on the side. The worm gear frame 10 is adapted to the worm 11. The worm gear frame 10 is connected to the worm 11. The worm 11 rotates inside the worm gear frame 10. The worm 11 meshes with the worm wheel 09 on the side. The lower part of the worm gear frame 10 is fixedly connected to the worm motor 12. The worm motor shaft is fixedly connected to the worm 11 inside. The equipment base 01 is fixedly connected to the guide rail 13 inside. The tool material processing table 14 has a guide rail groove 15 at the bottom. The guide rail 13 is adapted to the guide rail groove 15. The guide rail 13 is connected to the guide rail groove 15.
[0021] Example 2:
[0022] The guide rail groove 15 of this utility model slides inside the guide rail 13. The side of the tool material processing table 14 has a rack 16, and the gear 08 meshes with the lower part of the rack 16. During the use of the tool component processing and cutting device, the worm gear 09 is driven to rotate by the worm motor 12 on the side of the equipment base 01. The worm gear 09 drives the two sets of gears 08 on the side of the gear shaft 07 to move the two sides of the tool material processing table 14 synchronously, avoiding the tool material processing table 14 from being blocked by force on one side, thereby further increasing the stability of the equipment. Qualitatively, the surface of the tool material processing table 14 has a screw groove 17, which is adapted to a flat-head screw 18. The screw groove 17 is connected to the flat-head screw 18, and the flat-head screw 18 is threaded inside the screw groove 17. The upper part of the tool material processing table 14 has a guide groove 19, which is fixedly connected to a guide rod 20. The inside of the tool material processing table 14 has a screw groove 21, which is adapted to a screw 22. The screw groove 21 is connected to the screw 22, and the screw 22 rotates inside the screw groove 21.
[0023] Example 3:
[0024] The screw 22 of this utility model is fixedly connected to the front of the hexagonal head 23. The movable clamp 24 has a guide seat 26 on its side. The guide rod 20 is adapted to the guide seat 26. The guide rod 20 is connected to the guide seat 26. The guide seat 26 slides inside the guide rod 20. The movable clamp 24 has a threaded seat 25 at its lower part. The threaded seat 25 is threadedly connected inside the screw 22. The rear of the tool material processing table 14 and the front of the movable clamp 24 are both fixedly connected to the positioning pads 27. The two sets of positioning pads 27 are in corresponding positions. The upper part of the equipment base 01 is fixedly connected to the processing bracket 28. The front of the processing bracket 28 is fixedly connected to the bevel gear motor 29.
[0025] Example 4:
[0026] The front part of the bevel motor shaft of this utility model is fixedly connected to the drive bevel gear 30, the lower part of the work frame 31 is fixedly connected to the work frame positioning shaft 32, the work frame positioning shaft 32 is rotatably connected inside the processing bracket 28, the front part of the work frame positioning shaft 32 is fixedly connected to the transmission bevel gear 33, the transmission bevel gear 33 meshes with the side of the drive bevel gear 30, the lead screw 34 is rotatably connected inside the work frame 31, the front part of the work frame 31 is fixedly connected to the lead screw motor 35, and the rear part of the lead screw motor shaft is fixedly connected to the lead screw 34.
[0027] Example 5:
[0028] The angle table 36 of this utility model is threadedly connected inside the lead screw 34. The angle table 36 slides inside the work frame 31. The lower part of the angle table 36 is rotatably connected to the cylinder frame 37. The side of the angle table 36 is fixedly connected to the angle motor 38. The front part of the angle motor shaft is fixedly connected to the cylinder frame 37. The cylinder frame 37 is fixedly connected to the cylinder 39. The lower part of the cylinder 39 is fixedly connected to the cutting motor 40. During the use of the tool component processing and cutting device, the tool material processing table 14 is positioned by two sets of guide rails 13 inside the equipment base 01. The worm motor 12 on the side of the equipment base 01 drives the worm 11 to rotate, so that the worm 11 drives the worm wheel 09 on the side of the gear shaft 07 to rotate. This causes the gear shaft 07 to drive the gear 08 to move the tool material processing table 14 out of the range of the cutting wheel 41 for loading and unloading operations, avoiding the operator's arm from entering the range of the cutting wheel 41 and causing scraping, thereby increasing the safety of the equipment. The rear part of the cutting motor shaft is fixedly connected to the cutting wheel 41.
[0029] Example 6:
[0030] The installation steps of this utility model are as follows: Fix the rear of the equipment base 01 to the bolt stand 02; fix the inside of the crossbeam 03 to the gear shaft bracket 04; rotate the gear shaft 07 inside the gear shaft groove 06; fix the side of the gear shaft 07 to the gear 08; fix the front of the gear shaft 07 to the worm gear 09; fix the side of the equipment base 01 to the worm gear bracket 10; rotate the worm 11 inside the worm gear bracket 10; mesh the worm 11 with the worm gear 09 on the side; fix the lower part of the worm gear bracket 10 to the worm motor 12; and connect the inside of the worm motor shaft to the worm 11. The equipment base 01 is fixedly connected to the guide rail 13. The guide rail groove 15 slides inside the guide rail 13. The gear 08 meshes with the lower part of the rack 16. The flat head screw 18 is threaded into the screw groove 17. The guide groove 19 is fixedly connected to the guide rod 20. The screw 22 rotates inside the screw groove 21. The front part of the screw 22 is fixedly connected to the hexagonal head 23. The guide seat 26 slides inside the guide rod 20. The threaded seat 25 is threaded into the screw 22. The rear part of the tool material processing table 14 and the front part of the movable clamp 24 are both connected to the positioning clamp. The positioning pads 27 are fixedly connected, aligning the positions of the two sets of positioning pads 27. The upper part of the equipment base 01 is fixedly connected to the processing bracket 28. The front part of the processing bracket 28 is fixedly connected to the bevel gear motor 29. The front part of the bevel gear motor shaft is fixedly connected to the drive bevel gear 30. The lower part of the work frame 31 is fixedly connected to the work frame positioning shaft 32. The work frame positioning shaft 32 is rotatably connected inside the processing bracket 28. The front part of the work frame positioning shaft 32 is fixedly connected to the transmission bevel gear 33. The transmission bevel gear 33 meshes with the side of the drive bevel gear 30. The lead screw 34 is rotatably connected inside the work frame 31. The front part of the work frame 31 is fixedly connected to the lead screw motor 35, the rear part of the lead screw motor shaft is fixedly connected to the lead screw 34, the angle table 36 is threaded inside the lead screw 34, the angle table 36 slides inside the work frame 31, the lower part of the angle table 36 is rotatably connected to the cylinder frame 37, the side part of the angle table 36 is fixedly connected to the angle motor 38, the front part of the angle motor shaft is fixedly connected to the cylinder frame 37, the inside of the cylinder frame 37 is fixedly connected to the cylinder 39, the lower part of the cylinder 39 is fixedly connected to the cutting motor 40, and the rear part of the cutting motor shaft is fixedly connected to the cutting wheel 41.
[0031] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A tool part machining and cutting apparatus characterized by : Including device base (01), bolt platform (02), guide rail (13), hexagonal head (23), driving bevel gear (30), screw rod (34), the rear part of device base (01) is fixedly connected with bolt platform (02), the inside of device base (01) has crossbeam (03), the inside of crossbeam (03) is fixedly connected with gear shaft support (04), gear shaft support (04) has gear shaft positioning cylinder (05) inside, the inside of crossbeam (03) and gear shaft positioning cylinder (05) has gear shaft slot (06) uniformly, gear shaft slot (06) is adapted to gear shaft (07), gear shaft slot (06) is connected with gear shaft (07), gear shaft (07) rotates in gear shaft slot (06), the side of gear shaft (07) is fixedly connected with gear (08), the front of gear shaft (07) is fixedly connected with worm wheel (09), the side of device base (01) is fixedly connected with worm shaft support (10), worm shaft support (10) is adapted to worm shaft (11), worm shaft support (10) is connected with worm shaft (11), worm shaft (11) rotates in worm shaft support (10), worm shaft (11) is engaged in the side of worm wheel (09), the lower part of worm shaft support (10) is fixedly connected with worm motor (12), the inside of worm motor shaft is fixedly connected with worm shaft (11), the inside of device base (01) is fixedly connected with guide rail (13), tool material processing platform (14) has guide rail slot (15) in the lower part, guide rail (13) is adapted to guide rail slot (15), guide rail (13) is connected with guide rail slot (15).
2. A tool part machining and cutting apparatus according to claim 1, characterised in that : The guide rail slot (15) slides in the guide rail (13), the side of tool material processing platform (14) has rack (16), gear (08) is engaged in the lower part of rack (16), the surface of tool material processing platform (14) has screw groove (17), screw groove (17) is adapted to flat head screw (18), screw groove (17) is connected with flat head screw (18), flat head screw (18) is threadedly connected in screw groove (17), the upper part of tool material processing platform (14) has guide slot (19), the inside of guide slot (19) is fixedly connected with guide rod (20), the inside of tool material processing platform (14) has screw rod slot (21), screw rod slot (21) is adapted to screw rod (22), screw rod slot (21) is connected with screw rod (22), screw rod (22) rotates in screw rod slot (21).
3. A tool part machining and cutting apparatus according to claim 2, characterised in that : The front of screw rod (22) is fixedly connected with hexagonal head (23), the side of movable clamp (24) has guide seat (26), guide rod (20) is adapted to guide seat (26), guide rod (20) is connected with guide seat (26), guide seat (26) slides in guide rod (20), the lower part of movable clamp (24) has threaded seat (25), threaded seat (25) is threadedly connected in screw rod (22), the rear part of tool material processing platform (14) and the front of movable clamp (24) are fixedly connected with positioning clamp pad (27), two groups of positioning clamp pad (27) are in position correspondence, the upper part of device base (01) is fixedly connected with processing support (28), the front of processing support (28) is fixedly connected with bevel gear motor (29).
4. A tool part machining and cutting apparatus according to claim 3, characterised in that The bevel gear motor shaft front part is fixedly connected with the driving bevel gear (30), the work stand (31) lower part is fixedly connected with the work stand positioning shaft (32), the work stand positioning shaft (32) is rotatably connected in the processing support (28), the work stand positioning shaft (32) front part is fixedly connected with the transmission bevel gear (33), the transmission bevel gear (33) is engaged in the driving bevel gear (30) side part, the screw rod (34) is rotatably connected in the work stand (31), the work stand (31) front part is fixedly connected with the screw rod motor (35), the screw rod motor shaft rear part is fixedly connected with the screw rod (34).
5. A tool part machining and cutting apparatus according to claim 2, wherein The angle table (36) is threadedly connected in the screw rod (34), the angle table (36) is slidably connected in the work stand (31), the angle table (36) lower part is rotatably connected with the air cylinder frame (37), the angle table (36) side part is fixedly connected with the angle motor (38), the angle motor shaft front part is fixedly connected with the air cylinder frame (37), the air cylinder frame (37) is fixedly connected with the air cylinder (39) inside, the air cylinder (39) lower part is fixedly connected with the cutting motor (40), the cutting motor shaft rear part is fixedly connected with the cutting wheel (41).
Citation Information
Patent Citations
Cutting device for cutter machining
CN218694340U