CN120170478A - A compound lathe with Y-axis moving unit - Google Patents
A compound lathe with Y-axis moving unit Download PDFInfo
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- CN120170478A CN120170478A CN202510325397.XA CN202510325397A CN120170478A CN 120170478 A CN120170478 A CN 120170478A CN 202510325397 A CN202510325397 A CN 202510325397A CN 120170478 A CN120170478 A CN 120170478A
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23P—METAL-WORKING NOT OTHERWISE PROVIDED FOR; COMBINED OPERATIONS; UNIVERSAL MACHINE TOOLS
- B23P23/00—Machines or arrangements of machines for performing specified combinations of different metal-working operations not covered by a single other subclass
- B23P23/02—Machine tools for performing different machining operations
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23Q—DETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
- B23Q1/00—Members which are comprised in the general build-up of a form of machine, particularly relatively large fixed members
- B23Q1/25—Movable or adjustable work or tool supports
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Abstract
The invention relates to a compound lathe with a Y-axis moving unit, which belongs to the technical field of machining and is characterized by comprising a machine table, wherein one end of a tool rest is provided with a rotating main shaft used for clamping a workpiece, a first moving mechanism comprises a first X-axis moving assembly, a first Z-axis moving assembly and a Y-axis moving assembly, the Y-axis moving assembly comprises a Y-axis moving platform, a Y-axis motor, a Y-axis screw, a support frame, two Y-axis sliding rails and four Y-axis sliding blocks, and the first moving mechanism is arranged on the compound lathe. The multi-direction machining can be carried out on different parts of the part, frequent replacement of tools or re-clamping of workpieces are not needed, and the machining procedures and the preparation time are reduced.
Description
Technical Field
The invention relates to the field of machining, in particular to a compound lathe with a Y-axis moving unit.
Background
A numerical control lathe is one of the numerical control lathes that are widely used. The cutting tool is mainly used for cutting machining of inner and outer cylindrical surfaces of shaft parts or disc parts, inner and outer conical surfaces of any cone angle, complex rotation inner and outer curved surfaces, cylindrical threads, conical threads and the like, and can be used for grooving, drilling, reaming, boring and the like. The numerical control machine tool automatically processes the processed parts according to a processing program which is programmed in advance.
The Chinese patent with publication number CN220145216U discloses a turning and milling compound three-shaft linkage lathe, which comprises a base, wherein a fixed seat and a sliding seat which are opposite in position are fixedly arranged at the top of the base; the lathe comprises a base, a main body of the base, a first sliding rail, a second sliding rail, a first sliding rail, a third driving motor, a second driving motor and a first driving motor, wherein the base is fixedly arranged at the top of the base, an adjusting seat is arranged on the side seat, the main body of the adjusting seat is a third sliding rail fixedly arranged on the adjusting seat, a second sliding rail is sleeved on the third sliding rail in a sliding mode, a first sliding rail is sleeved on the second sliding rail in a sliding mode, a third driving motor, a second driving motor and a first driving motor are arranged in the third sliding rail, the second sliding rail and the first sliding rail in a sliding mode, a driving cylinder seat is fixedly arranged on the first sliding rail, the outer end of an output shaft of the driving cylinder seat is fixedly connected with a milling component, the lathe is in a combined three-axis linkage mode, a workpiece can be clamped stably, and the milling component and a milling cutter assembled on the milling component are matched with the base in a sliding mode, but the lathe has the problems that the three-axis mode only can conduct milling in X, Y and Z-axis directions on the clamped workpiece, the workpiece cannot conduct milling in X, Y and Z-axis directions, and the drilling efficiency cannot be improved.
Disclosure of Invention
The invention aims to solve the defects and provide a compound lathe with a Y-axis moving unit.
The invention aims at realizing the following mode that the compound lathe with the Y-axis moving unit comprises:
the machine table is provided with a tool rest, and one end of the tool rest is provided with a rotary main shaft for clamping a workpiece;
The first moving mechanism comprises a first X-axis moving assembly, a first Z-axis moving assembly and a Y-axis moving assembly, wherein the Y-axis moving assembly comprises a Y-axis moving platform, a Y-axis motor, a Y-axis screw rod, a supporting frame, two Y-axis sliding rails and four Y-axis sliding blocks, the two Y-axis sliding rails are respectively arranged at two ends of the Y-axis moving platform, the four Y-axis sliding blocks are respectively arranged on the supporting frame, one side of the sliding block, which is far away from the supporting frame, is in sliding fit with the Y-axis sliding rails, the Y-axis motor is arranged at one end of the Y-axis moving platform, the Y-axis screw rod is arranged between the two Y-axis sliding rails, one end of the Y-axis screw rod is movably connected with the Y-axis motor, and the other end of the Y-axis screw rod is in movable fit with the supporting frame;
The milling mechanism is arranged on the Y-axis moving platform and comprises a supporting seat, a driving motor, a first driving shaft, a first driving belt, a second driving shaft, a first driving wheel, a second driving wheel, a third driving wheel and three drill chucks, wherein the driving motor is arranged at the bottom of the supporting seat, the first driving shaft is movably arranged at one end of the driving motor, the three drill chucks are movably arranged at one end of the supporting seat, driving rods matched with the first driving wheel, the second driving wheel and the third driving wheel are respectively arranged at one ends of the three drill chucks, one end of each driving rod, which is close to the driving motor, outwards extends out of one side of the supporting seat, the first driving wheel and the second driving shaft are fixedly arranged on the driving rods, the first driving belt is sleeved between the first driving shaft and the second driving shaft, the first driving wheel is meshed with the first driving wheel and the second driving wheel, and the second driving wheel is meshed with the second driving wheel and the second driving wheel.
Further, the first Z axle remove the subassembly and include first moving platform, first Z axle motor, first Z axle screw rod, two first baffles, first back-up plate, first movable seat, two first slide rails and four first movable sliders, two first baffles install respectively in both ends about the first moving platform, two first slide rail is all installed two between the first baffles, the top fixed mounting of first slide rail is in the bottom of first moving platform, four first movable sliders respectively slidable mounting is in two on the first slide rail, first movable seat installs in two between the first slide rail, and four first movable sliders with the bottom of first movable seat is equal fixed mounting in on the first back-up plate, first Z axle motor install in one side of first baffle, first Z axle screw rod movable mounting is in on the first movable seat, first Z axle screw rod all with first motor and first movable fit carry out first Z axle screw rod and first one end runs through the first baffle.
Further, the first X axle moving assembly includes second moving platform, first X axle motor, first X axle screw rod, second baffle, second movable seat, two first positioning seats, two second slide rails and four second movable sliders, two second slide rail fixed mounting is in on the first moving platform, second movable seat and two first positioning seat are all installed two between the second slide rail, just the second movable seat is installed two between the first positioning seat, first positioning seat fixed mounting is in on the first moving platform, the second baffle install in one side of second slide rail, first X axle motor install in one side that the second slide rail was kept away from to the second baffle, the one end of first X axle screw rod with first X axle motor carries out swing joint, the other end of first X axle screw rod runs through second baffle, left end positioning seat and second movable seat and right-hand member first positioning seat are connected, four second movable sliders are located two respectively on the second moving platform the second movable seat is in the second movable seat.
Further, the turning tool and the milling cutter can be adjusted to move in the X-axis direction and the Z-axis direction through the Z-axis moving assembly and the X-axis moving assembly.
Further, the second Z axle moving assembly includes third moving platform, second Z axle motor, second Z axle screw rod, two third baffles, second back-up plate, third movable seat, two third slide rails and four third movable sliders, two the third baffles install in both ends about the third moving platform, two the third slide rail is all installed in two between the third baffles, the top fixed mounting of third slide rail is in the bottom of third moving platform, four the third movable sliders respectively slidable mounting is in two on the third slide rail, the third movable seat is installed in two between the third slide rail, and four the third movable sliders with the bottom of third movable seat is equal fixed mounting in on the second back-up plate, the second Z axle motor install in one side of third baffle, the second Z axle screw rod movable mounting is in on the third movable seat, the second Z axle screw rod all with the third motor carries out the movable fit on the third slide rail, the third Z axle screw rod runs through with the third baffle.
Further, the second X-axis moving assembly comprises a fourth moving platform, a second X-axis motor, a second X-axis screw rod, a fourth baffle, a fourth movable seat, two second positioning seats, two fourth sliding rails and four fourth movable sliding blocks, wherein the two fourth sliding rails are fixedly arranged on the third moving platform, the fourth movable seat and the two second positioning seats are arranged between the two fourth sliding rails, the fourth movable seat is arranged between the two second positioning seats, the second positioning seats are fixedly arranged on the third moving platform, the fourth baffle is arranged on one side of the fourth sliding rail, the second X-axis motor is arranged on one side of the fourth baffle far away from the fourth sliding rail, one end of the second X-axis screw rod is movably connected with the second X-axis motor, and the other end of the second X-axis screw rod penetrates through the fourth baffle, the right-end second positioning seat and the fourth movable seat to be connected with the left-end second positioning seat, the fourth movable seat is movably arranged on one side of the fourth sliding rail, and the fourth movable seat is fixedly arranged on the fourth sliding rail.
Further, one side of the fourth moving platform is provided with a mounting plate, a clamping piece is mounted on the mounting plate, a clamping groove for mounting a cutter is formed in the clamping piece, two adjusting holes communicated with the clamping groove are formed in the upper surface of the clamping piece, and the required cutter can be mounted through the adjusting groove.
Further, still include third moving mechanism, third moving mechanism includes cylinder, telescopic link, support, turning piece, backup pad and slide table, the cylinder install in the one end of support, backup pad fixed mounting is kept away from the one end of cylinder at the support, the one end of telescopic link passes the support with the cylinder is connected, the other end of telescopic link with slide table is connected, slide table slidable mounting is in the backup pad, turning piece fixed mounting is in on the slide table, one side of cylinder is equipped with the air cock that is used for connecting the tracheal, installs the turning piece on the slide table.
Further, the bottom of backup pad is equipped with reference column and adjusting column, be equipped with on the knife rest with reference column carries out complex regulation portion, be equipped with on the knife rest with reference column matched with locating hole, keep away from on the knife rest the one end of locating hole is equipped with the adjustment tank, the adjusting column install in the adjustment tank, install adjusting nut on the adjusting column, but through the angle of loosening adjusting portion adjustable backup pad, can lock the position of backup pad through locking adjusting nut and regulating part.
Furthermore, two knife grooves for installing the cutting knives are formed in the supporting seat, and the cutting knives or other knives can be installed through the knife grooves.
The beneficial effects of the invention are as follows:
the first moving mechanism is arranged on the composite machine tool, so that various types of parts can be processed, the processing flexibility is improved, the processing of parts with complex shapes can be realized, such as the processing of spiral grooves, eccentric holes and the like on a cylindrical surface, and the limitation that the traditional machine tool can only process the surface of a revolving body is broken through. The multi-direction machining can be carried out on different parts of the part, frequent replacement of tools or re-clamping of workpieces are not needed, and the machining procedures and the preparation time are reduced.
Secondly, the machining precision is enhanced, the movement of the Y axis can realize more accurate tool positioning, the machining precision and the dimensional stability are improved, and the method is particularly important for machining parts with high precision requirements. The milling machine is beneficial to reducing machining errors, for example, milling depth and position accuracy can be ensured by fine adjustment of the Y axis when milling. By accurate Y-axis motion control, cutting parameters can be optimized, surface roughness can be reduced, and quality of a machined surface can be improved.
Thirdly, the machining efficiency is improved, various machining operations such as turning, milling, drilling and the like can be completed in one clamping, the machining period is greatly shortened, and the production efficiency is improved. The transfer and repositioning time of the workpiece between different machine tools is reduced, and errors and damage risks possibly caused by repeated clamping are reduced.
Drawings
FIG. 1 is a schematic perspective view of a compound lathe with a Y-axis mobile unit according to the present invention;
FIG. 2 is a schematic perspective view of a compound lathe with a Y-axis mobile unit according to the present invention;
FIG. 3 is a schematic perspective view of a compound lathe with a Y-axis mobile unit according to the present invention;
FIG. 4 is a schematic perspective view of a first moving mechanism of a compound lathe with a Y-axis moving unit according to the present invention;
FIG. 5 is a schematic perspective view of a first moving mechanism of a compound lathe with a Y-axis moving unit according to the present invention;
FIG. 6 is a schematic perspective view of a second moving mechanism of the compound lathe with Y-axis moving unit according to the present invention;
FIG. 7 is a schematic perspective view of a second moving mechanism of the compound lathe with Y-axis moving unit according to the present invention;
FIG. 8 is a schematic perspective view of a third movement mechanism of the compound lathe with Y-axis movement unit according to the present invention;
FIG. 9 is a schematic perspective view of a third movement mechanism of the compound lathe with Y-axis movement unit according to the present invention;
Fig. 10 is a schematic perspective view of a tool rest in a compound lathe with a Y-axis moving unit according to the present invention.
In the figure, 1, a knife rest; 2. rotating the main shaft; 3. a Y-axis moving platform; 4. a Y-axis motor; 5. a Y-axis screw; 6. a support frame; 7. a Y-axis sliding rail; 8. a Y-axis slider; 9. a support base; 10. a driving motor; 11. a first drive shaft; 12. a first drive belt; 13. a second drive shaft; 14. a first drive wheel; 15. a first drive wheel; 16. a second drive wheel; 17. a second driven wheel; 18. a third drive wheel; 19. a drill chuck; 20. a first mobile platform; 21. a first Z-axis motor; 22. a first baffle; 23. a first support base plate; 24. a first movable seat; 25. a first slide rail; 26. a first movable slider; 27. a second mobile platform; 28. a first X-axis motor; 29. a first X-axis screw; 30. a second baffle; 31. a second movable seat; 32. a first positioning seat; 33. a second slide rail; 34. a second movable slider; 35. a third mobile platform; 36. a second Z-axis motor; 37. a second Z-axis screw; 38. a third baffle; 39. a second support base plate; 40. a third movable seat; 41. a third slide rail; 42. a third movable slider; 43. a fourth mobile platform; 44. a second X-axis motor; 45. a second X-axis screw; 46. a fourth baffle; 47. a fourth movable seat; 48. a second positioning seat; 49. a fourth slide rail; 50. a fourth movable slider; 51. a mounting plate; 52. a clamping groove; 53. an adjustment aperture; 54. a cylinder; 55. a telescopic rod; 56. a bracket; 57. a support plate; 58. a sliding platform; 59. an air tap; 60. positioning columns; 61. an adjusting column; 62. a clamping member; 63. an adjusting section; 64. positioning holes; 65. an adjustment tank; 66. an adjusting nut; 67. a knife slot; 68. a first Z-axis screw; 69. turning pieces.
Detailed Description
The invention will be further described with reference to examples and drawings, to which reference is made, but which are not intended to limit the scope of the invention. The present invention will be described in detail below with reference to the accompanying drawings.
Referring to fig. 1-10, a compound lathe with a Y-axis moving unit is shown, which comprises:
the machine table is provided with a tool rest 1, and one end of the tool rest 1 is provided with a rotary main shaft 2 for clamping a workpiece;
The first moving mechanism comprises a first X-axis moving assembly, a first Z-axis moving assembly and a Y-axis moving assembly, wherein the Y-axis moving assembly comprises a Y-axis moving platform 3, a Y-axis motor 4, a Y-axis screw 5, a support frame 6, two Y-axis sliding rails 7 and four Y-axis sliding blocks 8, the two Y-axis sliding rails 7 are respectively arranged at two ends of the Y-axis moving platform 3, the four Y-axis sliding blocks 8 are respectively arranged on the support frame 6, one side of each sliding block, far away from the support frame 6, is in sliding fit with the Y-axis sliding rail 7, the Y-axis motor 4 is arranged at one end of the Y-axis moving platform 3, the Y-axis screw 5 is arranged between the two Y-axis sliding rails 7, one end of the Y-axis screw 5 is in movable connection with the Y-axis motor 4, and the other end of the Y-axis screw 5 is in movable fit with the support frame 6;
The milling mechanism is mounted on the Y-axis moving platform 3 and comprises a supporting seat 9, a driving motor 10, a first driving shaft 11, a first driving belt 12, a second driving shaft 13, a first driving wheel 14, a first driving wheel 15, a second driving wheel 16, a second driving wheel 17, a third driving wheel 18 and three drill chucks 19, wherein the driving motor 10 is mounted at the bottom of the supporting seat 9, the first driving shaft 11 is movably mounted at one end of the driving motor 10, the three drill chucks 19 are movably mounted at one end of the supporting seat 9, driving rods matched with the first driving wheel 14, the second driving wheel 16 and the third driving wheel 18 are respectively arranged at one ends of the three drill chucks 19, one ends of the driving rods, which are close to the driving motor 10, outwards extend out of one side of the supporting seat 9, the first driving wheel 14 and the second driving wheel 13 are fixedly mounted on the driving rods, the first driving belt 12 is sleeved between the first driving shaft 11 and the second driving shaft 13, the first driving wheel 15 is meshed with the first driving wheel 16 and the second driving wheel 16, and the first driving wheel 16 are meshed with the first driving wheel 16 and the third driving wheel 18. The supporting seat 9 is provided with two knife grooves 67 for installing the cutting knives, and the cutting knives or other knives can be installed by arranging the knife grooves 67.
The first Z-axis moving assembly comprises a first moving platform 20, a first Z-axis motor 21, a first Z-axis screw 68, two first baffle plates 22, a first supporting bottom plate 23, a first movable seat 24, two first sliding rails 25 and four first movable sliding blocks 26, wherein the two first baffle plates 22 are respectively installed at the left end and the right end of the first moving platform 20, the two first sliding rails 25 are respectively installed between the two first baffle plates 22, the top of the first sliding rail 25 is fixedly installed at the bottom of the first moving platform 20, the four first movable sliding blocks 26 are respectively and slidably installed on the two first sliding rails 25, the first movable seat 24 is installed between the two first sliding rails 25, the bottoms of the four first movable sliding blocks 26 and the first movable seat 24 are respectively and fixedly installed on the first supporting bottom plate 23, the first Z-axis motor 21 is installed at one side of the first baffle plates 22, the first Z-axis motor 68 is movably installed on the first movable seat 24 and the first Z-axis screw 68 is in penetrating fit with the first Z-axis screw 68, and the first Z-axis screw 68 is connected with the first Z-axis screw 22.
The first X-axis moving assembly comprises a second moving platform 27, a first X-axis motor 28, a first X-axis screw 29, a second baffle 30, a second movable seat 31, two first positioning seats 32, two second sliding rails 33 and four second movable sliders 34, wherein the two second sliding rails 33 are fixedly arranged on the first moving platform 20, the second movable seat 31 and the two first positioning seats 32 are respectively arranged between the two second sliding rails 33, the second movable seat 31 is arranged between the two first positioning seats 32, the first positioning seat 32 is fixedly arranged on the first moving platform 20, the second baffle 30 is arranged on one side of the second sliding rails, the first X-axis motor 28 is arranged on one side of the second baffle 30 far away from the second sliding rails 33, one end of the first X-axis screw 29 is movably connected with the first X-axis motor 28, and the other end of the first X-axis screw 29 penetrates through the second baffle 30, the left end of the second movable seat 31 and the second movable seat 34, and the second movable seat 34 are respectively arranged on the second sliding rails 32.
The second moving mechanism comprises a second X-axis moving assembly and a second Z-axis moving assembly, and the turning tool and the milling cutter can be adjusted to move in the X-axis direction and the Z-axis direction through the Z-axis moving assembly and the X-axis moving assembly. The second Z-axis moving assembly comprises a third moving platform 35, a second Z-axis motor 36, a second Z-axis screw 37, two third baffle plates 38, a second supporting bottom plate 39, a third movable seat 40, two third sliding rails 41 and four third movable sliding blocks 42, wherein the two third baffle plates 38 are installed at the left end and the right end of the third moving platform 35, the two third sliding rails 41 are installed between the two third baffle plates 38, the top of the third sliding rail 41 is fixedly installed at the bottom of the third moving platform 35, the four third movable sliding blocks 42 are respectively and slidably installed on the two third sliding rails 41, the third movable seat 40 is installed between the two third sliding rails 41, the bottoms of the four third movable sliding blocks 42 and the third movable seat 40 are fixedly installed on the second supporting bottom plate 39, the second Z-axis motor 36 is installed at one side of the third baffle plates 38, the second Z-axis motor 37 is movably installed on the third movable seat 40 and the third screw rod 37 is in a penetrating manner, and the third Z-axis motor 37 is movably connected with the third baffle plates 37. The second X-axis moving assembly comprises a fourth moving platform 43, a second X-axis motor 44, a second X-axis screw 45, a fourth baffle 46, a fourth movable seat 47, two second positioning seats 48, two fourth sliding rails 49 and four fourth movable sliding blocks 50, wherein the two fourth sliding rails 49 are fixedly arranged on the third moving platform 35, the fourth movable seat 47 and the two second positioning seats 48 are respectively arranged between the two fourth sliding rails 49, the fourth movable seat 47 is arranged between the two second positioning seats 48, the second positioning seats 48 are fixedly arranged on the third moving platform 35, the fourth baffle 46 is arranged on one side of the fourth sliding rails 49, the second X-axis motor 44 is arranged on one side of the fourth baffle 46 far away from the fourth sliding rails 49, one end of the second X-axis screw 45 is movably connected with the second X-axis motor 44, and the other end of the second X-axis screw 45 penetrates through the fourth baffle 46, the right end of the fourth movable seat 48 and the fourth sliding blocks 48, and the fourth movable seat 50 are respectively arranged on the fourth movable seat 48, and the fourth movable seat 50. One side of the fourth moving platform 43 is provided with a mounting plate 51, a clamping piece 62 is mounted on the mounting plate 51, a clamping groove 52 for mounting a cutter is formed in the clamping piece 62, two adjusting holes 53 communicated with the clamping groove 52 are formed in the upper surface of the clamping piece 62, and a required cutter can be mounted by arranging an adjusting groove 65.
The third moving mechanism comprises an air cylinder 54, a telescopic rod 55, a support 56, turning pieces 69, a support plate 57 and a sliding platform 58, wherein the air cylinder 54 is arranged at one end of the support 56, the support plate 57 is fixedly arranged at one end, far away from the air cylinder 54, of the support 56, one end of the telescopic rod 55 penetrates through the support 56 and is connected with the air cylinder 54, the other end of the telescopic rod 55 is connected with the sliding platform 58, the sliding platform 58 is slidably arranged on the support plate 57, the turning pieces 69 are fixedly arranged on the sliding platform 58, an air nozzle 59 used for connecting an air pipe is arranged at one side of the air cylinder 54, and the turning pieces 69 are arranged on the sliding platform 58. The bottom of backup pad 57 is equipped with reference column 60 and adjusting column 61, be equipped with on the knife rest 1 with reference column 60 goes on complex adjusting part 63, be equipped with on the knife rest 1 with reference column 60 matched with locating hole 64, the one end that keeps away from on the knife rest 1 the locating hole 64 is equipped with adjustment groove 65, adjusting column 61 install in adjustment groove 65, install adjusting nut 66 on the adjusting column 61, but through the angle of loose adjusting part 63 adjustable backup pad 57, but through locking adjusting nut 66 and adjusting part 63 lock the position of backup pad 57.
The working principle of the embodiment of the invention is that when the machine tool is in operation, a workpiece is arranged on a main shaft, a first X-axis screw 29 is driven to rotate by a first X-axis motor 28, the first X-axis screw 29 is matched with a second movable seat 31, a second movable platform 27 is driven to move by the second movable seat 31, and the second movable platform 27 is matched with a second sliding rail 33 by a second movable sliding block 34 to assist the second movable platform 27 to slide on the second sliding rail 33, so that turning or milling of the workpiece in the X-axis direction can be performed.
The first Z-axis motor 21 drives the first Z-axis screw 68 to rotate, the first Z-axis screw 68 is matched with a movable seat, and the first movable slide block 26 is slidably mounted on the first slide rail 25, so that the first movable platform 20 can slide in the Z-axis direction, and turning or milling of the workpiece in the Z-axis direction can be performed.
The Y-axis motor 4 drives the Y-axis screw 5 to rotate, the Y-axis screw 5 is matched with the supporting frame 6, the Y-axis screw 5 drives the Y-axis moving platform 3 to move, the Y-axis sliding block 8 is matched with the Y-axis sliding rail 7, the Y-axis moving platform 3 is assisted to slide on the Y-axis sliding rail 7, and the supporting seat 9 can be used for turning or milling the workpiece in the Y-axis direction.
The second X-axis motor 44 drives the second X-axis screw 45 to rotate, the second X-axis screw 45 is matched with the fourth movable seat 47, the fourth movable seat 47 drives the fourth movable platform 43 to move, the fourth movable slide block 50 is matched with the fourth slide rail 49, the fourth movable platform 43 is assisted to slide on the fourth slide rail 49, and turning or milling of the workpiece in the X-axis direction can be performed.
The second Z-axis motor 36 drives the second Z-axis screw 37 to rotate, the second Z-axis screw 37 is matched with the third movable seat 40, and the third movable sliding block 42 is slidably mounted on the third sliding rail 41, so that the third movable platform 35 can slide in the Z-axis direction, and turning or milling of the workpiece in the Z-axis direction can be performed.
By attaching the cylinder 54 for powering the telescopic rod 55 to the tool holder 1, the sliding platform 58 on the support plate 57 is pushed by the telescopic rod 55, so that the turning piece 69 or the milling mechanism attached to the sliding platform 58 can turn or mill the side surface, and the angle of the support plate 57 can be adjusted by the adjusting portion 63 and the adjusting nut 66.
The foregoing is a further detailed description of the invention in connection with specific further embodiments, and is not intended to limit the practice of the invention to such descriptions. It should be understood by those skilled in the art that several simple deductions or substitutions may be made without departing from the spirit of the present invention, and the present invention is not limited to the above-mentioned embodiments.
Claims (10)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202510325397.XA CN120170478A (en) | 2025-03-19 | 2025-03-19 | A compound lathe with Y-axis moving unit |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202510325397.XA CN120170478A (en) | 2025-03-19 | 2025-03-19 | A compound lathe with Y-axis moving unit |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN120170478A true CN120170478A (en) | 2025-06-20 |
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| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202510325397.XA Pending CN120170478A (en) | 2025-03-19 | 2025-03-19 | A compound lathe with Y-axis moving unit |
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| CN (1) | CN120170478A (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN121104714A (en) * | 2025-09-25 | 2025-12-12 | 惠州市小福数控技术有限公司 | A highly stable sliding head lathe |
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2025
- 2025-03-19 CN CN202510325397.XA patent/CN120170478A/en active Pending
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN121104714A (en) * | 2025-09-25 | 2025-12-12 | 惠州市小福数控技术有限公司 | A highly stable sliding head lathe |
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