CN214722144U - Three-axis three-dimensional machining device for hardware - Google Patents
Three-axis three-dimensional machining device for hardware Download PDFInfo
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- CN214722144U CN214722144U CN202120526669.XU CN202120526669U CN214722144U CN 214722144 U CN214722144 U CN 214722144U CN 202120526669 U CN202120526669 U CN 202120526669U CN 214722144 U CN214722144 U CN 214722144U
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- drill bit
- tooth
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Abstract
The utility model belongs to the technical field of the hardware technology and specifically relates to a hardware triaxial three-dimensional processingequipment, it includes that revolving stage mechanism, milling mechanism, first drill bit mechanism, second drill bit mechanism and attack tooth mechanism, the outside equidistant of revolving stage mechanism is provided with milling mechanism, first drill bit mechanism, second drill bit mechanism and attacks tooth mechanism, be provided with blank station between milling mechanism and the first drill bit mechanism, the utility model discloses a be equipped with revolving stage mechanism, milling mechanism, first drill bit mechanism, second drill bit mechanism and attack tooth mechanism, can drill, mill and attack machining operation such as tooth to the work piece simultaneously, once work just can process six work pieces, and machining efficiency is high, moreover, can effectively shorten the process time of work piece, when improving production efficiency, reduces the cost of labor.
Description
Technical Field
The utility model belongs to the technical field of the hardware technology and specifically relates to a hardware triaxial three-dimensional processingequipment.
Background
In the hardware production field, wherein need drill, mill and attack tooth processing operation to the work piece, but current processingequipment generally sets up separately, divide into drilling equipment, mills and cuts device and attack tooth device to process the work piece respectively, however, such processing operation mode can make the time of processing longer, leads to production efficiency low, and moreover, the conversion of work piece accepts needs workman's operation, leads to the cost of labor to increase. Therefore, a three-axis three-dimensional machining device for hardware is provided.
Disclosure of Invention
The utility model provides a not enough to prior art, the utility model provides a hardware triaxial three-dimensional processingequipment, the device can be simultaneously to the work piece drilling, mill and cut and attack machining operation such as tooth, and work just can be processed six work pieces, and machining efficiency is high, moreover, can effectively shorten the process time of work piece, when improving production efficiency, reduces the cost of labor.
The technical scheme of the utility model is that:
the utility model provides a hardware triaxial three-dimensional processingequipment which characterized in that: the rotary table type drilling machine comprises a rotary table mechanism, a milling mechanism, a first drill bit mechanism, a second drill bit mechanism and a tapping mechanism, wherein the milling mechanism, the first drill bit mechanism, the second drill bit mechanism and the tapping mechanism are arranged on the outer side of the rotary table mechanism at equal intervals, and a blank station is arranged between the milling mechanism and the first drill bit mechanism.
Further, revolving stage mechanism includes frame, bearing roller, commentaries on classics board, servo motor, gear change case, axis of rotation and revolving stage sensor, the top of frame is connected with the commentaries on classics board through a plurality of bearing roller, the equidistant six counterpoint holes that are provided with of commentaries on classics board, change the board and correspond through six counterpoint holes and install first anchor clamps, second anchor clamps, third anchor clamps, fourth anchor clamps, fifth anchor clamps and sixth anchor clamps, servo motor is installed through the mounting bracket in the inside of frame, servo motor's top is connected with gear change case, servo motor is connected with the axis of rotation through gear change case, the other end and the commentaries on classics board fixed connection of axis of rotation, revolving stage sensor is still installed at the top of frame.
Further, it includes first workstation, mills the curb plate, mills Y axle slide rail, mills Y slider, mills X axle slip table, mills spindle motor and the main shaft of milling to mill the mechanism, the curb plate of milling is all installed at the top surface both ends of first workstation, two inner walls that mill the curb plate are all installed and are milled Y axle slide rail, two mill Y axle slide rails all are connected with mill X axle slip tables through milling Y slider jointly, mill X axle slip tables and mill spindle motor through slider fixedly connected with, it is connected with the milling head through the main shaft of milling to mill spindle motor.
Further, the first drill bit mechanism and the second drill bit mechanism are identical except for the installation position.
Further, first drill bit mechanism includes second workstation, drill bit bottom plate, drill bit work box, drill bit X axle sliding table group, drill bit Z axle sliding table group and drill bit spindle motor, the drill bit bottom plate is installed at the top of second workstation, the drill bit work box is installed to the top surface of drill bit bottom plate, drill bit X axle sliding table group is installed to the inboard of drill bit work box, there is drill bit Z axle sliding table group on the drill bit X axle sliding table group through slider sliding connection, be connected with drill bit spindle motor through the slider on the drill bit Z axle sliding table group, drill bit spindle motor's bottom is connected with the drilling head through the pivot.
Further, attack tooth mechanism and include third workstation, attack the tooth work box, attack tooth X axle slipway group, attack tooth Z axle slipway group and attack tooth spindle motor, the tooth work box is installed at the top of third workstation, attack the inboard of tooth work box and install and attack tooth X axle slipway group, it has attack tooth Z axle slipway group to attack tooth X axle slipway group to go up through slider sliding connection, it is connected with through the slider and attacks tooth spindle motor to attack tooth Z axle slipway group, the bottom of attacking tooth spindle motor is connected with through the pivot and attacks the tooth head.
The utility model has the advantages that: the utility model discloses a be equipped with revolving stage mechanism, mill and cut mechanism, first drill bit mechanism, second drill bit mechanism and attack tooth mechanism, can drill, mill and attack processing operations such as tooth to the work piece simultaneously, just can process six work pieces once working, machining efficiency is high, moreover, can effectively shorten the process time of work piece, when improving production efficiency, reduces the cost of labor.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
In the figure, 1, a turntable mechanism; 2. a milling mechanism; 3. a first drill mechanism; 4. a second drill mechanism; 5. a tapping mechanism; 6. a frame; 7. a bearing roller; 8. rotating the plate; 9. a servo motor; 10. a gear change box; 11. a rotating shaft; 12. a turntable sensor; 13. aligning holes; 14. a first table; 15. milling a side plate; 16. milling a Y-axis slide rail; 17. milling a Y sliding block; 18. milling an X-axis sliding table; 19. milling a spindle motor; 20. milling a main shaft; 21. a second table; 22. a drill floor; 23. a drill bit work box; 24. a drill X-axis sliding table group; 25. a drill Z-axis sliding table group; 26. a drill spindle motor; 27. tapping work box; 28. tapping an X-axis sliding table group; 29. tapping Z-axis sliding table group; 30. tapping spindle motor.
Detailed Description
The following description of the embodiments of the present invention will be made with reference to the accompanying drawings:
as shown in fig. 1, a three-axis three-dimensional hardware processing device comprises a turntable mechanism 1, a milling mechanism 2, a first drill mechanism 3, a second drill mechanism 4 and a tapping mechanism 5, wherein the milling mechanism 2, the first drill mechanism 3, the second drill mechanism 4 and the tapping mechanism 5 are arranged on the outer side of the turntable mechanism 1 at equal intervals, and a blank station is arranged between the milling mechanism 2 and the first drill mechanism 3.
Milling mechanism 2 includes first workstation 14, mills curb plate 15, mills Y axle slide rail 16, mills Y slider 17, mills X axle slide rail 18, mills spindle motor 19 and mill main shaft 20, milling curb plate 15 is all installed at first workstation 14's top surface both ends, two inner walls that mill curb plate 15 all install mill Y axle slide rail 16, two mill Y axle slide rails 16 all are connected with mill X axle slide rail 18 through milling Y slider 17 jointly, mill X axle slide rail 18 and mill spindle motor 19 through slider fixedly connected with, mill spindle motor 19 is connected with the milling head through milling main shaft 20.
The first drilling mechanism 3 and the second drilling mechanism 4 are identical except for the installation position.
First drill bit mechanism 3 includes second workstation 21, drill bit bottom plate 22, drill bit work box 23, drill bit X axle sliding table group 24, drill bit Z axle sliding table group 25 and drill bit spindle motor 26, drill bit bottom plate 22 is installed at the top of second workstation 21, drill bit work box 23 is installed to drill bit bottom plate 22's top surface, drill bit X axle sliding table group 24 is installed to drill bit work box 23's inboard, there is drill bit Z axle sliding table group 25 through slider sliding connection on the drill bit X axle sliding table group 24, be connected with drill bit spindle motor 26 through the slider on the drill bit Z axle sliding table group 25, drill bit spindle motor 26's bottom is connected with the drilling head through the pivot.
The utility model discloses a theory of operation does: when the milling machine works, a first workpiece is arranged on a first clamp, the first workpiece is milled through a milling mechanism, after the milling of the first workpiece is finished, a servo motor is started, a rotating plate is driven to rotate through the servo motor and a rotating shaft, the rotating plate rotates by 60 degrees, the first workpiece is rotated to a blank station, at the moment, a second workpiece is arranged on a second clamp, after the milling of the second workpiece is finished, the rotating plate rotates by 60 degrees, the first workpiece is rotated to a first drill mechanism, the second workpiece is rotated to the blank station, at the moment, a third workpiece is arranged on a third clamp, after the first drilling of the first workpiece is finished and the milling of the third workpiece is finished, the rotating plate rotates by 60 degrees, the first workpiece is rotated to a second drill mechanism, the second workpiece is rotated to the first drill mechanism, the third workpiece is rotated to the blank station, at the moment, a fourth workpiece is arranged on a fourth clamp, after the second drilling of the first workpiece, the first drilling of the second workpiece and the milling of the fourth workpiece are finished, the rotating plate rotates by 60 degrees, the first workpiece is rotated to the tapping mechanism, the second workpiece is rotated to the second drilling mechanism, the third workpiece is rotated to the first drilling mechanism, the fourth workpiece is rotated to a blank station, at the moment, the fifth workpiece is arranged on the fifth clamp, the tapping of the first workpiece is finished, the second drilling of the second workpiece is finished, the first drilling of the third workpiece is finished and the milling of the fifth workpiece is finished, the rotating plate rotates by 60 degrees, the first workpiece is rotated to the final collecting station (between the milling mechanism and the tapping mechanism), the first workpiece completes the processing operations of drilling, milling, tapping and the like, and the first workpiece is collected, at the moment, the second workpiece is rotated to the tapping mechanism, and the third workpiece is rotated to the second drilling mechanism, and (3) rotating the fourth workpiece to the first drill mechanism, rotating the fifth workpiece to a blank station, installing the sixth workpiece on the sixth fixture, tapping the second workpiece, drilling a second hole on the third workpiece, drilling a first hole on the fourth workpiece, milling the sixth workpiece, and performing the next round of work after all the workpieces are machined.
The foregoing embodiments and description have been provided to illustrate the principles and preferred embodiments of the present invention, and various changes and modifications may be made without departing from the spirit and scope of the invention, which fall within the scope of the invention as claimed.
Claims (6)
1. The utility model provides a hardware triaxial three-dimensional processingequipment which characterized in that: the rotary table type drilling machine comprises a rotary table mechanism, a milling mechanism, a first drill bit mechanism, a second drill bit mechanism and a tapping mechanism, wherein the milling mechanism, the first drill bit mechanism, the second drill bit mechanism and the tapping mechanism are arranged on the outer side of the rotary table mechanism at equal intervals, and a blank station is arranged between the milling mechanism and the first drill bit mechanism.
2. The three-axis three-dimensional hardware machining device according to claim 1, characterized in that: the rotary table mechanism comprises a frame, bearing rollers, a rotary plate, a servo motor, a gear transmission case, a rotary shaft and a rotary table sensor, wherein the top of the frame is connected with the rotary plate through a plurality of bearing rollers, six alignment holes are formed in the rotary plate at equal intervals, the rotary plate is correspondingly provided with a first clamp, a second clamp, a third clamp, a fourth clamp, a fifth clamp and a sixth clamp through the six alignment holes, the servo motor is installed in the frame through a mounting frame, the top of the servo motor is connected with the gear transmission case, the servo motor is connected with the rotary shaft through the gear transmission case, the other end of the rotary shaft is fixedly connected with the rotary plate, and the rotary table sensor is further installed at the top of the frame.
3. The three-axis three-dimensional hardware machining device according to claim 2, characterized in that: milling mechanism includes first workstation, mills the curb plate, mills Y axle slide rail, mills Y slider, mills X axle slip table, mills main shaft motor and mill the main shaft, the top surface both ends of first workstation all install and mill the curb plate, two inner walls that mill the curb plate all install mill Y axle slide rail, two mill Y axle slide rails all are connected with mill X axle slip tables through milling Y slider jointly, mill X axle slip table and mill main shaft motor through slider fixedly connected with, it is connected with the milling head through milling the main shaft to mill main shaft motor.
4. The three-axis three-dimensional hardware machining device according to claim 3, characterized in that: the first drill bit mechanism and the second drill bit mechanism are identical except for the installation position.
5. The three-axis three-dimensional hardware machining device according to claim 4, characterized in that: first drill bit mechanism includes second workstation, drill bit bottom plate, drill bit work box, drill bit X axle sliding table group, drill bit Z axle sliding table group and drill bit spindle motor, the drill bit bottom plate is installed at the top of second workstation, the drill bit work box is installed to the top surface of drill bit bottom plate, drill bit X axle sliding table group is installed to the inboard of drill bit work box, there is drill bit Z axle sliding table group on the drill bit X axle sliding table group through slider sliding connection, be connected with drill bit spindle motor through the slider on the drill bit Z axle sliding table group, drill bit spindle motor's bottom is connected with the drilling head through the pivot.
6. The three-axis three-dimensional hardware machining device according to claim 5, characterized in that: attack tooth mechanism and include the third workstation, attack the tooth work box, attack tooth X axle sliding platform group, attack tooth Z axle sliding platform group and attack tooth spindle motor, the tooth work box is installed at the top of third workstation, attack the inboard of tooth work box and install and attack tooth X axle sliding platform group, it has attack tooth Z axle sliding platform group to attack tooth X axle sliding platform group to go up through slider sliding connection, it is connected with through the slider to attack tooth Z axle sliding platform group and attacks tooth spindle motor, the bottom of attacking tooth spindle motor is connected with through the pivot and attacks the tooth head.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202120526669.XU CN214722144U (en) | 2021-03-14 | 2021-03-14 | Three-axis three-dimensional machining device for hardware |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202120526669.XU CN214722144U (en) | 2021-03-14 | 2021-03-14 | Three-axis three-dimensional machining device for hardware |
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CN214722144U true CN214722144U (en) | 2021-11-16 |
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CN202120526669.XU Active CN214722144U (en) | 2021-03-14 | 2021-03-14 | Three-axis three-dimensional machining device for hardware |
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CN (1) | CN214722144U (en) |
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2021
- 2021-03-14 CN CN202120526669.XU patent/CN214722144U/en active Active
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