CN203509592U - CNC machining center - Google Patents

CNC machining center Download PDF

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Publication number
CN203509592U
CN203509592U CN201320664396.0U CN201320664396U CN203509592U CN 203509592 U CN203509592 U CN 203509592U CN 201320664396 U CN201320664396 U CN 201320664396U CN 203509592 U CN203509592 U CN 203509592U
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China
Prior art keywords
slide plate
vertical
traversing
drive
machining center
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Withdrawn - After Issue
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CN201320664396.0U
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Chinese (zh)
Inventor
龙晓斌
焦大勇
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Zhongshan Oms Industrial Co Ltd
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Zhongshan Oms Industrial Co Ltd
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Priority to CN201320664396.0U priority Critical patent/CN203509592U/en
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Abstract

The utility model discloses a CNC machining center. Different tools such as turning tools, milling cutters, drills, boring tools and abrasive tools can be arranged on a machining tool arranging device according to machining requirement. The CNC machining center is capable of performing various combination machining on tools arranged on a working platform in one step, so that arranging times of tools are reduced, machining accuracy of tools is increased; at the same time, a driving device is controlled to rotate, the machining tool arranging device is driven to rotate the same angles to link other shafts, so that machining on complicated tools is met. The CNC machining center is simple in structure, is capable of performing various combination machining on tools arranged in one step, and effectively ensures the machining accuracy of the tools.

Description

A kind of numerical control machining center
[technical field]
The utility model relates to lathe, especially a kind of numerical control machining center.
[background technology]
In recent years, along with the continuous progress of science and technology, the process equipment in machining manufacturing develops rapidly, particularly numerical control machine tool.What traditional machining tool adopted is that machine driving is controlled, and operating type is single, during general a machine tool work, can only solely carry out turning, milling, drilling or grinding, and need multiple processing mode to combine for a workpiece, and need to be many enterprising luggage card processing of lathe, same workpiece entered to be repeatedly installed after processing, produce larger form and position tolerance and benchmark tolerance, be therefore difficult to the processing of high-precision workpiece.
The utility model is researched and proposed for the deficiencies in the prior art.
[utility model content]
The technical problems to be solved in the utility model is to provide a kind of numerical control machining center, can be according to the needs of processing on process tool chucking device, different lathe tools is installed, milling cutter, drill bit, the process tool such as boring cutter and grinding tool, can carry out multiple combination processing to the workpiece being once installed on workbench, reduce the number of times that is installed of workpiece, improved the machining accuracy of workpiece, simultaneously by controlling device of rotation driving, drive correspondingly rotational angle of process tool chucking device, with other each axles that link, meet the processing to complex part, the utlity model has simple in structure, to the workpiece being once installed, can combine multiple processing mode, effectively guaranteed the machining accuracy of workpiece.
For solving the problems of the technologies described above, the utility model, adopts following technical scheme:
A kind of numerical control machining center of the utility model, comprise support and electric control box, described support is provided with frame, described electric control box is located at frame one side, described support is provided with the workbench for card engaging workpiece that support horizontally rotates relatively, on described support, be also provided with the workbench drive unit for driving workbench to horizontally rotate, on described housiung separator, slidably connect traversing slide plate, described frame is provided with for driving the cross sliding driving device of traversing slide plate transverse movement, on described traversing slide plate, connect the vertical slide plate that can relatively traversing slide plate vertically moves up and down, described traversing slide plate is provided with for driving the vertical drive of vertical skateboarding, described vertical slide plate lower end be connected with can rotate relative to vertical slide plate for the process tool chucking device of process tool is installed, described vertical slide plate is provided with for driving the device of rotation driving of process tool chucking device rotational angle.
Described workbench drive unit comprises the table drive motor being fixedly connected with support, described table drive motor output is connected with workbench driven wheel, and it is toothed for the transmission fluted disc with the engagement of workbench driven wheel that described workbench bottom is fixedly connected with inner ring.
Described cross sliding driving device comprises traversing drive lead screw and the cross sliding rail be arrangeding in parallel with housiung separator, described traversing drive lead screw one end is connected with traversing drive motors, described traversing drive motors is fixedly connected with frame, described traversing slide plate is connected with traversing drive lead screw by screw is secondary, the described traversing slide plate back side and cross sliding rail sliding connection, positive and the vertical slide plate slides of described traversing slide plate is connected, described vertical drive comprises and is located at the vertical turn-screw that vertical slide plate vertically arranges, on described vertical turn-screw, be connected with vertical transmission screw, described vertical transmission screw and traversing slide plate are rotationally connected, described traversing slide plate is provided with the vertical drive motors for driving vertical transmission screw that vertical turn-screw and vertical slide plate are moved up and down.
Described process tool chucking device comprises for the main shaft of the milling cutter that is installed, boring cutter, drill bit or grinding tool with for the tool rest of the lathe tool that is installed, described main shaft upper end is connected with the spindle drive motor for drive shaft, on described main shaft, be also provided with for clamping or unclamping and be installed on the supercharging device that main shaft is fixed a cutting tool, described process tool chucking device also comprises for driving the drive unit of dodging of tool rest stretching motion.
The described drive unit of dodging comprises tool rest tool rest connecting plate, on described tool rest connecting plate, be fixedly connected with and dodge drive motors, described output of dodging drive motors is connected with dodges screw mandrel, described in dodge screw mandrel and tool rest and be connected by screw is secondary, described tool rest and tool rest connecting plate are slidably connected.
Described device of rotation driving comprises the rotational drive motor being fixedly connected with vertical slide plate lower end, and described rotational drive motor output is connected with process tool chucking device.
Described support is in T shape.
Described workbench upper surface is provided with the T-shaped groove for card engaging workpiece.
Described workbench is rounded.
Described frame adopts planer type structure.
A kind of numerical control machining center of the utility model, workbench for card engaging workpiece can horizontally rotate, can be according to the needs of processing on process tool chucking device, different lathe tools is installed, milling cutter, drill bit, the process tool such as boring cutter and grinding tool, can carry out multiple combination processing to the workpiece being once installed on workbench, reduce the number of times that is installed of workpiece, improved the machining accuracy of workpiece, simultaneously by controlling device of rotation driving, drive correspondingly rotational angle of process tool chucking device, with other each axles that link, meet the processing to complex part, the utlity model has simple in structure, to the workpiece being once installed, can combine multiple processing mode, effectively guaranteed the machining accuracy of workpiece.
[accompanying drawing explanation]
Below in conjunction with accompanying drawing, the specific embodiment of the present utility model is described in further detail, wherein:
Fig. 1 is one of structural representation of the present utility model.
Fig. 2 is two of structural representation of the present utility model.
Fig. 3 is explosive view of the present utility model.
Fig. 4 is the structural representation of process tool chucking device in the utility model.
[specific embodiment]
Below in conjunction with accompanying drawing, embodiment of the present utility model is elaborated.
A kind of numerical control machining center of the utility model, a kind of numerical control machining center of the utility model, comprise support 1 and electric control box 10, described support 1 is in T shape, described support 1 is provided with frame 2, described frame 2 adopts planer type structure, described electric control box 10 is located at frame 2 one sides, on electric control box 10, be provided with corresponding control panel, each structure is controlled, described support 1 is provided with the workbench 3 for card engaging workpiece that support 1 horizontally rotates relatively, described workbench 3 is rounded, described workbench 3 upper surfaces are provided with the T-shaped groove for card engaging workpiece, on described support 1, be also provided with the workbench drive unit 4 for driving workbench 3 to horizontally rotate, on described frame 2 crossbeams, slidably connect traversing slide plate 5, described frame 2 is provided with for driving the cross sliding driving device 6 of traversing slide plate 5 transverse movements, on described traversing slide plate 5, connect the vertical slide plate 11 that can relatively traversing slide plate 5 vertically moves up and down, described traversing slide plate 5 is provided with for driving the vertical drive 7 of vertical slide plate 11 motions, described vertical slide plate 11 lower ends be connected with can rotate relative to vertical slide plate 11 for the process tool chucking device 8 of process tool is installed, described vertical slide plate 11 is provided with for driving the device of rotation driving 9 of process tool chucking device 8 rotational angles.By corresponding control workbench drive unit 4, cross sliding driving device 6, vertical drive 7 and device of rotation driving 9, with the workpiece of realizing 8 pairs of process tool chucking devices and being once installed on workbench 3, carry out multiple combination processing, guarantee the machining accuracy of workpiece.
Described workbench drive unit 4 comprises the table drive motor 41 being fixedly connected with support 1, described workbench drive motors 41 outputs are connected with workbench driven wheel 42, and it is toothed for the transmission fluted disc 43 with 42 engagements of workbench driven wheel that described workbench 3 bottoms are fixedly connected with inner ring.When carrying out turning, add man-hour, process tool chucking device 8 is adjusted to the needed angle of processing, and keeps motionless, and workbench 3 rotates, and can carry out turning to workpiece.
Described cross sliding driving device 6 comprises traversing drive lead screw 61 and the cross sliding rail 63 be arrangeding in parallel with frame 2 crossbeams, described traversing drive lead screw 61 one end are connected with traversing drive motors 62, described traversing drive motors 62 is fixedly connected with frame 2, described traversing slide plate 5 is connected with traversing drive lead screw 61 by screw is secondary, described traversing slide plate 5 back sides are provided with slide block, by this slide block and cross sliding rail 63 sliding connections, between the positive and vertical slide plate 11 of described traversing slide plate 5, by slide block rail structure, be slidably connected, described vertical drive 7 comprises and is located at the vertical turn-screw 71 that vertical slide plate 11 vertically arranges, vertical turn-screw 71 two ends are fixedly connected with vertical slide plate 11, on described vertical turn-screw 71, be connected with vertical transmission screw 72, described vertical transmission screw 72 is rotationally connected by bearing fit with traversing slide plate 5, described traversing slide plate 5 is provided with the vertical drive motors 73 for driving vertical transmission screw 72 that vertical turn-screw 71 and vertical slide plate 11 are moved up and down.
Described process tool chucking device 8 comprises for the main shaft 81 of the milling cutter that is installed, boring cutter, drill bit or grinding tool with for the tool rest 82 of the lathe tool that is installed, when machining center hole, boring cutter can be arranged on tool rest 82, described main shaft 81 upper ends are connected with the spindle drive motor 83 for drive shaft 81, on described main shaft 81, be also provided with for clamping or unclamping and be installed on the supercharging device 84 that main shaft 81 is fixed a cutting tool, described process tool chucking device 8 also comprises dodges drive unit 85 for what drive tool rest 82 stretching motions.When carrying out milling, drilling or grinding, dodge drive unit 85 and drive tool rest 82 upwards to retract, dodge, prevent mutual interference.
The described drive unit 85 of dodging comprises tool rest 82 tool rest connecting plates 851, on described tool rest connecting plate 851, be fixedly connected with and dodge drive motors 852, described output of dodging drive motors 852 is connected with dodges screw mandrel 853, the described screw mandrel 853 of dodging is connected by screw is secondary with tool rest 82, and described tool rest 82 is slidably connected with tool rest connecting plate 851.
Described device of rotation driving 9 comprises the rotational drive motor 91 being fixedly connected with vertical slide plate 11 lower ends, and described rotational drive motor 91 outputs are connected with process tool chucking device 8.

Claims (10)

1. a numerical control machining center, it is characterized in that comprising support (1) and electric control box (10), described support (1) is provided with frame (2), described electric control box (10) is located at frame (2) one sides, described support (1) is provided with the workbench for card engaging workpiece (3) that support (1) horizontally rotates relatively, on described support (1), be also provided with the workbench drive unit (4) for driving workbench (3) to horizontally rotate, on described frame (2) crossbeam, slidably connect traversing slide plate (5), described frame (2) is provided with for driving the cross sliding driving device (6) of traversing slide plate (5) transverse movement, the upper connection of described traversing slide plate (5) the vertical slide plate (11) that can relatively traversing slide plate (5) vertically moves up and down, described traversing slide plate (5) is provided with for driving the vertical drive (7) of vertical slide plate (11) motion, described vertical slide plate (11) lower end be connected with can rotate relative to vertical slide plate (11) for the process tool chucking device (8) of process tool is installed, described vertical slide plate (11) is provided with for driving the device of rotation driving (9) of process tool chucking device (8) rotational angle.
2. by a kind of numerical control machining center described in claim 1, it is characterized in that described workbench drive unit (4) comprises the table drive motor (41) being fixedly connected with support (1), described table drive motor (41) output is connected with workbench driven wheel (42), and it is toothed for the transmission fluted disc (43) with workbench driven wheel (42) engagement that described workbench (3) bottom is fixedly connected with inner ring.
3. by a kind of numerical control machining center described in claim 1, it is characterized in that described cross sliding driving device (6) comprises traversing drive lead screw (61) and the cross sliding rail (63) be arrangeding in parallel with frame (2) crossbeam, described traversing drive lead screw (61) one end is connected with traversing drive motors (62), described traversing drive motors (62) is fixedly connected with frame (2), described traversing slide plate (5) is connected with traversing drive lead screw (61) by screw is secondary, described traversing slide plate (5) back side and cross sliding rail (63) sliding connection, positive and the vertical slide plate (11) of described traversing slide plate (5) is slidably connected, described vertical drive (7) comprises and is located at the vertical turn-screw (71) that vertical slide plate (11) vertically arranges, on described vertical turn-screw (71), be connected with vertical transmission screw (72), described vertical transmission screw (72) is rotationally connected with traversing slide plate (5), described traversing slide plate (5) is provided with the vertical drive motors (73) for driving vertical transmission screw (72) that vertical turn-screw (71) and vertical slide plate (11) are moved up and down.
4. by a kind of numerical control machining center described in claim 3, it is characterized in that described process tool chucking device (8) comprises for the milling cutter that is installed, boring cutter, the main shaft of drill bit or grinding tool (81) and for the tool rest (82) of the lathe tool that is installed, described main shaft (81) upper end is connected with the spindle drive motor (83) for drive shaft (81), on described main shaft (81), be also provided with for clamping or unclamping and be installed on the supercharging device (84) that main shaft (81) is fixed a cutting tool, described process tool chucking device (8) also comprises dodges drive unit (85) for what drive tool rest (82) stretching motion.
5. by a kind of numerical control machining center described in claim 4, described in it is characterized in that, dodge drive unit (85) and comprise tool rest (82) tool rest connecting plate (851), on described tool rest connecting plate (851), be fixedly connected with and dodge drive motors (852), described output of dodging drive motors (852) is connected with dodges screw mandrel (853), the described screw mandrel (853) of dodging is connected by screw is secondary with tool rest (82), and described tool rest (82) is slidably connected with tool rest connecting plate (851).
6. by a kind of numerical control machining center described in claim 1 or 5, it is characterized in that described device of rotation driving (9) comprises the rotational drive motor (91) being fixedly connected with vertical slide plate (11) lower end, described rotational drive motor (91) output is connected with process tool chucking device (8).
7. by a kind of numerical control machining center described in claim 1, it is characterized in that described support (1) is in T shape.
8. by a kind of numerical control machining center described in claim 1, it is characterized in that described workbench (3) upper surface is provided with the T-shaped groove for card engaging workpiece.
9. by a kind of numerical control machining center described in claim 1 or 8, it is characterized in that described workbench (3) is rounded.
10. by a kind of numerical control machining center described in claim 9, it is characterized in that described frame (2) adopts planer type structure.
CN201320664396.0U 2013-10-25 2013-10-25 CNC machining center Withdrawn - After Issue CN203509592U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320664396.0U CN203509592U (en) 2013-10-25 2013-10-25 CNC machining center

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Application Number Priority Date Filing Date Title
CN201320664396.0U CN203509592U (en) 2013-10-25 2013-10-25 CNC machining center

Publications (1)

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CN201320664396.0U Withdrawn - After Issue CN203509592U (en) 2013-10-25 2013-10-25 CNC machining center

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103551861A (en) * 2013-10-25 2014-02-05 中山市奥美森工业有限公司 Numerical control machining center machine tool
CN104551707A (en) * 2014-12-30 2015-04-29 苏州用朴合金工具有限公司 Cutter table of numerical-control lathe
CN108858534A (en) * 2018-07-28 2018-11-23 广州品鑫机电科技有限公司 A kind of tenon processing unit (plant)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103551861A (en) * 2013-10-25 2014-02-05 中山市奥美森工业有限公司 Numerical control machining center machine tool
CN103551861B (en) * 2013-10-25 2016-06-29 奥美森智能装备股份有限公司 A kind of digital controlled processing central machine tool
CN104551707A (en) * 2014-12-30 2015-04-29 苏州用朴合金工具有限公司 Cutter table of numerical-control lathe
CN108858534A (en) * 2018-07-28 2018-11-23 广州品鑫机电科技有限公司 A kind of tenon processing unit (plant)

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20140402

Effective date of abandoning: 20160629

C25 Abandonment of patent right or utility model to avoid double patenting