CN204353513U - Multi-station rotary-disk boring machine - Google Patents
Multi-station rotary-disk boring machine Download PDFInfo
- Publication number
- CN204353513U CN204353513U CN201420699386.5U CN201420699386U CN204353513U CN 204353513 U CN204353513 U CN 204353513U CN 201420699386 U CN201420699386 U CN 201420699386U CN 204353513 U CN204353513 U CN 204353513U
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- station
- boring
- spindle box
- main spindle
- column
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Abstract
The utility model relates to a kind of multi-station rotary-disk boring machine, comprise frame, the centre of described frame arranges a rotary table, described rotary table all separates four stations along 360 degree, four stations are followed successively by load/unload stations, heavy boring station, detect station, right boring station, two groups of fixtures for holding workpiece are provided with in each station, outside the circumference of rotary table, be provided with four columns, wherein two corresponding heavy boring stations of column, the corresponding right boring station of two other column, each column is sliding combined with main spindle box respectively, each main spindle box is moved along slide rail by the driven by servomotor that column is arranged, the main shaft that each main spindle box is arranged is driven by the spindle motor be arranged on each main spindle box respectively and rotates, described main shaft is coaxially connected with boring bar.The utility model working (machining) efficiency is high, and workpiece processing quality is good, effectively reduces the labour intensity of workman.
Description
Technical field
The utility model relates to boring machine field, particularly a kind of multi-station rotary-disk boring machine.
Background technology
Boring machine is that a kind of boring cutter that utilizes rotates the lathe existing pre-manufactured hole of workpiece being carried out to boring.Fixture at present on conventional boring machine can only grip a workpiece, the supporting boring cutter of boring machine cannot carry out heavy boring and right boring operation by the disposable pre-manufactured hole to workpiece, after the pre-manufactured hole just boring processing of workpiece, boring machine need be changed and carry out right boring processing, the working (machining) efficiency of workpiece is lower, cannot meet the demand of workpiece boring in enormous quantities, and workman needs repeatedly manual clamping, transfer workpiece, cause labor strength comparatively large, reduce workpiece processing quality.
Summary of the invention
The purpose of this utility model is for the deficiencies in the prior art, and provide a kind of multi-station rotary-disk boring machine, working (machining) efficiency is high, and workpiece processing quality is good, effectively reduces the labour intensity of workman.
The technical solution of the utility model is: a kind of multi-station rotary-disk boring machine, comprise frame, the centre of described frame arranges a rotary table, described rotary table all separates four stations along 360 degree, four stations are followed successively by load/unload stations, heavy boring station, detect station, right boring station, two groups of fixtures for holding workpiece are provided with in each station, outside the circumference of rotary table, be provided with four columns, wherein two corresponding heavy boring stations of column, the corresponding right boring station of two other column, each column is sliding combined with main spindle box respectively, each main spindle box is moved along slide rail by the driven by servomotor that column is arranged, the main shaft that each main spindle box is arranged is driven by the spindle motor be arranged on each main spindle box respectively and rotates, described main shaft is coaxially connected with boring bar.
The upper end of described main spindle box is installed with motor fixing plate, and spindle motor is fixedly mounted on motor fixing plate.
Described frame is provided with control panel and is electrically connected with spindle motor, rotary table, servomotor.
The gripper jaw of described fixture is by pneumatic or hydraulic control clamping.
Described spindle motor is rotated by the main shaft of each main spindle box of belt drives.
Adopt technique scheme: a kind of multi-station rotary-disk boring machine, comprise frame, the centre of described frame arranges a rotary table, described rotary table all separates four stations along 360 degree, four stations are followed successively by load/unload stations, heavy boring station, detect station, right boring station, and wherein load/unload stations is for mounting and dismounting workpiece, and first borer position is used for carrying out just boring operation to workpiece, testing is used for watching workpiece just boring disposition, and right boring station is used for carrying out right boring operation to workpiece.Two groups of fixtures for holding workpiece are provided with in each station, a station arranges two groups of fixtures, make rotary table to clamp altogether eight workpiece, disposable processing work quantity is many, and four stations rotate along with rotary table, change the position of the corresponding boring bar of station successively, just boring, right boring processing process are carried out successively to the workpiece on different station, working (machining) efficiency is high, avoids artificial frequent loading, unloading work, reduces hand labor intensity.Outside the circumference of rotary table, be provided with four columns, wherein two corresponding heavy boring stations of column, the corresponding right boring station of two other column, each column is sliding combined with main spindle box respectively, each main spindle box is moved along slide rail by the driven by servomotor that column is arranged, the main shaft that each main spindle box is arranged is driven by the spindle motor be arranged on each main spindle box respectively and rotates, described main shaft is coaxially connected with boring bar, boring bar is installed corresponding boring cutter, when rotary table is rotated in place, two main spindle boxes corresponding with first borer position carry out just boring operation to the workpiece of two on this station, when workbench continues to rotate to right boring station, two main spindle boxes corresponding with right boring station carry out right boring operation to the workpiece of two on this station, after right boring completes, workbench continues to rotate to load/unload stations, field-strip is carried out to workpiece, realize working continuously to workpiece, improve working (machining) efficiency, hand labor intensity is low, simple and quick, stable and reliable product quality.
Be further described below in conjunction with the drawings and specific embodiments.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model;
Fig. 2 is the A direction view of Fig. 1;
Fig. 3 is stereogram of the present utility model.
In accompanying drawing, 2 is rotary table, and 3 is column, and 4 is boring bar, and 6 is main spindle box, and 7 is motor fixing plate, and 8 is servomotor, and 9 is belt, and 10 is spindle motor, and 11 is fixture, and 12 is control panel, and 13 is frame, and 14 is main shaft.
Detailed description of the invention
See Fig. 1 to Fig. 3, a kind of multi-station rotary-disk boring machine, comprises frame 13, the centre of described frame 13 arranges a rotary table 2, the present embodiment, arranges a servo-controlled motor in described frame 13 and rotates for driven rotary workbench 2, and each anglec of rotation is 90 °.Described rotary table 2 all separates four stations along 360 degree, four stations are followed successively by load/unload stations, heavy boring station, detect station, right boring station, the angle of the corresponding circumference of each station is 90 °, two groups of fixtures 11 for holding workpiece are provided with in each station, a fixture 11 has two gripper jaws, two corresponding clamping supporting seats of gripper jaw, the gripper jaw of fixture 11 is by pneumatic or hydraulic control clamping, workpiece to be processed is arranged on clamping supporting seat, and is pressed on clamping clamping supporting seat realized to workpiece by gripper jaw.Outside the circumference of rotary table 2, be provided with four columns 3, wherein two corresponding heavy boring stations of column 3, the corresponding right boring station of two other column 3, each column 3 is sliding combined with main spindle box 6 respectively, and in the present embodiment, the side of described column 3 is provided with the bar-shaped trough extended vertically, each main spindle box 6 is slidably installed in bar-shaped trough, and each main spindle box 6 is driven by the servomotor 8 that column 3 is arranged and moves along bar-shaped trough is upper and lower.The main shaft 14 that each main spindle box 6 is arranged drives rotation by the spindle motor 10 be arranged on each main spindle box 6 respectively, in the present embodiment, the upper end of described main spindle box 6 is installed with motor fixing plate 7, spindle motor 10 is fixedly mounted on motor fixing plate 7, the main shaft 14 of each main spindle box 6 is driven to rotate by belt 9, for ease of controlling, frame 13 is provided with control panel 12 and spindle motor 10, servomotor 8 and servo-controlled motor electrical connection, by PLC programme-control spindle motor 10, servomotor 8 and servo-controlled motor rotate, main shaft is driven to rotate respectively, main spindle box is along on bar-shaped trough, lower movement, rotary table rotates.Described main shaft 14 is coaxially connected with boring bar 4.
During use, boring cutter installed by boring bar 4.With two each holding workpiece a of fixture, b on load/unload stations, rotary table 2 half-twist is controlled by control panel 12, load/unload stations is used two each holding workpiece c of fixture, d again, now workpiece a, b is positioned at just borer position, two main spindle boxes corresponding with first borer position are controlled by control panel 12, main spindle box is declined along column, is rotated by boring cutter and just boring operation is carried out to workpiece a, the b on this station, rotary table half-twist is again controlled by control panel 12, load/unload stations is used two each holding workpiece e of fixture, f again, now workpiece c, d is positioned at just borer position, two main spindle boxes corresponding with first borer position are controlled by control panel 12, main spindle box is declined along column, rotated by boring cutter and carry out just boring operation to workpiece c, the d on this station, now workpiece a, b is positioned at detection station, manually watches the first boring situation of workpiece a, b, rotary table half-twist is again controlled by control panel 12, load/unload stations is used two each holding workpiece g of fixture again, h, now workpiece e, f is positioned at just borer position, two main spindle boxes corresponding with first borer position are controlled by control panel 12, main spindle box is declined along column, rotated the workpiece e on this station by boring cutter, f carries out just boring operation, now workpiece c, d is positioned at detection station, manually watch workpiece c, the first boring situation of d, now workpiece a, b is positioned at right boring station, two main spindle boxes corresponding with right boring station are controlled by control panel 12, main spindle box is declined along column, rotated the workpiece a on this station by boring cutter, b carries out right boring operation, rotary table half-twist is again controlled by control panel 12, now workpiece a, b gets back to load/unload stations, artificial unloading's workpiece a, after b, again use two each holding workpiece i of fixture, j, now workpiece g, h is positioned at just borer position, two main spindle boxes corresponding with first borer position are controlled by control panel 12, main spindle box is declined along column, rotated the workpiece g on this station by boring cutter, h carries out just boring operation, now workpiece e, f is positioned at detection station, manually watch workpiece e, the first boring situation of f, now workpiece c, d is positioned at right boring station, two main spindle boxes corresponding with right boring station are controlled by control panel 12, main spindle box is declined along column, rotated the workpiece c on this station by boring cutter, d carries out right boring operation.Circulation like this, form Continuous maching, the working (machining) efficiency of workpiece is high.
Claims (5)
1. a multi-station rotary-disk boring machine, comprise frame (13), it is characterized in that: the centre of described frame (13) arranges a rotary table (2), described rotary table (2) all separates four stations along 360 degree, four stations are followed successively by load/unload stations, heavy boring station, detect station, right boring station, two groups of fixtures for holding workpiece (11) are provided with in each station, outside the circumference of rotary table (2), be provided with four columns (3), wherein two corresponding heavy boring stations of column (3), the corresponding right boring station of two other column (3), each column (3) is sliding combined with respectively main spindle box (6), each main spindle box (6) is driven by the upper servomotor (8) arranged of column (3) and moves along slide rail, the upper main shaft (14) arranged of each main spindle box (6) is driven by the spindle motor (10) be arranged on each main spindle box (6) respectively and rotates, described main shaft (14) is coaxially connected with boring bar (4).
2. multi-station rotary-disk boring machine according to claim 1, is characterized in that: the upper end of described main spindle box (6) is installed with motor fixing plate (7), and spindle motor (10) is fixedly mounted on motor fixing plate (7).
3. multi-station rotary-disk boring machine according to claim 1, is characterized in that: described frame (13) is provided with control panel (12) and is electrically connected with spindle motor (10), rotary table (2), servomotor (8).
4. multi-station rotary-disk boring machine according to claim 1, is characterized in that: the gripper jaw of described fixture (11) is by pneumatic or hydraulic control clamping.
5. multi-station rotary-disk boring machine according to claim 1, is characterized in that: described spindle motor (10) drives the main shaft (14) of each main spindle box (6) to rotate by belt (9).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201420699386.5U CN204353513U (en) | 2014-11-20 | 2014-11-20 | Multi-station rotary-disk boring machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201420699386.5U CN204353513U (en) | 2014-11-20 | 2014-11-20 | Multi-station rotary-disk boring machine |
Publications (1)
Publication Number | Publication Date |
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CN204353513U true CN204353513U (en) | 2015-05-27 |
Family
ID=53255010
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201420699386.5U Expired - Fee Related CN204353513U (en) | 2014-11-20 | 2014-11-20 | Multi-station rotary-disk boring machine |
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CN (1) | CN204353513U (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113894297A (en) * | 2021-08-27 | 2022-01-07 | 上海诺倬力机电科技有限公司 | Positive-auxiliary vertical double-spindle station device and processing machine tool |
CN114985793A (en) * | 2022-08-08 | 2022-09-02 | 烟台南山学院 | Vertical boring machine of multistation of machining |
-
2014
- 2014-11-20 CN CN201420699386.5U patent/CN204353513U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113894297A (en) * | 2021-08-27 | 2022-01-07 | 上海诺倬力机电科技有限公司 | Positive-auxiliary vertical double-spindle station device and processing machine tool |
CN114985793A (en) * | 2022-08-08 | 2022-09-02 | 烟台南山学院 | Vertical boring machine of multistation of machining |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20150527 Termination date: 20181120 |