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CN206425557U - Double main shaft hilted broadsword tower numerically controlled lathes - Google Patents

Double main shaft hilted broadsword tower numerically controlled lathes Download PDF

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Publication number
CN206425557U
CN206425557U CN201720069523.0U CN201720069523U CN206425557U CN 206425557 U CN206425557 U CN 206425557U CN 201720069523 U CN201720069523 U CN 201720069523U CN 206425557 U CN206425557 U CN 206425557U
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China
Prior art keywords
main shaft
servomotor
workpiece
frame
seat
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Active
Application number
CN201720069523.0U
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Chinese (zh)
Inventor
魏文龙
李阵风
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JIANGSU BOSUNMAN INDUSTRY EQUIPMENT Co Ltd
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JIANGSU BOSUNMAN INDUSTRY EQUIPMENT Co Ltd
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Priority to CN201720069523.0U priority Critical patent/CN206425557U/en
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Abstract

Double main shaft hilted broadsword tower numerically controlled lathes, are related to numerical control device field.Including lathe bed, the secondary main shaft frame of work spindle frame, workpiece, knife tower and slide track seat are provided with lathe bed;Work spindle frame is fixed on lathe bed, and workpiece pair main shaft frame can be arranged on slide track seat to left and right displacement;Knife tower can above and below, left and right displacement be arranged on slide track seat on;The first servomotor that servomotor spindle and driving servomotor spindle are rotated is installed, output end is provided with the first oild chuck on work spindle frame;Second servomotor of the secondary main shaft of servomotor and driving servomotor secondary main axis is installed, output end is provided with the second oild chuck on workpiece pair main shaft frame.Workpiece of the present utility model clamps the change for realizing work pieces process end face by the first oild chuck and the switching of the second oild chuck, then moves knife tower, and to complete the processing at workpiece two ends, relative to traditional numeric-control lathe, its automaticity is higher.

Description

Double main shaft hilted broadsword tower numerically controlled lathes
Technical field
The utility model is related to numerical control device field, specially a kind of pair main shaft hilted broadsword tower numerically controlled lathe.
Background technology
At present, lathe is to shaft-like workpiece during being processed, and uses after one end machines, shutdown passes through again It is artificial that workpiece on chuck is taken off into replacing processing end face, then the mode of the processing of the workpiece other end is completed, greatly reduce Operating efficiency, and shut down, add energy consumption in start process.
Utility model content
The purpose of this utility model is to provide pair that be a kind of simple in construction and can realizing the automatic switchover of shaft-like workpiece end face Main shaft hilted broadsword tower numerically controlled lathe.
Realizing the technical scheme of above-mentioned purpose is:Double main shaft hilted broadsword tower numerically controlled lathes, it is characterised in that:Including lathe bed, bed The secondary main shaft frame of work spindle frame, workpiece, knife tower and slide track seat are provided with it;
Work spindle frame is fixed on lathe bed, and workpiece pair main shaft frame can be arranged on slide track seat to left and right displacement;Knife tower is set Put in the top of work spindle frame, the secondary main shaft frame of workpiece, and can above and below, be arranged on slide track seat to left and right displacement;
The first servomotor that servomotor spindle and driving servomotor spindle are rotated is installed on work spindle frame, Output end, which is provided with the first oild chuck, servomotor spindle, to be also associated with being used to control the first oild chuck to clamp and unclamp First angling cylinder of workpiece;Servomotor secondary main shaft is installed on workpiece pair main shaft frame and the secondary main shaft of driving servomotor turns The second dynamic servomotor, output end is provided with the second oild chuck, is also associated with being used for controlling the on servomotor pair main shaft Two oild chucks clamp and unclamped the second angling cylinder of workpiece;First oild chuck and the second oild chuck are oppositely arranged.
Further, installed on slide track seat and be slidably fitted with the first peace in the first horizontal slide rail, first horizontal slide rail Fill and the first transversal driving mechanism that the first mounting seat of driving is slided along the first horizontal slide rail is installed on seat, the slide track seat;
The knife tower connecting seat being slidably fitted with vertical rails, vertical rails, knife tower are installed in first mounting seat Be provided with connecting seat in knife tower, the first mounting seat at the same be also associated with driving knife tower connecting seat vertically slide rail slide it is vertical Drive mechanism.
Further, the second horizontal slide rail is installed, second is laterally sliding on the slide track seat below first horizontal slide rail It is slidably fitted with rail and is provided with what the second mounting seat of driving was slided along the first horizontal slide rail on the second mounting seat, the slide track seat Second transversal driving mechanism;
The secondary main shaft frame of the workpiece is arranged in the second mounting seat.
Further, first transversal driving mechanism, vertical drive mechanism and the second transversal driving mechanism are used Ball screw drive device is driven, and screw mandrel is driven by motor to be rotated.
The beneficial effects of the utility model:
Workpiece of the present utility model switches clamping by the first oild chuck and the second oild chuck and realizes work pieces process end The change in face, then knife tower is moved, to complete the processing at workpiece two ends, relative to traditional numeric-control lathe, its automaticity is higher, Operating efficiency is higher.
Brief description of the drawings
Fig. 1 is structural representation of the present utility model;
Fig. 2 is Fig. 1 top view.
Embodiment
The utility model is described in more detail with reference to the accompanying drawings and detailed description.
As shown in Figure 1, 2, the utility model includes being provided with the secondary main shaft frame of work spindle frame 2, workpiece on lathe bed 1, lathe bed 1 3rd, knife tower 4 and slide track seat 5.
It is provided with the first horizontal slide rail 6 of two parallel arrangements, the first horizontal slide rail 6 and is slidably fitted with slide track seat 5 The first laterally driven machine that the first mounting seat 7 of driving is slided along the first horizontal slide rail 6 is installed on first mounting seat 7, slide track seat 5 The knife tower connecting seat 10 being slidably fitted with vertical rails 9, vertical rails 9, the connection of knife tower are installed in structure 8, the first mounting seat 7 It is provided with the knife tower 11 for being arranged on the secondary top of main shaft frame 3 of work spindle frame 2, workpiece, the first mounting seat 7 and also connects simultaneously on seat 10 It is connected to the vertical drive mechanism 11 that vertically slide rail 9 is slided of driving knife tower connecting seat 10.
Second horizontal slide rail 12 of two parallel arrangements is installed, second is horizontal on the slide track seat 5 of the lower section of the first horizontal slide rail 6 Being slidably fitted with the second mounting seat 13, slide track seat 5 to be provided with to slide rail 12 drives the second mounting seat 13 laterally sliding along first The second transversal driving mechanism 14 that rail 12 is slided.
Work spindle frame 2 is fixed on lathe bed 1, and workpiece pair main shaft frame 3 is arranged in the second mounting seat 13, it is possible to the Two mounting seats 13 are along the left and right displacement of the second horizontal slide rail 12.
The first servo that servomotor spindle 15 and driving servomotor spindle 15 are rotated is installed on work spindle frame 2 Motor 16, is connected, servomotor spindle 15 between the first servomotor 16 and servomotor spindle 15 by the first belt transmission Output end be provided with the first oild chuck 17, servomotor spindle 15 be also associated be used for control the first oild chuck 17 press from both sides The first angling cylinder 18 that is tight and unclamping workpiece.
Servomotor secondary main shaft 19 is installed on workpiece pair main shaft frame 3 and the secondary main shaft 19 of driving servomotor is rotated the Connected between two servomotors 20, the servomotor pair servomotor 20 of main shaft 19 and second by the second belt transmission, servo electricity The output end of machine pair main shaft 19 is provided with the second oild chuck 21, servomotor pair main shaft 19 and is also associated with being used to control second Oild chuck clamps and unclamped the second angling cylinder 22 of workpiece.
Wherein, the first oild chuck 17 and the second oild chuck 21 are oppositely arranged.
First transversal driving mechanism 8, the transversal driving mechanism 14 of vertical drive mechanism 11 and second are using public Ball screw driving structure, screw mandrel is driven by motor to be rotated, and concrete structure will not be repeated here.
Specific action process of the present utility model is:
1st, by clamping workpiece on the first oild chuck 17 of work spindle frame 2, clamping is completed, the band of the first servomotor 16 Start building part rotation, knife tower 4 is moved to the top of the first oild chuck 17, starts to process workpiece.By the rotation tool changing of knife tower 4, come Realize multistage manufacturing processes.When workpiece one end is machined, the first servomotor 16 drives workpiece to stop operating;
2nd, the second oild chuck 21 is close to the first oild chuck 17 under the driving of the second transversal driving mechanism 14, and The position of second angling cylinder 22 clamps one end that work pieces process is completed, and the first oild chuck 17 is in the first angling cylinder 18 Effect is lower to unclamp workpiece;
3rd, the second oild chuck 21 returns to original position under the driving of the second transversal driving mechanism 14, and the second servomotor 20 is opened It is dynamic to drive workpiece to rotate, while knife tower 13 is moved to the top of the second oild chuck 21, start to process the workpiece other end.
Machine, the second servomotor 20 drives workpiece to stop operating, and removes the workpiece on the second oild chuck 21, and The new workpiece of clamping on the first oild chuck 17.Above-mentioned action is repeated, fabrication cycles are formed.
Specific embodiment described herein is only to the utility model spirit explanation for example.The utility model institute Category those skilled in the art can make various modifications or supplement or using similar to described specific embodiment Mode substitute, but without departing from spirit of the present utility model or surmount scope defined in appended claims.

Claims (4)

1. double main shaft hilted broadsword tower numerically controlled lathes, it is characterised in that:Including lathe bed, work spindle frame, workpiece pair are provided with lathe bed Main shaft frame, knife tower and slide track seat;
Work spindle frame is fixed on lathe bed, and workpiece pair main shaft frame can be arranged on slide track seat to left and right displacement;Turret set-up exists The top of the secondary main shaft frame of work spindle frame, workpiece, and can above and below, be arranged on slide track seat to left and right displacement;
The first servomotor that servomotor spindle and driving servomotor spindle are rotated, output are installed on work spindle frame End, which is provided with the first oild chuck, servomotor spindle, to be also associated with being used to control the first oild chuck to clamp and unclamp workpiece The first angling cylinder;Servomotor secondary main shaft is installed on workpiece pair main shaft frame and the secondary main axis of servomotor is driven Second servomotor, output end is provided with the second oild chuck, servomotor pair main shaft and is also associated with being used to control the second liquid Chuck is pressed to clamp and unclamp the second angling cylinder of workpiece;First oild chuck and the second oild chuck are oppositely arranged.
2. according to claim 1 pair of main shaft hilted broadsword tower numerically controlled lathe, it is characterised in that:First is installed on slide track seat laterally It is slidably fitted with slide rail, first horizontal slide rail on the first mounting seat, the slide track seat and the first mounting seat of driving is installed The first transversal driving mechanism slided along the first horizontal slide rail;
The knife tower connecting seat being slidably fitted with vertical rails, vertical rails, the connection of knife tower are installed in first mounting seat It is provided with seat in knife tower, the first mounting seat while being also associated with driving the vertical driving that vertically slide rail is slided of knife tower connecting seat Mechanism.
3. according to claim 2 pair of main shaft hilted broadsword tower numerically controlled lathe, it is characterised in that:Below first horizontal slide rail Slide track seat on be provided with the second horizontal slide rail, the second horizontal slide rail and be slidably fitted with the second mounting seat, on the slide track seat The second transversal driving mechanism that the second mounting seat of driving is slided along the first horizontal slide rail is installed;
The secondary main shaft frame of the workpiece is arranged in the second mounting seat.
4. according to claim 3 pair of main shaft hilted broadsword tower numerically controlled lathe, it is characterised in that:The first laterally driven machine Structure, vertical drive mechanism and the second transversal driving mechanism are using the driving of ball screw drive device, and screw mandrel passes through motor Driving rotation.
CN201720069523.0U 2017-01-18 2017-01-18 Double main shaft hilted broadsword tower numerically controlled lathes Active CN206425557U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720069523.0U CN206425557U (en) 2017-01-18 2017-01-18 Double main shaft hilted broadsword tower numerically controlled lathes

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720069523.0U CN206425557U (en) 2017-01-18 2017-01-18 Double main shaft hilted broadsword tower numerically controlled lathes

Publications (1)

Publication Number Publication Date
CN206425557U true CN206425557U (en) 2017-08-22

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CN201720069523.0U Active CN206425557U (en) 2017-01-18 2017-01-18 Double main shaft hilted broadsword tower numerically controlled lathes

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112974864A (en) * 2021-03-19 2021-06-18 江苏博尚工业装备有限公司 Numerical control full-automatic camshaft double-turret excircle lathe
CN113118766A (en) * 2021-05-11 2021-07-16 佛山市顺德区英田数控机床有限公司 Double-spindle power turret numerical control lathe
CN114670021A (en) * 2022-03-24 2022-06-28 中国科学院深圳先进技术研究院 Numerical control machine tool for processing implant

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112974864A (en) * 2021-03-19 2021-06-18 江苏博尚工业装备有限公司 Numerical control full-automatic camshaft double-turret excircle lathe
CN113118766A (en) * 2021-05-11 2021-07-16 佛山市顺德区英田数控机床有限公司 Double-spindle power turret numerical control lathe
CN113118766B (en) * 2021-05-11 2022-06-24 佛山市顺德区英田数控机床有限公司 Double-spindle power turret numerical control lathe
CN114670021A (en) * 2022-03-24 2022-06-28 中国科学院深圳先进技术研究院 Numerical control machine tool for processing implant

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Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
PE01 Entry into force of the registration of the contract for pledge of patent right
PE01 Entry into force of the registration of the contract for pledge of patent right

Denomination of utility model: Two main shaft hilted broadsword tower numerical control lathe

Effective date of registration: 20180925

Granted publication date: 20170822

Pledgee: Nantong Productivity Promotion Center

Pledgor: Jiangsu Bosunman Industry Equipment Co., Ltd.

Registration number: 2018980000180

PC01 Cancellation of the registration of the contract for pledge of patent right
PC01 Cancellation of the registration of the contract for pledge of patent right

Date of cancellation: 20190902

Granted publication date: 20170822

Pledgee: Nantong Productivity Promotion Center

Pledgor: Jiangsu Bosunman Industry Equipment Co., Ltd.

Registration number: 2018980000180