CN207325956U - A kind of Double-head numerical controlled lathes - Google Patents

A kind of Double-head numerical controlled lathes Download PDF

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Publication number
CN207325956U
CN207325956U CN201720963511.2U CN201720963511U CN207325956U CN 207325956 U CN207325956 U CN 207325956U CN 201720963511 U CN201720963511 U CN 201720963511U CN 207325956 U CN207325956 U CN 207325956U
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China
Prior art keywords
pair
longitudinal
double
lathe bed
numerical controlled
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CN201720963511.2U
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Chinese (zh)
Inventor
陈传周
陈昌安
吕洋
潘雷
潘一雷
付强
吴俊颐
张豪
吴汉锋
曾庆炜
曾孙忠
马骅
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YALONG INTELLIGENT EQUIPMENT GROUP Co.,Ltd.
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Zhejiang Yalong Education Equipment Co Ltd
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Abstract

The utility model discloses a kind of Double-head numerical controlled lathes, including rack, the level table being arranged in the rack and the lathe bed being arranged in the rack, wherein, the relatively described level table of the lathe bed is in a certain angle, a pair of of turnning and milling mechanism is further included, a pair of of turnning and milling mechanism is symmetricly set in the rack.The lathe is used to educate real training, and the lathe bed in said structure does not have shell so that student can easily watch the method for operation and operating status of equipment.

Description

A kind of Double-head numerical controlled lathes
Technical field
It the utility model is related to machine tool real training field, and in particular to a kind of Double-head numerical controlled lathes.
Background technology
With the development of the modernization of industry, manufacturing all completes processing operation, such precision, effect using numerically-controlled machine tool Rate all greatly improves, and product quality is also significantly lifted, and greatly accelerates the modernization of industry paces in China, therefore good More universities, vocational school open up NC Machine Tool Teaching course one after another, in order to coordinate the teaching of numerically-controlled machine tool, according to numerical control The principle and structure of lathe produce small shape be used for impart knowledge to students numerically-controlled machine tool, it is called teaching machine tool, teaching machine tool area by we It is that lathe is smaller not with the major part of machining tool, easily dismounting, can allow student in the laboratory of no lifting tool In, lathe is dismounted, the construction and operation principle of numerically-controlled machine tool is understood in detail, avoids student from can only see one to lathe A overall impression, allows student preferably to learn the knowledge of numerically-controlled machine tool well, also allows the more interesting study of student to understand numerical control machine Bed, teaching lathe of the prior art carry shell, it has not been convenient to which student is visited and dismounted.
Utility model content
In view of this, the utility model provides a kind of Double-head numerical controlled lathes of convenient teaching.
To achieve the above object, the utility model provides following technical solution:
A kind of Double-head numerical controlled lathes, including rack, the level table that is arranged in the rack and it is arranged on the rack On lathe bed, wherein, the relatively described level table of the lathe bed is in a certain angle, further includes a pair of of turnning and milling mechanism, a pair of of turnning and milling Mechanism is symmetricly set in the rack.
Further, a pair of of turnning and milling mechanism includes axis system, and the axis system includes driving motor, bearing and master Axis, the driving motor are installed in the rack, and the bearing is fixed on the level table, and the main shaft is rotatably It is arranged on the bearing, the driving motor drives the main shaft to rotate by belt drive unit.
Further, the turnning and milling mechanism further includes tool carrier moving device, and the tool carrier moving device is installed on described On lathe bed and positioned at the rear of the main shaft.
Further, the tool carrier moving device includes longitudinal moving mechanism and transverse moving mechanism, and the longitudinal direction is moved Motivation structure is arranged on the lathe bed, and the transverse moving mechanism is arranged on the longitudinal moving mechanism.
Further, the longitudinal moving mechanism includes a pair of of longitudinal rail, longitudinal screw mandrel, longitudinal motor and big support Plate, a pair of of longitudinal rail are installed on the lathe bed, and the longitudinal screw mandrel can be rotatably set on the lathe bed, the longitudinal direction Motor is fixed on the lathe bed and is connected with the longitudinal screw mandrel, the big palette be arranged on a pair of of longitudinal rail and It is connected with the longitudinal screw mandrel.
Further, the transverse moving mechanism includes a pair of of cross slide way, cross motor, cross lead screw and knife rest Plate, a pair of of cross slide way are arranged on the big palette, and the cross lead screw can be rotatably set on the big palette, described Cross motor is fixed on the big palette and is connected with the cross lead screw, and the knife rest plate is arranged on a pair and laterally leads It is connected on rail and with the cross lead screw.
Further, the axis system is a pair, and a pair of of axis system is symmetricly set in the rack.
Further, a pair of of main shaft is symmetricly set on the level table, and a pair of of main shaft is coaxial.
Further, the tool carrier moving device is a pair, and a pair of of tool carrier moving device is symmetricly set on the lathe bed On, and it is corresponding with corresponding axis system.
It can be seen from the above technical scheme that the utility model has the advantages that:
1st, compared with prior art, the utility model embodies its economy, because it is not intended to processing industry level Product, be not very high to required precision, so to the accessory required precision of selection the price of product can be reduced with lower.
2nd, compared with prior art, the lathe bed of the utility model does not have shell, facilitates student to visit and tear open lathe Dress, understands the construction and operation principle of numerically-controlled machine tool, allows student preferably to learn the knowledge of numerically-controlled machine tool well in detail.
In addition to objects, features and advantages described above, the utility model also has other purposes, feature and excellent Point.Below with reference to figure, the utility model is described in further detail.
Brief description of the drawings
In order to illustrate the embodiment of the utility model or the technical proposal in the existing technology more clearly, below will be to embodiment Or attached drawing needed to be used in the description of the prior art is briefly described, it should be apparent that, drawings in the following description are only It is some embodiments of the utility model, for those of ordinary skill in the art, in the premise not made the creative labor Under, other attached drawings can also be obtained according to these attached drawings.In the accompanying drawings:
Fig. 1 is the stereogram of the utility model.
In figure mark for:Rack -10, level table -20, lathe bed -30, turnning and milling mechanism -40, axis system -41, driving electricity Machine -411, bearing -412, main shaft -413, tool carrier moving device -42, cross slide way -421, big palette -422, cross motor - 423rd, cross lead screw -424, knife rest plate -425, longitudinal rail -426, longitudinal screw mandrel -427, longitudinal motor -428, universal wheel -50.
Embodiment
The following is a combination of the drawings in the embodiments of the present utility model, and the technical scheme in the embodiment of the utility model is carried out Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole Embodiment.Based on the embodiment in the utility model, those of ordinary skill in the art are without making creative work All other embodiments obtained, shall fall within the protection scope of the present invention.
With reference to figure 1, a kind of Double-head numerical controlled lathes as shown in Figure 1, including rack 10, the water that is arranged in the rack 10 Flat surface 20 and the lathe bed 30 being arranged in the rack 10, wherein, the relatively described level table 20 of the lathe bed 30 is in certain Angle.In the present embodiment, the angle between the lathe bed 30 and the level table 20 is 45 °, and 45 ° are tilted using lathe bed Structure arranges that rigidity is good, chip removal is convenient, repairs with easy to adjust, in actual production, as long as the angle is equal between 40 °~60 ° It can implement the purpose of this utility model.In the present embodiment, ten thousand are provided with four angles on the bottom surface of the rack 10 To wheel 50, lathe can so be moved when necessary, will not be very laborious.This Double-head numerical controlled lathes further includes one To turnning and milling mechanism 40, a pair of of turnning and milling mechanism 40 is symmetricly set in the rack 10, sets a pair of of turnning and milling mechanism 40 right at the same time Two (similar and different) end faces or two (similar and different) parts are processed.
Wherein, a pair of of turnning and milling mechanism 40 includes axis system 41, and the axis system 41 includes driving motor 411, bearing 412 and main shaft 413, the driving motor 411 is installed in the rack 10, and the bearing 412 is fixed on the level table On 20, the main shaft 413 can be rotatably set on the bearing 412, and the driving motor 411 is driven by belt drive unit Move the main shaft 413 to rotate, the turnning and milling mechanism 40 further includes tool carrier moving device 42, and the tool carrier moving device 42 is installed on Include longitudinal moving mechanism and transverse direction on the lathe bed 30 and positioned at the rear of the main shaft 413, the tool carrier moving device 42 Moving mechanism, the longitudinal moving mechanism are arranged on the lathe bed 30, and the transverse moving mechanism is arranged on the longitudinal direction and moves On motivation structure, longitudinal moving mechanism control cutter Z axis to movement, the transverse moving mechanism controls cutter in X-axis To movement.Wherein, the longitudinal moving mechanism includes a pair of of longitudinal rail 426, longitudinal screw mandrel 427, longitudinal motor 428 and big Supporting plate 422, a pair of of longitudinal rail 426 are installed on the lathe bed 30.In the present embodiment, lathe bed has guide rail using 45 ° of inclinations Form, has the advantages that compact-sized, layout is advanced rationally, chip removal performance is good, easy to operate.
Particularly, the longitudinal screw mandrel 427 can be rotatably set on the lathe bed 30, and the longitudinal motor 428 is fixed It is connected on the lathe bed 30 and with the longitudinal screw mandrel 427, the big palette 422 is arranged on a pair of of longitudinal rail 426 It is upper and be connected with the longitudinal screw mandrel 427, the transverse moving mechanism include a pair of of cross slide way 421, cross motor 423, Cross lead screw 424 and knife rest plate 425, in the present embodiment, cutter are then installed on knife rest plate, and a pair of of cross slide way 421 is set On the big palette 422, the cross lead screw 424 can be rotatably set on the big palette 422, the cross motor 423 are fixed on the big palette 422 and are connected with the cross lead screw 424, and the knife rest plate 425 is arranged on a pair of of horizontal stroke It is connected on direction guiding rail 421 and with the cross lead screw 424, drives longitudinal screw mandrel 427 to transport under the driving of longitudinal motor 428 It is dynamic, so as to drive big palette 422 and knife rest plate 425 above to be moved along Z-direction, in the driving effect of cross motor 423 Lower drive cross lead screw 424 moves, so as to drive the knife rest plate 425 on cross slide way 421 to be moved along X-direction.
Preferably, the axis system 41 is a pair, and a pair of of axis system 41 is symmetricly set in the rack 10, a pair of Main shaft 413 is symmetricly set on the level table 20, and a pair of of main shaft 413 is coaxial, wherein, each main shaft joins with encoder Connect, encoder is electrically connected with digital control system, and the rotating speed of left and right main shaft is input to digital control system by encoder, then digital control system The rotating speed of left and right main shaft is controlled, main shaft uses symmetrical structure, makes thermal deformation uniform, avoids main-shaft core therefore produces inclined Move, in the present embodiment, the tool carrier moving device 42 is a pair, and a pair of of tool carrier moving device 42 is symmetricly set on the lathe bed 30 On, and corresponded to corresponding axis system 41.
Due to the utilization of above-mentioned technical proposal, the utility model has following advantages compared with prior art:It is economical and practical; Student is allowed to learn the generation method of processing program while lathe principle and function is learnt, to go on work position, Theory is used in practice, carries out comprehensive preparation.
It these are only the preferred embodiment of the utility model, be not intended to limit the present invention, for this area Technical staff for, various modifications and changes may be made to the present invention.Where within the spirit and principles of the present invention, Any modification, equivalent replacement, improvement and so on, should be included within the scope of protection of this utility model.

Claims (9)

1. a kind of Double-head numerical controlled lathes, including rack (10), the level table (20) that is arranged in the rack (10) and set Lathe bed (30) in the rack (10), it is characterised in that the relatively described level table (20) of the lathe bed (30) is in certain Angle, further includes a pair of of turnning and milling mechanism (40), and a pair of of turnning and milling mechanism (40) is symmetricly set in the rack (10).
2. Double-head numerical controlled lathes according to claim 1, it is characterised in that a pair of of turnning and milling mechanism (40) includes axis system (41), the axis system (41) includes driving motor (411), bearing (412) and main shaft (413), the driving motor (411) In the rack (10), the bearing (412) is fixed on the level table (20), and the main shaft (413) can revolve It is arranged on the bearing (412) with turning, the driving motor (411) drives the main shaft (413) by belt drive unit Rotation.
3. Double-head numerical controlled lathes according to claim 2, it is characterised in that the turnning and milling mechanism (40) further includes knife rest shifting Dynamic device (42), the tool carrier moving device (42) are installed on the lathe bed (30) and after the main shaft (413) Side.
4. Double-head numerical controlled lathes according to claim 3, it is characterised in that the tool carrier moving device (42) includes longitudinal direction Moving mechanism and transverse moving mechanism, the longitudinal moving mechanism are arranged on the lathe bed (30), the transverse moving mechanism It is arranged on the longitudinal moving mechanism.
5. Double-head numerical controlled lathes according to claim 4, it is characterised in that the longitudinal moving mechanism includes a pair of of longitudinal direction Guide rail (426), longitudinal screw mandrel (427), longitudinal motor (428) and big palette (422), a pair of of longitudinal rail (426) are installed on institute State on lathe bed (30), the longitudinal screw mandrel (427) can be rotatably set on the lathe bed (30), the longitudinal motor (428) It is fixed on the lathe bed (30) and is connected with the longitudinal screw mandrel (427), the big palette (422) is arranged on a pair of vertical It is connected on direction guiding rail (426) and with the longitudinal screw mandrel (427).
6. Double-head numerical controlled lathes according to claim 5, it is characterised in that the transverse moving mechanism includes a pair of horizontal Guide rail (421), cross motor (423), cross lead screw (424) and knife rest plate (425), a pair of of cross slide way (421) are arranged on institute State on big palette (422), the cross lead screw (424) can be rotatably set on the big palette (422), the cross motor (423) it is fixed on the big palette (422) and is connected with the cross lead screw (424), the knife rest plate (425) is set It is connected on a pair of of cross slide way (421) and with the cross lead screw (424).
7. Double-head numerical controlled lathes according to claim 2, it is characterised in that the axis system (41) is a pair, a pair of Axis system (41) is symmetricly set in the rack (10).
8. Double-head numerical controlled lathes according to claim 7, it is characterised in that a pair of of main shaft (413) is symmetricly set on described On level table (20), a pair of of main shaft (413) is coaxial.
9. Double-head numerical controlled lathes according to claim 3, it is characterised in that the tool carrier moving device (42) is a pair, A pair of of tool carrier moving device (42) is symmetricly set on the lathe bed (30), and corresponding with corresponding axis system (41).
CN201720963511.2U 2017-08-03 2017-08-03 A kind of Double-head numerical controlled lathes Active CN207325956U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720963511.2U CN207325956U (en) 2017-08-03 2017-08-03 A kind of Double-head numerical controlled lathes

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720963511.2U CN207325956U (en) 2017-08-03 2017-08-03 A kind of Double-head numerical controlled lathes

Publications (1)

Publication Number Publication Date
CN207325956U true CN207325956U (en) 2018-05-08

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113351921A (en) * 2021-06-11 2021-09-07 温州职业技术学院 Numerically controlled fraise machine convenient to carry out sweeps clearance
CN109227138B (en) * 2018-09-28 2023-09-29 广东博克斯智能机床科技有限公司 Numerical control machine tool

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109227138B (en) * 2018-09-28 2023-09-29 广东博克斯智能机床科技有限公司 Numerical control machine tool
CN113351921A (en) * 2021-06-11 2021-09-07 温州职业技术学院 Numerically controlled fraise machine convenient to carry out sweeps clearance

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CP01 Change in the name or title of a patent holder

Address after: Yongjia Industrial Park Wenzhou City, Zhejiang province 325000 (Oubei Fort two)

Patentee after: YALONG INTELLIGENT EQUIPMENT GROUP Co.,Ltd.

Address before: Yongjia Industrial Park Wenzhou City, Zhejiang province 325000 (Oubei Fort two)

Patentee before: ZHEJIANG YALONG EDUCATIONAL EQUIPMENT JOINT-STOCK Co.,Ltd.

CP01 Change in the name or title of a patent holder