CN205834914U - Numerical control machine tool - Google Patents

Numerical control machine tool Download PDF

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Publication number
CN205834914U
CN205834914U CN201620525017.3U CN201620525017U CN205834914U CN 205834914 U CN205834914 U CN 205834914U CN 201620525017 U CN201620525017 U CN 201620525017U CN 205834914 U CN205834914 U CN 205834914U
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CN
China
Prior art keywords
board
numerical control
machine tool
control machine
working
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Active
Application number
CN201620525017.3U
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Chinese (zh)
Inventor
杨明陆
贾见士
隋景双
李章飞
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Fuding Electronic Technology Jiashan Co Ltd
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Fuding Electronic Technology Jiashan Co Ltd
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Priority to CN201620525017.3U priority Critical patent/CN205834914U/en
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Abstract

The utility model proposes a kind of numerical control machine tool, be used for processing workpiece, this numerical control machine tool includes board, the clamping device being arranged on this board, is slidably arranged on this board and is positioned at the main organisation of working above this clamping device.This numerical control machine tool also includes that this clamping device neighbouring arranges and is positioned at the side organisation of working below this main organisation of working.This clamping device includes that be arranged on this board two pedestals being oppositely arranged, two ends are connected to the returning face plate on two these pedestals, the revolving part being rotatably arranged on this returning face plate the most rotationally and are arranged on the holder on this revolving part, and this holder clamps this workpiece.This main organisation of working includes the sliding part being slidably arranged on this board, be connected on this sliding part tool feeding part and be removably disposed in the first cutter on this tool feeding part.This side organisation of working includes the high-speed driving part being slidably arranged on this board and is removably disposed in the second cutter on this high-speed driving part.

Description

Numerical control machine tool
Technical field
This utility model relates to a kind of numerical control machine tool, particularly to a kind of digital control processing being capable of Compound Machining Lathe.
Background technology
Commercial production usually needs utilize lathe that surface of the work is processed.When to surface of the work requirement on machining accuracy Time higher, can be realized by the feed arrangement being arranged on board.This feed arrangement generally includes drive mechanism and cutter. Drive mechanism be installed on board and can drive cutter towards workpiece feeding, meanwhile, workpiece relative to feed arrangement transverse shifting with Coordinate workpiece processing tool surface.But, traditional machine tool processing mode is single, thus causes working (machining) efficiency relatively low.
Utility model content
In view of above-mentioned condition, it is necessary to provide the numerical control machine tool that a kind of working (machining) efficiency is higher.
A kind of numerical control machine tool, is used for processing workpiece, and this numerical control machine tool includes board, is arranged on this board Clamping device, it is slidably arranged on this board and is positioned at the main organisation of working above this clamping device.This numerical control machine tool Also include that this clamping device neighbouring arranges and is positioned at the side organisation of working below this main organisation of working.This clamping device includes arranging Pedestal, two ends that on this board two are oppositely arranged are connected to the returning face plate on two these pedestals the most rotationally, set rotationally Putting the revolving part on this returning face plate and be arranged on the holder on this revolving part, this holder clamps this workpiece.This main processing Mechanism includes the sliding part being slidably arranged on this board, be connected on this sliding part tool feeding part and removably setting Put the first cutter on this tool feeding part.This side organisation of working includes the high-speed driving part being slidably arranged on this board And it is removably disposed in the second cutter on this high-speed driving part.
Further, this numerical control machine tool also includes coiler, and this coiler includes the biography being positioned at below board Send band, be positioned at the coiled strip actuator of this conveyer belt end and be positioned at the collection magazine of lower section of end of this conveyer belt.
Further, this board is to offering blanking port by clamping device, and the other end of this conveyer belt is positioned at this blanking The lower section of mouth.
Further, this board includes casing, and this casing includes chamber door and controls module, and this chamber door is arranged on opening or closing On the sidewall of casing, this control module is arranged on outside this casing to control the machined parameters of this numerical control machine tool.
Further, this board also includes two supporting walls, and this two supporting walls lays respectively at the both sides of this board, each support Being provided with the first slide rail on wall, this main organisation of working is slidably arranged on two these the first slide rails.
Further, this board also includes that installation portion with collecting and installs clamping device, and this installation portion is recessed at this machine Groove within platform.
Further, this board also includes the mounting platform that this installation portion neighbouring is arranged, and this mounting platform includes that second is sliding Rail, this side organisation of working is slidably arranged on this second slide rail, and this mounting platform is obliquely installed towards this installation portion.
Further, this board also includes tool magazine, and this tool magazine is arranged on this board and is positioned at below this main organisation of working, Cutter to be replaced it is contained with in this tool magazine.
Further, this sliding part includes two sliding seats being slidably arranged on this board, is connected to this two sliding seat Between crossbeam, the 3rd slide rail being arranged on this crossbeam and be slidably arranged in the sliding panel on the 3rd slide rail.
Further, this board also includes electric cabinet, and this electric cabinet is arranged on the side of this board to realize digital control processing The electrical control of lathe.
Above-mentioned numerical control machine tool includes clamping device, returning face plate upset workpiece, revolving part turning of work piece such that it is able to appoint Meaning adjusts the machining posture of workpiece, and main organisation of working is positioned at above clamping device, and sliding part drives the first cutter in the horizontal direction Upper the most mobile, tool feeding part drives the first cutter in the vertical direction the most mobile, thus realizes the processing to workpiece, with Time, side organisation of working is arranged adjacent to clamping device, and is positioned at the lower section of main organisation of working, processes work not hindering main organisation of working On the premise of part, high-speed driving part drives the second cutter to be processed workpiece, thus realizes the different parts to workpiece simultaneously Processing, and then improve working (machining) efficiency.
Accompanying drawing explanation
Fig. 1 is the schematic perspective view of numerical control machine tool of the present utility model.
Fig. 2 is the perspective exploded view of the numerical control machine tool shown in Fig. 1.
Fig. 3 is the schematic perspective view of the board of the numerical control machine tool shown in Fig. 2.
Fig. 4 is the schematic perspective view of the clamping device of the numerical control machine tool shown in Fig. 2.
Fig. 5 is the schematic perspective view of the main organisation of working of the numerical control machine tool shown in Fig. 2.
Fig. 6 is the schematic perspective view of the side organisation of working of the numerical control machine tool shown in Fig. 2.
Fig. 7 is the schematic perspective view of the coiler of the numerical control machine tool shown in Fig. 2.
Main element symbol description
Numerical control machine tool 100
Workpiece 200
Board 10
Platform body 11
Supporting walls 111
First slide rail 1111
Installation portion 112
Mounting platform 113
Second slide rail 1131
Tool magazine 114
Blanking port 115
Casing 12
Chamber door 111
Control module 112
Electric cabinet 13
Clamping device 20
Pedestal 21
Returning face plate 22
Revolving part 23
Holder 24
Sucker 241
Main organisation of working 30
Sliding part 31
Crossbeam 311
Two sliding seats 312
3rd slide rail 313
Sliding panel 314
Tool feeding part 32
First cutter 33
Side organisation of working 40
High-speed driving part 41
Second cutter 42
Coiler 50
Conveyer belt 51
Coiled strip actuator 52
Collect magazine 53
Following detailed description of the invention will further illustrate this utility model in conjunction with above-mentioned accompanying drawing.
Detailed description of the invention
Below in conjunction with the accompanying drawing in this utility model embodiment, the technical scheme in this utility model embodiment is carried out Clearly and completely describe, it is clear that described embodiment is only a part of embodiment of this utility model rather than whole Embodiment.Based on the embodiment in this utility model, those of ordinary skill in the art are not under making creative work premise The every other embodiment obtained, broadly falls into the scope of this utility model protection.
It should be noted that when an assembly is considered as " connection " another assembly, and it can be directly to separately One assembly or may be simultaneously present the assembly being centrally located.When an assembly is considered as " being arranged on " another assembly, It can be to be set directly on another assembly or may be simultaneously present the assembly being centrally located.
Unless otherwise defined, all of technology used herein and scientific terminology are led with belonging to technology of the present utility model The implication that the technical staff in territory is generally understood that is identical.At term used in the description of the present utility model it is simply herein The purpose of specific embodiment is described, it is not intended that in limiting this utility model.Term as used herein " and/or " include Arbitrary and all of combination of one or more relevant Listed Items.
Please refer to Fig. 1 and Fig. 2, this utility model provides a kind of numerical control machine tool 100, including board 10, clamping Mechanism 20, main organisation of working 30, side organisation of working 40 and coiler 50.Clamping device 20 is arranged on board 10, is used for pressing from both sides Hold and fix workpiece 200.Main organisation of working 30 is arranged on above clamping device 30 to process workpiece 200.Side organisation of working 40 is adjacent Nearly clamping device 20 arranges and is positioned at below main organisation of working 30, for secondary process workpiece 200.Coiler 50 is arranged on machine Below platform 10, for collecting the scrap produced in workpiece 200 course of processing.
Board 10 includes platform body 11, casing 12 and electric cabinet 13.Platform body 11 is used for installing clamping device 20, master Organisation of working 30 and side organisation of working 40.Casing 12 is located in platform body 11 to ensure process safety.Casing 12 includes case Door 121 and control module 122.Chamber door 121 is arranged on the sidewall of casing 12 opening or closing, to facilitate processing.Control module 122 It is arranged on casing 12 outside, to control all kinds of machined parameters of numerical control machine tool 100.In the present embodiment, module 122 is controlled Including button and Touch Screen, but it is not limited to this.Electric cabinet 13 is arranged on the side of platform body 11, is used for realizing digital control processing All kinds of electrical controls of lathe 100.
Referring to Fig. 3, platform body 11 includes supporting walls 111, installation portion 112, mounting platform 113 and tool magazine 114.Support Wall 111 is two, and is positioned at the both sides of platform body 11.The first slide rail 1111 it is provided with on each supporting walls 111.Main processing machine Structure 30 is slidably arranged on two the first slide rails 1111, and main organisation of working 30 is erected at above clamping device 20.Installation portion 112 between two supporting walls 111, are used for housing and install clamping device 20(as shown in Figure 2).Offer on installation portion 112 Blanking port 115, blanking port 115 is substantially in funnel-form and run through whole platform body 11 and arrange, so that the scrap that processing produces Fall to coiler 50(as shown in Figure 1 through blanking port 115) on to complete the automatic collection of scrap.In the present embodiment, peace Dress portion 112 is recessed at the groove structure within platform body 11.Mounting platform 113 is arranged adjacent to installation portion 112, and it includes Two slide rails 1131.Side organisation of working 40(is as shown in Figure 2) it is slidably arranged on the second slide rail 1131.In the present embodiment, peace Assembling platform 113 is obliquely installed towards installation portion 112, so that side organisation of working 40 can be towards the clamping device in installation portion 112 20 are arranged, thus facilitate side organisation of working 40 to process the workpiece on clamping device 20.Tool magazine 114 is arranged in platform body 11 also Being positioned at below main organisation of working 30, be contained with cutter 1141 to be replaced in tool magazine 114, main organisation of working 30 moves to tool magazine To be convenient for changing cutter above in the of 114.
Referring to Fig. 4, clamping device 20 includes two pedestals 21, returning face plate 22, revolving part 23 and holder 24.Two pedestals 21 Almost parallel it is disposed on installation portion 112(as shown in Figure 3) in, and between two supporting walls 111.The two ends of returning face plate 22 Being connected to the most rotationally on two pedestals 21, returning face plate 22 can be relative to two pedestals 21 with arbitrarily angled upset.Revolving part 23 Being rotatably arranged on returning face plate 22, revolving part 23 can rotate relative to returning face plate 22.Holder 24 is fixedly installed on rotation On part 23, it includes multiple sucker 241, and multiple suckers 241 coordinate draws workpiece 200 so that workpiece 200 location is fixed on clamping On part 24.Returning face plate 22 can drive workpiece 200 relative to two pedestals 21 with arbitrarily angled upset, and meanwhile, revolving part 23 can Drive workpiece 200 to rotate relative to returning face plate 22, thus adjust the machining posture of workpiece 200.
Referring to Fig. 5, main organisation of working 30 includes sliding part 31, tool feeding part 32 and the first cutter 33.Sliding part 31 It is slidably arranged in two the first slide rail 1111(of two supporting walls 111 as shown in Figure 3) on.Sliding part 31 includes crossbeam 311, two Sliding seat the 312, the 3rd slide rail 313 and sliding panel 314.Two sliding seats 312 are respectively installed in the two ends of crossbeam 311, and respectively with The first slide rail 1111 on two supporting walls 111 slides and connects.3rd slide rail 313 is arranged on crossbeam 311, and sliding panel 314 slides Be arranged on the 3rd slide rail 313.Tool feeding part 32 is fixedly installed on sliding panel 314, and the first cutter 33 removably connects It is connected on tool feeding part 32.Sliding part 31 can drive the first cutter 33 to move along X, Y-axis respectively, and tool feeding part 32 can Drive the first cutter 33 along X-direction feeding, thus realize the processing to workpiece 200.In the present embodiment, the first cutter 33 is Milling cutter, carries out Milling Process to workpiece 200.
Referring to Fig. 6, side organisation of working 40 includes high-speed driving part 41 and the second cutter 42.High-speed driving part 41 is slidably It is arranged on the second slide rail 1131(of mounting platform 113 as shown in Figure 3) on, the second cutter 42 is detachably connected to high-speed driving On part 41.High-speed driving part 41 drives the second cutter 42 to do high speed back and forth movement along the second slide rail 1131, thus processes workpiece 200.In the present embodiment, the second cutter 42 is lathe tool, and workpiece 200 is carried out turnery processing.
Referring to Fig. 7, coiler 50 includes conveyer belt 51, coiled strip actuator 52 and collects magazine 53.Conveyer belt 51 One end is positioned at blanking port 115(as shown in Figure 3) lower section, the other end of conveyer belt 51 connects coiled strip actuator 52.The course of processing The scrap of middle generation falls on conveyer belt 51 through blanking port 115, and coiled strip actuator 52 drives conveyer belt 51 to rotate.Collect magazine 53 are positioned at the lower section that conveyer belt 51 connects the end of coiled strip actuator 52, after scrap moves to its end with conveyer belt 51, fall into Collect in magazine 53, thus realize the automatic collection of scrap.
Numerical control machine tool 100 of the present utility model includes that clamping device 20, returning face plate 22 overturn workpiece 200, revolving part 23 turning of work piece 200 such that it is able to arbitrarily adjusting the machining posture of workpiece 200, main organisation of working 30 is positioned on clamping device 20 Side, sliding part 31 drives the first cutter 33 the most mobile, and tool feeding part 32 drives the first cutter 33 perpendicular Nogata is the most mobile, thus realizes the processing to workpiece 200, and meanwhile, side organisation of working 40 is arranged adjacent to clamping device 20, And it is positioned at the lower section of main organisation of working 30, and on the premise of not hindering main organisation of working 30 to process workpiece 200, high-speed driving part 41 Drive the second cutter 42 that workpiece 200 is processed, thus realize the different parts of workpiece 200 is processed simultaneously, and then improve Working (machining) efficiency.It addition, main organisation of working 30 shares clamping device 20 with side organisation of working 40, it is possible to reduce clamping times, thus Reduce mismachining tolerance.
Being appreciated that in other embodiments, installation portion 112 can also be platform structure, and clamping device 20 is arranged on this On platform.
Being appreciated that in other embodiments, blanking port 115 can omit, by manual or automatic adsorption mechanism, such as magnetic Property part, scrap is also put to coiler 50 to be collected by periodic cleaning scrap.
Being appreciated that in other embodiments, coiler 50 can omit, by manual or automatic adsorption mechanism, as Magnetic part, periodic cleaning and collection scrap.
Being appreciated that in other embodiments, mounting platform 113 can also be horizontally disposed with, and is adjusted by clamping device 20 The machining angle of workpiece 200, thus facilitate side organisation of working 40 to process workpiece 200.
Being appreciated that in other embodiments, holder 24 can also be the multiple fixture blocks being connected with an actuator, passes through Actuator drives multiple fixture blocks to move near direction each other, thus clamps workpiece 200.
It addition, those skilled in the art also can do other change in this utility model spirit, certainly, these are according to this reality The change done by novel spirit, all should be included in this utility model scope required for protection.

Claims (10)

1. a numerical control machine tool, is used for processing workpiece, and this numerical control machine tool includes board, the folder being arranged on this board Hold mechanism, be slidably arranged on this board and be positioned at the main organisation of working above this clamping device, it is characterised in that: this numerical control Machining tool also includes that this clamping device neighbouring arranges and is positioned at the side organisation of working below this main organisation of working, this clamping device The pedestal that is oppositely arranged including two be arranged on this board, two ends be connected to the most rotationally the returning face plate on two these pedestals, Being rotatably arranged at the revolving part on this returning face plate and be arranged on the holder on this revolving part, this holder clamps this workpiece, This main organisation of working includes the sliding part being slidably arranged on this board, be connected on this sliding part tool feeding part and can Releasably being arranged on the first cutter on this tool feeding part, this side organisation of working includes the height being slidably arranged on this board Speed actuator and be removably disposed in the second cutter on this high-speed driving part.
2. numerical control machine tool as claimed in claim 1, it is characterised in that: this numerical control machine tool also includes coiler, This coiler includes being positioned at the conveyer belt below board, is positioned at the coiled strip actuator of this conveyer belt end and is positioned at this conveyer belt Collection magazine below one end.
3. numerical control machine tool as claimed in claim 2, it is characterised in that: this board is to offering blanking by clamping device Mouthful, the other end of this conveyer belt is positioned at the lower section of this blanking port.
4. numerical control machine tool as claimed in claim 1, it is characterised in that: this board includes platform body and is located at this machine Casing on playscript with stage directions body, this casing includes chamber door and controls module, and this chamber door is arranged on the sidewall of casing opening or closing, this control Molding group is arranged on outside this casing to control the machined parameters of this numerical control machine tool.
5. numerical control machine tool as claimed in claim 1, it is characterised in that: this board also includes two supporting walls, this two support Wall lays respectively at the both sides of this board, and each supporting walls is provided with the first slide rail, and this main organisation of working is slidably arranged in two On this first slide rail individual.
6. numerical control machine tool as claimed in claim 1, it is characterised in that: this board also includes that installation portion is to house and to install Clamping device, this installation portion is recessed at the groove within this board.
7. numerical control machine tool as claimed in claim 6, it is characterised in that: this board also includes what this installation portion neighbouring was arranged Mounting platform, this mounting platform includes the second slide rail, and this side organisation of working is slidably arranged on this second slide rail, and this installation is put down Platform is obliquely installed towards this installation portion.
8. numerical control machine tool as claimed in claim 1, it is characterised in that: this board also includes tool magazine, and this tool magazine is arranged on On this board and be positioned at below this main organisation of working, in this tool magazine, it is contained with cutter to be replaced.
9. numerical control machine tool as claimed in claim 1, it is characterised in that: this sliding part includes being slidably arranged in this board On two sliding seats, the crossbeam being connected between this two sliding seat, the 3rd slide rail being arranged on this crossbeam and arrange slidably Sliding panel on the 3rd slide rail.
10. numerical control machine tool as claimed in claim 1, it is characterised in that: this board also includes electric cabinet, and this electric cabinet sets Put in the side of this board to realize the electrical control of numerical control machine tool.
CN201620525017.3U 2016-06-02 2016-06-02 Numerical control machine tool Active CN205834914U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620525017.3U CN205834914U (en) 2016-06-02 2016-06-02 Numerical control machine tool

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620525017.3U CN205834914U (en) 2016-06-02 2016-06-02 Numerical control machine tool

Publications (1)

Publication Number Publication Date
CN205834914U true CN205834914U (en) 2016-12-28

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ID=57622994

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201620525017.3U Active CN205834914U (en) 2016-06-02 2016-06-02 Numerical control machine tool

Country Status (1)

Country Link
CN (1) CN205834914U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109623439A (en) * 2018-12-29 2019-04-16 天津市华天世纪机械有限公司 A kind of four-axle linked formula numerical control machining center and its working method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109623439A (en) * 2018-12-29 2019-04-16 天津市华天世纪机械有限公司 A kind of four-axle linked formula numerical control machining center and its working method
CN109623439B (en) * 2018-12-29 2021-02-05 天津市华天世纪机械有限公司 Four-axis linkage type numerical control machining center and working method thereof

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