CN205970552U - Moving column engraving and milling machine with supplementary feed mechanism - Google Patents
Moving column engraving and milling machine with supplementary feed mechanism Download PDFInfo
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- CN205970552U CN205970552U CN201620811729.1U CN201620811729U CN205970552U CN 205970552 U CN205970552 U CN 205970552U CN 201620811729 U CN201620811729 U CN 201620811729U CN 205970552 U CN205970552 U CN 205970552U
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- board
- screw mandrel
- conveyer belt
- walking mechanism
- auxiliary feeding
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Abstract
The utility model discloses a moving column engraving and milling machine with supplementary feed mechanism, including being used for bearing the weight of by carving's board and striding the frame of locating on the board, still including drive chassis along the Y axle running gear of the vertical walking of board, along the X axle running gear of the horizontal walking of frame and locate X axle running gear and go up the Z axle running gear who walks perpendicularly, on engraving machine main shaft is fixed in X axle running gear, still including supplementary feed mechanism, supplementary feed mechanism includes the work or material rest, locates action wheel, follow driving wheel and conveyer belt on the work or material rest, action wheel and driven taking turns to are located to the conveyer belt cover, conveyer belt slope sets up, the mesa parallel and level of top and board, the mesa that the board is close to conveyer belt one end is equipped with a plurality of rows of guide pulleys. Compared with the prior art, the beneficial effects of the utility model are that: but need not the whole just material loadings that lift up of material, save time and human cost improve production efficiency greatly.
Description
Technical field
This utility model is related to Digit Control Machine Tool process equipment field and in particular to a kind of dynamic post being provided with auxiliary feeding mechanism
Formula numerical controlled engraving and milling device.
Background technology
Engraving machine be one kind be widely used in carpenter's industry, advertising, technique industry, mould industry, building industry, press-packaging industry,
The general machinery equipment of adnornment industry, can carve woodwork plate, density board, acrylic organic plates, PVC plate, lotus plate, double-colored plate, big
Multiple unlike material such as Gypsum Fibrosum, jade, PLASTIC LAMINATED, rubber slab, glass.
Before being carved, need by manpower, sheet material to be carved to be raised up on the panel of engraving machine, and
By hold down gag, material is pressed on panel afterwards, then by moving freely of milling cutter, material is carved.
Because material area itself is larger, quality is also all larger, by it, when ground is moved to panel, a people is complete
Cannot complete, how individual also needs to expend certain strength and time;And itself ductility of some materials is preferably, and work as material two
When the span on relative side is larger, when the side relative by two is lifted, natural bending is subsided by the middle part of material, then lift
The personnel of material must by arm lift higher just material can be placed on panel, very expend muscle power, reduce whole
The efficiency of engraving.
Utility model content
The purpose of this utility model is to overcome deficiency of the prior art, providing a kind of strength that expends less, improve
The dynamic pillar numerical controlled engraving and milling device being provided with auxiliary feeding mechanism of production efficiency.
For solving above-mentioned technical problem, the technical solution of the utility model is:
A kind of dynamic pillar numerical controlled engraving and milling device being provided with auxiliary feeding mechanism, including for carry carved object board and
It is located at the frame on board, also include the Y-axis walking mechanism driving frame longitudinally to walk along board, along frame lateral line
The X-axis walking mechanism walked and the Z axis walking mechanism vertically walked in X-axis walking mechanism, engraving machine main shaft is fixed on X-axis
In walking mechanism, also include auxiliary feeding mechanism, described auxiliary feeding mechanism includes stock shelf, the active on stock shelf
Wheel, driven pulley and conveyer belt, described conveyer belt is sheathed on drivewheel and driven pulley, and described conveyer belt is obliquely installed, top and
The table top of board is concordant, and the table top near conveyer belt one end for the described board is provided with some row's guide wheels.
Preferably, described Y-axis walking mechanism includes Y-direction slide rail and the tooth bar being fixed on board both sides, also includes and Y-direction
Gear and the motor driving this gear that the Y-direction slide block that slide rail matches is meshed with tooth bar, described Y-direction slide block, tooth
Wheel and motor are both secured in frame.
Preferably, described X-axis walking mechanism include X on the tap of frame to screw mandrel and located at X to screw mandrel both sides
X to slide rail, also include and drive X to the X of screw mandrel to motor, described X is connected with planker to screw mandrel by feed screw nut,
Described Z axis walking mechanism is fixed on described planker.
Preferably, described Z axis walking mechanism includes the Z-direction screw mandrel on planker and the Z-direction located at Z-direction screw mandrel both sides is slided
Rail, also includes the Z-direction motor driving Z-direction screw mandrel, and described Z-direction screw mandrel is connected with wing plate by feed screw nut.
Preferably, also include rectangle aluminium sheet, described aluminium sheet is fixed on wing plate, described aluminium sheet is along between X-direction
Every being provided with some installing holes, engraving machine main shaft is detachably secured on aluminium sheet by installing hole.
Preferably, described Z axis walking mechanism also includes two cylinders being vertically installed on planker, the work of described cylinder
Stopper rod is fixedly connected with wing plate.
Compared with prior art, the beneficial effects of the utility model are:Material all need not be lifted can feeding, significantly
Saving time and human cost, improve production efficiency.
Brief description
Fig. 1 is front view of the present utility model.
Fig. 2 is side view of the present utility model.
In accompanying drawing:10th, board;20th, frame;30th, Y-axis walking mechanism;31st, Y-direction slide rail;32nd, tooth bar;33rd, Y-direction slide block;
34th, gear;40th, X-axis walking mechanism;41st, X is to screw mandrel;42nd, X is to slide rail;43rd, X is to motor;44th, planker;50th, Z axis row
Walk mechanism;51st, Z-direction screw mandrel;52nd, Z-direction slide rail;53rd, Z-direction motor;54th, wing plate;55th, cylinder;60th, aluminium sheet;70th, engraving machine
Main shaft;80th, auxiliary feeding mechanism;81st, drivewheel;82nd, driven pulley;83rd, conveyer belt;84th, stock shelf;85th, guide wheel.
Specific embodiment
Effect for making to architectural feature of the present utility model and reached has a better understanding and awareness, in order to relatively
Good embodiment and accompanying drawing cooperation detailed description, are described as follows:
A kind of dynamic pillar numerical controlled engraving and milling device being provided with auxiliary feeding mechanism, including for carry the board 10 of carved object with
And be located at frame 20 on board 10, also include drive frame 20 along board 10 longitudinally the Y-axis walking mechanism 30 of walking,
The X-axis walking mechanism 40 laterally walked along frame 20 and the Z axis walking mechanism vertically walked in X-axis walking mechanism 40
50, engraving machine main shaft 70 is fixed in X-axis walking mechanism 40, also includes auxiliary feeding mechanism 80, described auxiliary feeding mechanism
80 include stock shelf 84, the drivewheel 81 on stock shelf 84, driven pulley 82 and conveyer belt 83, and described conveyer belt 83 is sheathed on
On drivewheel 81 and driven pulley 82, described conveyer belt 83 is obliquely installed, and top is concordant with the table top of board 10, and described board 10 leans on
The table top of nearly conveyer belt one end is provided with some row's guide wheels 85.
Described Y-axis walking mechanism 30 includes Y-direction slide rail 31 and the tooth bar 32 being fixed on board 10 both sides, also includes and Y
To slide rail 31 Y-direction slide block 33 gear 34 being meshed with tooth bar 32 matching and the motor driving this gear 34, institute
State Y-direction slide block 33, gear 34 and motor to be both secured in frame 20.
Described X-axis walking mechanism 40 include X on the tap of frame 20 to screw mandrel 41 and located at X to screw mandrel 41 both sides
X to slide rail 42, also include driving X to the X of screw mandrel 41 to motor 43, described X passes through feed screw nut company to screw mandrel 41
It is connected to planker 44, described Z axis walking mechanism 50 is fixed on described planker 44.
Described Z axis walking mechanism 50 includes the Z-direction screw mandrel 51 on planker 44 and the Z-direction located at Z-direction screw mandrel 51 both sides
Slide rail 52, also includes the Z-direction motor 53 driving Z-direction screw mandrel 51, and described Z-direction screw mandrel 51 is connected with the wing by feed screw nut
Plate 54.
Also include rectangle aluminium sheet 60, described aluminium sheet 60 is fixed on wing plate 54, described aluminium sheet 60 is along between X-direction
Every being provided with some installing holes, engraving machine main shaft 70 is detachably secured on aluminium sheet 60 by installing hole, so can facilitate basis
Sheet material size and technological requirement increase and decrease engraving machine main shaft are time saving and energy saving.
Described Z axis walking mechanism 50 also includes two cylinders being vertically installed on planker 44 55, described cylinder 55
Piston rod is fixedly connected with wing plate 54, so can improve engraving precision with the length feed of precise control engraving machine main shaft.
Of the present utility model ultimate principle, principal character and of the present utility model advantage have been shown and described above.One's own profession
The technical staff of industry it should be appreciated that this utility model is not restricted to the described embodiments, described in above-described embodiment and description
Simply principle of the present utility model, on the premise of without departing from this utility model spirit and scope, this utility model also has respectively
Plant changes and improvements, these changes and improvements both fall within the range of claimed this utility model.This utility model requires
Protection domain defined by appending claims and its equivalent.
Claims (6)
1. a kind of dynamic pillar numerical controlled engraving and milling device being provided with auxiliary feeding mechanism, including the board for carrying carved object(10)With
And it is located at board(10)On frame(20), also include driving frame(20)Along board(10)The longitudinally Y-axis row of walking
Walk mechanism(30), along frame(20)The laterally X-axis walking mechanism of walking(40)And located at X-axis walking mechanism(40)Upper vertical row
The Z axis walking mechanism walked(50), engraving machine main shaft(70)It is fixed on X-axis walking mechanism(40)Upper it is characterised in that:Also include
Auxiliary feeding mechanism(80), described auxiliary feeding mechanism(80)Including stock shelf(85), located at stock shelf(85)On drivewheel
(81), driven pulley(82)And conveyer belt(83), described conveyer belt(83)It is sheathed on drivewheel(81)And driven pulley(82)On, described
Conveyer belt(83)It is obliquely installed, top and board(10)Table top concordant, the table top near conveyer belt one end for the described board is provided with
Some row's guide wheels(84).
2. the dynamic pillar numerical controlled engraving and milling device being provided with auxiliary feeding mechanism according to claim 1 it is characterised in that:Described Y
Axle walking mechanism(30)Including being fixed on board(10)The Y-direction slide rail of both sides(31)And tooth bar(32), also include and Y-direction slide rail
(31)The Y-direction slide block matching(33), and tooth bar(32)The gear being meshed(34)And drive this gear(34)Driving electricity
Machine, described Y-direction slide block(33), gear(34)It is both secured to frame with motor(20)On.
3. the dynamic pillar numerical controlled engraving and milling device being provided with auxiliary feeding mechanism according to claim 1 it is characterised in that:Described X
Axle walking mechanism(40)Including located at frame(20)Tap on X to screw mandrel(41)With located at X to screw mandrel(41)The X of both sides to
Slide rail(42), also include driving X to screw mandrel(41)X to motor(43), described X is to screw mandrel(41)By feed screw nut
It is connected with planker(44), described Z axis walking mechanism(50)It is fixed on described planker(44)On.
4. the dynamic pillar numerical controlled engraving and milling device being provided with auxiliary feeding mechanism according to claim 1 it is characterised in that:Described Z
Axle walking mechanism(50)Including located at planker(44)On Z-direction screw mandrel(51)With located at Z-direction screw mandrel(51)The Z-direction slide rail of both sides
(52), also include driving Z-direction screw mandrel(51)Z-direction motor(53), described Z-direction screw mandrel(51)Connected by feed screw nut
There is wing plate(54).
5. the dynamic pillar numerical controlled engraving and milling device being provided with auxiliary feeding mechanism according to claim 4 it is characterised in that:Also include
There is rectangle aluminium sheet(60), described aluminium sheet(60)It is fixed on wing plate(54)On, described aluminium sheet(60)It is interval with along X-direction
Some installing holes, engraving machine main shaft(70)Aluminium sheet is detachably secured to by installing hole(60)On.
6. the dynamic pillar numerical controlled engraving and milling device being provided with auxiliary feeding mechanism according to claim 4 it is characterised in that:Described Z
Axle walking mechanism(50)Also include two and be vertically installed in planker(44)On cylinder(55), described cylinder(55)Piston rod
And wing plate(54)It is fixedly connected.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201620811729.1U CN205970552U (en) | 2016-07-29 | 2016-07-29 | Moving column engraving and milling machine with supplementary feed mechanism |
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CN201620811729.1U CN205970552U (en) | 2016-07-29 | 2016-07-29 | Moving column engraving and milling machine with supplementary feed mechanism |
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CN205970552U true CN205970552U (en) | 2017-02-22 |
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CN201620811729.1U Active CN205970552U (en) | 2016-07-29 | 2016-07-29 | Moving column engraving and milling machine with supplementary feed mechanism |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109823104A (en) * | 2019-04-01 | 2019-05-31 | 广州博雕数控机床有限公司 | A kind of novel double gantry aluminium sheet engraving machines |
-
2016
- 2016-07-29 CN CN201620811729.1U patent/CN205970552U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109823104A (en) * | 2019-04-01 | 2019-05-31 | 广州博雕数控机床有限公司 | A kind of novel double gantry aluminium sheet engraving machines |
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