CN208977273U - A kind of numerically-controlled machine tool pedestal adjusting device - Google Patents
A kind of numerically-controlled machine tool pedestal adjusting device Download PDFInfo
- Publication number
- CN208977273U CN208977273U CN201821476840.5U CN201821476840U CN208977273U CN 208977273 U CN208977273 U CN 208977273U CN 201821476840 U CN201821476840 U CN 201821476840U CN 208977273 U CN208977273 U CN 208977273U
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- China
- Prior art keywords
- pedestal
- numerically
- rotating wheel
- machine tool
- controlled machine
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Abstract
The utility model relates to a kind of numerically-controlled machine tool pedestal adjusting devices, stabilizer blade including four side outer fix of pedestal and base lower surface, the inside upper surface four corners of pedestal are welded with first bearing, first bearing lower surface is rotatably connected to sliding rail strut, the lower surface of sliding rail strut is integrally formed with first gear, the side of first gear is rotatably connected to the first rotating bar by the first rotating wheel, and the first rotating wheel is an integral structure with the first rotating bar;Staff is when novel using this work, rotary motion wheel disc can be passed through, so that rotating wheel disk drives four sliding rail strut rotations, the height of four stabilizer blades is adjusted simultaneously, it can achieve the purpose by a rotating wheel disk while adjustment base both sides height, the height for needing first to adjust one side before solving when adjustment base is adjusting another side, pedestal is caused to tilt.
Description
Technical field
The utility model belongs to numerical control machine tool technique field, and in particular to a kind of numerically-controlled machine tool pedestal adjusting device.
Background technique
During machine operation, lathe base plays machine important role.Machine tool after a period of use, usually
Need to readjust the smooth degree of lathe base, universal regulative mode be in such a way that lathe base pads balance weight come
Balance is adjusted.
Existing base of digital-controlled machine tool, can not both sides adjust simultaneously, staff can only first adjust on one side, be adjusted
The problem of another side will result in the problem of pedestal tilts, the lathe on pedestal is caused to shift or fall off, staff
When using work of numerical control machine, lathe can shake, and cannot effectively reduce vibration and cause lathe wear problem.
Utility model content
To solve the problems mentioned above in the background art.The utility model provides a kind of numerically-controlled machine tool and is adjusted with pedestal
Device, both sides height can be adjusted simultaneously by having, can be with shock absorbing features.
To achieve the above object, the utility model provides the following technical solutions: a kind of numerically-controlled machine tool pedestal adjusting device,
Stabilizer blade including four side outer fix of pedestal and base lower surface, the inside upper surface four corners of the pedestal are welded with
One bearing, the first bearing lower surface are rotatably connected to sliding rail strut, and the lower surface of the sliding rail strut is integrally formed with
One gear, the side of the first gear are rotatably connected to the first rotating bar by the first rotating wheel, first rotating wheel with
First rotating bar is an integral structure, one end of first rotating bar integrally formed with second gear, the second gear
Side is rotatablely connected by the second rotating wheel and the second rotating bar, and one end of second rotating bar is welded with rotating wheel disk, institute
The inside for stating sliding rail strut is connected with screw rod by screw thread rotation.
In order to enable both sides height can be adjusted simultaneously, it can a kind of numerically-controlled machine tool bottom with damping, as the utility model
Seat regulating device optimal technical scheme, the inside of the stabilizer blade offer dashpot, and the buffering trench bottom is placed with damping bullet
Spring, the screw rod bottom end are welded through pedestal and damping spring.
In order to enable both sides height can be adjusted simultaneously, it can a kind of numerically-controlled machine tool bottom with damping, as the utility model
Seat regulating device optimal technical scheme, the inner side surface of the rotating wheel disk offer several limit holes, the pedestal and limit
Hole opposite position opens up perforation.
In order to enable both sides height can be adjusted simultaneously, it can a kind of numerically-controlled machine tool bottom with damping, as the utility model
Seat regulating device optimal technical scheme, is welded with limited block at the upper and lower ends of screw rod bottom on the dashpot inner wall.
In order to enable both sides height can be adjusted simultaneously, it can a kind of numerically-controlled machine tool bottom with damping, as the utility model
The outer surface engaging of seat regulating device optimal technical scheme, the sliding rail strut has second bearing, the second bearing outer surface
It is welded on pedestal.
In order to enable both sides height can be adjusted simultaneously, it can a kind of numerically-controlled machine tool bottom with damping, as the utility model
The surface of seat regulating device optimal technical scheme, the rotating wheel disk is equipped with antiskid glue sleeve.
In order to enable both sides height can be adjusted simultaneously, it can a kind of numerically-controlled machine tool bottom with damping, as the utility model
Seat regulating device optimal technical scheme, engaging between the eyelet and limit hole of the susceptor surface has position-limitting pin.
Compared with prior art, the utility model has the beneficial effects that staff is when novel using this work, it can be with
By rotary motion wheel disc, so that rotating wheel disk drives four sliding rail struts rotations, while the height of four stabilizer blades is adjusted, it can be with
Achieve the purpose that need first to adjust when adjustment base before solving by a rotating wheel disk while adjustment base both sides height
The height on one side, adjust another side, cause pedestal to tilt, make the numerically-controlled machine tool of base upper surface with for tilt shift or
Landing problem, places damping spring inside stabilizer blade, can prevent staff from strong shake occurring when working using the utility model
Dynamic, the damping spring of stabilizer blade can mitigate the vibration occurred when utility model works, be equipped with limited block beside vibration spring,
Damping spring spring amplitude can be prevented excessive, solve the sharp pounding abrasion machine occurred when the utility model at work
Problem, and prevent damping spring and occur significantly to bounce because offsetting vibration, thus abrasion machine.
Detailed description of the invention
Specific embodiment of the present utility model is furtherd elucidate with reference to the accompanying drawing.
Fig. 1 is the structural schematic diagram of the utility model;
Fig. 2 is the side structure schematic diagram in the utility model;
Fig. 3 is the rotating wheel disk structural schematic diagram in the utility model;
Fig. 4 is the stand bar structure schematic diagram in the utility model;
In figure: 1, first bearing;2, screw rod;3, first gear;4, the first rotating wheel;5, the first rotating bar;6, the second tooth
Wheel;7, the second rotating wheel;8, stabilizer blade;9, second bearing;10, sliding rail strut;11, pedestal;12, the second rotating bar;13, rotating wheel
Disk;14, damping spring;15, position-limitting pin;16, limit hole;17, dashpot.
Specific embodiment
In conjunction with Fig. 1-4, the numerically-controlled machine tool pedestal adjusting device of the utility model includes 11 following table of pedestal 11 and pedestal
The stabilizer blade 8 of four side outer fix of face, the inside upper surface four corners of pedestal 11 are welded with first bearing 1,1 following table of first bearing
Face is rotatably connected to sliding rail strut 10, and the lower surface of sliding rail strut 10 is integrally formed with first gear 3, the side of first gear 3
It is rotatably connected to the first rotating bar 5 by the first rotating wheel 4, the first rotating wheel 4 is an integral structure with the first rotating bar 5, the
One end of one rotating bar 5 passes through the second rotating wheel 7 and the second rotation integrally formed with second gear 6, the side of second gear 6
Bar 12 is rotatablely connected, and one end of the second rotating bar 12 is welded with rotating wheel disk 13, and the inside of sliding rail strut 10 passes through screw thread rotation
It is connected with screw rod 2.
In the present embodiment, the first rotating bar 5 is driven to be revolved by the rotation of the second rotating wheel 7 using the second rotating bar 12
Turn, to achieve the purpose that sliding rail strut 10 rotates, and four sliding rail struts 10 pass through the first rotating bar 5 and the second rotating bar
12 connection, and the sliding rail strut on 12 both sides of the second rotating bar be it is symmetrically placed, so as to reach four sliding rail struts 10 simultaneously
Carry out high low adjustment.
Specifically, the inside of stabilizer blade 8 offers dashpot 17,17 bottom of dashpot is placed with damping spring 14, screw rod 2
It is welded through pedestal 11 and damping spring 14 bottom end.
In the present embodiment, by damping spring 14, damping can be carried out to the utility model, prevent from existing in the utility model
Significant shock abrasion machine is generated when work.
Specifically, the inner side surface of rotating wheel disk 13 offers several limit holes 16, pedestal 11 is corresponding with limit hole 16
Position opens up perforation.
In the present embodiment, limit hole 16 is opened up, position-limitting pin 15 can be engaged, prevent rotating wheel disk 13 oneself from turning
Height that is dynamic, being adjusted before deviating from.
Specifically, being welded with limited block at 2 bottom upper and lower ends of screw rod on 17 inner wall of dashpot.
In the present embodiment, limited block can limit the 14 spring amplitude of damping spring in dashpot 17, prevent damping spring
14, excessive abrasion the utility model of amplitude of beating.
Specifically, the outer surface engaging of sliding rail strut 10 has second bearing 9,9 outer surface of second bearing is welded on pedestal 11
On.
In the present embodiment, the stability of pedestal 11 can be increased by engaging sliding strut 10 using second bearing 9.
Specifically, the surface of rotating wheel disk 13 is equipped with antiskid glue sleeve.
In the present embodiment, landing when can prevent staff from rotating rotating wheel disk 13 by hand
Specifically, engaging between the eyelet on 11 surface of pedestal and limit hole 16 has position-limitting pin 15.
In the present embodiment, it can prevent rotating wheel disk 13 from not needing to turn by engaging position-limitting pin 15 in limit hole 16
It shifts when dynamic.
The working principle and process for using of the utility model: the utility model installs can be used later, use this
When novel, staff takes away position-limitting pin 15 with hand, and rotates rotating wheel disk 13, and the rotation of rotating wheel disk 13 just will drive second
Rotating bar 12 rotates, and the second rotating bar 12 will drive second gear 6 to rotate by the second rotating wheel 7, and second gear 6 rotates
Just will drive the rotation of the first rotating bar 5, the first rotating bar 5 will drive first gear 3 to rotate by the first rotating wheel 4, and first
The rotation of gear 3 just will drive sliding rail strut 10 and be rotated, and screw rod 2 is fixed when sliding rail strut 10 rotates, and will make
It obtains screw rod 2 to stir, can achieve while adjusting the purpose of four 8 height of stabilizer blade, when avoiding single adjusting stabilizer blade 8, cause bottom
When seat 11 tilts, the problem of lathe of 11 upper surface of pedestal easily can be tilted or be slid, sliding rail strut is fastened on by second bearing 9
10 outer surface increases the stability of pedestal 11, utilizes 15 fixed rotator of position-limitting pin so as to fixed rack strut 10
Disk 13 prevents from rotating in the case where not needing and adjusting height, and staff with lathe when being worked, the vibration meeting of lathe generation
Drive pedestal 11 shake, pedestal 11 shake when screw rod 2 will be made to be shaken, screw rod 2 vibration just will drive damping spring 14 into
Line bounce to achieve the effect that damping, and is equipped with limited block inside dashpot 17, can prevent from shaking too when the Novel work
Cross acutely, so as to cause abrasion lathe the problem of.
Elaborate many details in the above description in order to fully understand the utility model.But above description
It is only the preferred embodiment of the utility model, the utility model can be come with being much different from other way described herein
Implement, therefore the utility model is not limited by specific implementation disclosed above.Any those skilled in the art exist simultaneously
It does not depart under technical solutions of the utility model ambit, it is all practical new to this using the methods and technical content of the disclosure above
Type technical solution makes many possible changes and modifications or equivalent example modified to equivalent change.It is all without departing from this
The content of utility model technical solution any is simply repaired according to the technical essence of the utility model is made to the above embodiment
Change, equivalent variations and modification, in the range of still falling within technical solutions of the utility model protection.
Claims (7)
1. a kind of numerically-controlled machine tool pedestal adjusting device, including four side outer fix of pedestal (11) and pedestal (11) lower surface
Stabilizer blade (8), it is characterised in that: the inside upper surface four corners of the pedestal (11) are welded with first bearing (1), and described first
Bearing (1) lower surface is rotatably connected to sliding rail strut (10), and the lower surface of the sliding rail strut (10) is integrally formed with the first tooth
It takes turns (3), the side of the first gear (3) is rotatably connected to the first rotating bar (5) by the first rotating wheel (4), and described first
Rotating wheel (4) is an integral structure with the first rotating bar (5), and one end of first rotating bar (5) is integrally formed with the second tooth
It takes turns (6), the side of the second gear (6) is rotatablely connected by the second rotating wheel (7) and the second rotating bar (12), and described second
One end of rotating bar (12) is welded with rotating wheel disk (13), and the inside of the sliding rail strut (10) is connected with silk by screw thread rotation
Bar (2).
2. a kind of numerically-controlled machine tool pedestal adjusting device according to claim 1, it is characterised in that: the stabilizer blade (8)
Inside offers dashpot (17), and dashpot (17) bottom is placed with damping spring (14), and screw rod (2) bottom end is run through
Pedestal (11) and damping spring (14) are welded.
3. a kind of numerically-controlled machine tool pedestal adjusting device according to claim 1, it is characterised in that: the rotating wheel disk
(13) inner side surface offers several limit holes (16), and the pedestal (11) and limit hole (16) opposite position offer hole
Eye.
4. a kind of numerically-controlled machine tool pedestal adjusting device according to claim 2, it is characterised in that: the dashpot (17)
Inner wall is welded with limited block at the upper and lower ends of screw rod (2) bottom.
5. a kind of numerically-controlled machine tool pedestal adjusting device according to claim 1, it is characterised in that: the sliding rail strut
(10) outer surface engaging has second bearing (9), and second bearing (9) outer surface is welded on pedestal (11).
6. a kind of numerically-controlled machine tool pedestal adjusting device according to claim 1, it is characterised in that: the rotating wheel disk
(13) surface is equipped with antiskid glue sleeve.
7. a kind of numerically-controlled machine tool pedestal adjusting device according to claim 1, it is characterised in that: pedestal (11) table
Engaging between the eyelet in face and limit hole (16) has position-limitting pin (15).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201821476840.5U CN208977273U (en) | 2018-09-10 | 2018-09-10 | A kind of numerically-controlled machine tool pedestal adjusting device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201821476840.5U CN208977273U (en) | 2018-09-10 | 2018-09-10 | A kind of numerically-controlled machine tool pedestal adjusting device |
Publications (1)
Publication Number | Publication Date |
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CN208977273U true CN208977273U (en) | 2019-06-14 |
Family
ID=66783638
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CN201821476840.5U Expired - Fee Related CN208977273U (en) | 2018-09-10 | 2018-09-10 | A kind of numerically-controlled machine tool pedestal adjusting device |
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CN (1) | CN208977273U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111185782A (en) * | 2020-03-07 | 2020-05-22 | 张亚军 | Axle type part antiskid for lathe processing installation |
-
2018
- 2018-09-10 CN CN201821476840.5U patent/CN208977273U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111185782A (en) * | 2020-03-07 | 2020-05-22 | 张亚军 | Axle type part antiskid for lathe processing installation |
CN111185782B (en) * | 2020-03-07 | 2021-11-12 | 深圳市宝瑞丰精密五金有限公司 | Axle type part antiskid for lathe processing installation |
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GR01 | Patent grant | ||
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: 20190614 Termination date: 20210910 |