CN208163074U - Numerical control cutting machine y-axis motor increases torquer - Google Patents
Numerical control cutting machine y-axis motor increases torquer Download PDFInfo
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- CN208163074U CN208163074U CN201820516570.XU CN201820516570U CN208163074U CN 208163074 U CN208163074 U CN 208163074U CN 201820516570 U CN201820516570 U CN 201820516570U CN 208163074 U CN208163074 U CN 208163074U
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- China
- Prior art keywords
- axis motor
- numerical control
- increases
- control cutting
- shaft
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Abstract
The utility model relates to Numerical control cutting machinery fields, increase torquer more particularly to a kind of numerical control cutting machine y-axis motor, including the y-axis motor installing y-axis motor seat on the gantry and being mounted on motor cabinet, the output shaft of the y-axis motor increases device with torque and is connected, it includes that rack-mounted pedestal and the arm of force being mounted in pedestal extend device that the torque, which increases device, compared with prior art, the utility model has the beneficial effects that:The output torque for extending device for prolonging y-axis motor by pedestal and the arm of force, increases the output power of motor, is adjusted, is widely used in Numerical control cutting according to different cutting needs.
Description
Technical field
The utility model relates to numerical control cutting equipment machinery fields, and in particular to a kind of numerical control cutting machine y-axis motor increase
Torquer.
Background technique
Numerical control cutting machine drives the cutting tool being located in rack to cut object by motor, and motor includes X-axis
Motor and y-axis motor, y-axis motor drive rotation, with modern mechanical industrial expansion, to the working efficiency of plate cutting processing
Requirement with product quality also improves simultaneously, in the cutting process of different objects, needs to adjust Y-axis electricity according to different needs
The output torque of machine, existing adjustment mode is to increase extending shaft on the output shaft of y-axis motor, by adjusting the length of the arm of force
And then torque is adjusted, extending shaft is connected by shaft coupling with the output shaft of y-axis motor, but this connection type stability is poor, and
Shaft coupling two axis misalignment of axe easy to form after prolonged use, to influence the precision of processing.
Therefore, it is based on drawbacks described above, in numerical control cutting equipment technical field, numerical control cutting machine y-axis motor is increased and is turned round
Moment device there are still research and improved demand, this be also a research hotspot in current numerical control cutting equipment technical field and
Where starting point and power that emphasis, even more the utility model are accomplished.
Utility model content
For the defects in the prior art, the utility model provides a kind of numerical control cutting machine y-axis motor increase torquer,
Output shaft and extending shaft is avoided the technical effect of misalignment of axe occur to realize.
To achieve the above object, the utility model provides the following technical solutions:
Numerical control cutting machine y-axis motor increases torquer, including installing y-axis motor seat on the gantry and being mounted on electricity
Y-axis motor on base, the output shaft of the y-axis motor increase device with torque and are connected, and it includes peace that the torque, which increases device,
It fills pedestal on the rack and the arm of force being mounted in pedestal extends device, the inner end that the arm of force extends device is connected by key
Onto the output shaft of y-axis motor, the outer end that the arm of force extends device is equipped with transmission gear.
In the present invention, as an improvement, the pedestal is bearing block, and it is to be sleeved on that the arm of force, which extends device,
The inner end of shaft in bearing block, the shaft is axle sleeve, and the shaft inner end is sleeved on the outside of y-axis motor output shaft, is turned
The outer end of axis and transmission gear design for integral type.
In the present invention, as an improvement, the pedestal and the arm of force extend between device equipped with lubricating system.
In the present invention, as an improvement, the lubricating system includes oily in the ring-type being arranged on the inside of axle sleeve
Slot and the cyclic annular outer oil sump being arranged on the outside of y-axis motor output shaft, the inner oil sump and outer oil sump opening are opposite, the inner oil sump
It is connected with the oil inlet passage being arranged in bearing block, the oil inlet of oil inlet passage extends on the outside of bearing block.
In the present invention, as an improvement, dustproof cover is set at the oil inlet, the dustproof cover passes through shaft
It is screwed on bearing block.
In the present invention, as an improvement, the inner oil sump is connected with outer oil sump.
Compared with prior art, the utility model has the beneficial effects that:
(1) output torque for extending device for prolonging y-axis motor by pedestal and the arm of force, increases the output power of motor, root
It is adjusted according to different cutting needs.
(2) shaft coupling connection is changed to axle sleeve and axis connection, shaft one end is sleeve-like, is connected by key in y-axis motor
The outside of output shaft, while being rotatably mounted on the rack shaft by axle sleeve, increase stability while extending the arm of force.
(3) oil groove is set between axle sleeve and output shaft, lubricant grease is added into oil groove by oil inlet passage, without anti-
Multiple disassembly, improves service efficiency.
(4) dustproof cover is installed at oil inlet, dust is avoided to enter in oil circuit, keeps oil circuit cleaning.
Detailed description of the invention
It, below will be right in order to illustrate more clearly of specific embodiment of the present invention or technical solution in the prior art
Specific embodiment or attached drawing needed to be used in the description of the prior art are briefly described.In all the appended drawings, similar
Element or part are generally identified by similar appended drawing reference.In attached drawing, each element or part might not be according to actual ratios
It draws.
Fig. 1 is the structural schematic diagram of the utility model;
Fig. 2 is the structural schematic diagram that the utility model torque increases device;
Fig. 3 is the structural schematic diagram of the utility model lubricating system;
Fig. 4 is the structure enlargement diagram of part A in Fig. 4;
In figure:1, portal frame, 2, y-axis motor, 3, X-axis motor, 4, bearing block, 5, shaft, 6, axle sleeve, 7, output shaft, 8,
Transmission gear, 9, key, 10, inner oil sump, 11, outer oil sump, 12, oil inlet passage, 13, dustproof cover, 14, shaft.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model
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 embodiments of the present invention, those of ordinary skill in the art are without making creative work
Every other embodiment obtained, fall within the protection scope of the utility model.
As Figure 1-Figure 4, numerical control cutting machine y-axis motor increases torquer, including the Y-axis being mounted on portal frame 1
Motor cabinet and the y-axis motor 2 being mounted on motor cabinet, cutting tool are mounted on portal frame 1 by mounting base, and portal frame 1 is
X-axis motor 3 is installed in rack, 1 side of portal frame, and X-axis motor 3 drives cutting tool and its mounting base transversely by transmission system
Transverse cuts are realized in movement, and the accessories such as distribution box and manipulation case, the accessory, X-axis motor 3 are additionally provided in rack
And y-axis motor 2 is the prior art, details are not described herein its specific structure and mounting means.
The output shaft 7 of the y-axis motor 2 increases device with torque and is connected, and it includes being mounted on machine that the torque, which increases device,
Pedestal on frame and the arm of force being mounted in pedestal extend device, and the pedestal is detachably arranged in gantry by connection bolt
On frame 1, the inner end that the arm of force extends device is connected on the output shaft of y-axis motor by key 9, and the arm of force extends device
Outer end is equipped with transmission gear 8, and transmission gear 8 and external transmission system are connected.
The pedestal is bearing block 4, and bearing block 4 is mounted on portal frame 1 by bolt, on the bolt at 4 rear of bearing block
Holddown spring is set, and it is the shaft 5 being sleeved in bearing block that the arm of force, which extends device, and shaft 5 is inserted into bearing block 4, institute
The inner end for stating shaft 5 is axle sleeve 6, and shaft 5 is arranged along the extending direction of 2 output shaft 7 of y-axis motor, and shaft 5 and y-axis motor 2
7 coaxial line of output shaft, 5 inner end of shaft are sleeved on the outside of y-axis motor output shaft 7, connecting key between axle sleeve 6 and shaft 5
9, it avoids relatively rotating, the outer end of shaft 5 and transmission gear 8 design for integral type.
By the installation of shaft and transmission gear 8, the original gear that need to be only sleeved on 7 outside of y-axis motor output shaft is prolonged
Long, the arm of force lengthens, to increase the output torque of y-axis motor, the installation of bearing block 4 and key 9 makes the company of shaft 5 Yu output shaft 7
It connects and more consolidates, avoid the problem that misalignment of axe caused by shaft coupling connection.
The pedestal and the arm of force, which extend, is equipped with lubricating system between device, be by adding lubricant grease outside bearing block 4
Can, without dismantling lubrication.
The lubricating system includes the cyclic annular inner oil sump 10 being arranged on the inside of axle sleeve and is arranged on the outside of y-axis motor output shaft
Cyclic annular outer oil sump 11, the inner oil sump 10 and outer oil sump 11 around a circle setting, as shown in figure 4, the inner oil sump 10 with
Outer oil sump 11 is open relatively, and opening in axial direction staggeredly and is connected to, and forms strip lubrication channel, axis in its section
Direction extends lubrication distance, improves lubricant effect, and the inner oil sump is connected with the oil inlet passage 12 being arranged in bearing block, oil inlet
The oil inlet in channel 12 extends to 4 outside of bearing block.
Lubricant grease enters inner oil sump 10 by oil inlet passage 12, since inner oil sump 10 is connected to outer oil sump 11 and forms one
The channel in a strip section increases lubrication area and extends making for lubricant grease while increasing lubricant grease charge weight
With duration, lubricant effect is improved from whole.
Dustproof cover 13 is set at the oil inlet, and the dustproof cover 13 is screwed on bearing block 4 by shaft 14, described anti-
Dirt lid 13 is arc-shaped, and dustproof cover 13 is recessed towards oil inlet, and the opening shape notch of accommodating dustproof cover 13 is equipped at oil inlet,
Open shape notch keeps oil inlet funnel-shaped, and after dustproof cover 13 is opened, open shape notch increases oil inlet open area, convenient for note
Oil.
Although for the purpose illustrated and described, and describing the above embodiment and the shown knot of attached drawing of the utility model
Structure and treatment process.But it is to describe in detail that these, which are not, the scope of the utility model can not be confined to this.To this field
For technical staff, numerous modifications and variations can be made to the above embodiment of the utility model, and these all modifications
And/or variation is included within the claim limited range such as the utility model, without departing from such as claim institute
The scope of the utility model and spirit of restriction.
Claims (6)
1. numerical control cutting machine y-axis motor increases torquer, including installing y-axis motor seat on the gantry and being mounted on motor
Y-axis motor on seat, it is characterised in that:The output shaft of the y-axis motor increases device with torque and is connected, and the torque increases dress
It sets and extends device including rack-mounted pedestal and the arm of force being mounted in pedestal, the inner end that the arm of force extends device is logical
It crosses and is keyed on the output shaft of y-axis motor, the outer end that the arm of force extends device is equipped with transmission gear.
2. numerical control cutting machine y-axis motor according to claim 1 increases torquer, it is characterised in that:The pedestal is
Bearing block, it is the shaft being sleeved in bearing block that the arm of force, which extends device, and the inner end of the shaft is axle sleeve, in the shaft
End cap is mounted in the outside of y-axis motor output shaft, and the outer end of shaft and transmission gear design for integral type.
3. numerical control cutting machine y-axis motor according to claim 1 increases torquer, it is characterised in that:The pedestal with
The arm of force, which extends, is equipped with lubricating system between device.
4. numerical control cutting machine y-axis motor according to claim 3 increases torquer, it is characterised in that:The lube system
System includes the cyclic annular outer oil sump that the cyclic annular inner oil sump on the inside of axle sleeve is arranged in and is arranged on the outside of y-axis motor output shaft, described interior
Oil groove and outer oil sump opening are opposite, and the inner oil sump is connected with the oil inlet passage being arranged in bearing block, the oil inlet of oil inlet passage
Mouth extends on the outside of bearing block.
5. numerical control cutting machine y-axis motor according to claim 4 increases torquer, it is characterised in that:The oil inlet
Place's setting dustproof cover, the dustproof cover are screwed on bearing block by shaft.
6. numerical control cutting machine y-axis motor according to claim 5 increases torquer, it is characterised in that:The inner oil sump
It is connected with outer oil sump.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201820516570.XU CN208163074U (en) | 2018-04-12 | 2018-04-12 | Numerical control cutting machine y-axis motor increases torquer |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201820516570.XU CN208163074U (en) | 2018-04-12 | 2018-04-12 | Numerical control cutting machine y-axis motor increases torquer |
Publications (1)
Publication Number | Publication Date |
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CN208163074U true CN208163074U (en) | 2018-11-30 |
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CN201820516570.XU Expired - Fee Related CN208163074U (en) | 2018-04-12 | 2018-04-12 | Numerical control cutting machine y-axis motor increases torquer |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN117477849A (en) * | 2023-12-28 | 2024-01-30 | 大庆虹铭科技有限公司 | Permanent magnet semi-direct driving device of pumping unit |
-
2018
- 2018-04-12 CN CN201820516570.XU patent/CN208163074U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN117477849A (en) * | 2023-12-28 | 2024-01-30 | 大庆虹铭科技有限公司 | Permanent magnet semi-direct driving device of pumping unit |
CN117477849B (en) * | 2023-12-28 | 2024-03-22 | 大庆虹铭科技有限公司 | Permanent magnet semi-direct driving device of pumping unit |
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Legal Events
Date | Code | Title | Description |
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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: 20181130 Termination date: 20190412 |