CN207083357U - Water-cooling system and laser galvanometer - Google Patents
Water-cooling system and laser galvanometer Download PDFInfo
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- CN207083357U CN207083357U CN201721088224.8U CN201721088224U CN207083357U CN 207083357 U CN207083357 U CN 207083357U CN 201721088224 U CN201721088224 U CN 201721088224U CN 207083357 U CN207083357 U CN 207083357U
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Abstract
The water-cooling apparatus field of laser galvanometer is the utility model is related to, more particularly, to a kind of water-cooling system and laser galvanometer.To alleviate the bad technical problem of cooling effect present in prior art.Including:Galvanometer first support, galvanometer second support, water circulation cooler bin and circulation line;The circulation line includes water supply connector, pipe main body and the backwater joint sequentially connected;The water supply connector and the backwater joint connect with the water circulation cooler bin;The both ends of the pipe main body connect with the water supply connector and the backwater joint respectively, and are passed through inside the galvanometer first support and the galvanometer second support.The cooling effect of technical scheme provided by the utility model is preferable.
Description
Technical field
The water-cooling apparatus field of laser galvanometer is the utility model is related to, is shaken more particularly, to a kind of water-cooling system and laser
Mirror.
Background technology
Conventional laser galvanometer realizes that heat exchange cools down by the surface of support with the external world, when galvanometer works long hours, motor
It can increase with the caloric value of driving plate, the mode cooling effect unobvious of abutment surface radiating.
Such as Figure of description 1:Cooling water enters from water inlet, by the first water cooling module 1 ', then through connecting the first water cooling
First flexible pipe 2 ' of module enters the second water cooling module 3 ', and then the cooling water after heat exchange is through the second water cooling module 3 ', second
Connection flexible pipe 4 ', flowed out by water return outlet after the first water cooling module 1 ', complete the cooling to galvanometer motor.
It is readily apparent that the existing type of cooling rely on be the first water cooling module, the second water cooling module heat exchange
Effect, the area of heat exchange is smaller, can not be to the inside effective temperature-reducing of galvanometer support, and thus, cooling effect is bad.
Utility model content
The purpose of this utility model is to provide a kind of water-cooling system and laser galvanometer, to alleviate present in prior art
The bad technical problem of cooling effect.
In order to solve the above technical problems, technical scheme provided by the utility model is:
A kind of water-cooling system of laser galvanometer, including:Galvanometer first support, galvanometer second support, water circulation cooler bin with
And circulation line;
The circulation line includes water supply connector, pipe main body and the backwater joint sequentially connected;The water supply connector and
The backwater joint connects with the water circulation cooler bin;The both ends of the pipe main body respectively with the water supply connector and described
Backwater joint connects, and is passed through inside the galvanometer first support and the galvanometer second support.
Further,
The pipe main body includes water inlet manifold road, branch pipeline group and the return main road being sequentially communicated;
The branch pipeline group includes multiple branch pipeline units being arranged in parallel;The both ends of the branch pipeline unit respectively with institute
State water inlet manifold road to connect with the return main road, and the branch pipeline unit both passes through the galvanometer first support and institute
State galvanometer second support.
Further,
The branch pipeline group includes two branch pipeline units.
Further,
The water supply connector and the backwater joint are mounted on the outside of the galvanometer first support.
Further,
The water inlet manifold road and the return main road may be contained within the inside of the galvanometer first support, described to be in charge of
Road group originate in the water inlet manifold road, by way of the galvanometer first support and the galvanometer second support, be then refluxed for institute
The return main road is terminated at after stating galvanometer first support.
Further,
The water supply connector and the backwater joint are mounted on the outside of the galvanometer second support.
Further,
The water inlet manifold road and the return main road may be contained within the inside of the galvanometer second support, described to be in charge of
Road group originate in the water inlet manifold road, by way of the galvanometer second support and the galvanometer first support, be then refluxed for institute
The return main road is terminated at after stating galvanometer second support.
Further,
The galvanometer first support is X galvanometer supports, and the galvanometer second support is Y galvanometer supports.
Further,
First motor, the first eyeglass and driving plate are installed in the galvanometer first support;The galvanometer second support
On the second motor and the second eyeglass are installed.
A kind of laser galvanometer, including above-mentioned water-cooling system.
With reference to above technical scheme, the beneficial effect that the utility model can reach is:
Cooling water in water circulation cooler bin passes through backwater by water supply connector flow ipe main body after flowing through pipe main body
Joint flows to water circulation cooler bin.Because pipe main body passes through inside galvanometer first support and galvanometer second support, thus it is first
The inside of galvanometer first support and galvanometer second support can first be cooled.Because the heat of interior of articles is relative to outside
Heat do not allow it is easy to lose, thus, cooling-down effect can integrally be improved by carrying out cooling first to interior of articles, thus, this practicality is new
Water-cooling system in type can obtain preferable cooling effect.
Brief description of the drawings
, below will be right in order to illustrate more clearly of the utility model embodiment or technical scheme of the prior art
The required accompanying drawing used is briefly described in embodiment or description of the prior art, it should be apparent that, describe below
In accompanying drawing be some embodiments of the present utility model, for those of ordinary skill in the art, do not paying creativeness
On the premise of work, other accompanying drawings can also be obtained according to these accompanying drawings.
Fig. 1 is the structural representation of the water-cooling system of laser galvanometer of the prior art;
Fig. 2 is the structural representation of the water-cooling system for the laser galvanometer that the utility model embodiment provides;
Fig. 3 is the structural representation of the pipe main body in the laser galvanometer that the utility model embodiment provides.
Icon:100- galvanometer first supports;200- galvanometer second supports;300- water circulation cooler bins;410- is intake
Joint;420- pipe main bodies;430- backwater joints;421- water inlet manifolds road;422- branch pipeline groups;423- return main
Road;The motors of 110- first;The eyeglasses of 120- first;The motors of 210- second;The eyeglasses of 220- second.
Embodiment
The technical solution of the utility model is clearly and completely described below in conjunction with accompanying drawing, it is clear that described
Embodiment is the utility model part of the embodiment, rather than whole embodiments.Based on the embodiment in the utility model, sheet
The every other embodiment that field those of ordinary skill is obtained under the premise of creative work is not made, belongs to this practicality
Novel protected scope.
, it is necessary to explanation in description of the present utility model, term " " center ", " on ", " under ", it is "left", "right", " perpendicular
Directly ", the orientation of the instruction such as " level ", " interior ", " outer " or position relationship are based on orientation shown in the drawings or position relationship, are only
Described for the ease of description the utility model and simplifying, rather than instruction or imply signified device or element must have it is specific
Orientation, with specific azimuth configuration and operation, therefore it is not intended that to limitation of the present utility model.In addition, term " the
One ", " second ", " the 3rd " are only used for describing purpose, and it is not intended that instruction or hint relative importance.
, it is necessary to which explanation, unless otherwise clearly defined and limited, term " are pacified in description of the present utility model
Dress ", " connected ", " connection " should be interpreted broadly, for example, it may be fixedly connected or be detachably connected, or integratedly
Connection;Can be mechanical connection or electrical connection;Can be joined directly together, can also be indirectly connected by intermediary,
It can be the connection of two element internals.For the ordinary skill in the art, above-mentioned art can be understood with concrete condition
Concrete meaning of the language in the utility model.
Embodiment 1 and embodiment 2 are described in detail below in conjunction with the accompanying drawings:
Fig. 1 is the structural representation of the water-cooling system of laser galvanometer of the prior art;Fig. 2 is the utility model embodiment
The structural representation of the water-cooling system of the laser galvanometer of offer;Fig. 3 is in the laser galvanometer that the utility model embodiment provides
The structural representation of pipe main body.
Embodiment 1
A kind of water-cooling system of laser galvanometer, refer to Fig. 2 and Fig. 3, including:Galvanometer first support 100, galvanometer second
Frame 200, water circulation cooler bin 300 and circulation line;
Circulation line includes water supply connector 410, pipe main body 420 and the backwater joint 430 sequentially connected;Water supply connector
410 and backwater joint 430 connected with water circulation cooler bin 300;The both ends of pipe main body 420 respectively with water supply connector 410 and return
Water swivel 430 connects, and is passed through from galvanometer first support 100 and the inside of galvanometer second support 200.
With reference to above technical scheme, the beneficial effect that the utility model can reach is:
Cooling water in water circulation cooler bin 300 flows through pipe main body by the flow ipe main body 420 of water supply connector 410
Water circulation cooler bin 300 is flowed to by backwater joint 430 after 420.Because pipe main body 420 from galvanometer first support 100 and shakes
The inside of mirror second support 200 passes through, thus the inside of galvanometer first support 100 and galvanometer second support 200 can be entered first
Row cooling.Due to interior of articles heat relative to outside heat do not allow it is easy to lose, thus, interior of articles is dropped first
Temperature can integrally improve cooling-down effect, thus, the water-cooling system in the utility model can obtain preferable cooling effect.
In the alternative of the present embodiment, more preferably:
Pipe main body 420 includes water inlet manifold road 421, branch pipeline group 422 and the return main road 423 being sequentially communicated;
Branch pipeline group 422 includes multiple branch pipeline units being arranged in parallel;The both ends of branch pipeline unit are respectively with intaking always
Pipeline 421 connects with return main road 423, and branch pipeline unit both passes through galvanometer first support 100 and galvanometer second support
200。
Cooling water flows into branch pipeline group 422, multiple branch pipeline units through branch pipeline group 422 point from water inlet manifold road 421
Return main road 423 is flowed to after stream, is then out by the backflow of return main road 423.Because each branch pipeline unit is from galvanometer
First support 100 and the inside of galvanometer second support 200 pass through, thus inside galvanometer first support 100 and galvanometer second support 200
Cooling line is arranged with multiple regions, thus preferable cooling effect can be obtained.
In the alternative of the present embodiment, more preferably:
Branch pipeline group 422 includes two branch pipeline units.Specifically, two branch pipeline units are respectively the first branch pipeline
Unit and the second branch pipeline unit.First branch pipeline unit passes through galvanometer first support 100 and galvanometer second support 200, and second
Branch pipeline unit passes through galvanometer first support 100 and galvanometer second support 200.Wherein, the first branch pipeline unit is in galvanometer first
Distribution form in support 100 is not particularly limited, such as can be linear pattern, shaped form, bent etc..First branch pipeline
Distribution form of the unit in galvanometer second support 200 is not particularly limited, such as can be linear pattern, shaped form, bent
Etc..Similarly, distribution form of the second branch pipeline unit in galvanometer first support 100 is not particularly limited, such as can be
Linear pattern, shaped form, bent etc..Distribution form of the second branch pipeline unit in galvanometer second support 200 be not by specific
Limitation, such as can be linear pattern, shaped form, bent etc.
In the alternative of the present embodiment, more preferably:
Water supply connector 410 and backwater joint 430 are mounted on the outside of galvanometer first support 100.Further, intake
Main pipe rail 421 and return main road 423 may be contained within the inside of galvanometer first support 100, and branch pipeline group 422 originates in total into water
Pipeline 421, by way of galvanometer first support 100 and galvanometer second support 200, be back to return main road 423, then connect by backwater
First 430 outflow.
In the alternative of the present embodiment, more preferably:
Water supply connector 410 and backwater joint 430 are mounted on the outside of galvanometer second support 200.Further, intake
Main pipe rail 421 and return main road 423 may be contained within the inside of galvanometer second support 100, and branch pipeline group 422 originates in total into water
Pipeline 421, by way of with galvanometer second support 200 and galvanometer first support 100, be back to return main road 423, then by backwater
Joint 430 flows out.
In the alternative of the present embodiment, more preferably:
Galvanometer first support 100 is X galvanometer supports, and galvanometer second support 200 is Y galvanometer supports.
In the alternative of the present embodiment, more preferably:
First motor 110, the first eyeglass 120 and driving plate are installed in galvanometer first support 100;Galvanometer second support
Second motor 210 and the second eyeglass 220 are installed on 200.
In the alternative of the present embodiment, more preferably:
The back side of first eyeglass 120 and the second eyeglass 220 can be provided with the elongate configuration of multiple parallel intervals.
Specifically, the laminated structure of the first eyeglass 120 and the second eyeglass 220 generally fusiformis, the back side is provided with elongated
Strip structure.Existing galvanometer back structures are cellular or branching shape, and the mechanism of branching shape is unfavorable for scattering and disappearing for heat, heat
Amount is easily assembled in the branching shape seamed edge both sides of intersection, causes air-swirl, and air circulation resistance is big.It is flat in the utility model
The elongate configuration of between-line spacing causes air to be flowed by strip gap, and resistance is smaller in flow process, adds air smoothness
Property, the air-swirl in eyeglass swing process is avoided completely, makes its air circulation resistance smaller, it is ensured that the higher pendulum of laser galvanometer
Dynamic frequency and response speed.Further, the lens substrate of the first eyeglass 120 and the second eyeglass 220 uses carbofrax material
It is made, the excellent physical properties of carborundum, heat-conductive characteristic is preferable, and thermal deformation coefficient is small, and malformation is small, dimensional stability
It is good.
Embodiment 2
A kind of laser galvanometer is present embodiments provided, includes the water-cooling system of embodiment 1.
Wherein, water-cooling system, including:Galvanometer first support 100, galvanometer second support 200, water circulation cooler bin 300 with
And circulation line;
Circulation line includes water supply connector 410, pipe main body 420 and the backwater joint 430 sequentially connected;Water supply connector
410 and backwater joint 430 connected with water circulation cooler bin 300;The both ends of pipe main body 420 respectively with water supply connector 410 and return
Water swivel 430 connects, and is passed through from galvanometer first support 100 and the inside of galvanometer second support 200.
Cooling water in water circulation cooler bin 300 flows through pipe main body by the flow ipe main body 420 of water supply connector 410
Water circulation cooler bin 300 is flowed to by backwater joint 430 after 420.Because pipe main body 420 from galvanometer first support 100 and shakes
The inside of mirror second support 200 passes through, thus the inside of galvanometer first support 100 and galvanometer second support 200 can be entered first
Row cooling.Due to interior of articles heat relative to outside heat do not allow it is easy to lose, thus, interior of articles is dropped first
Temperature can integrally improve cooling-down effect, thus, the water-cooling system in the utility model can obtain preferable cooling effect.
The present invention need not increase independent water route refrigerating module, and water route is designed with galvanometer inner support body, and will
Water inlet water route is shunted, and is radiated using inner support body, it is achieved thereby that rack-mount motor and drive
The efficient cooling of dynamic plate, solve the problems, such as that caloric value increases when laser galvanometer works long hours.
Finally it should be noted that:Various embodiments above is only to illustrate the technical solution of the utility model, rather than it is limited
System;Although the utility model is described in detail with reference to foregoing embodiments, one of ordinary skill in the art should
Understand:It can still modify to the technical scheme described in foregoing embodiments, either to which part or whole
Technical characteristic carries out equivalent substitution;And these modifications or replacement, the essence of appropriate technical solution is departed from this practicality newly
The scope of each embodiment technical scheme of type.
Claims (10)
- A kind of 1. water-cooling system of laser galvanometer, it is characterised in that including:Galvanometer first support (100), galvanometer second support (200), water circulation cooler bin (300) and circulation line;The circulation line includes water supply connector (410), pipe main body (420) and the backwater joint (430) sequentially connected;It is described Water supply connector (410) and the backwater joint (430) connect with the water circulation cooler bin (300);The pipe main body (420) Both ends connected respectively with the water supply connector (410) and the backwater joint (430), and from the galvanometer first support (100) and inside the galvanometer second support (200) pass through.
- 2. water-cooling system according to claim 1, it is characterised in that the pipe main body (420) includes what is be sequentially communicated Water inlet manifold road (421), branch pipeline group (422) and return main road (423);The branch pipeline group (422) includes multiple branch pipeline units being arranged in parallel;The both ends of the branch pipeline unit respectively with The water inlet manifold road (421) connects with the return main road (423), and the branch pipeline unit both passes through the galvanometer First support (100) and the galvanometer second support (200).
- 3. water-cooling system according to claim 2, it is characterised in thatThe branch pipeline group (422) includes two branch pipeline units.
- 4. water-cooling system according to claim 3, it is characterised in thatThe water supply connector (410) and the backwater joint (430) are mounted on the outside of the galvanometer first support (100).
- 5. water-cooling system according to claim 4, it is characterised in thatThe water inlet manifold road (421) and the return main road (423) may be contained within the interior of the galvanometer first support (100) Portion, the branch pipeline group (422) originate in the water inlet manifold road, by way of the galvanometer first support (100) and the galvanometer Second support (200), it is then refluxed for terminating at the return main road (423) after to the galvanometer first support (100).
- 6. water-cooling system according to claim 5, it is characterised in thatThe water supply connector (410) and the backwater joint (430) are mounted on the outside of the galvanometer second support (200).
- 7. water-cooling system according to claim 6, it is characterised in thatThe water inlet manifold road (421) and the return main road (423) may be contained within the interior of the galvanometer second support (200) Portion, the branch pipeline group (422) originate in the water inlet manifold road (421), by way of the galvanometer second support (200) and described Galvanometer first support (100), it is then refluxed for terminating at the return main road (423) after to the galvanometer second support (200).
- 8. water-cooling system according to claim 1, it is characterised in thatThe galvanometer first support (100) is X galvanometer supports, and the galvanometer second support (200) is Y galvanometer supports.
- 9. water-cooling system according to claim 1, it is characterised in thatFirst motor (110), the first eyeglass (120) and driving plate are installed on the galvanometer first support (100);It is described to shake Second motor (210) and the second eyeglass (220) are installed in mirror second support (200).
- 10. a kind of laser galvanometer, it is characterised in that including the water-cooling system as described in claim any one of 1-9.
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CN201721088224.8U CN207083357U (en) | 2017-08-28 | 2017-08-28 | Water-cooling system and laser galvanometer |
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CN201721088224.8U CN207083357U (en) | 2017-08-28 | 2017-08-28 | Water-cooling system and laser galvanometer |
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Cited By (4)
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CN109648197A (en) * | 2018-12-26 | 2019-04-19 | 广州骇能自动化设备科技有限公司 | A kind of cleaning device galvanometer and its processing technology with cooling system |
CN112269261A (en) * | 2020-09-30 | 2021-01-26 | 广州新可激光设备有限公司 | Manufacturing process of high-speed reciprocating rotary galvanometer |
CN113695766A (en) * | 2021-10-29 | 2021-11-26 | 济南邦德激光股份有限公司 | Laser cutting head with variable light spot track shape and cutting process thereof |
CN117428336A (en) * | 2023-12-22 | 2024-01-23 | 苏州思萃熔接技术研究所有限公司 | Laser welding vibration lens and laser welding equipment |
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2017
- 2017-08-28 CN CN201721088224.8U patent/CN207083357U/en active Active
Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
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CN109648197A (en) * | 2018-12-26 | 2019-04-19 | 广州骇能自动化设备科技有限公司 | A kind of cleaning device galvanometer and its processing technology with cooling system |
CN112269261A (en) * | 2020-09-30 | 2021-01-26 | 广州新可激光设备有限公司 | Manufacturing process of high-speed reciprocating rotary galvanometer |
CN113695766A (en) * | 2021-10-29 | 2021-11-26 | 济南邦德激光股份有限公司 | Laser cutting head with variable light spot track shape and cutting process thereof |
CN113695766B (en) * | 2021-10-29 | 2022-02-22 | 济南邦德激光股份有限公司 | Laser cutting head with variable light spot track shape and cutting process thereof |
WO2023070744A1 (en) * | 2021-10-29 | 2023-05-04 | 济南邦德激光股份有限公司 | Laser cutting head having variable spot trajectory shape and cutting process therefor |
CN117428336A (en) * | 2023-12-22 | 2024-01-23 | 苏州思萃熔接技术研究所有限公司 | Laser welding vibration lens and laser welding equipment |
CN117428336B (en) * | 2023-12-22 | 2024-02-13 | 苏州思萃熔接技术研究所有限公司 | Laser welding vibration lens and laser welding equipment |
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Address after: 212000 Zhenjiang city Jiangsu province area Dingmao Road No. 99 Building 29 fifteen Patentee after: Jiangsu Jin Hai Chuang Technology Co., Ltd. Address before: 212000 Zhenjiang city Jiangsu province area Dingmao Road No. 99 Building 29 fifteen Patentee before: ZHENJIANG JINHAICHUANG TECHNOLOGY CO., LTD. |
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