CN208787752U - A kind of energy-saving laser-beam welding machine - Google Patents
A kind of energy-saving laser-beam welding machine Download PDFInfo
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- CN208787752U CN208787752U CN201821048447.6U CN201821048447U CN208787752U CN 208787752 U CN208787752 U CN 208787752U CN 201821048447 U CN201821048447 U CN 201821048447U CN 208787752 U CN208787752 U CN 208787752U
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- cooling
- circulation component
- water tank
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Abstract
The utility model discloses a kind of energy-saving laser-beam welding machines, it include: laser welding head and cooling body, cooling body includes first circulation component and second circulation component, and first circulation component includes cooling water tank, seal casinghousing, flight, Wind cooling casting, forced air cooled tube, Air cooler, major cycle water pump and auxiliary water circulating pump;Second circulation component includes the compressor for being sequentially connected and being formed closed loop, evaporator, filter, expansion valve and condenser, and evaporator is built in cooling water tank.The utility model setting first circulation component simultaneously forms main cooling cycle channel and auxiliary cooling cycle channel in order to air-cooled to laser welding head water cooling and to welding workpiece respectively, it avoids the waste of water resource and the cleaning on ground, and laser welding head and welding workpiece can be controlled separately cooling, be conducive to improve energy-saving effect;Second circulation component is set can be cooled down to the cooling water in cooling water tank using the principle one of air source heat pump using air, is conducive to reduce the consumption of the energy.
Description
Technical field
The utility model relates to technical field of laser welding, more particularly, to a kind of energy-saving laser-beam welding machine.
Background technique
Authorization Notice No. is that the Chinese invention patent of CN105414780B discloses a kind of cooling for laser-beam welding machine
System, by the way that a seal casinghousing is arranged on the laser welding head of laser-beam welding machine, and in seal casinghousing and laser welding head
Between cavity in injection cooling water to achieve the purpose that cooling laser welding head, while the spray that setting is connected to above-mentioned cavity
Head is sprayed water to welding workpiece to achieve the purpose that cooling welding workpiece, aforesaid way although can be good at laser welding head and
Welding workpiece is cooling, however, it needs continuous consumption cooling water, leads to a large amount of wastes of water resource, and cooling water is direct
The humidity that welding bench and welding position ground are also resulted in injection to welding workpiece, so that welding bench and welding position
It sets ground and needs regular cleaning.
Utility model content
The purpose of the utility model is to overcome above-mentioned technical deficiencies, propose a kind of energy-saving laser-beam welding machine, solve existing
There is in technology the serious technical problem of water resource waste in laser beam welding.
To reach above-mentioned technical purpose, the technical solution of the utility model provides a kind of energy-saving laser-beam welding machine, comprising:
One laser welding head and a cooling body, the cooling body include first circulation component and second circulation component, and described first
Recirculation assembly includes cooling water tank, seal casinghousing, flight, Wind cooling casting, forced air cooled tube, Air cooler, major cycle water pump and auxiliary follows
Ring water pump, it is cold that the seal casinghousing coaxial sleeve forms one set on the laser welding head and between the laser welding head outer wall
But cavity, the flight are coaxially built in the cooling cavities and the cooling cavities are separated the cooling in the shape of a spiral
Cavity, major cycle water pump and cooling water tank are in turn connected to form the main cooling cycle channel of closed hoop;The Wind cooling casting is in
Tubular, the Air cooler and forced air cooled tube are successively built in the Wind cooling casting, and the forced air cooled tube, auxiliary recirculated water along airflow direction
Pump, cooling water tank are in turn connected to form the auxiliary cooling cycle channel of closed hoop;The second circulation component includes being sequentially connected
And compressor, evaporator, filter, expansion valve and the condenser of closed loop are formed, the evaporator is built in the cooling
Water tank.
Compared with prior art, the utility model is arranged first circulation component and forms main cooling cycle channel and auxiliary cooling
Circulation canal avoids waste and the ground of water resource in order to air-cooled to laser welding head water cooling and to welding workpiece respectively
Cleaning, and laser welding head and welding workpiece can be controlled separately cooling, be conducive to improve energy-saving effect;And setting second circulation component
Can cool down to the cooling water in cooling water tank using air using the principle one of air source heat pump, it is conducive to reduce the energy
Consumption.
Detailed description of the invention
Fig. 1 is the attachment structure schematic diagram of the energy-saving laser-beam welding machine of the utility model.
Specific embodiment
In order to make the purpose of the utility model, technical solutions and advantages more clearly understood, below in conjunction with attached drawing and implementation
Example, the present invention will be further described in detail.It should be appreciated that specific embodiment described herein is only used to explain
The utility model is not used to limit the utility model.
As shown in Figure 1, the embodiments of the present invention provide a kind of energy-saving laser-beam welding machine, comprising: a Laser Welding
Connector 10 and a cooling body 20, when welding, cooling body 20 can cool down respectively laser welding head 10 and welding workpiece.
The cooling body 20 includes first circulation component 21 and second circulation component 22, and first circulation component 21 is recyclable
By cooling water to cool down to laser welding head 10 and welding workpiece, wherein laser welding head 10 uses water-cooling pattern,
Conducive to raising cooling efficiency, and welding workpiece uses air cooling way, can avoid a large amount of waves caused by water resource is directly sprayed
Take, also avoids cleaning work caused by the humidity of ground, and second circulation component 22 then recycles air and can follow first
Cooling water in ring assemblies 21 is cooled down.
The first circulation component 21 include cooling water tank 211, seal casinghousing 212, flight 213, Wind cooling casting 214,
Forced air cooled tube 215, Air cooler 216, major cycle water pump 217 and auxiliary water circulating pump 218,212 coaxial sleeve of seal casinghousing are set to institute
It states laser welding head 10 and forms a cooling cavities between 10 outer wall of laser welding head, the flight 213 is coaxial interior
It is placed in the cooling cavities and separates the cooling cavities in the shape of a spiral, the cooling cavities, major cycle water pump 217 and cooling
Water tank 211 is in turn connected to form the main cooling cycle channel of closed hoop, and when work, major cycle water pump 217 is by cooling water tank
Cooling water circulation in 211 is pumped into cooling cavities, can be cooled down in real time to laser welding head 10, cooling water after cooling
Then enter cooling water tank 211, to realize the recirculated water cooling of laser welding head 10, and the present embodiment will by flight 213
Cooling cavities arrangement is spiral, after cooling water being convenient for enter cooling cavities in the shape of a spiral along the outer peripheral surface of laser welding head 10
Flowing is conducive to improve cooling efficiency;The Wind cooling casting 214 is cylindrical in shape, and the Air cooler 216 and forced air cooled tube 215 are along air-flow
Direction is successively built in the Wind cooling casting 214, and the forced air cooled tube 215, auxiliary water circulating pump 218, cooling water tank 211 successively connect
Connect the auxiliary cooling cycle channel to form closed hoop, when work, auxiliary water circulating pump 218 is by the cooling water in cooling water tank 211
Circulation is pumped into forced air cooled tube 215, and outside air is then pumped into Wind cooling casting 214 and passes through forced air cooled tube by Air cooler 216
215, so that the cooling water in outside air and forced air cooled tube 215 carries out heat exchange, and the cold air generated then blows to welding workpiece
With welding workpiece is cooling, and the cooling water in forced air cooled tube 215 is then recycled into cooling water tank 211.
First circulation component 21 is designed to main cooling cycle channel and auxiliary cooling cycle channel by the present embodiment, and the two can
It is controlled respectively by major cycle water pump 217 and auxiliary water circulating pump 218, i.e., when laser welding head 10 needs cooling and welding workpiece not
When needing cooling, or when laser welding head 10 does not need cooling and welding workpiece needs cooling, major cycle water can be passed through
The opening and closing of pump 217 and auxiliary water circulating pump 218 controls main cooling cycle channel and auxiliary cooling cycle channel respectively and is cooled down, benefit
In the waste for avoiding the two from working at the same time and cause the energy, is conducive to the utilization rate for improving the energy, improves energy-saving effect.
Wherein, Wind cooling casting 214 can be connect with seal casinghousing 212, and its air-out direction is settable is with Authorization Notice No.
The water spraying direction of spray head in the Chinese invention patent of CN105414780B is consistent, consequently facilitating in real time will weldering in welding process
It is cooling to connect workpiece, Wind cooling casting 214 can also be used hand-held, it can be individually operated to carry out wind to welding workpiece convenient for its
It is cold.
The second circulation component 22 includes being sequentially connected and forming the compressor 221 of closed loop, evaporator 222, mistake
Filter 223, expansion valve 224 and condenser 225, the evaporator 222 are built in the cooling water tank 211, recycle sky
Gas can freeze the cooling water in cooling water tank 211, in order to which the temperature for entering the intracorporal cooling water of cooling chamber is lower.It is specific
Cooling flow is as follows: the refrigerant of higher temperature enters condenser 225, distributes heat to sky under the effect of condenser 225
In gas, so that the temperature of refrigerant reduces, the refrigerant after reducing temperature enters compressor 221, through overcompression
The temperature of refrigerant reduces again and is formed the refrigerant of lower temperature, and the refrigerant of lower temperature enters evaporator
222 with to the cooling water temperature in cooling water tank 211, while the temperature of the refrigerant in evaporator 222 increases, and increases temperature
The refrigerant of degree passes through filter 223 first and filters, and enters expansion valve 224 to avoid impurity in cooling cavities, and increases temperature
Temperature increases again after the refrigerant of degree enters expansion valve 224, and forms the refrigerant of higher temperature to enter condenser
In 225, so circulation is, it can be achieved that the cooling water in cooling water tank 211 can be cooled down by recycling air.
Wherein, condenser 225 described in the present embodiment includes a condensation casing 225a, is built in the condensation casing 225a
Condenser pipe 225b and condensation fan 225c set on the side the condenser pipe 225b, casing 225a is settable is cylindrical in shape for condensation, cold
Solidifying blower 225c can drive outside air to enter condensation casing 225a and carry out heat exchange with the refrigerant in condenser pipe 225b,
And then heat is distributed into air convenient for refrigerant in condenser pipe 225b;Wherein, the one end the condenser pipe 225b with it is described
The medium inlet connection of compressor 221, the other end are connected to the media outlet of the expansion valve 224.The evaporator of the present embodiment
222 can be used evaporation coil.
In order to avoid the refrigerant in cooling cavities by occurring between seal casinghousing 212 and outside air to a certain degree
Heat exchange, first circulation component 21 described in the present embodiment further includes a thermal insulation layer being coated on 212 outer wall of seal casinghousing
219。
The utility model setting first circulation component and formed main cooling cycle channel and auxiliary cooling cycle channel in order to
It is air-cooled to laser welding head water cooling and to welding workpiece respectively, avoid the waste of water resource and the cleaning on ground, and Laser Welding
Connector and welding workpiece can be controlled separately cooling, be conducive to improve energy-saving effect;And setting second circulation component is to utilize air-source
The principle one of heat pump can cool down to the cooling water in cooling water tank using air, be conducive to reduce the consumption of the energy.
Specific embodiment of the present utility model described above does not constitute the restriction to scope of protection of the utility model.
Any other various changes and modifications that any technical concept according to the present utility model is made should be included in practical
In novel scope of protection of the claims.
Claims (3)
1. a kind of energy-saving laser-beam welding machine characterized by comprising a laser welding head and a cooling body, the cooling
Mechanism includes first circulation component and second circulation component, and the first circulation component includes cooling water tank, seal casinghousing, spiral
Piece, Wind cooling casting, forced air cooled tube, Air cooler, major cycle water pump and auxiliary water circulating pump, the seal casinghousing coaxial sleeve are set to described sharp
Flush weld connector simultaneously forms a cooling cavities between the laser welding head outer wall, and the flight is coaxially built in the cooling
Cavity simultaneously separates the cooling cavities in the shape of a spiral, and the cooling cavities, major cycle water pump and cooling water tank are sequentially connected shape
At the main cooling cycle channel of closed hoop;The Wind cooling casting is cylindrical in shape, the Air cooler and forced air cooled tube along airflow direction according to
It is secondary to be built in the Wind cooling casting, and the forced air cooled tube, auxiliary water circulating pump, cooling water tank are in turn connected to form the auxiliary of closed hoop
Cooling cycle channel;The second circulation component includes the compressor, evaporator, filtering for being sequentially connected and being formed closed loop
Device, expansion valve and condenser, the evaporator are built in the cooling water tank.
2. energy-saving laser-beam welding machine according to claim 1, which is characterized in that the condenser includes a freezing machine
Shell, the condenser pipe for being built in the condensation casing and the condensation fan set on the condenser pipe side;Wherein, the condenser pipe one
End is connected to the medium inlet of the compressor, the other end is connected to the media outlet of the expansion valve.
3. energy-saving laser-beam welding machine according to claim 1, which is characterized in that the first circulation component further includes one
The thermal insulation layer being coated on the seal casinghousing outer wall.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201821048447.6U CN208787752U (en) | 2018-07-02 | 2018-07-02 | A kind of energy-saving laser-beam welding machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201821048447.6U CN208787752U (en) | 2018-07-02 | 2018-07-02 | A kind of energy-saving laser-beam welding machine |
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Publication Number | Publication Date |
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CN208787752U true CN208787752U (en) | 2019-04-26 |
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ID=66201848
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CN201821048447.6U Expired - Fee Related CN208787752U (en) | 2018-07-02 | 2018-07-02 | A kind of energy-saving laser-beam welding machine |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110918942A (en) * | 2019-10-31 | 2020-03-27 | 湖北凡超汽车实业有限责任公司 | Pipeline valve shell casting cooling device |
CN113690720A (en) * | 2021-08-17 | 2021-11-23 | 岗春智能装备制造(江苏)有限公司 | Laser head cooling device |
-
2018
- 2018-07-02 CN CN201821048447.6U patent/CN208787752U/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110918942A (en) * | 2019-10-31 | 2020-03-27 | 湖北凡超汽车实业有限责任公司 | Pipeline valve shell casting cooling device |
CN110918942B (en) * | 2019-10-31 | 2022-01-11 | 湖北凡超汽车实业有限责任公司 | Pipeline valve shell casting cooling device |
CN113690720A (en) * | 2021-08-17 | 2021-11-23 | 岗春智能装备制造(江苏)有限公司 | Laser head cooling device |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20190426 Termination date: 20200702 |
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CF01 | Termination of patent right due to non-payment of annual fee |