CN218135604U - Electric welding machine with welding power supply - Google Patents

Electric welding machine with welding power supply Download PDF

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Publication number
CN218135604U
CN218135604U CN202220351433.1U CN202220351433U CN218135604U CN 218135604 U CN218135604 U CN 218135604U CN 202220351433 U CN202220351433 U CN 202220351433U CN 218135604 U CN218135604 U CN 218135604U
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water
welding
power supply
welding power
wire feeder
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CN202220351433.1U
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胡成棋
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Abstract

The utility model discloses an electric welding machine with welding power supply, which relates to the technical field of electric welding machines and comprises a welding power supply, a cooling water tank, a gas cylinder, a wire feeder and a welding table, wherein the cooling water tank is internally provided with a water-cooling circulation device, a first water supply pipe is connected between a water outlet of the water-cooling circulation device and a water inlet of the welding power supply, a second water supply pipe is connected between a water outlet of the welding power supply and a water inlet of the wire feeder, and a water return pipe is arranged between a water return port of the water-cooling circulation device and a water return port of the wire feeder; a machine side control cable and a machine side welding cable are connected between the welding power supply and the wire feeder, and a workpiece side welding cable is connected between the welding power supply and the welding table; an air pipe is communicated between the air bottle and the wire feeder; one side of the wire feeder, which faces the welding table, is connected with a welding gun. The utility model discloses have through setting up movable welding source, according to the demand in-service use place, connect cable, pipeline etc. between each part, can weld, satisfied the effect of remote welding demand.

Description

Electric welding machine with welding power supply
Technical Field
The utility model relates to an electric welding technical field, more specifically say, it relates to an electric welding that possesses welding power supply.
Background
The electric welder is to utilize the high temperature electric arc produced by the instantaneous short circuit of the positive and negative poles to melt the welding flux and the welded material on the welding electrode and to combine the contacted material. When the welding equipment works, a large amount of heat is generated, and a good heat dissipation mode is needed for protection. The heating is a big enemy of electronic equipment, and the over-heating can influence the working efficiency and the service life of the equipment seriously. Heat dissipation protection has also been a concern of soldering equipment. The electric welding machine water-cooling heat dissipation is a method for cooling a heating source of an electric welding machine by utilizing a series water path formed by a special water-cooling heat conducting liquid, a water-cooling water pump, a heat dissipation row and a water-cooling head so as to improve the load factor and reduce the volume and the weight.
At present water-cooled electric welding is when using, and the electric welding needs external power supply, and when remote electric welding, it is inconvenient to connect the power, and it is also inconvenient when using to electric welding to, the water-cooling cycle device water-cooling efficiency of present electric welding is low, and the water-cooling effect is poor, and the radiating effect when to electric welding is not good, remains to improve.
Based on the problem, the utility model provides an electric welding that can possess welding power supply.
SUMMERY OF THE UTILITY MODEL
To this problem in the in-service use, the utility model aims to provide an electric welding that possesses welding source, concrete scheme as follows:
an electric welding machine with a welding power supply comprises the welding power supply, a cooling water tank, a gas cylinder, a wire feeder and a welding table which are arranged independently, wherein a water-cooling circulation device is arranged in the cooling water tank, the gas cylinder, the wire feeder and the welding table are arranged beside the welding power supply, a first water supply pipe is connected between a water outlet of the water-cooling circulation device and a water inlet of the welding power supply, a second water supply pipe is connected between a water outlet of the welding power supply and a water inlet of the wire feeder, and a water return pipe is arranged between a water return port of the water-cooling circulation device and a water return port of the wire feeder;
a machine side control cable and a machine side welding cable are connected between the welding power supply and the wire feeder, and a workpiece side welding cable is connected between the welding power supply and the welding table;
an air pipe is communicated between the air bottle and the wire feeder, and argon is stored in the air bottle;
one side of the wire feeder, which faces the welding table, is connected with a welding gun.
Further, the water-cooling circulation device comprises a condenser and a water pump, a circulation pipe is connected between the condenser and the water pump, and an outlet of the circulation pipe is communicated with a welding power supply water outlet.
Furthermore, the water-cooling circulation device further comprises a water storage tank, the water storage tank is sleeved outside the condenser, and an electromagnetic valve is arranged at the joint of a water outlet of the water storage tank and a water inlet of the condenser.
Further, the water-cooling circulating device further comprises a winding pipe, the winding pipe is formed by winding a plurality of S-shaped structure combinations outside the condenser, the winding pipe is located in the water storage tank, and a water outlet of the winding pipe is communicated with a water inlet of the water storage tank.
Further, a gas flow meter is arranged between the gas cylinder and the gas pipe.
Furthermore, a plurality of annular heat dissipation holes are formed in the welding power supply case.
Furthermore, the welding power supply is connected with an analog remote control box through a cable.
Furthermore, the bottom of the welding power supply is provided with universal wheels.
Compared with the prior art, the beneficial effects of the utility model are as follows:
(1) By arranging the movable welding power supply, the welding power supply and other parts are moved to the use site according to the requirements of the actual use site during working, cables, pipelines and the like among the parts are connected, the welding work can be carried out, and the requirements of remote welding are met;
(2) Through setting up the water-cooling circulating device who possesses the second grade precooling structure, in welding process, there is water-cooling circulating device to provide recirculated cooling water for welder, has effectively improved cooling efficiency, shortens cooling time, has avoided welder cooling water to follow up and has leaded to the condition appearance of welder overheated work.
Drawings
Fig. 1 is an overall schematic view of an embodiment of the present invention;
FIG. 2 is a schematic view of the structure of a heat dissipation hole of a welding power supply of the present invention;
fig. 3 is a schematic structural view of the middle water-cooling circulation device of the present invention.
Reference numerals: 1. a welding power supply; 2. a cooling water tank; 3. a gas cylinder; 4. a wire feeder; 5. a welding table; 6. a water-cooling circulation device; 61. a condenser; 62. a water pump; 63. a circulation pipe; 64. a water storage tank; 65. an electromagnetic valve; 66. winding the tube; 7. a first water supply pipe; 8. a second water supply pipe; 9. a water return pipe; 10. a machine side control cable; 11. a machine side welding cable; 12. welding a cable on the workpiece side; 13. an air pipe; 14. a welding gun; 15. a gas flow meter; 16. heat dissipation holes; 17. simulating a remote control box; 18. a universal wheel.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
As shown in fig. 1-3, an electric welding machine with a welding power supply 1 includes a welding power supply 1, a cooling water tank 2, a gas cylinder 3, a wire feeder 4, and a welding table 5, which are independent of each other, and the cooling water tank 2, the gas cylinder 3, the wire feeder 4, and the welding table 5 are disposed beside the welding power supply 1.
Welding power supply 1 provides portable power source for sending a machine 4 and welding bench 5, like this, at the electric welding during operation, welding power supply 1 can regard as portable power source, for each power consumption part provides the power on the electric welding, even the electric welding is when carrying out long distance use, does not worry the problem of power, still can normally carry out electric welding work.
A machine-side control cable 10 and a machine-side welding cable 11 are connected between the welding power source 1 and the wire feeder 4, and a workpiece-side welding cable 12 is connected between the welding power source 1 and the welding table 5. The machine side control cable 10, the machine side weld cable 11 provide electrical connection between the wire feeder 4 and the welding power supply 1, and the workpiece side weld cable 12 provides electrical connection between the welding station 5 and the welding power supply 1.
An air pipe 13 is communicated between the air bottle 3 and the wire feeder 4, and argon is stored in the air bottle 3. Argon is used as protective gas during welding.
A welding torch 14 is connected to the wire feeder 4 on the side facing the welding station 5. The water cooling circulation device 6 is connected with a welding torch 14, and the welding torch 14 is used for welding.
The cooling water tank 2 is internally provided with a water cooling circulation device 6, and the water cooling circulation device 6 provides water cooling heat dissipation for the welding gun 14.
During operation, will wait to weld the work piece and place on welding bench 5, utilize welder 14 to weld the welding work piece, water-cooling circulating device 6 is used for providing the water-cooling for welder 14 to avoid welder 14 to appear overheated condition, the argon gas plays the effect of guaranteeing normal welding as the shielding gas in the welding process.
Specifically, a first water supply pipe 7 is connected between the water outlet of the water-cooling circulation device 6 and the water inlet of the welding power supply 1, a second water supply pipe 8 is connected between the water outlet of the welding power supply 1 and the water inlet of the wire feeder 4, and a water return pipe 9 is arranged between the water return port of the water-cooling circulation device 6 and the water return port of the wire feeder 4.
During connection, the second water supply pipe 8 is firstly connected between the water outlet of the welding power supply 1 and the water inlet of the wire feeder 4, the water return pipe 9 is then connected between the water return port of the wire feeder 4 and the water return port of the water-cooling circulation device 6, and finally the first water supply pipe 7 is connected between the water inlet of the welding power supply 1 and the water outlet of the water-cooling circulation device 6.
In order to guarantee high-speed, high-efficient work of water-cooling circulation device 6, provided a water-cooling circulation device 6 in this application, specifically:
the water-cooling circulation device 6 comprises a condenser 61 and a water pump 62, a circulation pipe 63 is connected between the condenser 61 and the water pump 62, and the outlet of the circulation pipe 63 is communicated with the water outlet of the welding power supply 1.
The water cooling circulation process comprises the following steps: the water pump 62 pumps the water in the cooling water tank 2 to the condenser 61 through the first water supply pipe 7, the water is condensed by the condenser 61 and then sent to the second water supply pipe 8 until the wire feeder 4 and the welding gun 14, and the used cooling water is sent back to the cooling water tank 2 through the water return pipe 9 in the working process of the welding gun 14, so that the whole cooling water circulation is completed.
In addition, the water-cooling circulation device 6 further comprises a water storage tank 64, the water storage tank 64 is sleeved outside the condenser 61, a water inlet of the water storage tank 64 is communicated with the first water supply pipe 7, and a connection position of a water outlet of the water storage tank 64 and a water inlet of the condenser 61 is provided with an electromagnetic valve 65. The first water supply pipe 7 firstly supplies water to the water storage tank 64, and then supplies water to the condenser 61 through the opening of the electromagnetic valve 65, so that when the condenser 61 cools the water, the water in the water storage tank 64 can be precooled simultaneously, and thus, when the water precooled in the water storage tank 64 enters the condenser 61 again for condensation, the cooling speed of the water can be faster than that of the water directly guided into the condenser 61 from the cooling water tank 2, therefore, the cooling time can be greatly saved by adopting the mode of arranging the water storage tank 64, and the cooling efficiency is improved.
Furthermore, the water-cooling circulation device 6 further comprises a winding pipe 66, the winding pipe 66 is wound outside the condenser 61 in a plurality of S-shaped structural combinations, the winding pipe 66 is positioned in the water storage tank 64, and a water outlet of the winding pipe 66 is communicated with a water inlet of the water storage tank 64. Thus, the water entering the condenser pipe from the cooling water tank 2 firstly passes through the winding pipe 66 and then enters the water storage tank 64, and finally enters the condenser 61 for formal cooling, and secondary pre-cooling is adopted, so that the cooling efficiency and the cooling speed are further improved.
A gas flow meter 15 is arranged between the gas bottle 3 and the gas pipe 13. The gas meter 15 can meter the amount of argon gas consumed during use. During installation, the one end of the air pipe 13 is connected with the electromagnetic valve 65 on the wire feeder 4, and is fastened by a clamp, the gas flowmeter 15 is connected with the gas cylinder 3, and the other end of the air pipe 13 is connected with the gas flowmeter 15, so that installation is completed.
The welding power supply 1 is provided with a plurality of annular heat dissipation holes 16. The annular heat dissipation holes 16 are arranged to improve the heat dissipation performance of the case of the welding power supply 1, so as to avoid the overheating condition in the case of the welding power supply 1, help to protect the welding power supply 1, and prolong the service life of the welding power supply 1. In order to further improve the heat dissipation effect, a heat dissipation fan may be disposed on the case of the welding power supply 1 near the annular heat dissipation hole 16.
The welding power supply 1 is also connected with an analog remote control box 17 through a cable. The simulation remote control box 17 is used for controlling the work of the electric welding machine by operating the simulation remote control box 17, and the operation is convenient.
The bottom of the welding power supply 1 is provided with a universal wheel 18. The universal wheel 18 is arranged, so that the welding power supply 1 can be moved rapidly, the welding power supply 1 can be moved randomly according to actual use conditions, and the use is convenient.
At least one soldering station 5 is provided. The cables that can be used between each two welding stations 5 are connected in series in order to achieve simultaneous welding of a plurality of workpieces.
The utility model discloses a concrete implementation principle does: during operation, according to the demand in-service use place, remove welding source 1 and each other part to this use place, connect the cable between each part, pipeline etc. well, can carry out weldment work, remote welded demand has been satisfied, and in welding process, there is water-cooling circulating device 6 to provide recirculated cooling water for welder 14, adopt the structure of second grade precooling, cooling efficiency has effectively been improved, shorten the cooling time, the condition of welder 14 cooling water unable to keep up and leading to welder 14 overheated work has been avoided and has appeared.
It is above only the utility model discloses a preferred embodiment, the utility model discloses a scope of protection does not only confine above-mentioned embodiment, the all belongs to the utility model discloses a technical scheme under the thinking all belongs to the utility model discloses a scope of protection. It should be noted that modifications and embellishments within the scope of the present disclosure may be made by those skilled in the art without departing from the principles of the present disclosure.

Claims (8)

1. The electric welding machine with the welding power supply is characterized by comprising a welding power supply (1), a cooling water tank (2), a gas cylinder (3), a wire feeder (4) and a welding table (5) which are mutually independently arranged, wherein a water cooling circulation device (6) is arranged in the cooling water tank (2), the gas cylinder (3), the wire feeder (4) and the welding table (5) are arranged beside the welding power supply (1), a first water feeding pipe (7) is connected between a water outlet of the water cooling circulation device (6) and a water inlet of the welding power supply (1), a second water feeding pipe (8) is connected between a water outlet of the welding power supply (1) and a water inlet of the wire feeder (4), and a water return pipe (9) is arranged between a water return port of the water cooling circulation device (6) and a water return port of the wire feeder (4);
a machine side control cable (10) and a machine side welding cable (11) are connected between the welding power supply (1) and the wire feeder (4), and a workpiece side welding cable (12) is connected between the welding power supply (1) and the welding table (5);
an air pipe (13) is communicated between the air bottle (3) and the wire feeder (4), and argon is stored in the air bottle (3);
one side of the wire feeder (4) facing the welding table (5) is connected with a welding gun (14).
2. The electric welding machine with a welding power supply according to claim 1, wherein the water-cooling circulation device (6) comprises a condenser (61) and a water pump (62), a circulation pipe (63) is connected between the condenser (61) and the water pump (62), and an outlet of the circulation pipe (63) is communicated with a water outlet of the welding power supply (1).
3. The electric welding machine with the welding power supply according to claim 2, wherein the water-cooling circulation device (6) further comprises a water storage tank (64), the water storage tank (64) is sleeved outside the condenser (61), and a solenoid valve (65) is arranged at the connection position of the water outlet of the water storage tank (64) and the water inlet of the condenser (61).
4. The electric welding machine with the welding power supply according to claim 3, wherein the water cooling circulation device (6) further comprises a winding pipe (66), the winding pipe (66) is wound outside the condenser (61) in a plurality of S-shaped structural combinations, the winding pipe (66) is located in the water storage tank (64), and a water outlet of the winding pipe (66) is communicated with a water inlet of the water storage tank (64).
5. The welding machine with welding power supply according to claim 1, characterized in that a gas flow meter (15) is arranged between the gas cylinder (3) and the gas pipe (13).
6. The welding machine with welding power supply according to claim 1, wherein the welding power supply (1) has a plurality of annular heat dissipation holes (16) formed in the housing.
7. The welding machine with welding power supply according to claim 1, characterized in that the welding power supply (1) is further connected with an analog remote control box (17) by a cable.
8. Welding machine with welding power supply according to claim 1, characterized in that the universal wheels (18) are arranged at the bottom of the welding power supply (1).
CN202220351433.1U 2022-02-22 2022-02-22 Electric welding machine with welding power supply Active CN218135604U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220351433.1U CN218135604U (en) 2022-02-22 2022-02-22 Electric welding machine with welding power supply

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220351433.1U CN218135604U (en) 2022-02-22 2022-02-22 Electric welding machine with welding power supply

Publications (1)

Publication Number Publication Date
CN218135604U true CN218135604U (en) 2022-12-27

Family

ID=84549405

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220351433.1U Active CN218135604U (en) 2022-02-22 2022-02-22 Electric welding machine with welding power supply

Country Status (1)

Country Link
CN (1) CN218135604U (en)

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