Argon welding method (TIG system) is mainly used for thin workpieces of a thickness not exceeding 6 mm. At the run configurations and types are available to service the metal this technology can be called universal. Limit the scope of the argon welding only conditioned by its low efficiency with large volumes. The technique focuses on high precision operations, but for large resources.
This kind of hand-arc welding, which uses tungsten electrode in inert gas. Through arc excited between the electrode and the target workpiece, is carried out melt. In the process, should be provided with the gas supply and the correct direction of the tungsten. To obtain a quality weld, the gas mixture should flow continuously and without interruption, but slowly. One of the basic principles of argon welding is a manual job manipulation, but depending on technological support, for example, the process direction of the filler material can be automated. The gas is selected based on the characteristics of the weld metal. The most common use of helium and argon, where the name of the method. In the case of porous structures of blanks used protective gas bath with oxygen supply to 3-5 %. This Supplement increases the protective properties of the weld from cracking and exposure to atmospheric air. While pure argon as it is not able to create a barrier to passage of moisture, dirt and other particles that can have a direct negative impact on the structure of the formed seam. Foreign sources may be third-party and environmental factors and poorly cleaned surface of the part.
As a current source applied to the inverters or transformers. Often – first, because they offer a more ergonomic device and is optimized for most common tasks characteristics. The inverters can operate in two modes – with the flow of direct or alternating current. For maintenance of solid metals (e.g., steel) using a constant current, and for soft (aluminum and its alloys) – AC. Modern apparatus for argon welding provides the ability to fine-tune current, is protected against overheating and over-voltage, and some modifications and display a reflection of all the main parameters. Lately, demand and modification with a lightweight arc ignition and stabilization of welding parameters. It features Hot-Start and Arc-force, respectively.
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Choose inverters for voltage, weight, power, range of welding current, the presence of certain features and size. Average ranges of key operating parameters of the apparatus for argon welding can be represented as follows:
To perform simple operations utilize low-cost model with a maximum current of 180 A. With such equipment, the lack of power usually kompensiruet high ratio of the length of time – an average of 60-70 %. This means that the operator can stop the process for a cooling apparatus to work 7 min and, for example, 3-4 min rest. Professionals mainly employ powerful device, powered from three-phase networks at 380 V. the advantages of such devices include the ability of the welding voltage of up to 15 %, continuous adjustment of current and efficient cooling system.
In Addition to the current generator, the work will require the cylinder with gas, burner, electrodes and filler wire. Balloon has design the reducer with the setting of the volume flow of gases and a hose connected to the tool. For the immediate direction of the shielding gas used burner in the form of a gun. It connects with the hose of the cylinder, and the holder locks the tungsten electrode. On the torch handle provides buttons to enable the gas flow and current. The parameters of a torch for argon welding are selected and output electrode, and under the maintenance requirements of the target part. Takes into account the dimensional and structural characteristics, the throughput of the nozzle, etc. as for filler wire, then it does not always apply – usually in the cases of working with thick workpieces made of carbon metal. This is a metal rod, which is also amenable to welding.
The Main success of the operation will be supported by the skills of the performer. Experienced master is ability to hold the burner in the correct position for a long period of time and also to perform an orderly flow of filler materials if they are required in solving a specific problem. In addition to skillsthe wizard, the quality will be determined and compliance with welding technology. There are many nuances and subtleties of how to organize the process, and in the course of physical performance. For example, not everyone knows that the gun must be held at an angle of 20-40° relative to the direction of thermal effects. Ignoring this rule can get fragile and unreliable connection. Also, and the apparatus for argon welding is important in obtaining quality results. And it's not even the technical-operational parameters and reliability of the tool, the ergonomics of its design and efficiency of functionality.
Before the welding, you should clean the surface of the target part. At the first stage of the physical handling of the produce, and then – degreasing. Oil and grease stains removed with acetone or solvents for metal surfaces. There is another trick associated with the preparation of parts of a thickness exceeding 4 mm. is called the groove. They mowed down so that weld pool could continue to be below the surface of the part. This will effectively form a connecting seam. Before working with fine-leaved material used and the technique of flanging at which the fold edges at right angles. To argon welding left behind a low paigow and deformation, the workpiece is removed and the oxide film. For this operation it is possible to use abrasives to tools. For example, in the manual process often use a file or sandpaper.
For working the workpiece is attached to the ground wire, the burner is connected with the inverter and gas bottle. In one hand the wizard takes the torch in the other – filler wire. Then proceed to configure the operating parameters of the equipment. It is necessary to set the optimum amperage based on the parameters of the part. How to choose the optimal mode? In the case of large main steels and their alloys work argon welding is implemented with direct current straight polarity. If we are talking about non-ferrous metals, the optimum conditions will create an alternating current with a reverse polarity. Before the beginning of the operation required about 15-20 seconds to enable the flow of the gas mixture. After that the burner nozzle is moved to the surface of the part, the distance from the electrode should be 2-3 mm. In between will form an electric arc, which will further ensure the edges melt and the filler rod.
In the case of Titan difficulties are caused by its chemical activity that takes place in interaction with a gas mixture. In particular, when the melt oxidizes, forming a solid film of hydrogen and reduces the quality of the weld. Moreover, due to the low thermal conductivity of titanium there is a need for secondary suturing around the existing connection, which is secured on the first pass of the argon welding. Their hands to perform high-quality processing of the metal by using combination of tungsten electrodes and welding rod, keeping the angle between these elements 90°. At least, this recommendation may be used in the work with leaves 1.5 mm.
Problems of welding of this metal was somewhat similar to that discussed above. In the course of work, there is the same oxidation that leads to the production of heterogeneous weld. There are other features associated with the oxide of copper billets due to reaction with hydrogen. Pairing the structure of the filling of the seam, that logically leads to the preservation of air bubbles. How to make the argon welding copper to exclude such effects? It is necessary to work only with reverse polarity or with alternating current. Used gas – argon, electrodes are not tungsten, and graphite. Unlike titanium welding method of melting of the edges without filler rod.
Perhaps the most capricious in the weld metal, which can be explained by the complexity of the shape in the melt, high oxidation, high conductivity and tendency to form cracks, dents and other defects. Argon mixture in this case will perform only the role of protection from oxygen, but also act as an activator electrically conductive plasma. In the process of heating the formed refractory layer which will need to destroy in the conditions of reverse polarity or AC. In many ways, the quality of argon welding of aluminium will depend on the degree of intensity of the direction of argon. So, in working with aluminum sheet with a thickness of 1 mm at a current of not more than 50 And the flow rate of inert gas will be 4-5 l/min Thick of part to cook 4-5 mm at a current of 150 a And argon flow to 8-10 l/min.
Even at low volume, the work should provide a complex of protective measures, including the following:
One of the main advantages of this technology is the versatility and the ability to work with different metals at high speed. As already mentioned, even the alloys that are afraid of interaction with oxygen under certain conditions can successfully be served. Another plus is expressed in a protective gas atmosphere, thanks to which decreases the risk of pores and foreign inclusions in the structure of the seam. In many situations it is required to protect the work area to the rest of the surface remained intact. In this sense, argon welding will be the best solution, since heating is performed locally and does not deform third-party elements and construction details. If to speak about the shortcomings of them. First, it is the complexity of the physical execution of a task that requires certain skills and knowledge. Second, the inevitable high network load with large power consumption.
Implement the welding by method TIG today can anyone purchasing the appropriate equipment and consumables. For household tasks in the household, for example, you can get a machine "Resanta" SAI 180 AD, which will allow you to perform functionality and performance of argon welding. Equipment of this type with a current strength of 180 And costs about 18-20 thousand rubles Professionals recommended models such as "SwarG" TIG 300S and FUBAG INTIG 200 AC/DC. They have a high output power of 6-8 kW, a current of 200 A, but are not less than 25 thousand. This welding equipment is often used in construction, specialized workshops and large industries.
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Alin Trodden - author of the article, editor
"Hi, I'm Alin Trodden. I write texts, read books, and look for impressions. And I'm not bad at telling you about it. I am always happy to participate in interesting projects."
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