4/6/2024 0 Comments Using a plasma cutter youtubeThis photo shows the swirl ring which is above the electrode and causes the plasma to turn rapidly as it passes. Neither of these latter two methods is compatible with CNC (automated) cutting. Other methods that have been used are touching the torch tip to the work to create a spark, and the use of a high-frequency starting circuit (like a spark plug). In many of today's better plasma cutters, a pilot arc between the electrode and nozzle is used to ionize the gas and initially generate the plasma prior to the arc transfer. The gas is also directed around the perimeter of the cutting area to shield the cut. This high speed gas cuts through the molten metal. The restricted opening (nozzle) the gas passes through causes it to squeeze by at a high speed, like air passing through a venturi in a carburetor. As the metal being cut is part of the circuit, the electrical conductivity of the plasma causes the arc to transfer to the work. Scientists call this additional state plasma. We all are familiar with the first three: i.e., solid, liquid, and gas. This elevates the temperature of the gas to the point that it enters a 4th state of matter. The gas can be shop air, nitrogen, argon, oxygen. Plasma cutters work by sending an electric arc through a gas that is passing through a constricted opening.
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