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  2. Plasma cutting - Wikipedia

    en.wikipedia.org/wiki/Plasma_cutting

    Plasma cutting is a process that cuts through electrically conductive materials by means of an accelerated jet of hot plasma. Typical materials cut with a plasma torch include steel, stainless steel, aluminum, brass and copper, although other conductive metals may be cut as well. Plasma cutting is often used in fabrication shops, automotive ...

  3. Plasma-enhanced chemical vapor deposition - Wikipedia

    en.wikipedia.org/wiki/Plasma-enhanced_chemical...

    Plasma-enhanced chemical vapor deposition (PECVD) is a chemical vapor deposition process used to deposit thin films from a gas state (vapor) to a solid state on a substrate. Chemical reactions are involved in the process, which occur after creation of a plasma of the reacting gases. The plasma is generally created by radio frequency (RF ...

  4. Thomas H. Stix - Wikipedia

    en.wikipedia.org/wiki/Thomas_H._Stix

    James Clerk Maxwell Prize for Plasma Physics (1980) Scientific career. Fields. Plasma physics. Institutions. Princeton University. Thomas Howard Stix (July 12, 1924 – April 16, 2001) was an American physicist. Stix performed seminal work in plasma physics and wrote the first mathematical treatment of the field in 1962's The Theory of Plasma ...

  5. Plasma torch - Wikipedia

    en.wikipedia.org/wiki/Plasma_torch

    Plasma torch. A plasma torch cutter. A plasma torch (also known as a plasma arc, plasma gun, plasma cutter, or plasmatron) is a device for generating a directed flow of plasma. [1][2][3] The plasma jet can be used for applications including plasma cutting, plasma arc welding, plasma spraying, and plasma gasification for waste disposal. [4]

  6. Piezoelectric direct discharge plasma - Wikipedia

    en.wikipedia.org/wiki/Piezoelectric_direct...

    Piezoelectric direct discharge ( PDD) plasma is a type of cold non-equilibrium plasma, generated by a direct gas discharge of a high voltage piezoelectric transformer. It can be ignited in air or other gases in a wide range of pressures, including atmospheric. Due to the compactness and the efficiency of the piezoelectric transformer, this ...

  7. Talk:Plasma cutting - Wikipedia

    en.wikipedia.org/wiki/Talk:Plasma_cutting

    The flow rate DOES change, as the plasma reacts to the electric field in the torch and on the workpiece. - Toastydeath 04:24, 5 December 2006 (UTC) Reply . To give an idea of the flow rate while plasma cutting: The flow of a Hypertherm plasma 260A for mild steel uses 42 l/min for the plasma gas (O2) and 104 l/min for the shield gas (air).

  8. Inductively coupled plasma - Wikipedia

    en.wikipedia.org/wiki/Inductively_coupled_plasma

    Fig. 2. The construction of Inductively Coupled Plasma torch. [3] A: cooling gas tangential flow to the outer quartz tube B: discharge gas flow (usually Ar) C: flow of carrier gas with sample D: induction coil which forms the strong magnetic field inside the torch E: force vectors of the magnetic field F: the plasma torch (the discharge).

  9. ARC fusion reactor - Wikipedia

    en.wikipedia.org/wiki/ARC_fusion_reactor

    ARC fusion reactor. The ARC fusion reactor (affordable, robust, compact) is a design for a compact fusion reactor developed by the Massachusetts Institute of Technology (MIT) Plasma Science and Fusion Center (PSFC). ARC aims to achieve an engineering breakeven of three (to produce three times the electricity required to operate the machine).

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