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  2. Plasma cutting - Wikipedia

    en.wikipedia.org/wiki/Plasma_cutting

    CNC plasma cutting Plasma cutting performed by an industrial robot. 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.

  3. Plasma torch - Wikipedia

    en.wikipedia.org/wiki/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]

  4. 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) 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).

  5. Plasma arc welding - Wikipedia

    en.wikipedia.org/wiki/Plasma_arc_welding

    The energy of the plasma jet and thus the temperature depends upon the electrical power employed to create arc plasma. A typical value of temperature obtained in a plasma jet torch is on the order of 28,000 °C (50,400 °F), compared to about 5,500 °C (9,930 °F) in ordinary electric welding arc.

  6. Plasma gasification commercialization - Wikipedia

    en.wikipedia.org/wiki/Plasma_gasification...

    In 2015 Advanced Plasma Power has been awarded 11 million GBP of funding from the Department of Transport and 6 million GBP from Ofgem to develop and erect the first commercial gasification facility based on the Gasplasma process. The process consists of gasification, plasma gas treatment, syngas polishing and gas engine power generation.

  7. Plasma-activated bonding - Wikipedia

    en.wikipedia.org/wiki/Plasma-activated_bonding

    The decrease of temperature is based on the increase of bonding strength using plasma activation on clean wafer surfaces. Further, the increase is caused by elevation in amount of Si-OH groups, removal of contaminants on the wafer surface, the enhancement of viscous flow of the surface layer and the enhanced diffusivity of water and gas trapped at the interface. [2]

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