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  2. Oxyhydrogen - Wikipedia

    en.wikipedia.org/wiki/Oxyhydrogen

    Oxyhydrogen is a mixture of hydrogen (H 2) and oxygen (O 2) gases. This gaseous mixture is used for torches to process refractory materials and was the first [1] gaseous mixture used for welding. Theoretically, a ratio of 2:1 hydrogen:oxygen is enough to achieve maximum efficiency; in practice a ratio 4:1 or 5:1 is needed to avoid an oxidizing ...

  3. Stihl - Wikipedia

    en.wikipedia.org/wiki/Stihl

    Andreas Stihl designed and hand built his first chainsaw in 1926. [5] The saw was electrically powered, and weighed about 48 kg (106 lb). [6] Stihl grew slowly initially, as the chainsaws came to the market about the same time as the Great Depression; with manpower cheap, and old two-man saws proven, there was no need for power saws.

  4. Hot Saw - Wikipedia

    en.wikipedia.org/wiki/Hot_Saw

    The athletes have to be very strong and skilled, with chainsaws having a chain speed of 240 km/h, a weight of 27 kg, and engines typically having between 62 and 100 horsepower. [ 7 ] [ 1 ] The Timbersports rules on hot saws are: [ 1 ]

  5. Chainsaw - Wikipedia

    en.wikipedia.org/wiki/Chainsaw

    Chainsaw engines are traditionally either a two-stroke single-cylinder gasoline (petrol) internal combustion engine (usually with a cylinder volume of 30 to 120 cm 3) or an electric motor driven by a battery or electric power cord. In a petrol chainsaw, fuel is generally supplied to the engine by a carburetor at the intake.

  6. Fuel mass fraction - Wikipedia

    en.wikipedia.org/wiki/Fuel_mass_fraction

    In combustion physics, fuel mass fraction is the ratio of fuel mass flow to the total mass flow of a fuel mixture. If an air flow is fuel free, the fuel mass fraction is zero; in pure fuel without trapped gases, the ratio is unity. [1] As fuel is burned in a combustion process, the fuel mass fraction is reduced. The definition reads as = where ...

  7. Flammability diagram - Wikipedia

    en.wikipedia.org/wiki/Flammability_diagram

    The stoichiometric concentration of methane in oxygen is therefore 1/(1+2), which is 33 percent. Any stoichiometric mixture of methane and oxygen will lie on the straight line between pure nitrogen (and zero percent methane) and 33 percent methane (and 67 percent oxygen) – this is shown as the red stoichiometric line.