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  2. Heat treating - Wikipedia

    en.wikipedia.org/wiki/Heat_treating

    Steel castings after undergoing 12-hour 1,200 °C (2,190 °F) heat treatment. Complex heat treating schedules, or "cycles", are often devised by metallurgists to optimize an alloy's mechanical properties. In the aerospace industry, a superalloy may undergo five or more different heat treating operations to develop the desired properties.

  3. Tempering (metallurgy) - Wikipedia

    en.wikipedia.org/wiki/Tempering_(metallurgy)

    Differentially tempered steel. The various colors produced indicate the temperature the steel was heated to. Light straw indicates 204 °C (399 °F) and light blue indicates 337 °C (639 °F). [1] [2] Tempering is a process of heat treating, which is used to increase the toughness of iron-based alloys.

  4. Annealing (materials science) - Wikipedia

    en.wikipedia.org/wiki/Annealing_(materials_science)

    For many alloys, including carbon steel, the crystal grain size and phase composition, which ultimately determine the material properties, are dependent on the heating rate and cooling rate. Hot working or cold working after the annealing process alters the metal structure, so further heat treatments may

  5. Thermomechanical processing - Wikipedia

    en.wikipedia.org/wiki/Thermomechanical_processing

    Thermomechanical processing is a metallurgical process that combines mechanical or plastic deformation process like compression or forging, rolling, etc. with thermal processes like heat-treatment, water quenching, heating and cooling at various rates into a single process. [1]

  6. Differential heat treatment - Wikipedia

    en.wikipedia.org/wiki/Differential_heat_treatment

    There are several techniques used to differentially heat treat steel, but they can usually be divided into differential hardening and differential tempering methods. During heat treating, when red-hot steel (usually between 1,500 °F (820 °C) and 1,600 °F (870 °C)) is quenched, it becomes very hard. However, it will be too hard, becoming ...

  7. Maraging steel - Wikipedia

    en.wikipedia.org/wiki/Maraging_steel

    Maraging blades are superior for foil and épée because crack propagation in maraging steel is 10 times slower than in carbon steel, resulting in less frequent breaking of the blade and fewer injuries. [i] [19] Stainless maraging steel is used in bicycle frames (e.g. Reynolds 953 introduced in 2013) [20] and golf club heads. [21]