cycle annealing - meaning and definition. What is cycle annealing
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What (who) is cycle annealing - definition

HEAT TREATMENT THAT ALTERS THE PROPERTIES OF A MATERIAL
Normalization (metallurgy); Normalization, metallurgical; Process annealing; Full annealing; Thermal annealing; Annealing by Short circuit; Annealing Oven; Quenching oven; Annealing (metallurgy)

Annealing (materials science)         
In metallurgy and materials science, annealing is a heat treatment that alters the physical and sometimes chemical properties of a material to increase its ductility and reduce its hardness, making it more workable. It involves heating a material above its recrystallization temperature, maintaining a suitable temperature for an appropriate amount of time and then cooling.
Otto cycle         
  • adiabatic]]  compression (''B and colored orange'') stroke. Through the combustion of fuel, heat is added in a constant volume ([[isochoric process]]) process, followed by an adiabatic expansion process power (letter ''C and colored red'') stroke. The cycle is closed by the exhaust (letter ''D and colored blue'') stroke, characterized by isochoric cooling and isobaric compression processes.
THERMODYNAMIC CYCLE FOR SPARK IGNITION PISTON ENGINES
Otto Cycle; Otto-cycle; Otto cycle engine
An Otto cycle is an idealized thermodynamic cycle that describes the functioning of a typical spark ignition piston engine. It is the thermodynamic cycle most commonly found in automobile engines.
Annealed         
WIKIMEDIA DISAMBIGUATION PAGE
Anneal; Annealed; Annealling; Annealing point; Annealing (disambiguation); 13.0 temperature; Anneal (disambiguation)
·Impf & ·p.p. of Anneal.

Wikipedia

Annealing (materials science)

In metallurgy and materials science, annealing is a heat treatment that alters the physical and sometimes chemical properties of a material to increase its ductility and reduce its hardness, making it more workable. It involves heating a material above its recrystallization temperature, maintaining a suitable temperature for an appropriate amount of time and then cooling.

In annealing, atoms migrate in the crystal lattice and the number of dislocations decreases, leading to a change in ductility and hardness. As the material cools it recrystallizes. 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 be used to achieve the properties required. With knowledge of the composition and phase diagram, heat treatment can be used to adjust from harder and more brittle to softer and more ductile.

In the case of ferrous metals, such as steel, annealing is performed by heating the material (generally until glowing) for a while and then slowly letting it cool to room temperature in still air. Copper, silver and brass can be either cooled slowly in air, or quickly by quenching in water. In this fashion, the metal is softened and prepared for further work such as shaping, stamping, or forming.