We also provide custom heat treatment services to help customers achieve exact material hardness specifications for their projects. By modifying the internal microstructure of metal components, this process enhances key properties, such as hardness, ductility, tensile strength, and wear resistance—without altering the final external shape.
1.Heating Phase:Controlled thermal ramp.
| Heat-Treating Methods | ||||
|---|---|---|---|---|
| Method | Temperature Profile | Cooling Rate | Primary Objective | Typical Outcome |
| Hardening | Above critical temperature (Ac3) | Rapid (Quench) | Maximize surface and core hardness | High yield strength, increased wear resistance; high brittleness |
| Tempering | Below critical temperature (Ac1) | Air cool | Relieve quench stress, restore toughness | Controlled hardness reduction, drastically improved impact toughness |
| Annealing | Above critical temperature | Very slow (Furnace) | Soften metal, refine grain structure | Maximum ductility, minimum yield strength for easy machining |
| Normalizing | ~50°C above critical temperature | Moderate (Air) | Uniform internal grain structure | Relieves residual stress from forging/machining, improves machinability |
| Case Hardening | Carburizing / Nitriding bath | Rapid | High hard shell with ductile core | Extreme surface wear resistance with fatigue-resistant tough core |