JGS Nitriding

Plasma Ferritic Nitrocarburizing (FNC)

SURFACE HARDENING

Plasma Ferritic Nitrocarburizing

Plasma ferritic nitrocarburizing is a controlled surface hardening process that introduces both nitrogen and carbon into the surface of a component. The process can improve wear performance, fatigue resistance, and surface durability while maintaining the dimensional control required for precision components.

THE PROCESS

How Ferritic Nitrocarburizing Differs from Plasma Nitriding

Ferritic nitrocarburizing is closely related to plasma ion nitriding, but the treatment atmosphere includes carbon-bearing gases in addition to nitrogen and hydrogen. This allows both nitrogen and carbon to diffuse into the surface of the component.

The resulting surface layer can provide an effective combination of hardness, wear resistance, and improved performance under sliding or repeated mechanical contact.

Nitrogen + Carbon Diffusion

Both elements are introduced into the surface during treatment rather than nitrogen alone.

Ferritic Processing

The treatment is performed at temperatures that keep the base material in the ferritic range.

Controlled Surface Layer

Process conditions can be developed around the material and required surface characteristics.

Application-Specific Treatment

JGS can review material, geometry, and performance requirements to determine whether the process is appropriate.

PROCESS OVERVIEW

A Controlled Diffusion Treatment

Plasma ferritic nitrocarburizing modifies the surface of the material rather than applying a conventional coating.

01

Controlled Atmosphere

Components are processed in a controlled atmosphere containing nitrogen, hydrogen, and carbon-bearing process gases.

02

Surface Diffusion

Nitrogen and carbon diffuse into the component surface to develop the desired treated layer.

03

Performance Layer

The resulting surface is engineered around the wear, friction, fatigue, and service requirements of the application.

PERFORMANCE BENEFITS

Why Use Ferritic Nitrocarburizing?

Improved Wear Resistance

Helps protect working surfaces against adhesive wear and repeated mechanical contact.

Improved Scuffing Resistance

The treated surface can provide improved resistance to scuffing and seizure between mating components.

Improved Fatigue Performance

The diffusion zone can enhance surface fatigue performance in components subjected to repeated loading.

Minimal Distortion

Relatively low processing temperatures help preserve component geometry and dimensional accuracy.

Surface Hardness

Creates a hardened working surface while retaining the properties of the underlying component.

Corrosion Resistance

The compound layer can provide additional resistance to corrosion depending on the material and treatment requirements.

APPLICATION FIT

Where the Process Can Be a Good Fit

Ferritic nitrocarburizing can be considered for a range of ferrous components where surface wear, friction, fatigue, or service life are primary concerns.

Lower-Carbon Steel Components
Wear Components
Shafts & Mechanical Parts
Production Tooling

DISCUSS YOUR APPLICATION

Is Ferritic Nitrocarburizing Right for Your Component?

Contact JGS with your material, component, and performance requirements. We can review the application and help determine whether plasma ferritic nitrocarburizing or another surface treatment is the appropriate approach.