Heat Treatment

BRUVAL heat treatment supports alloy, stainless, classical steel, copper, and brass components where the required material behaviour must match the part geometry, operating duty, and inspection evidence.

Hot heat-treated components glowing after furnace processing

Furnace capability

Large component heat treatment

80 tons Horizontal travelling furnace loading capacity
16000 x 6000 x 5000 mm Maximum treated part dimensions
Steel, copper, brass Material families
Stress relief Soaking and slow cooling processes

Treatment planning

The route starts with the part function

Heat treatment is not only a furnace operation. The useful route depends on what the component must do after processing: resist wear, keep a tough core, relieve machining or welding stress, improve surface behaviour, or stabilize a large part before final inspection.

Surface requirement

Hardness, case depth, nitrided layer, or wear zone requirements should be defined around the actual contact area.

Core behaviour

Large parts may need a balance between hard working surfaces and a body that can carry shock, bending, or cyclic load.

Dimensional risk

Heating, soaking, quenching, and cooling can affect distortion, so critical fit points should be known before the route is selected.

Post-process checks

Hardness readings, dimensional control, surface inspection, and certificate records make the treatment result usable for buyers.

Hardness control

Heat treatment becomes stronger when it is connected to inspection

01

Requirement

Surface hardness, effective case depth, core behavior, material grade, and operating duty are confirmed before the route is selected.

02

Process

Hardening, carburising, nitriding, induction hardening, or stress relief is chosen around the part geometry and risk zones.

03

Verification

Rockwell, Brinell, Vickers, or microhardness checks can be linked to defined inspection points and final records.

04

Traceability

Material certificate, heat-treatment cycle, hardness readings, and dimensional checks should follow the exact serial-marked component.

Decision points

When heat treatment changes the production route

01

Before machining

Rough machining, stress relief, and later finish machining can reduce risk on large or welded components.

02

After welding

Stress relief or controlled thermal processing may be needed when welded assemblies must keep geometry and service reliability.

03

Wear upgrade

Hardening, nitriding, carburising, or induction treatment can be focused on surfaces that carry sliding, rolling, or impact contact.

04

Final release

Heat treatment should be connected to final hardness, dimensional, and visual checks before the part leaves production.

05

Repeat supply

Recorded cycles and inspection points help future spare parts follow the same accepted route.

Inquiry data

What helps BRUVAL evaluate heat treatment

  • Drawing, material grade, certificate information, approximate weight, and part dimensions
  • Required process if known: hardening, carburising, nitriding, normalising, annealing, stress relief, or other treatment
  • Target hardness, case depth, core requirement, surface zone, and inspection points
  • Current part condition: raw, rough machined, welded, repaired, hard-faced, finished, or previously heat-treated
  • Critical tolerances, distortion-sensitive areas, fit points, and any final machining planned after treatment
  • Quantity, target delivery date, customer standard, certificate requirements, and final documentation needs

Processes

Thermochemical and hardening technologies

  • Atmospheric and low-pressure carburising (LPC)
  • Carbonitriding and boriding
  • Ferritic or classical nitrocarburising
  • Gas or plasma nitriding
  • Neutral and induction hardening
  • Austempering and press quenching
  • Normalising, annealing, and stress relief

Related proof pages

Where heat treatment creates a visible sales advantage

Project request

Send heat treatment requirements.

BRUVAL can review the requirement, confirm the suitable product or service route, and return the next technical step.