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Aerospace applications

Vacuum furnaces for aerospace applications

Heat treatment and brazing for turbine parts, titanium structures and thermal-control assemblies.

Match your component and alloy with a vacuum furnace built around your process, load and production goals.

AI-generated illustration of aerospace turbine blades, titanium bracket and heat exchanger
Aerospace component applicationsApplication illustration

01 / Components & applications

Thermal processing for your component

Find your component below. Each application connects the part, processing objective and furnace route.

01
Aerospace turbine blades and vanes

Turbine blades and vanes

Nickel-based superalloy components with demanding temperature, surface and distortion requirements.

Typical route

Vacuum heat treatment or brazing, configured around the alloy, thermal cycle and required cooling response.

02
Titanium aerospace structural components

Titanium structural components

Frames, brackets and precision hardware where oxidation control and dimensional stability matter.

Typical route

Solution treatment, aging or stress relief with furnace cleanliness, loading and cooling matched to the part.

03
Aerospace heat exchanger assembly

Heat exchangers and thermal-control assemblies

Stainless-steel or aluminum assemblies with complex flow paths, joints and leak-tightness requirements.

Typical route

Vacuum brazing based on parent material, filler system, joint clearance, cleanliness and assembly support.

04
Aerospace honeycomb seals and panels

Honeycomb seals and panels

Lightweight assemblies that depend on controlled joint formation and consistent load support.

Typical route

High-vacuum brazing with cycle development guided by joint geometry, filler placement and part restraint.

05
Aerospace engine combustion components

Combustion and hot-section components

Chambers, nozzles and internal assemblies exposed to high temperatures and demanding service conditions.

Typical route

Vacuum heat treatment, brazing or a combined process route aligned with material condition and repair or production scope.

06
Precision sensor and antenna assemblies

Sensor, antenna and precision assemblies

Small or intricate parts where joint repeatability, surface condition and controlled heating are important.

Typical route

Vacuum brazing with fixtures, ramp control and load-specific process development selected for the assembly.

02 / Furnace selection

Select the furnace for the process

These routes provide a practical starting point. Chamber size, hot zone, pumping, heating, cooling and controls are confirmed against your project inputs.

01

Vacuum brazing furnace

For heat exchangers, honeycomb structures, sensors and precision assemblies requiring controlled joints and clean surfaces.

Explore brazing systems →
02

Vacuum heat treatment furnace

For solution treatment, aging, stress relief and other alloy-specific cycles with defined heating and cooling requirements.

Explore heat-treatment systems →
03

Vacuum sintering furnace

For powder-based and additively manufactured components where debinding, sintering or material-specific atmosphere control is required.

Explore sintering systems →
04

Process and outsourcing support

For feasibility review, process development or production support before an equipment route is finalized.

Review process support →
Part and loadMaximum envelope, load mass, batch arrangement, fixture concept and handling limits.
Material systemBase alloy, filler or powder system, prior condition, cleanliness and compatibility concerns.
Thermal processTemperature profile, ramps, soak, vacuum or partial pressure, cooling and cycle-time objective.
Quality targetJoint integrity, distortion, surface condition, leak testing, metallurgical checks and repeatability.
DocumentationDrawings, process records, test scope, inspection plan and handover documentation required by the project.
Site conditionsUtilities, installation space, loading route, commissioning, training and service expectations.

Bring your aerospace application to our engineering team.

Discuss your aerospace project →

Further reading

Explore related processes

Compare the process family with the part and production objective before selecting a specific furnace configuration.

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