Brazing processes join materials without reaching their melting point. The key is the right combination of filler material, brazing temperature and process – matched to the base material, geometry and application requirements.
Using typical applications, we show when each brazing process makes sense and what to consider when making your selection.
No Stable Solution Without the Right Filler.
In addition to the brazing process, the filler material plays a central role. It largely determines the strength, corrosion resistance and service temperature of the joint.
capilla offers brazing filler materials for a wide range of applications – matched to the material combination, process and operating conditions.
Automated Welding Processes at the capilla LCC
At the Laser Competence Centre, capilla brings together modern technologies for automated coating and manufacturing.
Components are precisely built up, heat-treated and optimised using laser-based processes. Processes, material deposition and results can be precisely controlled.
This creates solutions that go beyond conventional welding processes and cannot be achieved with standard approaches.
Finding the Right Brazing Process
Unsure which brazing process is right for your application?
We support you in selecting the right process and the appropriate filler material.
Frequently Asked Questions About Brazing Processes
Soft brazing operates below 450 °C and is suitable for electrical connections and lightweight components. Hard brazing takes place at higher temperatures and produces significantly stronger, mechanically loadable joints.
Induction brazing is particularly well-suited for series applications requiring high reproducibility. The contactless heating protects sensitive areas and enables short cycle times.
That depends on the material combination, the required strength and the operating conditions. capilla advises you on selecting the optimal brazing filler for your application.
Furnace brazing is particularly economical for larger quantities or complex components that need to be heated uniformly and in a controlled manner. The protective atmosphere prevents oxidation and ensures consistent quality.
The process determines temperature control, heat input and cooling behaviour – all decisive for the microstructure and strength of the brazed joint. Correct process selection prevents residual stresses and crack formation.