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For brazing titanium alloys. Available as amorphous foil. 17: Zr 83: Zr 56 V 28 Ti 16: 1193/1250 [5] – For brazing titanium alloys. Available as amorphous foil. 16: Zr 56 V 28: Ag 57 Cu 38 Ti 5: active 775/790 [5] – Active alloy. Can be used for brazing ceramics, e.g. silicon nitride. Titanium forms an interfacial layer with Si 3 N 4 ...
Heusler alloy, a range of ferromagnetic alloys (66% copper, cobalt, iron, manganese, nickel or palladium) High-entropy alloys; Intermetallic compounds; List of brazing alloys; Pot metal; inexpensive casting metal of non-specific composition
Dissolution of base metals can cause detrimental changes in the brazing alloy. For example, aluminum dissolved from aluminum bronzes can embrittle the braze; addition of nickel to the braze can offset this. [citation needed] The effect works both ways; there can be detrimental interactions between the braze alloy and the base metal.
Coinage metals and alloys (22 P) Fusible alloys (18 P) Intermetallics (1 C, 33 P) ... List of brazing alloys; List of named alloys; A. AJ alloys; Allargentum ...
An amorphous brazing foil (ABF) is a form of eutectic amorphous metal that serves as a filler metal in brazing operations. ABFs are composed of various transition metals (including nickel , iron , and copper ) blended with metalloids like silicon , boron , and phosphorus .
Based on base metal, the aluminum segment is expected to drive market demand for braze alloys. Asia Pacific accounted for a significant share of the global demand for braze alloys. As petrochemical and nuclear plant construction uses brazing for graphite and super alloys, braze alloys will see significant market growth in the coming years.