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  2. List of brazing alloys - Wikipedia

    en.wikipedia.org/wiki/List_of_brazing_alloys

    For aluminium-to-aluminium and aluminium-to-copper. 78: 22: Ag 72 Zn 28: 710/730 [8] – Ag72Zn. Ammonia-resistant. For joining ferrous and non-ferrous metals (steel, copper, brass...). Good flow properties. With stainless steel in humid environments risk of interfacial corrosion. Copper-free, good where copper presence is not desired and/or in ...

  3. Brazing - Wikipedia

    en.wikipedia.org/wiki/Brazing

    The "welding" of cast iron is usually a brazing operation, with a filler rod made chiefly of nickel being used although true welding with cast iron rods is also available. Ductile cast iron pipe may be also "cadwelded," a process that connects joints by means of a small copper wire fused into the iron when previously ground down to the bare ...

  4. Induction brazing - Wikipedia

    en.wikipedia.org/wiki/Induction_brazing

    Induction brazing is a process in which two or more materials are joined together by a filler metal that has a lower melting point than the base materials using induction heating. In induction heating, usually ferrous materials are heated rapidly from the electromagnetic field that is created by the alternating current from an induction coil .

  5. CuproBraze - Wikipedia

    en.wikipedia.org/wiki/CuproBraze

    Brazing at 650 °C creates a joint that is stronger than a soldered joint and comparable in strength to a welded joint. [14] Unlike welding, brazing does not melt the base metals. Therefore, brazing is better for joining dissimilar alloys. [3] CuproBraze has more strength at elevated temperatures than soldered copper-brass or aluminum.

  6. Filler metal - Wikipedia

    en.wikipedia.org/wiki/Filler_metal

    Brazing and hard soldering use a higher temperature filler that melts at a temperature which may approach that of the base metal, and which may form a eutectic alloy with the base metal. Filler alloys have a lower melting point than the base metal, so that the joint may be made by bringing the whole assembly up to temperature without everything ...

  7. Oxygen-free copper - Wikipedia

    en.wikipedia.org/wiki/Oxygen-free_copper

    Oxygen-free phosphorus-containing copper (CuOFP) is typically used for structural and thermal applications where the copper material will be subject to temperatures high enough to cause hydrogen embrittlement or more exactly steam embrittlement. Examples include welding/brazing rods and heat exchanger tubing. [13]

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