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  2. Electroless nickel-boron plating - Wikipedia

    en.wikipedia.org/wiki/Electroless_nickel-boron...

    Electroless nickel-boron plating developed as a variant of the similar nickel-phosphorus process, discovered accidentally by Charles Adolphe Wurtz in 1844. [2]In 1969, Harold Edward Bellis from DuPont filed a patent for a general class of electroless plating processes using sodium borohydride, dimethylamine borane, or sodium hypophosphite, in the presence of thallium salts, thus producing a ...

  3. Superalloy - Wikipedia

    en.wikipedia.org/wiki/Superalloy

    Nickel superalloy jet engine turbine blade. A superalloy, or high-performance alloy, is an alloy with the ability to operate at a high fraction of its melting point. [1] Key characteristics of a superalloy include mechanical strength, thermal creep deformation resistance, surface stability, and corrosion and oxidation resistance.

  4. Boriding - Wikipedia

    en.wikipedia.org/wiki/Boriding

    In this process boron atoms are diffused into the surface of a metal component. The resulting surface contains metal borides , such as iron borides, nickel borides, and cobalt borides, As pure materials, these borides have extremely high hardness and wear resistance.

  5. Electroless deposition - Wikipedia

    en.wikipedia.org/wiki/Electroless_deposition

    Electroless nickel plating uses nickel salts as the metal cation source and either hypophosphite (H 2 PO 2-) (or a borohydride-like compound) as a reducer. [6] A side reaction forms elemental phosphorus (or boron) which is incorporated in the coating. The classical deposition methods follows the following steps:

  6. Electroplating - Wikipedia

    en.wikipedia.org/wiki/Electroplating

    Electroless processes are widely used to deposit nickel-phosphorus or nickel-boron alloys for wear and corrosion resistance, silver for mirror-making, copper for printed circuit boards, and many more. A major advantage of these processes over electroplating is that they can produce coatings of uniform thickness over surfaces of arbitrary shape ...

  7. Electroless nickel-phosphorus plating - Wikipedia

    en.wikipedia.org/wiki/Electroless_nickel...

    Electroless nickel-phosphorus coatings with less than 7% phosphorus are solid solutions with a microcrystalline structure, with each grain 2–6 nm across. Coatings with more than 10% phosphorus are amorphous. Between these two limits, the coating is a mixture of amorphous and microcrystalline materials. [16]

  8. US budget deficit climbs to $367 billion in November on ... - AOL

    www.aol.com/news/us-budget-deficit-jumps-367...

    WASHINGTON (Reuters) -The U.S. government posted a $367 billion budget deficit for November, up 17% from a year earlier, as calendar adjustments for benefit payments boosted outlays by some $80 ...

  9. Nickel boride catalyst - Wikipedia

    en.wikipedia.org/wiki/Nickel_boride_catalyst

    Nickel boride is the common name of materials composed chiefly of the elements nickel and boron that are widely used as catalysts in organic chemistry. [1] [2] Their approximate chemical composition is Ni 2.5 B, [3] and they are often incorrectly denoted "Ni 2 B" in organic chemistry publications.

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