AI Article Synopsis

  • The paper describes a method for producing high-purity anhydrous nickel(II) perrhenate using cation exchange resin and concentrated perrhenic acid.
  • After neutralizing and drying the resulting compound, it’s reduced in ammonia to create a Re-Ni alloy powder.
  • The study highlights that using anhydrous nickel(II) perrhenate leads to superior properties in heavy alloys compared to those made from elemental tungsten, rhenium, and nickel powders.

Article Abstract

This paper presents a method for the production of high-purity anhydrous nickel(II) perrhenate. The method comprises sorption of nickel(II) ions from aqueous nickel(II) nitrate solutions, using strongly acidic C160 cation exchange resin, and subsequent elution of sorbed nickel(II) ions using concentrated perrhenic acid solutions. After the neutralization of the resulting rhenium-nickel solutions, hydrated nickel(II) perrhenate is then separated and then dried at 160 °C to obtain the anhydrous form. The resulting compound is reduced in an atmosphere of dissociated ammonia in order to produce a Re-Ni alloy powder. This study provides information on the selected properties of the resulting Re-Ni powder. This powder was used as a starting material for the production of 77W-20Re-3Ni heavy alloys. Microstructure examination results and selected properties of the produced sintered heavy alloys were compared to sintered alloys produced using elemental W, Re, and Ni powders. This study showed that the application of anhydrous nickel(II) perrhenate in the production of 77W-20Re-3Ni results in better properties of the sintered alloys compared to those made from elemental powders.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5506971PMC
http://dx.doi.org/10.3390/ma10040448DOI Listing

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