4.1 Article

Selective laser melting of Zn-Si-substituted hydroxyapatite

期刊

RUSSIAN CHEMICAL BULLETIN
卷 70, 期 9, 页码 1682-1689

出版社

SPRINGER
DOI: 10.1007/s11172-021-3270-8

关键词

selective laser melting; hydroxyapatite; zinc; silicon; substitution

资金

  1. State Assignment to the Institute of Solid State Chemistry and Mechanochemistry, Siberian Branch of the Russian Academy of Sciences [AAAA-A17-117030310277-6]
  2. Russian Foundation for Basic Research [18-29-11064]

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The behavior of hydroxyapatite containing zinc and silicate ions under selective laser melting at 10.6 μm radiation was studied for the first time. It was found that heating the mechanochemically synthesized material with a substitution degree of x = 0.2 through scanning laser spot enables recrystallization with retention of substituent ions in the apatite structure. Heating under different conditions leads to the formation of different impurity phases, with hydroxyapatites with higher degrees of substitution (x = 1, 2) being unstable under both heating regimes.
The behavior of hydroxyapatite containing zinc and silicate ions during selective laser melting under irradiation at 10.6 mu m was studied for the first time. For comparison, the behavior of the material heated in a high-temperature furnace was investigated. It was found that, in contrast to the slow heating in the furnace, heating of the mechanochemically synthesized material with the degree of substitution x = 0.2 by scanning the laser spot enables its recrystallization with retention of substituent ions in the apatite structure. At high degrees of substitution (x = 1, 2), hydroxyapatites are unstable under both heating regimes. Different heating conditions lead to the formation of different impurity phases.

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