NITRIDATION OF TITANIUM AND ZIRCONIUM POWDERS MIXED WITH AMMONIUM CHLORIDE UNDER HIGH TEMPERATURE-HIGH PRESSURE AMMONIA.

Shigeyuki Somiya, Kazuo Suzuki, Masahiro Yoshimura

研究成果: Paper

7 引文 (Scopus)

摘要

Titanium and zirconium powders did not yield nitrides effectively by treatment under 1MPa NH//3 at 700 degree C for 3h. The addition of NH//4Cl was effective for nitridation of Ti and Zr. TiN was produced above 500 degree C and ZrN was produced above 600 degree C. The average crystallite size of TiN was 8-9 nm and of ZrN was about 12nm because of the breakdown of the crystallite during hydridation and nitridation.

原文English
頁面179-182
頁數4
出版狀態Published - 1986 十二月 1

指紋

Nitridation
Zirconium
Ammonia
Titanium
Powders
Crystallite size
Nitrides
Temperature

All Science Journal Classification (ASJC) codes

  • Engineering(all)

引用此文

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abstract = "Titanium and zirconium powders did not yield nitrides effectively by treatment under 1MPa NH//3 at 700 degree C for 3h. The addition of NH//4Cl was effective for nitridation of Ti and Zr. TiN was produced above 500 degree C and ZrN was produced above 600 degree C. The average crystallite size of TiN was 8-9 nm and of ZrN was about 12nm because of the breakdown of the crystallite during hydridation and nitridation.",
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N2 - Titanium and zirconium powders did not yield nitrides effectively by treatment under 1MPa NH//3 at 700 degree C for 3h. The addition of NH//4Cl was effective for nitridation of Ti and Zr. TiN was produced above 500 degree C and ZrN was produced above 600 degree C. The average crystallite size of TiN was 8-9 nm and of ZrN was about 12nm because of the breakdown of the crystallite during hydridation and nitridation.

AB - Titanium and zirconium powders did not yield nitrides effectively by treatment under 1MPa NH//3 at 700 degree C for 3h. The addition of NH//4Cl was effective for nitridation of Ti and Zr. TiN was produced above 500 degree C and ZrN was produced above 600 degree C. The average crystallite size of TiN was 8-9 nm and of ZrN was about 12nm because of the breakdown of the crystallite during hydridation and nitridation.

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