Synthesis of titanium and zirconium nitrides by burning mixtures of their oxides with aluminum nanopowder in air; Refractories and Industrial Ceramics; Vol. 48, iss. 6
| Parent link: | Refractories and Industrial Ceramics Vol. 48, iss. 6.— 2007.— [P. 425-428] |
|---|---|
| Інші автори: | , , , |
| Резюме: | Title screen Results of a study of the products of burning mixtures of titania and zirconia with aluminum nanopowder in air are described. It is shown that when these mixtures burn in air the TiN and ZrN phases are stabilized. According to the data of x-ray diffraction phase analysis the materials contain 55% ZrN and 24% TiN. It is most probable that the TiN and ZrN form through formation of element metals. Режим доступа: по договору с организацией-держателем ресурса |
| Мова: | Англійська |
| Опубліковано: |
2007
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| Предмети: | |
| Онлайн доступ: | https://doi.org/10.1007/s11148-008-9011-9 |
| Формат: | Електронний ресурс Частина з книги |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=658704 |
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| 200 | 1 | |a Synthesis of titanium and zirconium nitrides by burning mixtures of their oxides with aluminum nanopowder in air |f Yu. A. Amelkovich [et al.] | |
| 203 | |a Text |c electronic | ||
| 300 | |a Title screen | ||
| 320 | |a [References: p. 428 (9 tit.)] | ||
| 330 | |a Results of a study of the products of burning mixtures of titania and zirconia with aluminum nanopowder in air are described. It is shown that when these mixtures burn in air the TiN and ZrN phases are stabilized. According to the data of x-ray diffraction phase analysis the materials contain 55% ZrN and 24% TiN. It is most probable that the TiN and ZrN form through formation of element metals. | ||
| 333 | |a Режим доступа: по договору с организацией-держателем ресурса | ||
| 461 | |t Refractories and Industrial Ceramics | ||
| 463 | |t Vol. 48, iss. 6 |v [P. 425-428] |d 2007 | ||
| 610 | 1 | |a электронный ресурс | |
| 610 | 1 | |a труды учёных ТПУ | |
| 610 | 1 | |a differential thermal analysis | |
| 610 | 1 | |a titanium nitride | |
| 610 | 1 | |a open burning | |
| 610 | 1 | |a burning mixture | |
| 610 | 1 | |a aluminum nanopowder | |
| 610 | 1 | |a дифференциальный термический анализ | |
| 610 | 1 | |a нитрид титана | |
| 610 | 1 | |a горение | |
| 610 | 1 | |a нанопорошки | |
| 610 | 1 | |a алюминий | |
| 701 | 1 | |a Amelkovich |b Yu. A. |c Specialist in the field of ecology and life safety |c Associate Professor of Tomsk Polytechnic University, Candidate of technical sciences |f 1980- |g Yuliya Alexandrovna |3 (RuTPU)RU\TPU\pers\31721 |9 15834 | |
| 701 | 1 | |a Astankova |b A. P. |c physicist |c senior lecturer, research engineer at Tomsk Polytechnic University, candidate of physico-mathematical Sciences |f 1984- |g Anna Petrovna |3 (RuTPU)RU\TPU\pers\37600 | |
| 701 | 1 | |a Tolbanova |b L. O. |c chemist |c Associate Professor of Tomsk Polytechnic University, Candidate of technical science |f 1982- |g Lyudmila Olegovna |3 (RuTPU)RU\TPU\pers\31507 | |
| 701 | 1 | |a Ilyin |b A. P. |c chemist |c Professor of Tomsk Polytechnic University, Doctor of physical and mathematical sciences |f 1949- |g Aleksandr Petrovich |3 (RuTPU)RU\TPU\pers\33060 | |
| 801 | 2 | |a RU |b 63413507 |c 20181108 |g RCR | |
| 856 | 4 | |u https://doi.org/10.1007/s11148-008-9011-9 | |
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