Stydying of morphology and elemental composition of the calcium phosphate layer after treatment by impulse electron beam; Методология проектирования молодежного научно-инновационного пространства как основа подготовки современного инженера
| Parent link: | Методология проектирования молодежного научно-инновационного пространства как основа подготовки современного инженера.— 2014.— [С. 205-208] |
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| Corporate Authors: | , , |
| Outros autores: | , , , , , , |
| Summary: | Заглавие с экрана One of the effective ways to improve the adhesive properties of biocompatible coatings on implants is using electron-beam melting of the surface, accompanied by a partial or complete mixing area "coating- substrate". The surface of the titanium substrate bearing calcium phosphate coating received by RF magnetron sputter is processed by a pulsed electron beam having an energy density of 0.8 - 8 J/cm2. After treatment by a pulsed electron beam under different regimes significant changes in the topography of the formed surface were observed. Treatment regimes with an energy density of 0.8 J/cm{2} and 3 lead to the thermal annealing of the coating. The use of a beam having an energy density of 8 and 6.5 J/cm{2} leads to partial vaporization and mixing of the coating material with a titanium matrix. |
| Idioma: | inglés |
| Publicado: |
2014
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| Series: | Innovative trends for modernizing engineering in the age of globalization |
| Subjects: | |
| Acceso en liña: | http://earchive.tpu.ru/handle/11683/65011 http://www.lib.tpu.ru/fulltext/c/2014/C07/045.pdf |
| Formato: | Electrónico Capítulo de libro |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=607977 |
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| 200 | 1 | |a Stydying of morphology and elemental composition of the calcium phosphate layer after treatment by impulse electron beam |f E. A. Chudinova, M. A. Surmeneva (Ryabtseva), N. S. Pushilina [et al.] |g si. adv. R. A. Surmenev, A. V. Tsepilova | |
| 203 | |a Текст |c электронный | ||
| 215 | |a 1 файл (717 Кб) | ||
| 225 | 1 | |a Innovative trends for modernizing engineering in the age of globalization | |
| 300 | |a Заглавие с экрана | ||
| 320 | |a [Библиогр.: с. 208 (8 назв.)] | ||
| 330 | |a One of the effective ways to improve the adhesive properties of biocompatible coatings on implants is using electron-beam melting of the surface, accompanied by a partial or complete mixing area "coating- substrate". The surface of the titanium substrate bearing calcium phosphate coating received by RF magnetron sputter is processed by a pulsed electron beam having an energy density of 0.8 - 8 J/cm2. After treatment by a pulsed electron beam under different regimes significant changes in the topography of the formed surface were observed. Treatment regimes with an energy density of 0.8 J/cm{2} and 3 lead to the thermal annealing of the coating. The use of a beam having an energy density of 8 and 6.5 J/cm{2} leads to partial vaporization and mixing of the coating material with a titanium matrix. | ||
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| 463 | 1 | |0 (RuTPU)RU\TPU\conf\3581 |t Методология проектирования молодежного научно-инновационного пространства как основа подготовки современного инженера |l Strategy design of youth science and innovation environment for modern engineer training |o сборник научных трудов Международной молодежной научной школы, г. Томск, 2 - 4 апреля 2014 г. |f Национальный исследовательский Томский политехнический университет (ТПУ) ; под ред. В. В. Верхотуровой и др. |v [С. 205-208] |d 2014 | |
| 610 | 1 | |a электронный ресурс | |
| 610 | 1 | |a труды учёных ТПУ | |
| 610 | 1 | |a морфология | |
| 610 | 1 | |a элементный состав | |
| 610 | 1 | |a кальций-фосфатные покрытия | |
| 610 | 1 | |a импульсные пучки | |
| 610 | 1 | |a адгезионные свойства | |
| 610 | 1 | |a биосовместимые покрытия | |
| 701 | 1 | |a Chudinova |b E. A. |c physicist |c laboratory assistant of Tomsk Polytechnic University |f 1993- |g Ekaterina Aleksandrovna |3 (RuTPU)RU\TPU\pers\34765 | |
| 701 | 1 | |a Surmeneva |b M. A. |c specialist in the field of material science |c engineer-researcher of Tomsk Polytechnic University, Associate Scientist |f 1984- |g Maria Alexandrovna |3 (RuTPU)RU\TPU\pers\31894 |9 15966 | |
| 701 | 1 | |a Pushilina |b N. S. |c physicist |c associate Professor of Tomsk Polytechnic University, candidate of physico-mathematical Sciences |f 1984- |g Natalia Sergeevna |3 (RuTPU)RU\TPU\pers\30838 |9 15085 | |
| 701 | 1 | |a Teresov |b A. D. | |
| 701 | 1 | |a Grubova |b I. Yu. |c physicist |c engineer-researcher of Tomsk Polytechnic Universit |f 1989- |g Irina Yurievna |3 (RuTPU)RU\TPU\pers\32674 |9 16573 | |
| 702 | 1 | |a Surmenev |b R. A. |c physicist |c Associate Professor of Tomsk Polytechnic University, Senior researcher, Candidate of physical and mathematical sciences |f 1982- |g Roman Anatolievich |4 727 | |
| 702 | 1 | |a Tsepilova |b A. V. |c linguist |c Lecturer of Tomsk Polytechnic University |f 1985- |g Anna Vladimirovna |4 727 | |
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