High dose and intense implantation of the multiply charged ions Al+n, Ti+n and C+n into alfa-iron / A. D. Pogrebnjak [et al.]

Уровень набора: Nuclear Instruments and Methods in Physics Research. Sec. B: Beam Interactions with Materials and AtomsАльтернативный автор-лицо: Pogrebnjak, A. D.;Bakharev, O. G.;Martynenko, V. A.;Rudenko, V. A.;Brusa, R.;Zecca, A.;Oechsner, R.;Ryssel, H.;Tikhomirov, I. A., Russian Physicist, Doctor of Physical and Mathematical Sciences (DSc), Professor of the Department of General Physics of Tomsk Polytechnic University (TPU), 1921-2010, Ivan Arsentyevich;Ryabchikov, A. I., Professor of Tomsk Polytechnic University, Doctor of physical and mathematical sciences, physicist, 1950-, Aleksandr IlyichЯзык: английский.Страна: .Резюме или реферат: The paper presents experimental results on the modification process in α-Fe surface layers after high-dose implantation. Slow positron beam, conversion Mossbauer spectroscopy, resonance nuclear reactions, measurements of microhardness, non-lubricated friction wear and friction coefficient in wear have been used. The relation of physico-chemical changes and defect structure to changes in operation characteristics of the modified and implanted α-Fe layer has been shown. Ti clusters and small dispersion carbides are formed in the surface of α-Fe after implantation, which increases microhardness and decreases the wear and friction coefficient by a factor of 2.5. Ordered phase Fe3Al, which undergoes partial amorphization with increasing dose is produced as a result of Al implantation. This also decreases wear and increases microhardness. The implantation of C ions did not show decreased wear even in the case of 8 × 1017 cm−2doses, though increased microhardness was found..Аудитория: .Тематика: труды учёных ТПУ
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The paper presents experimental results on the modification process in α-Fe surface layers after high-dose implantation. Slow positron beam, conversion Mossbauer spectroscopy, resonance nuclear reactions, measurements of microhardness, non-lubricated friction wear and friction coefficient in wear have been used. The relation of physico-chemical changes and defect structure to changes in operation characteristics of the modified and implanted α-Fe layer has been shown. Ti clusters and small dispersion carbides are formed in the surface of α-Fe after implantation, which increases microhardness and decreases the wear and friction coefficient by a factor of 2.5. Ordered phase Fe3Al, which undergoes partial amorphization with increasing dose is produced as a result of Al implantation. This also decreases wear and increases microhardness. The implantation of C ions did not show decreased wear even in the case of 8 × 1017 cm−2doses, though increased microhardness was found.

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