Запис Детальніше

Prospects for the use of nanomaterials and nanocoatings for high-speed spindles

Електронний науковий архів Науково-технічної бібліотеки Національного університету "Львівська політехніка"

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Title Prospects for the use of nanomaterials and nanocoatings for high-speed spindles
 
Creator Vishtak, Inna
Savulyak, Valeriy
 
Contributor Vinnytsya National Technical University
 
Subject nanomaterials
nanocoatings
strength
thermal conductivity
electrical properties
thermal conductivity
highspeed spindle unit
 
Description Much attention in the field of research and use
of nanomaterials and nanotechnology has led to the fact that
this area of science has become more relevant. The special
qualities of nanomaterials that provide unique strength,
thermal conductivity, electrical properties, tribotechnical
properties with minimum dimensions and mass of products
have become the goal of many scientists. The main types of
nanomaterials are identified. One of the differences between
nanostructural depositions on the surface is their strength
under static loading and hardness as compared to materials
from ordinary grain sizes. Increased hardness and wear
resistance as a result of deposition of such coatings opens the
prospects of using them in high-speed spindle units.
 
Date 2018-04-12T13:05:15Z
2018-04-12T13:05:15Z
2017-12-23
2017-12-23
 
Type Conference Abstract
 
Identifier Vishtak I. Prospects for the use of nanomaterials and nanocoatings for high-speed spindles / Inna Vishtak, Valeriy Savulyak // Litteris et Artibus : proceedings, 23–25 November, 2017. — Lviv : Lviv Polytechnic Publishing House, 2017. — P. 265–266. — (6th International academic conference «Mechanical engineering, materials science, transport 2017» (MEMST-2017)).
978-966-941-108-2
http://ena.lp.edu.ua:8080/handle/ntb/40378
Vishtak I. Prospects for the use of nanomaterials and nanocoatings for high-speed spindles / Inna Vishtak, Valeriy Savulyak // Litteris et Artibus : proceedings, 23–25 November, 2017. — Lviv : Lviv Polytechnic Publishing House, 2017. — P. 265–266. — (6th International academic conference «Mechanical engineering, materials science, transport 2017» (MEMST-2017)).
 
Language en
 
Relation Litteris et Artibus : матеріали, 2017
Litteris et Artibus : proceedings, 2017
[1] R. F. Feynman At the bottom of the full-all place: an invitation to a new world of physics. // Russian Chemical Journal, 2002, T.XLVI, №5. C.4-6.
[2] R. A. Andrievsky, A. V. Ragulya Nanostructured materials. Uch. allowance. M.: Publishing Center "Academy", 2005. – 117 p.
[3] R. A. Andrievsky Nanostructured materials – the state of development and application. // Perspective materials. 2001. № 6. C.5-11.
[4] Y. I. Golovin Introduction to nanotechnology. – M.: Publishing house "Mechanical Engineering -1", 2003 – 112 p.
[5] G. Glater. Nanostructured materials: basic concepts and microstructure. // Acta mater., 2000. V. 48. P.1-29.
[6] M. I. Alimov Mechanical properties of nanocrystalline materials. –Moscow: MIFI, 2004. – 32 p.
[7] M. I. Alimov, V. A. Zelensky Methods of obtaining and physico-mechanical properties of bulk nanocrystalline materials. – М.: МIFI, 2005. – 52 p.
[8] New materials. Ed. Yu.S. Karabasova – M.: MISIS, 2002 – 736 p
[9] H. Gleiter In: Deformation of Polycrystals. Proc. of 2nd RISO Symposium on Metallurgy and Materials Science (Eds. N. Hansen, T. Leffers, H. Lithold). Roskilde, RISO Nat. Lab., 1981, p. 15–21.
[10] R. Birringe., H. Gleiter., H. Klein .-P., Marquard P. Phys. Lett. B, 1984, v. 102, p. 365–369; Z. Metallkunde, 1984, Bd. 75, S. 263–267.
[11] R. A. Andrievsky Nanomaterials: the concept and modern problems. // Ros. chem. f. (Zh.M., D. of Mendeleyev Chemical Society of the Russian Federation), 2002, v. XLVI, No. 5, p. 50-56.
[1] R. F. Feynman At the bottom of the full-all place: an invitation to a new world of physics., Russian Chemical Journal, 2002, T.XLVI, No 5. P.4-6.
[2] R. A. Andrievsky, A. V. Ragulya Nanostructured materials. Uch. allowance. M., Publishing Center "Academy", 2005, 117 p.
[3] R. A. Andrievsky Nanostructured materials – the state of development and application., Perspective materials. 2001. No 6. P.5-11.
[4] Y. I. Golovin Introduction to nanotechnology, M., Publishing house "Mechanical Engineering -1", 2003 – 112 p.
[5] G. Glater. Nanostructured materials: basic concepts and microstructure., Acta mater., 2000. V. 48. P.1-29.
[6] M. I. Alimov Mechanical properties of nanocrystalline materials. –Moscow: MIFI, 2004, 32 p.
[7] M. I. Alimov, V. A. Zelensky Methods of obtaining and physico-mechanical properties of bulk nanocrystalline materials, M., MIFI, 2005, 52 p.
[8] New materials. Ed. Yu.S. Karabasova – M., MISIS, 2002 – 736 p
[9] H. Gleiter In: Deformation of Polycrystals. Proc. of 2nd RISO Symposium on Metallurgy and Materials Science (Eds. N. Hansen, T. Leffers, H. Lithold). Roskilde, RISO Nat. Lab., 1981, p. 15–21.
[10] R. Birringe., H. Gleiter., H. Klein .-P., Marquard P. Phys. Lett. B, 1984, v. 102, p. 365–369; Z. Metallkunde, 1984, Bd. 75, S. 263–267.
[11] R. A. Andrievsky Nanomaterials: the concept and modern problems., Ros. chem. f. (Zh.M., D. of Mendeleyev Chemical Society of the Russian Federation), 2002, v. XLVI, No. 5, p. 50-56.
 
Rights © Національний університет “Львівська політехніка”, 2017
 
Format 265-266
2
application/pdf
image/png
 
Coverage 23–25 листопада 2017 року
23–25 November, 2017
Львів
Lviv
 
Publisher Видавництво Львівської політехніки
Lviv Polytechnic Publishing House