Standard

«Nickel-YSZ-nanoceramics» nanocomposite : Synthesis, structure, and mechanical properties. / Konakov, V. G.; Solovyeva, E. N.; Kurapova, O. Yu; Novik, N. N.; Pivovarov, M. M.; Archakov, I. Yu.

In: Materials Physics and Mechanics, Vol. 24, No. 4, 01.01.2015, p. 340-346.

Research output: Contribution to journal › Article › peer-review

Harvard

Konakov, VG, Solovyeva, EN, Kurapova, OY, Novik, NN, Pivovarov, MM & Archakov, IY 2015, '«Nickel-YSZ-nanoceramics» nanocomposite: Synthesis, structure, and mechanical properties', Materials Physics and Mechanics, vol. 24, no. 4, pp. 340-346.

APA

Konakov, V. G., Solovyeva, E. N., Kurapova, O. Y., Novik, N. N., Pivovarov, M. M., & Archakov, I. Y. (2015). «Nickel-YSZ-nanoceramics» nanocomposite: Synthesis, structure, and mechanical properties. Materials Physics and Mechanics, 24(4), 340-346.

Vancouver

Konakov VG, Solovyeva EN, Kurapova OY, Novik NN, Pivovarov MM, Archakov IY. «Nickel-YSZ-nanoceramics» nanocomposite: Synthesis, structure, and mechanical properties. Materials Physics and Mechanics. 2015 Jan 1;24(4):340-346.

Author

Konakov, V. G. ; Solovyeva, E. N. ; Kurapova, O. Yu ; Novik, N. N. ; Pivovarov, M. M. ; Archakov, I. Yu. / «Nickel-YSZ-nanoceramics» nanocomposite : Synthesis, structure, and mechanical properties. In: Materials Physics and Mechanics. 2015 ; Vol. 24, No. 4. pp. 340-346.

BibTeX

@article{20e5ae7daf4c473bb5d1a68b9fab4fd8,
title = "«Nickel-YSZ-nanoceramics» nanocomposite: Synthesis, structure, and mechanical properties",
abstract = "The approach for {"}nickel-YSZ-nanoceramics{"} bulk nanocomposite synthesis was developed. Compositions with the nanoceramic phase content lying in the range up to 20 wt.% YSZ were manufactured; their structure and chemical composition were studied using XRD, SEM, and EDX techniques. Experimental study of the composite mechanical properties (compressive strength) as a function of sample composition demonstrated the existence of maximal composite strength at YSZ content of 3 wt.%. Further addition of nanoceramic phase resulted in the significant decrease in material strength.",
author = "Konakov, {V. G.} and Solovyeva, {E. N.} and Kurapova, {O. Yu} and Novik, {N. N.} and Pivovarov, {M. M.} and Archakov, {I. Yu}",
year = "2015",
month = jan,
day = "1",
language = "English",
volume = "24",
pages = "340--346",
journal = "ФИЗИКА И МЕХАНИКА МАТЕРИАЛОВ",
issn = "1605-2730",
publisher = "Институт проблем машиноведения РАН",
number = "4",

}

RIS

TY - JOUR

T1 - «Nickel-YSZ-nanoceramics» nanocomposite

T2 - Synthesis, structure, and mechanical properties

AU - Konakov, V. G.

AU - Solovyeva, E. N.

AU - Kurapova, O. Yu

AU - Novik, N. N.

AU - Pivovarov, M. M.

AU - Archakov, I. Yu

PY - 2015/1/1

Y1 - 2015/1/1

N2 - The approach for "nickel-YSZ-nanoceramics" bulk nanocomposite synthesis was developed. Compositions with the nanoceramic phase content lying in the range up to 20 wt.% YSZ were manufactured; their structure and chemical composition were studied using XRD, SEM, and EDX techniques. Experimental study of the composite mechanical properties (compressive strength) as a function of sample composition demonstrated the existence of maximal composite strength at YSZ content of 3 wt.%. Further addition of nanoceramic phase resulted in the significant decrease in material strength.

AB - The approach for "nickel-YSZ-nanoceramics" bulk nanocomposite synthesis was developed. Compositions with the nanoceramic phase content lying in the range up to 20 wt.% YSZ were manufactured; their structure and chemical composition were studied using XRD, SEM, and EDX techniques. Experimental study of the composite mechanical properties (compressive strength) as a function of sample composition demonstrated the existence of maximal composite strength at YSZ content of 3 wt.%. Further addition of nanoceramic phase resulted in the significant decrease in material strength.

UR - http://www.scopus.com/inward/record.url?scp=84956859701&partnerID=8YFLogxK

M3 - Article

AN - SCOPUS:84956859701

VL - 24

SP - 340

EP - 346

JO - ФИЗИКА И МЕХАНИКА МАТЕРИАЛОВ

JF - ФИЗИКА И МЕХАНИКА МАТЕРИАЛОВ

SN - 1605-2730

IS - 4

ER -

ID: 48794443