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Effect of surface etching on the tensile behavior of coarse- and ultrafine-grained pure titanium. / Baek, Seung Mi; Polyakov, Alexander V.; Moon, Ji Hyun; Semenova, Irina P.; Valiev, Ruslan Z.; Kim, Hyoung Seop.

в: Materials Science and Engineering A, Том 707, 07.11.2017, стр. 337-343.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

Harvard

Baek, SM, Polyakov, AV, Moon, JH, Semenova, IP, Valiev, RZ & Kim, HS 2017, 'Effect of surface etching on the tensile behavior of coarse- and ultrafine-grained pure titanium', Materials Science and Engineering A, Том. 707, стр. 337-343. https://doi.org/10.1016/j.msea.2017.09.065

APA

Baek, S. M., Polyakov, A. V., Moon, J. H., Semenova, I. P., Valiev, R. Z., & Kim, H. S. (2017). Effect of surface etching on the tensile behavior of coarse- and ultrafine-grained pure titanium. Materials Science and Engineering A, 707, 337-343. https://doi.org/10.1016/j.msea.2017.09.065

Vancouver

Baek SM, Polyakov AV, Moon JH, Semenova IP, Valiev RZ, Kim HS. Effect of surface etching on the tensile behavior of coarse- and ultrafine-grained pure titanium. Materials Science and Engineering A. 2017 Нояб. 7;707:337-343. https://doi.org/10.1016/j.msea.2017.09.065

Author

Baek, Seung Mi ; Polyakov, Alexander V. ; Moon, Ji Hyun ; Semenova, Irina P. ; Valiev, Ruslan Z. ; Kim, Hyoung Seop. / Effect of surface etching on the tensile behavior of coarse- and ultrafine-grained pure titanium. в: Materials Science and Engineering A. 2017 ; Том 707. стр. 337-343.

BibTeX

@article{33f35007d1144e69a0bf7110fd10db18,
title = "Effect of surface etching on the tensile behavior of coarse- and ultrafine-grained pure titanium",
abstract = "For metallic biomaterials, surface treatment is essential for improving osseointegration. Acid etching is the basic method used for removing undesirable contaminants and increasing surface roughness. Although the obvious effect of the etching process is a change in surface characteristics, interestingly, surface etching can also affect the tensile properties of the material. In this paper, the influence of etching on the tensile behavior of pure titanium was investigated. The surface morphology and tensile properties of coarse- and ultrafine-grained pure titanium specimens were examined after hydrofluoric acid etching, in terms of the etching time. The ultrafine-grained titanium was prepared using conform equal-channel angular pressing to enhance the mechanical properties of the pure titanium. Micro-scale pores were observed, and tensile strength was decreased in the 1 min etched coarse-grained titanium. The 20 min etched coarse-grained specimen and the ultrafine-grained specimen with relatively homogeneous pore structure maintained or slightly increased their tensile strengths. These results provide a new foundation for the production of reliable metallic biomaterials.",
keywords = "Equal-channel angular pressing, Hydrofluoric acid etching, Surface roughness, Tensile properties, Ultrafine-grained titanium",
author = "Baek, {Seung Mi} and Polyakov, {Alexander V.} and Moon, {Ji Hyun} and Semenova, {Irina P.} and Valiev, {Ruslan Z.} and Kim, {Hyoung Seop}",
year = "2017",
month = nov,
day = "7",
doi = "10.1016/j.msea.2017.09.065",
language = "English",
volume = "707",
pages = "337--343",
journal = "Materials Science and Engineering: A",
issn = "0921-5093",
publisher = "Elsevier",

}

RIS

TY - JOUR

T1 - Effect of surface etching on the tensile behavior of coarse- and ultrafine-grained pure titanium

AU - Baek, Seung Mi

AU - Polyakov, Alexander V.

AU - Moon, Ji Hyun

AU - Semenova, Irina P.

AU - Valiev, Ruslan Z.

AU - Kim, Hyoung Seop

PY - 2017/11/7

Y1 - 2017/11/7

N2 - For metallic biomaterials, surface treatment is essential for improving osseointegration. Acid etching is the basic method used for removing undesirable contaminants and increasing surface roughness. Although the obvious effect of the etching process is a change in surface characteristics, interestingly, surface etching can also affect the tensile properties of the material. In this paper, the influence of etching on the tensile behavior of pure titanium was investigated. The surface morphology and tensile properties of coarse- and ultrafine-grained pure titanium specimens were examined after hydrofluoric acid etching, in terms of the etching time. The ultrafine-grained titanium was prepared using conform equal-channel angular pressing to enhance the mechanical properties of the pure titanium. Micro-scale pores were observed, and tensile strength was decreased in the 1 min etched coarse-grained titanium. The 20 min etched coarse-grained specimen and the ultrafine-grained specimen with relatively homogeneous pore structure maintained or slightly increased their tensile strengths. These results provide a new foundation for the production of reliable metallic biomaterials.

AB - For metallic biomaterials, surface treatment is essential for improving osseointegration. Acid etching is the basic method used for removing undesirable contaminants and increasing surface roughness. Although the obvious effect of the etching process is a change in surface characteristics, interestingly, surface etching can also affect the tensile properties of the material. In this paper, the influence of etching on the tensile behavior of pure titanium was investigated. The surface morphology and tensile properties of coarse- and ultrafine-grained pure titanium specimens were examined after hydrofluoric acid etching, in terms of the etching time. The ultrafine-grained titanium was prepared using conform equal-channel angular pressing to enhance the mechanical properties of the pure titanium. Micro-scale pores were observed, and tensile strength was decreased in the 1 min etched coarse-grained titanium. The 20 min etched coarse-grained specimen and the ultrafine-grained specimen with relatively homogeneous pore structure maintained or slightly increased their tensile strengths. These results provide a new foundation for the production of reliable metallic biomaterials.

KW - Equal-channel angular pressing

KW - Hydrofluoric acid etching

KW - Surface roughness

KW - Tensile properties

KW - Ultrafine-grained titanium

UR - http://www.scopus.com/inward/record.url?scp=85029682439&partnerID=8YFLogxK

U2 - 10.1016/j.msea.2017.09.065

DO - 10.1016/j.msea.2017.09.065

M3 - Article

AN - SCOPUS:85029682439

VL - 707

SP - 337

EP - 343

JO - Materials Science and Engineering: A

JF - Materials Science and Engineering: A

SN - 0921-5093

ER -

ID: 35167465