The Application of 40Ti-35Ni-25Nb Filler Foil in Brazing Commercially Pure Titanium

The clad ternary 40Ti-35Ni-25Nb (wt %) foil has been applied in brazing commercially pure titanium (CP-Ti). The wavelength dispersive spectroscope (WDS) was utilized for quantitative chemical analyses of various phases/structures, and electron back scattered diffraction (EBSD) was used for crystallo...

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Main Authors: Shan-Bo Wang, Chuan-Sheng Kao, Leu-Wen Tsay, Ren-Kae Shiue
Format: Article
Language:English
Published: MDPI AG 2018-03-01
Series:Metals
Subjects:
Online Access:http://www.mdpi.com/2075-4701/8/3/154
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spelling doaj-3699f8a8d5744f3583e077fae046f4e02020-11-25T01:03:24ZengMDPI AGMetals2075-47012018-03-018315410.3390/met8030154met8030154The Application of 40Ti-35Ni-25Nb Filler Foil in Brazing Commercially Pure TitaniumShan-Bo Wang0Chuan-Sheng Kao1Leu-Wen Tsay2Ren-Kae Shiue3Department of Materials Science and Engineering, National Taiwan University, Taipei 106, TaiwanDepartment of Materials Science and Engineering, National Taiwan University, Taipei 106, TaiwanInstitute of Materials Engineering, National Taiwan Ocean University, Keelung 202, TaiwanDepartment of Materials Science and Engineering, National Taiwan University, Taipei 106, TaiwanThe clad ternary 40Ti-35Ni-25Nb (wt %) foil has been applied in brazing commercially pure titanium (CP-Ti). The wavelength dispersive spectroscope (WDS) was utilized for quantitative chemical analyses of various phases/structures, and electron back scattered diffraction (EBSD) was used for crystallographic analyses in the brazed joint. The microstructure of brazed joint relies on the Nb and Ni distributions across the joint. For the β-Ti alloyed with high Nb and low Ni contents, the brazed zone (BZ), consisting of the stabilized β-Ti at room temperature. In contrast, eutectoid decomposition of the β-Ti into Ti2Ni and α-Ti is widely observed in the transition zone (TZ) of the joint. Although average shear strengths of joints brazed at different temperatures are approximately the same level, their standard deviations decreased with increasing the brazing temperature. The presence of inherent brittle Ti2Ni intermetallics results in higher standard deviation in shear test. Because the Ni content is lowered in TZ at a higher brazing temperature, the amount of eutectoid is decreased in TZ. The fracture location is changed from TZ into BZ mixed with α and β-Ti.http://www.mdpi.com/2075-4701/8/3/154vacuum brazingtitaniumeutectoidclad filler foilmicrostructure
collection DOAJ
language English
format Article
sources DOAJ
author Shan-Bo Wang
Chuan-Sheng Kao
Leu-Wen Tsay
Ren-Kae Shiue
spellingShingle Shan-Bo Wang
Chuan-Sheng Kao
Leu-Wen Tsay
Ren-Kae Shiue
The Application of 40Ti-35Ni-25Nb Filler Foil in Brazing Commercially Pure Titanium
Metals
vacuum brazing
titanium
eutectoid
clad filler foil
microstructure
author_facet Shan-Bo Wang
Chuan-Sheng Kao
Leu-Wen Tsay
Ren-Kae Shiue
author_sort Shan-Bo Wang
title The Application of 40Ti-35Ni-25Nb Filler Foil in Brazing Commercially Pure Titanium
title_short The Application of 40Ti-35Ni-25Nb Filler Foil in Brazing Commercially Pure Titanium
title_full The Application of 40Ti-35Ni-25Nb Filler Foil in Brazing Commercially Pure Titanium
title_fullStr The Application of 40Ti-35Ni-25Nb Filler Foil in Brazing Commercially Pure Titanium
title_full_unstemmed The Application of 40Ti-35Ni-25Nb Filler Foil in Brazing Commercially Pure Titanium
title_sort application of 40ti-35ni-25nb filler foil in brazing commercially pure titanium
publisher MDPI AG
series Metals
issn 2075-4701
publishDate 2018-03-01
description The clad ternary 40Ti-35Ni-25Nb (wt %) foil has been applied in brazing commercially pure titanium (CP-Ti). The wavelength dispersive spectroscope (WDS) was utilized for quantitative chemical analyses of various phases/structures, and electron back scattered diffraction (EBSD) was used for crystallographic analyses in the brazed joint. The microstructure of brazed joint relies on the Nb and Ni distributions across the joint. For the β-Ti alloyed with high Nb and low Ni contents, the brazed zone (BZ), consisting of the stabilized β-Ti at room temperature. In contrast, eutectoid decomposition of the β-Ti into Ti2Ni and α-Ti is widely observed in the transition zone (TZ) of the joint. Although average shear strengths of joints brazed at different temperatures are approximately the same level, their standard deviations decreased with increasing the brazing temperature. The presence of inherent brittle Ti2Ni intermetallics results in higher standard deviation in shear test. Because the Ni content is lowered in TZ at a higher brazing temperature, the amount of eutectoid is decreased in TZ. The fracture location is changed from TZ into BZ mixed with α and β-Ti.
topic vacuum brazing
titanium
eutectoid
clad filler foil
microstructure
url http://www.mdpi.com/2075-4701/8/3/154
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