Effect of S content in deposit on low-cycle fatigue properties of Ni film electroplated from sulfamate baths

Akira Kubota, Masato Takada, Tomonori Nakao, Hiroaki Nakano, Satoshi Oue, Tetsuya Akiyama, Hisaaki Fukushima, Ryuta Onodera

研究成果: ジャーナルへの寄稿記事

8 引用 (Scopus)

抄録

Nickel was electrodeposited from sulfamate baths containing various amounts of thiourea. The effect of S in the deposit on the fatigue properties of electroplated Ni was studied by low-cycle fatigue test and by the observation of the fractured surface of the deposit. The results obtained were as follows: (1) In the deposit of low S content (1.3×10-4 mass%), the low-cycle fatigue properties were able to be estimated by the tensile test on the basis of Manson's cogradient law. However, the result of tensile test was not applicable to the deposits of high S content (46×10-4 mass%) because of their poor fatigue properties. (2) The striation was recognized on the fracture surface of the deposit containing 1.3×10-4 mass% S, which suggested that transgranular fracture peculiar to the low-cycle fatigue occurred. On the contrary, the deposit of 46×10-4 mass% S was consisted of polycrystal colonies with the polygonal shape (several millimeters in size). Since the strength in colony boundary was lower than that in colony itself, the fracture proceeded along the colony boundary. (3) During annealing, S in the deposits diffused into the boundary between grains recrystallized. Therefore, the fracture might occur along the grain boundary embrittled by S.

元の言語英語
ページ(範囲)38-44
ページ数7
ジャーナルTetsu-To-Hagane/Journal of the Iron and Steel Institute of Japan
86
発行部数1
DOI
出版物ステータス出版済み - 1 1 2000

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baths
Deposits
deposits
Fatigue of materials
cycles
tensile tests
Grain boundaries
Thiourea
fatigue tests
striation
Thioureas
thioureas
Polycrystals
polycrystals
sulfamic acid
Nickel
grain boundaries
nickel
Annealing
annealing

All Science Journal Classification (ASJC) codes

  • Condensed Matter Physics
  • Physical and Theoretical Chemistry
  • Metals and Alloys
  • Materials Chemistry

これを引用

Effect of S content in deposit on low-cycle fatigue properties of Ni film electroplated from sulfamate baths. / Kubota, Akira; Takada, Masato; Nakao, Tomonori; Nakano, Hiroaki; Oue, Satoshi; Akiyama, Tetsuya; Fukushima, Hisaaki; Onodera, Ryuta.

:: Tetsu-To-Hagane/Journal of the Iron and Steel Institute of Japan, 巻 86, 番号 1, 01.01.2000, p. 38-44.

研究成果: ジャーナルへの寄稿記事

Kubota, Akira ; Takada, Masato ; Nakao, Tomonori ; Nakano, Hiroaki ; Oue, Satoshi ; Akiyama, Tetsuya ; Fukushima, Hisaaki ; Onodera, Ryuta. / Effect of S content in deposit on low-cycle fatigue properties of Ni film electroplated from sulfamate baths. :: Tetsu-To-Hagane/Journal of the Iron and Steel Institute of Japan. 2000 ; 巻 86, 番号 1. pp. 38-44.
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abstract = "Nickel was electrodeposited from sulfamate baths containing various amounts of thiourea. The effect of S in the deposit on the fatigue properties of electroplated Ni was studied by low-cycle fatigue test and by the observation of the fractured surface of the deposit. The results obtained were as follows: (1) In the deposit of low S content (1.3×10-4 mass{\%}), the low-cycle fatigue properties were able to be estimated by the tensile test on the basis of Manson's cogradient law. However, the result of tensile test was not applicable to the deposits of high S content (46×10-4 mass{\%}) because of their poor fatigue properties. (2) The striation was recognized on the fracture surface of the deposit containing 1.3×10-4 mass{\%} S, which suggested that transgranular fracture peculiar to the low-cycle fatigue occurred. On the contrary, the deposit of 46×10-4 mass{\%} S was consisted of polycrystal colonies with the polygonal shape (several millimeters in size). Since the strength in colony boundary was lower than that in colony itself, the fracture proceeded along the colony boundary. (3) During annealing, S in the deposits diffused into the boundary between grains recrystallized. Therefore, the fracture might occur along the grain boundary embrittled by S.",
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AU - Oue, Satoshi

AU - Akiyama, Tetsuya

AU - Fukushima, Hisaaki

AU - Onodera, Ryuta

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