溶融塩電析法による Y の含有深さを変えた Ni アルミナイド表面層の作製とその耐サイクル酸化性

  • 藤井 永人
    Department of Materials Science and Engineering, Graduate School of Engineering and Resource Science, Akita University
  • 佐藤 菜花
    Department of Materials Science and Engineering, Graduate School of Engineering and Resource Science, Akita University
  • 原 基
    Department of Materials Science and Engineering, Graduate School of Engineering and Resource Science, Akita University

書誌事項

タイトル別名
  • Preparation of Ni Aluminide Surface Layer Containing Yttrium at Different Depth by Molten Salt Electrodeposition and Cyclic Oxidation Resistance
  • ヨウユウエンデンセキホウ ニ ヨル Y ノ ガンユウ フカサ オ カエタ Ni アルミナイド ヒョウメンソウ ノ サクセイ ト ソノ タイサイクル サンカセイ

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抄録

  Attention has focused on a Ni aluminide containing a small amount of Y as a high-oxidation resistant material, and preparation of a coating consisting of this material was attempted by the molten salt electrodeposition which is a low-cost coating method. In the present study, the preparation of the coating consisting of this material was carried out by the electrodeposition of Ni using an aqueous solution as the electrolyte and the electrodeposition of Y and Al using a molten salt electrolyte. Furthermore, in order to change the depth of the region containing Y in the Ni aluminide layer, a three-step electrodeposition of Ni, Y and Ni was carried out, and the times of the first and third Ni electrodepositions were changed. As a result, surface layers consisting of Ni aluminide with a different depth of the region containing Y were formed. Furthermore, the cyclic oxidation resistance of these specimens was examined in air at 1423 K. As a result, for the specimen with a shallow Y-containing region in the Ni aluminide layer, the specimen mass reduction due to spalling of the scale was observed, whereas for the specimen with a deep Y-containing region, no specimen mass reduction was observed and a high-cyclic oxidation resistance was obtained. For the specimen with a deep Y-containing region, which showed the high-cyclic oxidation resistance, the scale formed on the coating after the oxidation test consisted of Al2O3 containing Y2O3, and this scale entered the metal substrate under the scale in the form of a wedge.<br>

収録刊行物

  • 日本金属学会誌

    日本金属学会誌 77 (5), 177-184, 2013

    公益社団法人 日本金属学会

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