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鎳基粉末高溫合金枝晶間亞穩碳化物

Non-equilibrium carbides in the interdendritic region of a nickelbased powder metallurgy superalloy

  • 摘要: 對急冷凝固鎳基高溫合金松散粉末熱等靜壓成型合金中亞穩碳化物及其相間反應進行了研究.隨著熱處理溫度的升高,粉末中合金元素的分布逐漸均勻化,但枝晶間MC能在較高的溫度下保持穩定,使Ti和Zr在該處仍有較高含量.原始粉末中枝晶間主要分布著塊狀和花狀的MC型碳化物,在預熱處理過程中粉末枝晶間塊狀碳化物分解,發生M23C6和M6C的析出反應,而花狀碳化物的成分及形貌則保持相對穩定.成型合金殘余枝晶間分布的碳化物主要由塊狀M6C和MC及花狀MC組成,形變再結晶可以促進枝晶間碳化物的溶解.

     

    Abstract: This article studies carbides and their reactions in nickel-base superalloy powders prepared by rapid solidification and the hot isostatic pressed (HIPed) alloy. With the pre-treated temperature rising, the segregation of alloy elements in the powders reduces, but MC carbides in the interdendritic region still exist at elevated temperatures. As a result, there are more Ti and Zr at this area. Blocky and petal-like MC carbides distribute in the interdendritic region of the initial powders. During the pre-heat treatment the blocky carbides decompose, and M23C6 and M6C precipitate in the interdendritic region; however, the petal-like carbides can remain stable at higher temperatures. Carbides in the interdendritic region of the HIPed alloy are composed of blocky M6C and MC and petal-like MC carbides, but deformation and recrystallization can induce the MC carbides to decompose.

     

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