Research on Formation Rule of G.B. Plate-Like Carbide in GH220 Ni-Base Wrought Superalloy
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摘要: 研究了鎳基高溫合金在1123K,392MPa下周期持久斷裂過程中晶界針狀碳化物的析出過程。分析了它的形成原因,實驗采用二種熱處理工藝,得到二種不同的晶界狀態:直晶和彎晶。透射電鏡分析結果表明,無論何種晶界狀態,晶界碳化物都有一個由顆粒狀碳化物向針狀碳化物轉化的過程。而彎晶處理的合金,首先發生由彎晶向平直晶界的轉變,即尺寸較大且不規則狀的晶界碳化物逐漸斷裂成顆粒狀排列的晶界碳化物,該過程所需時間較長,這就解釋了彎晶合金比如直晶合金針狀碳化物量少的原因。提出了一個由顆粒狀碳化物向針狀碳化物轉化的模型。Abstract: The transition process of grain boubary (G.B.) plate-like carbides have been researched in a Ni-base wrought superalloy under cyclic creep condition of temperature 1123 K, stress 392 MPa and hold time 8 (min). Its formative rule has been analyzed. Two kinds of different heattreatment method are used for getting different kinds of G.B. alloy, (straight G.B. and zigzag G.B.). The results of TEM analysis show that there are same process of transition particle carbides to plate-like carbides in both of G.B. alloy. There is a transition process from zigzag G.B. to straight G.B. before above process, i.e. the greater carbides which is not rule in size are broken up to particle G.B. carbides, (or straight process in brief). This process would take a long time. And so, the reason has been explained that plate-like carbides of zigzag G.B alloy are less than that of straiht G.B. alloy. A mode of transition zigzag G.B. to straight G.B. and of transition particle carbides to plate-like carbides is assumed in this paper.
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Key words:
- superalloy /
- plate-like carbide /
- zigzag G.B.
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