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鑄造鎳基高溫合金IN792的凝固和偏析行為研究
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Solidification and Segregation Behavior of Cast Ni-Base Superalloy IN792
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    摘要:

    采用等溫凝固淬火試驗(yàn) (ISQ) 與差熱掃描量熱 (DSC) 分析的方法對(duì)鑄造鎳基高溫合金IN792的凝固過(guò)程和元素在固、液相中的分配進(jìn)行研究,得到了合金的等溫凝固組織、相析出順序圖、凝固特性曲線以及元素在不同溫度下的偏析特性。ISQ結(jié)果表明:IN792合金的液相線溫度為1328 ℃,開(kāi)始析出MC碳化物的溫度為1310 ℃,開(kāi)始形成 (γ+γ’) 共晶的溫度為1225 ℃,于1190 ℃開(kāi)始析出二次γ’相。由DSC測(cè)得的合金宏觀固相線溫度 (尚存體積分?jǐn)?shù)5%殘余液體) 和由ISQ測(cè)得的微觀固相線溫度 (終凝溫度) 分別為1250和1180 ℃,兩者相差達(dá)70 ℃,這一溫度范圍往往是熱裂缺陷形成的敏感區(qū)間。IN792合金在液相線下30 ℃范圍內(nèi)液體量銳減,析出了體積分?jǐn)?shù)約85%的γ枝晶。1300~1270 ℃是合金枝晶間液體由連通轉(zhuǎn)為斷開(kāi)的溫度范圍,它與鑄件疏松形成密切相關(guān)。在1325~1190 ℃溫度區(qū)間,IN792合金中元素 W、Co分配系數(shù)大于1,傾向富集于枝晶干固相,為負(fù)偏析元素;Zr、Mo、Ti、Ta、Cr分配系數(shù)小于1,傾向富集于枝晶間液相,為正偏析元素;Al在凝固早期富集于液相而后來(lái)傾向于分布在枝晶干固相區(qū),隨著凝固溫度降低逐步轉(zhuǎn)變?yōu)樨?fù)偏析元素。在1325~1210 ℃溫度范圍內(nèi),隨著凝固溫度降低,Al、Ni的分配系數(shù)升高,而Mo、Cr的分配系數(shù)降低。相反,在1210~1180 ℃溫度區(qū)間,隨著凝固溫度降低,Ni、Al的分配系數(shù)降低,而Mo、Cr的則升高

    Abstract:

    The solidification process of cast Ni-base superalloy IN792 was comparatively investigated by differential scanning calorimeter (DSC) and isothermal solidification quenching (ISQ) experiment. The distribution characteristics of elements in solidified solid and residual liquid at different temperatures were also concerned. The isothermal solidification microstructure, the phase precipitation diagram, the solidification characteristic curve and the segregation behavior of elements at different temperatures in liquidus and solidus range were obtained. The results of ISQ indicate that the IN792 alloy possesses a liquidus temperature of 1328 ℃. The onset of MC carbides and eutectic (γ+γ’) formation take place at 1310 and 1225 ℃, respectively. The secondary γ’ is precipitated at 1190 ℃. The macro-solidus temperature determined by DSC was 1250 ℃. The volume fraction of residual liquid at this temperature can reach about 5%. The end of the solidification happened at 1180℃, designated as micro-solidus temperature. No liquid remained at this temperature. There is a 70 ℃ gap between macro and micro-solidus temperature. The hot tearing tends to occur in this temperature range. About 85 vol% solid phase was formed within a range of 30 ℃ below the liquidus temperature. In 1300~1270 ℃ range, the residual liquid in the interdendritic region changed from connected channels to the isolated micro-liquid pools, which is related to the formation of micro-porosity defect. The distribution coefficient of element W and Co are more than 1, indicating that they tend to distribute in solid phase in dendritic region, which are negative segregation elements. The distribution coefficients of element Zr, Mo, Ti, Ta and Cr are less than 1, indicating that they tend to distribute in liquid phase in interdendritic region, which are positive segregation elements. The element Al tends to distribute to liquid phase at the beginning of the solidification, and then be prone to concentrate in the solid phase in the dendritic region and transform to a negative segregation element followed by the solidification temperature decreased. The distribution coefficient of element Al and Ni increases but Mo and Cr decreases followed by the solidification temperature decreasing in 1325~1210 ℃ range. On the contrary, The distribution of element Al and Ni decreases but Mo and Cr increases followed by the solidification temperature decreasing in 1210~1180 ℃ range

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鄭 亮,肖程波,張國(guó)慶,湯 鑫,唐定中.鑄造鎳基高溫合金IN792的凝固和偏析行為研究[J].稀有金屬材料與工程,2012,41(8):1457~1462.[Zheng Liang, Xiao Chengbo, Zhang Guoqing, Tang Xin, Tang Dingzhong. Solidification and Segregation Behavior of Cast Ni-Base Superalloy IN792[J]. Rare Metal Materials and Engineering,2012,41(8):1457~1462.]
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  • 收稿日期:2011-08-06
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