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高溫合金單晶葉片定向凝固過程的宏微觀數(shù)值模擬
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“973”計劃 (2007CB7077004,2011CB706801);國家科技重大專項 (2009ZX04006-041)


Macro and Micro Numerical Simulation of Directional Solidification of Super Alloy SX Turbine Blade
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    摘要:

    基于有限元和Panda熱動力學數(shù)據(jù)庫建立了單晶葉片真空熔模鑄造定向凝固過程的數(shù)理模型,對不同工藝下單晶葉片試樣凝固過程中的溫度場、糊狀區(qū)演變及枝晶二次臂間距進行了仿真,研究了缺陷形成機理和規(guī)律。計算結果與實驗吻合良好。計算結果顯示,拉速大時二次臂細小,但雜晶產(chǎn)生的趨勢加大;拉速小時雜晶不易形成,但二次臂增粗。對實際空心薄壁復雜單晶葉片定向凝固過程的模擬研究表明,二次臂間距在葉身部分分布比較均一, 3.5 mm/min抽拉時有可能在緣板處產(chǎn)生雜晶。采用變拉速工藝,不僅可避免雜晶缺陷,還能保證工件大部分枝晶細小,提高生產(chǎn)效率和成品率

    Abstract:

    Defect-free blades with fine microstructure and excellent high temperature performance are needed by aero-turbine. The curved shape of SX (single grain) blade is usually very complicated, and its section varies sharply at the platform, the tip shroud, etc. Thus, stray grains are difficult to avoid during directional solidification. In order to optimize the process parameter, the physical model and the mathematical model of directional solidification of SX blade were established based on Panda thermodynamic database and finite element. The temperature field, the evolution of mushy zone and the SDAS (secondary dendrite arm spacing) during solidification of SX sample by different process were simulated, and the discipline and mechanism of defect formation were investigated. The numerical results agree well with the experimental. The calculated results indicate that with the higher withdrawal rate, the SDAS gets smaller but stray grains tend to occur; with the lower withdrawal rate, the possibility of stray grains gets lower but the SDAS gets larger. The directional solidification of complicated thin-walled hollow real SX blade was simulated as well. The results show that the SDAS is nearly uniform in the blade, stray grains may appear at the platform when the withdrawal rate is up to 3.5 mm/min. By the process with varying withdrawal rate, the stray grain can be avoided while most of secondary dendrite can be refined, thus improving the productivity and percent of pass

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唐 寧,孫長波,張 航,許慶彥,柳百成.高溫合金單晶葉片定向凝固過程的宏微觀數(shù)值模擬[J].稀有金屬材料與工程,2013,42(11):2298~2303.[Tang Ning, Sun Changbo, Zhang Hang, Xu Qingyan, Liu Baicheng. Macro and Micro Numerical Simulation of Directional Solidification of Super Alloy SX Turbine Blade[J]. Rare Metal Materials and Engineering,2013,42(11):2298~2303.]
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  • 收稿日期:2012-11-25
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