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Simulation of the temperature distribution on the mold surface and inside casting during high-gradient directional solidification

机译:高梯度方向凝固过程中模具表面和内部铸造温度分布的仿真

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摘要

In order to determine the temperature gradients in ingots fabricated by the directional solidification (DS) using an UVNS-6 installation produced by VIAM (Moscow), single-crystalline ingots made of VZhM3 nickel superalloy have been prepared. Herewith, DS technologies with liquid-metal cooling (LMC) and without it are used (the Bridgman-Stockbarger method). A tin melt is used as the LMC. Readings of thermocouples installed on the surface of a ceramic mold are recorded during ingot DS. The DS of ingots made of VZhM3 nickel superalloy using the UVNS-6 installation is simulated in the ProCast program using thermal properties of the alloy, ceramic mold, and parts of the DS installation found in articles, as well as boundary conditions between them (interface heat-transfer coefficients). The good coincidence of the calculated and experimental temperature distributions in the mold during solidification using the Bridgman-Stockbarger and the LMC technique is shown, which makes it possible to use simulation of the ingot fabrication in the ProCast program to predict the temperature gradient at the solidification front, the solidification front profile, and the size of the mushy zone (where the dendritic alloy structure is formed). The temperature gradient attained in the ingot in the case of using the Bridgman-Stockbarger method by the results of simulation was 36A degrees C/cm. The temperature gradient in the case of applying the LMC technique is 204A degrees C/cm; i.e., it turned out sixfold higher than that attained when using the Bridgman-Stockbarger technique. Thermal properties and boundary conditions can be demanded when performing computer simulating of nickel superalloys blade casting process.
机译:为了确定通过通过VIAM(莫斯科)生产的UVNS-6安装的定向凝固(DS)制造的锭中的温度梯度,制备了由VZHM3镍高温合金制成的单晶锭。在此,使用具有液态金属冷却(LMC)的DS技术(LMC)和没有它(Bridgman-StockBarger方法)。锡熔体用作LMC。在铸锭DS期间记录安装在陶瓷模具表面上的热电偶的读数。使用UVNS-6安装的VZHM3镍高温合金的模锭DS使用合金,陶瓷模具的热性能和文章中的DS安装的部分,以及它们之间的边界条件(接口传热系数)。示出了使用Bridgman-Stockbruger和LMC技术凝固过程中所计算的和实验温度分布的良好重合,从而可以使用Procast程序中的铸锭制造的模拟来预测凝固处的温度梯度前面,凝固前轮廓和糊状区的尺寸(形成树枝状合金结构)。在使用仿真结果的情况下使用Bridgman-Stockbringer方法的情况下,铸锭中获得的温度梯度为36A℃/ cm。施加LMC技术的情况下的温度梯度是204A摄氏度;即,它的六倍高于使用Bridgman-Stockbrorger技术时获得的六倍。在进行镍超合金叶片铸造工艺的计算机模拟时,可以要求热性能和边界条件。

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