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Microstructure and Properties of Nickel-Based Superalloy Prepared by Two-Phase Zone Directional Solidification

机译:两相区定向凝固制备镍基超合金的微观结构与性能

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The principle of two-phase zone directional solidification technique is presented in this paper, taking the GH4738 nickel-based superalloy as the object, under the conditions of the mold temperature at 1350°C and withdrawing speed from 3 to 6 mm/min. GH4738 nickel-based superalloy billets were prepared by two-phase zone directional solidification equipment developed all by the authors. The microstructure and mechanical properties of two-phase zone directionally solidified GH4738 nickel-based superalloy were investigated by metallographic microscope and mechanical testing machine. The effect of withdrawing speed on the microstructure and mechanical properties of the alloy were studied. The results show that, the microstructure of two-phase zone directionally solidified GH4738 nickel-based superalloy was composed of irregular columnar crystals with the branches. As the withdrawing speed increased from 3 to 6 mm/min, the grain size of the columnar crystal decreased, the branches' number of the columnar crystals increased, the tensile strength of the alloy increased from 823 to 844 MPa, the elongation decreased from 43.3 to 36%. When the mold temperature was 1350°C, the withdrawing speed was 6 mm/min, the tensile strength was 844 MPa and the elongation was 36%. Compared with the traditional vacuum induction melting of cast, the tensile strength of nickel-based superalloy GH4738 increased 20 MPa and the elongation increased by 9.2%. The nickel-based superalloy billets prepared by two-phase zone directional solidification had higher comprehensive mechanical properties.
机译:本文提出了两相区域定向凝固技术的原理,以GH4738镍基超合金为目的,在模具温度下以1350℃的条件下,从3至6mm / min抽出速度。 GH4738基于镍基超合金坯料由作者开发的两相区域定向凝固设备制备。金相显微镜和机械试验机研究了两相区定向凝固了GH4738基镍高温合金的微观结构和力学性能。研究了抽出速度对合金微观结构和机械性能的影响。结果表明,两相区域定向凝固GH4738镍的超合金的微观结构由具有分支的不规则柱状晶体构成。随着抽出速度从3〜6mm / mm的增加,柱状晶体的粒度降低,柱状晶体的分支数量增加,合金的拉伸强度从823增加到844MPa,伸长率从43.3减少到36%。当模液温度为1350℃时,取出速度为6mm / min,拉伸强度为844MPa,伸长率为36%。与传统的真空感应熔化相比,镍基超合金GH4738的拉伸强度增加了20MPa,伸长率增加了9.2%。通过两相区定向凝固制备的基于镍的超合金坯料具有较高的综合机械性能。

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