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Microstructure and Mechanical Properties of an Advanced Nickel-Based Superalloy in the as-HIP Form

机译:以臀部形式进行先进镍基超合金的微观结构和力学性能

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This study evaluates the suitability of as-hot isostatically pressed (HIP) RR1000 for noncritical applications in aero-engine components. RR1000, an advanced powder nickel-based superalloy, was developed for disc rotor components in aero-engines. For these critical applications, the consolidated alloy powder particles are extruded to break down carbide and oxide networks, known as prior particle boundaries (PPBs), and to refine the structure into a fine grain size for isothermal forging. In this study, hot isostatically pressed compacts, made from two different powder particle size fractions have been assessed following heat treatments below and above the gamma prime solvus temperature. A microstructural evaluation shows a greater degree of PPB decoration occurs in the finer powder particle size fraction. Following a super-solvus heat treatment these PPBs pin grain boundaries of the fine powder particle size compacts, whilst the reduction of PPB decoration in coarse powder particle compacts allows significant grain growth. Tensile test results of as-HIP RR1000 show, good yield strengths, ultimate tensile strengths and ductility, which are comparable with extruded and isothermal forged RR1000 disc material. Dwell crack propagation tests show that finer powder particle size compacts, which have received a sub-solvus heat treatment, give the highest crack growth rates; whilst the remaining material conditions show markedly improved crack growth resistance. In conclusion, as-HIP RR1000 demonstrates clear potential for use in non-critical applications, employing either powder particle size fraction used in this study subject to the appropriate solution heat treatment.
机译:本研究评估了在航空发动机部件中为非临界应用的稳定性压制(HIP)RR1000的适用性。 RR1000是一种先进的粉末镍基超合金,用于航空发动机的圆盘转子组件。对于这些关键应用,挤出整合合金粉末颗粒以分解碳化物和氧化物网络,称为现有颗粒边界(PPBS),并将该结构改进为等温锻造的细粒尺寸。在该研究中,在低于γ原始溶剂温度的热处理后,通过两种不同的粉末粒度级分制成的热等静压压块。微观结构评价显示更小的粉末粒径级分中发生更大程度的PPB装饰。在超级溶解的热处理后,这些PPBS销晶界的细粉粒度紧凑,同时在粗粉粒子块中的PPB装饰的减少允许显着的晶粒生长。 AS-HIP RR1000的拉伸试验结果表明,良好的屈服强度,最终拉伸强度和延展性,与挤出和等温锻造的RR1000盘材料相当。停留裂纹繁殖试验表明,更精细的粉末粒径压块,该粉末粒度压块,其接受了亚溶剂热处理,具有最高的裂纹增长率;虽然剩余的材料条件显示出显着提高裂纹生长抗性。总之,AS-HIP RR1000显示出在非关键应用中使用的明显可能性,采用本研究中使用的粉末粒度分数受适当的溶液热处理。

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