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Microstructural control during laser additive manufacturing of single-crystal nickel-base superalloys: New processing-microstructure maps involving powder feeding

机译:单晶镍基高温合金激光增材制造过程中的微结构控制:涉及粉末进料的新加工微结构图

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摘要

The control of solidification microstructure is critical to successful laser processing of single-crystal (SX) nickel-base superalloys and a practical tool for the microstructural control is processing-microstructure maps. However, the maps presented in literature do not consider the effects of powder feeding during laser additive manufacturing (LAM) of SX superalloys. This paper therefore presents a simple and feasible strategy to deal with the effects of powder feeding and to extend the combined numerical model used to calculate processing-microstructure maps. A characteristic ratio of epitaxial SX growth was defined to quantitatively compare the final solidification microstructure. Resulting processing-microstructure maps can estimate the influence of most processing variables, especially powder feeding rate, on the extent of epitaxial SX growth and the position of columnar-to-equiaxed transition. Using the processing parameters selected according to these processing-microstructure maps, a multi-layer SX deposit with fine dendrites was successfully fabricated by LAM. This successful SX LAM indicates that these new processing-microstructure maps involving powder feeding are reliable and useful because they can determine proper processing windows for LAM of SX superalloys and further advance the understanding of the processing-microstructure relationship in powder-feeding LAM process.
机译:凝固微结构的控制对于成功进行单晶(SX)镍基高温合金的激光加工至关重要,而微结构控制的实用工具是加工微结构图。但是,文献中提供的地图未考虑SX超级合金激光增材制造(LAM)过程中送粉的影响。因此,本文提出了一种简单可行的策略来处理粉末进料的影响,并扩展了用于计算加工微结构图的组合数值模型。定义了外延SX生长的特征比,以定量比较最终的凝固微观结构。由此产生的加工微观结构图可以估计大多数加工变量(特别是粉末进料速率)对外延SX生长程度和柱状至等温转变位置的影响。使用根据这些加工微观结构图选择的加工参数,LAM成功地制造了具有细枝晶的多层SX沉积物。这项成功的SX LAM表明,这些新的涉及粉末进料的加工微观结构图是可靠且有用的,因为它们可以为SX超级合金的LAM确定合适的加工窗口,并进一步推进了粉末进料LAM工艺中加工与微观结构关系的理解。

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