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Effects of melt-pool geometry on the oriented to misoriented transition in directed energy deposition of a single-crystal superalloy

机译:熔池几何形状对单晶高温合金定向能量沉积取向转变的影响

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摘要

The successful repair of single-crystal (SX) gas turbine blades using the directed energy deposition (DED) technique requires unidirectional dendrite growth without an oriented to misoriented transition (OMT). In this work, the effects of melt-pool geometrical parameters on OMT behavior during single-track deposition of SX superalloys were thoroughly studied. The variations in melt-pool length, width, height and depth on the solidified structure characteristics (e.g., the number of anisotropic dendrites and the area fraction of [001]-oriented dendrites) were quantitatively examined through experimental observations. A simple mathematical model was established to elucidate the correlations between these parameters and OMT behavior, and the errors in this model were analyzed in detail. The DED parameters were linked with the melt-pool geometrical parameters to find out the suitable processing conditions for SX repair. It is concluded that a melt pool with a relatively low depth-to-height ratio and a high length-to-height ratio is generally beneficial for unidirectional dendrite growth, decreasing the heat and mass input is conducive to obtain such melt-pool shape. The presented findings afford an in-depth understanding of the effects of melt-pool geometry on competitive dendrite growth and are instrumental for the repair of SX gas turbine blades.
机译:单晶的成功修复(SX)气体使用定向能涡轮叶片沉积(d)技术要求没有一个单向树突增长面向使定向变异过渡(OMT)。工作,melt-pool几何的影响在单轨参数对OMT的行为彻底SX超合金的沉积研究。宽度、高度和深度固化结构特征(例如,数量的各向异性树突的面积分数[001](树突)定量通过实验观察检查。建立了简单的数学模型阐明这些之间的相关性参数和OMT行为和错误该模型详细分析了。参数与melt-pool找出合适的几何参数SX修复处理条件。得出的结论是,用相对较低的熔池depth-to-height比率和高length-to-height比率为单向通常是有益的树突增长,减少热量和质量输入有利于获得此类melt-pool形状。melt-pool的影响的理解几何树突增长和竞争仪器修理SX的燃气轮机叶片。

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