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Experimental and Theoretical Analysis of Scanning Laser Epitaxy Applied to Nickel-Based Superalloys

机译:扫描激光外延应用于镍基超合金的实验与理论分析

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This paper reports on the experimental development and the theoretical analysis of the scanning laser epitaxy (SLE) process that is currently being investigated and developed at the Georgia Institute of Technology. SLE is a laser-based manufacturing process for deposition of equiaxed, directionally solidified and single-crystal nickel superalloys onto superalloy substrates through the selective melting and re-solidification of superalloy powders. The thermal modeling of the system, done in a commercial CFD software package, simulates a heat source moving over a powder bed and considers the approximate change in the property values for consolidating CMSX-4 nickel superalloy powder. The theoretical melt depth is obtained from the melting temperature criteria and the resulting plots are presented alongside matching experimental micrographs obtained through cross-sectional metallography. The influence of the processing parameters on the microstructural evolution, as evidenced through observations made from the micrographs, is discussed. This work is sponsored by the Office of Naval Research, through grants N00173-07-1-G031 and N00014-10-1-0526.
机译:本文报道了目前正在调查和开发的扫描激光外延(SLE)过程的实验开发和理论分析,并在佐治亚理工学院制定。 SLE是一种基于激光的制造方法,用于通过选择性熔化和超合金粉末的选择性熔化和再凝固来沉积等式的,定向固化和单晶镍高温合金。在商业CFD软件包中完成系统的热建模模拟了在粉末床上移动的热源,并考虑了固结CMSX-4镍超合金粉末的性能值的近似变化。理论熔体深度是从熔融温度标准获得的,并且所得到的图沿通过横截面金相获得的匹配实验显微照片呈现。讨论了处理参数对微观结构演进的影响,通过显微照片所证明的通过显微照片所证明。这项工作由海军研究办公室赞助,通过拨款N00173-07-1-G031和N00014-10-1-0526。

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