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Investigations on the microstructure and crack formation of IN738LC samples processed by selective laser melting using Gaussian and doughnut profiles

机译:利用高斯和甜甜圈轮廓选择性激光熔化处理IN738LC样品的微观结构和裂纹形成的研究

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This paper contributes to a better understanding of processing the nickel-based superalloy IN738LC using selective laser melting (SLM). Initially, the basic workability of IN738LC using SLM is demonstrated. Subsequently, a comparison between a Gaussian and a doughnut profile is carried out, and clear correlations between the choice of process parameters and the resulting imperfections depending on the chosen laser beam profile are shown. Electron backscatter diffraction (EBSD) measurements show a significant influence of scan strategy and build direction on the texture of the sample, independent of the used laser beam profile. Regardless of the laser beam profile, two contradicting trends complicate the defect-free processing of IN738LC i.e. a reduction in the crack density can only be realized with increasing porosity. Through microstructural investigations, observed hot cracks are identified to be solidification cracks. Based on a broad experimental study in combination with a numerical solidification study, a theory about the crack initiation mechanism is presented. Finally, by using atom probe tomography (AFT), the element zirconium is confirmed as a possible reason for the occurrence of solidification cracks.
机译:本文有助于更好地理解使用选择性激光熔化(SLM)处理镍基高温合金IN738LC。最初,演示了使用SLM的IN738LC的基本可操作性。随后,在高斯和甜甜圈轮廓之间进行比较,并显示了工艺参数的选择与所产生的缺陷之间的明确相关性,取决于所选的激光束轮廓。电子背散射衍射(EBSD)测量显示扫描策略和生成方向对样品的纹理有很大影响,而与所使用的激光束轮廓无关。无论激光束轮廓如何,两个相互矛盾的趋势使IN738LC的无缺陷处理变得复杂,即只能通过增加孔隙率来实现裂纹密度的降低。通过显微组织研究,观察到的热裂纹被确认为凝固裂纹。基于广泛的实验研究和数值凝固研究,提出了一种有关裂纹萌生机理的理论。最后,通过使用原子探针层析成像(AFT),确认元素锆是发生凝固裂纹的可能原因。

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