首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >The influence of the laser scan strategy on grain structure and cracking behaviour in SLM powder-bed fabricated nickel superalloy
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The influence of the laser scan strategy on grain structure and cracking behaviour in SLM powder-bed fabricated nickel superalloy

机译:激光扫描策略对SLM粉末床制备镍超合金晶粒结构和开裂行为的影响

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During the development of a processing route for the Selective Laser Melting (SLM) powder-bed fabrication of the nickel superalloy CM247LC it has been observed that the 'island' scan-strategy used as standard by the Concept Laser M2 SLM powder-bed system strongly influences the grain structure1 of the material. Optical and SEM micrographs are presented to show the observed grain structure in the SLM fabricated and Hot Isostatically Pressed (HIPped) material. The repeating pattern shown in the grain structure has been linked to the overlapping of the 'island' pattern used as standard in the Concept Laser M2 powder-bed facility. It is suggested that the formation of this bi-modal grain structure can be linked to the heat transfer away from the solidifying melt pool. The concept of a 'band' heating effect across each 'island' rather than 'moving point' heating has been suggested and has been supported by Electron Back Scattered Diffraction (EBSD) evidence. For comparison an EBSD map from a sample formed using a simple 'back-and-forth' strategy has also been presented and reveals a dramatically different grain structure and crystallographic orientation. MicroCT evidence, supported by SEM microscopy, shows that in the as-fabricated material the bimodal structure caused by the 'island' scan-strategy translates directly into the macroscopic pattern for the regions of extensive weld cracking associated with the SLM fabrication of γ' hardenable materials. Similar microCT data has shown that HIPping can effectively close the internal cracks to provide a retro-fix solution.
机译:在开发用于镍超级合金CM247LC的选择性激光熔融(SLM)粉末床制造的加工路线的过程中,已经观察到Concept Laser M2 SLM粉末床系统将“孤岛”扫描策略用作标准影响材料的晶粒结构1。呈现了光学和SEM显微照片,以显示在SLM制作和热等静压(HIPped)材料中观察到的晶粒结构。晶粒结构中所示的重复图案已与Concept Laser M2粉末床设备中用作标准的“岛”图案重叠。建议该双峰晶粒结构的形成可以与热量从凝固熔体池传出有关。已经提出了跨每个“岛”而不是“运动点”加热的“带”加热效应的概念,并得到了电子背散射衍射(EBSD)证据的支持。为了进行比较,还介绍了使用简单的“来回”策略形成的样品的EBSD图,该图揭示了截然不同的晶粒结构和晶体学取向。由SEM显微镜支持的MicroCT证据表明,在加工后的材料中,由“岛”扫描策略引起的双峰结构直接转变为与SLM加工可硬化的γ相关的大范围焊接裂纹区域的宏观模式。材料。相似的microCT数据表明,HIPping可以有效地封闭内部裂纹,从而提供后修复解决方案。

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