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Controlling the microstructure of Hastelloy-X components manufactured by selective laser melting

机译:控制通过选择性激光熔化制造的Hastelloy-X部件的微观结构

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Selective Laser Melting (SLM) is steadily gaining acceptance across the manufacturing industry. Techniques for manufacturing components with complex geometries layer by layer have proven to be very effective in accelerating product development and hence reducing time to market. To build components by SLM from a nickel based super-alloy requires an understanding of process parameters and how they influence the microstructure, the degree of porosity and the properties. In this work, it was found that the as-fabricated density of parts manufactured from Hastelloy-X by SLM could be increased from 77 to 99% by decreasing the laser scan speed, and that the degree of cracking can be reduced by decreasing the amount of minor alloying additions such as Mn and Si.
机译:选择性激光熔化(SLM)稳步获得制造业的接受。通过层制造具有复杂几何层层的组件的技术已经证明在加速产品开发方面非常有效,从而减少市场时间。通过从基于镍的超合金通过SLM构建组件需要了解工艺参数以及它们如何影响微观结构,孔隙度和性质。在这项工作中,发现通过降低激光扫描速度,通过SLM制造的壳体-X制造的零件的零件的质量密度从77增加到99%,并且通过降低量可以降低裂缝程度小于合金化添加,如Mn和Si。

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