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首页> 外文期刊>Journal of Materials Engineering and Performance >Microstructure and Residual Stress Evolution of Laser Powder Bed Fused Inconel 718 under Heat Treatments
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Microstructure and Residual Stress Evolution of Laser Powder Bed Fused Inconel 718 under Heat Treatments

机译:激光粉床融合型号718在热处理下的微观结构和残余应力演化

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摘要

The current work aimed to study the influence of various heat treatments on the microstructure, hardness, and residual stresses of Inconel 718 processed by laser powder bed fusion process. The reduction in residual stresses is crucial to avoid the deformation of the component during its removal from the building platform. Among the different heat treatments, 800 degrees C kept almost unaltered the original microstructure, reducing the residual stresses. Heat treatments at 900, 980, and 1065 degrees C gradually triggered the melt pool and dendritic structures dissolution, drastically reducing the residual stresses. Heat treatments at 900 and 980 degrees C involved the formation of delta phases, whereas 1065 degrees C generated carbides. These heat treatments were also performed on components with narrow internal channels revealing that heat treatments up to 900 degrees C did not trigger sintering mechanisms allowing to remove the powder from the inner channels.
机译:本工作旨在研究不同热处理对采用激光粉末床熔合工艺处理的Inconel 718的显微组织、硬度和残余应力的影响。残余应力的降低对于避免构件从建筑平台上拆除时变形至关重要。在不同的热处理中,800°C几乎保持原始微观结构不变,从而降低了残余应力。900、980和1065摄氏度的热处理逐渐触发熔池和树枝状结构溶解,显著降低残余应力。900℃和980℃的热处理会形成δ相,而1065℃的热处理会生成碳化物。这些热处理也在内部通道狭窄的部件上进行,表明高达900℃的热处理不会触发烧结机制,从而使粉末从内部通道中去除。

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