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Heat Treatment of IN 718 Produced by Laser Powder Bed Fusion Process: Effect of Thickness on the Microstructure Characteristics

机译:通过激光粉末融合工艺生产的718中的热处理:厚度对微观结构特性的影响

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Laser powder bed fusion (L-PBF) is an additive manufacturing (AM) technique through which net shape/near-net components are built by selectively melting powder, one layer at a time, with a focused laser beam. The as-built microstructures have a great impact on the phase transformation and precipitation behavior during subsequent heat treatment. This study was directed to understand the effect of component thickness, in the case of complex shape components, on the microstructure, type of precipitates of L-PBF IN 718 in as-built and heat-treated conditions. Standard heat treatment cycles per ASTM F3055 and AMS 2774D were investigated. This work shows that microstructure, grain size, types of precipitates, and formed phases of components produced by L-PBF in the as-built condition and after heat treatment are profoundly different with different component thicknesses. In order to obtain the optimal microstructure and mechanical properties, specific heat treatments are necessary due to the complexity of the components produced.
机译:激光粉床融合(L-PBF)是一种添加剂制造(AM)技术,通过该技术通过该技术通过该技术通过选择性地熔化粉末,一次层,一层具有聚焦激光束,构建净形状/近净部件。随后的热处理期间,嵌造的微观结构对相变和沉淀行为产生了很大的影响。该研究旨在了解组件厚度在复杂形状组分的情况下的组成厚度在718中的沉淀物的沉淀物的情况下,在718中在嵌造和热处理条件下的情况下。研究了每ASTM F3055和AMS 2774D的标准热处理循环。该作品表明,在嵌造条件下,通过L-PBF和热处理后的L-PBF产生的组分和形成的组分的组织阶段和形成的阶段的显微组织和形成的阶段具有不同的组分厚度。为了获得最佳的微观结构和机械性能,由于产生的组分的复杂性,必须采用特定的热处理。

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