首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of heat treatment on the microstructural evolution and mechanical properties of GH4099 additive-manufactured by directed energy deposition
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Effect of heat treatment on the microstructural evolution and mechanical properties of GH4099 additive-manufactured by directed energy deposition

机译:热处理对GH4099添加剂制造的微观结构演化与机械性能的影响

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摘要

For additive-manufactured nickel-based superalloy, heat treatment is an effective method to modify the microstructure and mechanical properties. The strength and ductility of as-deposited GH4099 have been improved via heat treatment. The results indicate that the microstructure of as-deposited sample was mainly composed of epitaxial growth columnar grains. And the (gamma + gamma') eutectic phase formed at the terminal solidification stage because of the segregation of Al and Ti elements. After solution treatment at 1120 degrees C for 2 h, the columnar dendrites were replaced by smaller equiaxed grains with twin boundaries due to the occurrence of recrystallization. The gamma' phase precipitated in the matrix after the aging treatment at 800 degrees C for 8 h. By comparing the tensile properties at room temperature of three states samples, it could be found that the solution treated samples had the lowest strength with the highest plasticity, while the solution-aging treated samples had the best performance with high strength and ductility. After aging treatment, though the dislocation density decreased after solution treatment, the precipitated gamma' phase could block dislocation movement to improve the strength of GH4099. Additionally, the formation of refine equiaxed grains and twin boundaries promoted ductility to some degree during the tensile process. (C) 2019 Elsevier B.V. All rights reserved.
机译:对于添加剂制造的镍基超级合金,热处理是修改微观结构和机械性能的有效方法。如此沉积的GH4099的强度和延展性已经通过热处理提高。结果表明,如此沉积的样品的显微组织主要由外延生长的柱状晶粒组成。和形成在所述终端凝固阶段(γ-+伽马')共晶相,因为Al和Ti元素的偏析的。在1120摄氏度2小时固溶处理后,柱状枝晶通过用孪晶界更小的等轴晶粒,由于再结晶的发生替换。伽马”相沉淀在基体中在800℃下时效处理8小时后。通过比较在三种状态的样品室温下的拉伸性能,可以发现的是,溶液处理的样品具有最高的可塑性的最低强度,同时将该溶液老化处理的样品有高的强度和延展性的最佳性能。时效处理,虽然溶体化处理后的位错密度降低后,将沉淀的γ”相可以阻止位错运动,以提高GH4099的强度。此外,细化的形成等轴晶粒和双晶界中的拉伸过程促进延展性到一定程度。 (c)2019 Elsevier B.v.保留所有权利。

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