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Enhanced mechanical properties and deformation mechanisms in DED Inconel 625 via printing path switching

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Taylor & Francis Group2025-05-12 更新2026-04-16 收录
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https://tandf.figshare.com/articles/dataset/Enhanced_mechanical_properties_and_deformation_mechanisms_in_DED_Inconel_625_via_printing_path_switching/28573166/1
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资源简介:
In this work, the effects of printing path switching (0° and 90°) at high linear energy density on the grain structure transition and mechanical properties of directed energy deposition-arc (DED-Arc) Inconel 625 alloys were explored. Microstructural analysis on the DED-Arc 625 with near-equiaxed grains under tensile loading revealed that the deformation initially occurs through planar dislocation glide, followed by the formation of dislocation walls and ‘locking-clamping' structures, which contribute to strain hardening. The interlayer interfaces did not induce adverse effects on mechanical performance. Additionally, the near-equiaxed grain structure maintained superior mechanical properties at elevated temperatures up to 700 °C. This work explores the impact of printing path switching on the grain structure transition and mechanical properties of Inconel 625 alloy manufactured by DED-Arc. The deformation mechanisms and the influence of layer interfaces on the performance of DED-Arc Inconel 625 with near-equiaxed grains were examined and the high temperature performance of the fabricated components was evaluated.
提供机构:
Zhao, Y.H.; Shen, Jiajia; Dong, W.; Cheng, Y.; Li, J.Y.; Oliveira, J.P.; Yuan, S.Y.; Wang, K.H.; Zhang, Y.
创建时间:
2025-03-11
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