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作 者:Wei Liu Yan Wang Li-xiong Han Ying-kang Wei Hui-ping Tang Shi-feng Liu
机构地区:[1]School of Metallurgical Engineering,Xi'an University of Architecture and Technology,Xi'an 710055,Shaanxi,China [2]School of Engineering,Zhejiang University City College,Hangzhou 310015,Zhejiang,China
出 处:《Journal of Iron and Steel Research International》2024年第4期924-932,共9页
基 金:funded by the National Natural Science Foundation of China(Grant No.52104341);National KeyR&DProgram(GrantNos.2021YFB37019022 and 2021YFB3701903);Shaanxi Province Natural Science Basic Research Program(Grant Nos.2022JM-259 and 2022JQ-367);Project Funded by China Postdoctoral Science Foundation(Grant No.2021M702554).
摘 要:The oxygen content of metal powder is decisive for the recyclability of powder.The research on the effect of oxygen content on powder properties and material formability has practical significance for economical production with additive manufacturing while preventing the waste of resources.Here,we deliberately oxidized the powder by baking at high temperature to increase the oxygen content in the powder and gave the calculation method of the oxygen content in the powder oxidation film.The majority of oxygen element was found in the oxide particles in the powder and the oxide flm on the powder surface,which did affect the flowability of the powder.It is worth noting that the increase in the oxygen content does not change the phase of H13 steel,but it can promote the molten pool flow and obtain a smoother surface.The increase in the oxygen content in the powder is not the decisive factor for the formability and defects of the printed samples.It is the combined effect of the powder deformation,the increase in the oxygen content,and the impurity pollution after repeated use,which leads to the limitation of repeated utilization of the powder.
关 键 词:Additive manufacturing Electron beam melting H13 steel powder-Powder oxidation
分 类 号:TG142[一般工业技术—材料科学与工程]
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