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转盘雾化制备铝合金粉末过程中的液体铺展和粒径分布研究

LI Long PENG Lei ZHAO Wei

实验流体力学2025,Vol.39Issue(6):34-43,10.
实验流体力学2025,Vol.39Issue(6):34-43,10.DOI:10.11729/syltlx20230059

转盘雾化制备铝合金粉末过程中的液体铺展和粒径分布研究

Study of liquid spreading and particle size distribution during the preparation of aluminum alloy powder by rotary disc atomization

LI Long 1PENG Lei 1ZHAO Wei1

作者信息

  • 1. State Key Laboratory of High-Temperature Gas Dynamics,Institute of Mechanics,Chinese Academy of Sciences,Beijing 100190,China||School of Engineering Science,University of Chinese Academy of Sciences,Beijing 100049,China
  • 折叠

摘要

Abstract

An experimental setup using high temperature rotating disc centrifugal atomization was developed to study the preparation technology of the aluminum alloy powder for additive manufacturing with high sphericity,high particle size concentration and no satellite powder.The flow spreading pattern of the aluminum liquid was investigated,and four typical regions were found to exist on the surface of the disc,which were named and analyzed.The microstructures of the 1 060 and AlSi10Mg powder samples were analyzed by scanning electron microscopy.The powder particle size distribution curves for typical experiments were analyzed by fitting a single-peak Extreme model.A shift in the splitting mode caused by a decrease in the flow rate of the aluminum liquid was investigated,which was effective in increasing the fines rate and reducing the median diameter.The effects of three different disk configurations,plane,tapered and curved,on the median diameter were compared.The effect law of the rotational speed and disc diameter on the median diameter of 1 060 aluminum powder was analyzed,and a new theoretical formula of the particle size was obtained by regression analysis.

关键词

多相流/粉体/制备/粒径分布/转盘/雾化/铝合金

Key words

multiphase flow/powders/preparation/size distribution/rotary disc/atomization/aluminum alloy

分类

矿业与冶金

引用本文复制引用

LI Long,PENG Lei,ZHAO Wei..转盘雾化制备铝合金粉末过程中的液体铺展和粒径分布研究[J].实验流体力学,2025,39(6):34-43,10.

基金项目

高温气体动力学国家重点实验室青年基金项目(QN20210004) (QN20210004)

实验流体力学

OA北大核心

1672-9897

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