首页|导流管参数对真空紧耦合气雾化法制备Fe-Cr合金粉末的影响

导流管参数对真空紧耦合气雾化法制备Fe-Cr合金粉末的影响

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采用真空紧耦合气雾化法制备Fe-Cr合金粉末,研究了导流管直径与导流管伸出长度对Fe-Cr合金粉末粒度分布、收得率、中位粒径(D50)的影响。结果表明,在其他工艺参数不变的情况下,当导流管直径从 4。5 mm增大到 6。0 mm时,Fe-Cr合金粉末累积粒度分布曲线右移,中位粒径增大,细粉收得率减小,粉末流动性减小,松装密度减小;当导流管伸出长度由2。0 mm增加到 2。5 mm时,Fe-Cr合金粉末累积粒度分布曲线左移,中位粒径减小,细粉收得率增加,粉末流动性增加,松装密度升高。综上所述,雾化压力 3。8 MPa,过热度 250℃,导流管直径 4。5 mm,导流管伸出长度 2。5 mm,制备得到的Fe-Cr合金粉末综合性能最优。
Effect of melt delivery nozzle parameters on Fe-Cr alloy powders prepared by vacuum close-coupled gas atomization
Fe-Cr alloy powders were prepared by vacuum close-coupled gas atomization technology.The effects of the diameter and protrusion length of the melt delivery nozzle on the size distribution,yield,and median particle size(D50)of the Fe-Cr alloy powders were studied.The results show that,when the diameter of the melt delivery nozzle increases from 4.5 mm to 6.0 mm,the size accumulation distribution curve of the Fe-Cr alloy powders shifts to the right,the median particle size increases,the fine powder yield decreases,the powder fluidity decreases,and the apparent density decreases.When the protrusion length of the melt delivery nozzle increases from 2.0 mm to 2.5 mm,the size accumulation distribution curve of the Fe-Cr alloy powders shifts to the left,the median particle size decreases,the fine powder yield increases,the powder fluidity increases,and the apparent density increases.Combined with the experimental data analysis,the best comprehensive properties of the Fe-Cr alloy powders are obtained under the condition as the atomization pressure of 3.8 MPa,the superheat of 250℃,the nozzle diameter of 4.5 mm,and the nozzle protrusion length of 2.5 mm.

vacuum close-coupled gas atomizationFe-Cr alloy powdersmelt delivery nozzlepowder performance

苏才津、孙耀宁、董开基、尹燕、张瑞华、姜立恒

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新疆大学机械工程学院,乌鲁木齐 830047

兰州理工大学省部共建有色金属先进加工与再利用国家重点实验室,兰州 730050

阳江市五金刀剪产业技术研究院,阳江 529533

中国钢研科技集团有限公司,北京 100082

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真空紧耦合气雾化法 Fe-Cr金属粉末 导流管 粉末性能

新疆维吾尔自治区科技援疆项目计划资助项目海上风电高速激光熔覆防腐涂层制备工艺及应用资助项目

2020E0264SDZX2020009

2024

粉末冶金技术
中国机械工程学会,中国金属学会,中国有色金属学会,北京科技大学

粉末冶金技术

CSTPCD北大核心
影响因子:0.341
ISSN:1001-3784
年,卷(期):2024.42(1)
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