张聚臣  (副教授)

硕士生导师

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入职时间:2017-04-13

所在单位:机械制造工程系

学历:博士研究生毕业

办公地点:合肥工业大学屯溪路校区机械楼

性别:男

学位:博士学位

在职信息:在职

毕业院校:南京航空航天大学

学科:机械工程
机械制造及其自动化
机械电子工程
机械设计及理论
机械工程其他专业
车辆工程

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Comparative investigations on the dissolution behaviors of GH4169D in different electrolytes and ECM process of narrow blisk channel

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发表刊物:The International Journal of Advanced Manufacturing Technology

关键字:GH4169D superalloy Electrochemical machining Electrochemical dissolution behavior Passive film

摘要:GH4169D alloy is a newly developed superalloy with promising applications in the critical components of aero-engines. Electrochemical machining (ECM) represents one of the primary methods for manufacturing these components. The electrochemical dissolution characteristics form the basis for determining processing parameters in ECM. In this study, the key characteristics of the passivation films on GH4169D alloy, including morphology, chemical composition, and corrosion resistance, were systematically analyzed solutions using polarization curves, electrochemical impedance spectroscopy (EIS), scanning electron microscopy (SEM), and X-ray photoelectron spectroscopy (XPS). The results demonstrate that the passivation film formed in NaNO3 solution exhibits a denser and more uniform structure with superior corrosion resistance. Furthermore, the microstructure and surface roughness of GH4169D alloy under varying current densities were investigated. When the current density is below 40 A/cm², the surface quality improves with increasing current density; however, beyond this threshold, further improvements in surface quality become negligible. Subsequently, the electrochemical machining process for blisk channels (hereafter referred to as channel ECM) was conducted. The best machining performance under the investigated parameters can be achieved where an electrolyte of 10% NaNO3, a cathode feed rate of 0.5 mm/min, a processing voltage of 25 V, and a pulse power duty ratio of 50%. Blisk channels with an average width of 3.55 mm, a taper angle of 1.08°, and a surface roughness Ra of 0.325 μm at the hub were successfully fabricated. Finally, dissolution models were established to describe the dissolution behavior of GH4169D in NaNO3 and NaCl solutions.

合写作者:练忠浩,曹倩楠,耿永秀,宋莎莎

论文类型:期刊论文

通讯作者:张聚臣

学科门类:工学

文献类型:J

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发表时间:2025-12-05

收录刊物:SCI

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