Study on Microstructure and Properties of Iron-Based Composite Coatings Prepared by High-Velocity Arc Spraying
编号:403 访问权限:仅限参会人 更新:2026-04-02 20:42:06 浏览:49次 张贴报告

报告开始:2026年04月27日 09:00(Asia/Shanghai)

报告时间:20min

所在会场:[Z] 张贴报告 [Z1] 张贴报告

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摘要
Purpose To enhance the corrosion and wear resistance of 3Cr13 stainless steel in seawater by depositing an iron-based composite coating on its surface. Method A high-velocity arc-spraying (HVAS) technique was employed. A flux-cored wire was prepared with 434 stainless steel as the outer sheath and alloy powder (60–80 mesh) as the core filler. The iron-based composite coating was sprayed onto 3Cr13 steel substrates. Surface and cross-sectional morphologies were examined by scanning electron microscopy (SEM), and coating thickness was measured. Hardness was determined with a nano-indenter. Corrosion behavior of both substrate and coating was evaluated in 3.5 wt % NaCl solution using an electrochemical workstation. Tribological performance in 3.5 wt % NaCl solution was tested with a multi-functional tribometer and white-light interferometer; wear tracks were analyzed by SEM and energy-dispersive spectroscopy (EDS). Results Coating thickness was ~385 µm. The microstructure was uniform with well-melted splats, minor phase separation, and a few unmelted particles. Hardness HV0.05 of the iron-based composite coating was ~535. In 3.5 wt % NaCl solution the corrosion potential and current density were –499 mV and 5 µA cm⁻², respectively; corrosion initiated mainly at surface defects. Average steady-state friction coefficients in 3.5 wt % NaCl were 0.590 for the coating and 0.761 for 3Cr13 substrate; corresponding wear rates were 2.04 × 10⁻⁵ and 5.88 × 10⁻⁵ mm³·N⁻¹·m⁻¹. The coating exhibited mild abrasive wear, whereas the substrate showed deep ploughing and more severe abrasive wear. Conclusion High-velocity arc-sprayed iron-based composite coatings significantly improve the wear resistance of 3Cr13 steel in 3.5 wt % NaCl solution, but do not enhance its corrosion resistance.
关键词
Key words: High-Velocity Arc Spraying; Iron-Based Composite Coating; Microstructure and Properties
报告人
翟亚楠
工程师 国标(北京)检验认证有限公司

稿件作者
翟亚楠 国标(北京)检验认证有限公司
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  • 会议日期

    04月26日

    2026

    04月28日

    2026

  • 04月26日 2026

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  • 04月28日 2026

    注册截止日期

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中国机械工程学会
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中国机械工程学会表面工程分会
中国科学院兰州化学物理研究所 润滑材料全国重点实验室
中国航天科技集团兰州空间技术物理研究所
甘肃省化学会
甘肃省材料学会
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