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Influence of high power diode laser surface melting on the pitting corrosion resistance of type 316L stainless steel

机译:大功率二极管激光表面熔化对316L不锈钢抗点蚀性能的影响

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摘要

High Power Diode Lasers (HPDL) are becoming more and more attractive for industrial materials processing because of their high efficiency, low running costs, small sizes and low weight. Surface melting experiments have been carried out on 316L steel with a 1 kW HPDL, with application to modify its pitting corrosion resistance in NaCl 0.05 M. Surface modifications have been investigated with optical microscopy for the microstructure, microprobe analysis for the chemical content and X Ray Diffraction for phase transformations and residual stresses. Heat conduction characteristics, analysed with a 2D Finite element code, have driven to a 28% calculated absorption of the laser light generating nearly 400 μm melted depth. A refinement and homogenization of structure together with δ-ferrite transformation and the dissolution of inclusions was found in the melted thickness, driving to enhanced pitting resistance (nearly + 0.2 V on the pitting potential values, and factor 2 decrease of the passive current density). This pitting resistance, investigated at different depths below the surface, was found to be little affected by the δ ferrite content (6% estimated value), and the fineness of the microstructure, but depreciated by the surface state without post-polishing. Therefore, it is believed that localized corrosion improvements can be mainly attributed to the dissolution of Al-base and Mn-base detrimental inclusions, despite the generation of up to 6% δ ferrite susceptible to drive to enhanced galvanic couplings with γ phase.
机译:由于高功率二极管激光器(HPDL)的高效率,低运行成本,小尺寸和轻巧性,在工业材料加工中正变得越来越有吸引力。已经对具有1 kW HPDL的316L钢进行了表面熔化实验,并对其进行了修改,以改善其在0.05 M的NaCl中的耐点蚀性。已通过光学显微镜研究了表面改性的微观组织,化学探针分析的化学含量和X射线相变和残余应力的衍射。用2D有限元代码分析的热传导特性已将计算出的激光吸收率提高到28%,从而产生近400μm的熔化深度。在熔化的厚度中发现了结构的细化和均质化以及δ-铁素体相变和夹杂物的溶解,从而提高了抗点蚀性(点蚀电位值几乎+ 0.2 V,无源电流密度降低了2倍) 。在表面以下不同深度处研究的抗点蚀性几乎不受δ铁素体含量(估计值的6%)和微观结构细度的影响,但受表面状态的影响而没有经过后抛光处理。因此,尽管产生了高达6%的δ铁素体易于驱动与γ相电偶合的驱动,但据信局部腐蚀的改善主要归因于Al基和Mn基有害夹杂物的溶解。

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  • 来源
    《Journal of Materials Science》 |2002年第17期|3715-3723|共9页
  • 作者单位

    Coopération Laser Franco-Allemande (CLFA);

    Coopération Laser Franco-Allemande (CLFA);

    Laboratoire Roberval Université de Technologie de Compiégne;

    Laboratoire Roberval Université de Technologie de Compiégne;

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