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激光表面处理马氏体不锈钢的表征

Characterization of a Laser Surface-Treated Martensitic Stainless Steel.

作者信息

Al-Sayed S R, Hussein A A, Nofal A A, Hassab Elnaby S I, Elgazzar H

机构信息

National Institute of Laser Enhanced Sciences (NILES), Cairo University, Giza 12611, Egypt.

Faculty of Engineering, Cairo University, Giza 12611, Egypt.

出版信息

Materials (Basel). 2017 May 29;10(6):595. doi: 10.3390/ma10060595.

Abstract

Laser surface treatment was carried out on AISI 416 machinable martensitic stainless steel containing 0.225 wt.% sulfur. Nd:YAG laser with a 2.2-KW continuous wave was used. The aim was to compare the physical and chemical properties achieved by this type of selective surface treatment with those achieved by the conventional treatment. Laser power of different values (700 and 1000 W) with four corresponding different laser scanning speeds (0.5, 1, 2, and 3 m•min-1) was adopted to reach the optimum conditions for impact toughness, wear, and corrosion resistance for laser heat treated (LHT) samples. The 0 °C impact energy of LHT samples indicated higher values compared to the conventionally heat treated (CHT) samples. This was accompanied by the formation of a hard surface layer and a soft interior base metal. Microhardness was studied to determine the variation of hardness values with respect to the depth under the treated surface. The wear resistance at the surface was enhanced considerably. Microstructure examination was characterized using optical and scanning electron microscopes. The corrosion behavior of the LHT samples was also studied and its correlation with the microstructures was determined. The corrosion data was obtained in 3.5% NaCl solution at room temperature by means of a potentiodynamic polarization technique.

摘要

对含0.225 wt.%硫的AISI 416可加工马氏体不锈钢进行了激光表面处理。使用了一台2.2千瓦连续波的Nd:YAG激光器。目的是将这种选择性表面处理所获得的物理和化学性能与传统处理所获得的性能进行比较。采用不同值(700和1000瓦)的激光功率以及四种相应不同的激光扫描速度(0.5、1、2和3米·分钟⁻¹),以达到激光热处理(LHT)样品在冲击韧性、磨损和耐腐蚀性方面的最佳条件。与传统热处理(CHT)样品相比,LHT样品的0°C冲击能量显示出更高的值。这伴随着硬表面层和软内部母材的形成。研究了显微硬度,以确定硬度值相对于处理表面下深度的变化。表面的耐磨性得到了显著提高。使用光学显微镜和扫描电子显微镜对微观结构进行了表征。还研究了LHT样品的腐蚀行为,并确定了其与微观结构的相关性。通过动电位极化技术在室温下的3.5%氯化钠溶液中获得了腐蚀数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94ff/5553412/1d84364c7951/materials-10-00595-g001a.jpg

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