Moldovan Edit Roxana, Concheso Doria Carlos, Ocaña José Luis, Istrate Bogdan, Cimpoesu Nicanor, Baltes Liana Sanda, Stanciu Elena Manuela, Croitoru Catalin, Pascu Alexandru, Munteanu Corneliu, Tierean Mircea Horia
Materials Engineering and Welding Department, Transilvania University of Brasov, 29 Eroilor Blvd., 500036 Brasov, Romania.
BSH Electrodomésticos España, S.A., Avda. de la Industria 49, 50016 Zaragoza, Spain.
Materials (Basel). 2022 Jun 29;15(13):4580. doi: 10.3390/ma15134580.
Laser surface texturing (LST) is a method to obtain micro-structures on the material's surface for improving tribological performances, wetting tuning, surface treatment, and increasing adhesion. The material selected for LST is AISI 430 ferritic stainless steel, distinguished by the low cost in manufacturing, corrosion resistance, and high strength at elevated temperature. The present study addresses the morphology of new pattern designs (crater array, ellipse, and octagonal shapes). The patterns are applied on the stainless-steel surface by a non-contact method with high quality and precision nanosecond pulsed laser equipment. The investigation of laser parameter influence on thermal affected area and micro-structures is accomplished by morphological and elemental analysis (SEM + EDX). The parameters of the laser micro-patterning have a marked influence on the morphology, creating groove-type sections with different depths and recast material features. From the SEM characterization, the highest level of recast material is observed for concentric octagon LST design. Its application is more recommended for the preparation of the metal surface before hybrid welding. Additionally, the lack of the oxygen element in the case of this design suggests the possible use of the pattern in hybrid joining.
激光表面织构化(LST)是一种在材料表面获得微观结构以改善摩擦学性能、调控润湿性、进行表面处理及增强附着力的方法。用于LST的材料是AISI 430铁素体不锈钢,其特点是制造成本低、耐腐蚀且在高温下具有高强度。本研究探讨了新型图案设计(凹坑阵列、椭圆形和八边形)的形貌。这些图案通过使用高质量、高精度的纳秒脉冲激光设备以非接触方式施加在不锈钢表面。通过形貌和元素分析(扫描电子显微镜+能谱仪)完成对激光参数对热影响区和微观结构影响的研究。激光微图案化的参数对形貌有显著影响,会产生具有不同深度的沟槽型截面和重铸材料特征。从扫描电子显微镜表征来看,同心八边形LST设计的重铸材料水平最高。在混合焊接前的金属表面制备中,更推荐应用这种设计。此外,这种设计情况下氧元素的缺失表明该图案在混合连接中可能具有应用价值。