Article ID Journal Published Year Pages File Type
733388 Optics & Laser Technology 2016 8 Pages PDF
Abstract

•Dense layer consisting of fine size grains and WC particles are formed in surface region.•Formation of hematite (Fe2O3) at surface and grain size variations lowers magnetic strength.•Laser treatment improves corrosion resistance significantly.•Laser treatment enhances surface hydrophobicity and results in superhydrophobic surface.

Laser treatment of neodymium magnet (Nd2Fe14B) surface is carried out under the high pressure nitrogen assisting gas. A thin carbon film containing 12% WC carbide particles with 400 nm sizes are formed at the surface prior to the laser treatment process. Morphological and metallurgical changes in the laser treated layer are examined using the analytical tools. The corrosion resistance of the laser treated surface is analyzed incorporating the potentiodynamic tests carried out in 0.05 M NaCl+0.1 M H2SO4 solution. The friction coefficient of the laser treated surface is measured using the micro-scratch tester. The wetting characteristics of the treated surface are assessed incorporating the sessile water drop measurements. It is found that a dense layer consisting of fine size grains and WC particles is formed in the surface region of the laser treated layer. Corrosion resistance of the surface improves significantly after the laser treatment process. Friction coefficient of laser treated surface is lower than that of the as received surface. Laser treatment results in superhydrophobic characteristics at the substrate surface. The formation of hematite and grain size variation in the treated layer slightly lowers the magnetic strength of the laser treated workpiece.

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Physical Sciences and Engineering Engineering Electrical and Electronic Engineering
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