The article discusses the modern method of increasing the corrosion and wear resistance of machine parts by diffusion saturation from the environment of fusible melts. A review of ongoing studies is on the multicomponent diffusion saturation of steel samples, including refractory metals. The results of the studies will be the basis for the formation of a coating with increased resistance to corrosion and strength of the surface layer.
Laser marking of products and details is used more and more wide in different production areas, because it has undisputable advantages in comparison with other marking methods. Action of laser beam on the surface of marking product is the principal feature of laser marking. It is accompanied with local heating of this surface and its partial melting together with material evaporation from the surface contact point. Influence of laser impulse action on efficiency of marking on the surface of machine-building details is examined in this work. The samples of 08Kh18N10 steel were used as material. Marking was conducted by the system "MiniMarker 2-20A4", QR code was used as a marker. The marking parameters were optimized via the method of experimental design. The optimal marking procedure for getting maximal contrast of QR code was calculated and experimentally confirmed. Steel surface roughness was analyzed using profilograms. Contrasting effect and roughness of code were determined and relationship between these parameters was revealed. Contrast effect of marking increases with elevation of roughness. However, roughness has less input in increase of contrast effect comparing with colour hue of the surface of an information block and substrate. The link between surface roughness and contrast effect of marking is shown. Possibility of contrast effect assessment of QR code using profilometer is suggested.
In this work, the formation of a two-dimensional code, NBC, using laser marking is considered. A complete factorial analysis was carried out to determine the optimal laser irradiation parameters for obtaining the most contrasting image of code cells on a metal surface (steel AISI 321) using laser marking. The regression equation is obtained, the coefficients of the equation are checked for signification, and the equation is checked for adequacy, an interpretation of the equation coefficients is given, the optimal laser marking parameters are obtained.
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