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The range of laser surface processes applied to light alloys includes simple remelting of the alloy surface; remelting with the addition of alloying elements or ceramic particles; cladding with a layer of material having different properties; and shock processing to create residual stresses in the surface.
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Slurry erosion characteristics of laser surface processed commercial grade nickel aluminium bronze (NAB), treated with a pulsed Nd-YAG laser are discussed here.
Therefore a novel scanner based inline metrology system has been developed to control the laser surface structuring process by a process monitoring software.
It could be shown experimentally that magnetic fields could assist laser surface treatment processes beneficially if higher beam powers were coupled in.
The quality of laser surface alloying process depends on many process parameters, such as power density and beam velocity.
Since the laser surface alloying process has non-linear coupling and time varying characteristics, it is difficult to establish an appropriate process model for this multi-input and multi-output (MIMO) system.
This paper reports the results concerning the simulation of a laser surface hardening process of a cylindrical surface.
A laser surface nitriding process was applied to a Ti 6Al 4V alloy to obtain a surface layer consisting of TiN dendrites and a titanium alloy matrix.
Such findings and characterization methods employed in combination will not only enable one to better understand the effects of the laser-ceramic interaction, but will also contribute to the development of the laser surface treatment process.
The objective of this paper is to investigate hardening characteristics of S45C medium carbon steel in a laser surface hardening process using a high power Nd YAG laser with a continuous wave.
Formation of Fe Al composite thick layers by using laser surface alloying process with mixture of Al and Fe powders has been investigated to improve the surface hardness and the wear resistance of A5052 commercial Al Mg alloy substrate.
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