2021
DOI: 10.3390/mi12050581
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Numerical Simulation of Effect of Different Initial Morphologies on Melt Hydrodynamics in Laser Polishing of Ti6Al4V

Abstract: As a surface finishing technique for rapid remelting and re-solidification, laser polishing can effectively eliminate the asperities so as to approach the feature size. Nevertheless, the polished surface quality is significantly sensitive to the processing parameters, especially with respect to melt hydrodynamics. In this paper, a transient two-dimensional model was developed to demonstrate the molten flow behavior for different surface morphologies of the Ti6Al4V alloy. It is illustrated that the complex evol… Show more

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Cited by 7 publications
(3 citation statements)
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References 34 publications
(55 reference statements)
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“…The process of laser manufacturing is complicated, involving the phase transition process such as melting and vaporization of materials, as well as the dynamic evolution process of solidliquid-gas phase, the physical properties of the material change with the position in space and the state in time. In order to simplify the calculation process, the following assumptions are proposed [27][28][29]:…”
Section: Physical Model and Assumptionsmentioning
confidence: 99%
“…The process of laser manufacturing is complicated, involving the phase transition process such as melting and vaporization of materials, as well as the dynamic evolution process of solidliquid-gas phase, the physical properties of the material change with the position in space and the state in time. In order to simplify the calculation process, the following assumptions are proposed [27][28][29]:…”
Section: Physical Model and Assumptionsmentioning
confidence: 99%
“…Li Kai et al [24] studied the effects of three different initial surface contours on laser polishing and found that the initial surface profile was an important factor affecting the final surface roughness of laser polishing. Therefore, the definition of the initial surface is very important in the simulation.…”
Section: Computational Domain and Initial Model Establishment Of The ...mentioning
confidence: 99%
“…Li et al [ 3 ] developed a 2D model of the molten flow behavior during laser polishing, demonstrating the complex evolution of melt hydrodynamics involving heat conduction, thermal convection, thermal radiation, melting, and solidification. The model developed was able to predict that the morphological evolution of different surfaces from rough to smooth in laser polishing could guide the optimization of polishing parameters such as laser power and scanning speed.…”
mentioning
confidence: 99%