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The review of literarture reveals that hard computing based modeling, viz., finite element method (FEM) has limited applications due to difficulty in realistic modeling of laser beam-work surface interaction and unavailability of non-linear material properties at higher temperatures.
Modeling of laser welding of stainless sheet butt joint is performed using backpropagation trained neural network.
Thermo-mechanical modeling of laser bending process involves complex interaction between laser process conditions, material properties and worksheet geometry.
A few attempts have been reported on artificial neural network (ANN) based modeling of laser bending process.
Absorptivity predicted by the ANN is used as input to the FEM model for accurate modeling of laser bending process.
Firstly, the heat conduction modeling of laser irradiated metal thin film is presented, and the analytical solutions of temperature are obtained by using Laplace transformation.
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Figure 4a, b, c displays the finite element modeling of laser-annealed Cu films.
Modeling of laser-plasma wakefield accelerators in an optimal frame of reference [1] has been shown to produce orders of magnitude speed-up of calculations from first principles.
The modeling and simulation of laser surface processing enables the prediction of the process response at certain levels of input and control parameters.
JUAN CARLOS TORRES has a hard-to-find skill: he knows how to disassemble, clean, refurbish and test more than 60 models of laser printer cartridges, each with its own arrangement of gears, screws, drums and rollers.
A model of laser pulse generating is set up.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com