temperature distribution analysis in a laser heating with different values of cross section and beam intensities
نویسندگان
چکیده
the rapid melting of a semi- infinite body due to the absorption of a cw laser beam radiation has been studied. the enthalpy technique for the solution of phase change problems has been used in an explicit finite difference form to calculate the transient temperature distribution in the semi-infinite body and the growth rate of the melt pool. the technique has been modified so that it is not necessary to assign a constant temperature, tm, to the mesh element that contains the melt front. instead, a new value of temperature is calculated for the grid point at each time step by incorporating the energy boundary condition at the solid- liquid interface. calculations have been carried out for laser beam with circular and elliptical profile and for a range of material translational speeds. the numerical results were compared with the experimental data. increasing the translational speed causes the heat affected zone and the size and shape of melt pool to become smaller.
منابع مشابه
Temperature Distribution of Particles in a Laser Beam
This article studies the particle temperature distribution depending on the laser radiation power and the particle’s trajectory and velocity. The uneven heating of particles moving in the laser radiation field is identified. The regimes of laser heating without melting, with partial melting, and with complete particle melting are considered.
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عنوان ژورنال:
international journal of advanced design and manufacturing technologyجلد ۱، شماره ۲، صفحات ۲۳-۳۴
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