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Two-dimensional Numerical Modelling Of Radiation Transfer In Powder Beds At Selective Laser Melting

机译:选择性激光熔化过程中粉末床辐射传输的二维数值模拟

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The radiation transfer equation is numerically solved in a layer of homogeneous absorbing scattering medium, which is equivalent to the powder bed, irradiated with a normally incident laser beam of an axially symmetric profile to estimate the spatial distribution of the deposited thermal energy. The scattering and lateral transport of laser radiation is shown to decrease the intensity of the heat source at the axis and to produce its weak tail around the laser spot. This decreases the maximum temperature in the powder bed. Narrowing the laser beam to increase the precision of selective laser melting becomes ineffective when the beam radius approaches the extinction length in the powder because it does not adequately narrow the zone of energy deposition.
机译:辐射传递方程在一层均匀吸收的散射介质中进行数值求解,该介质等效于粉末床,用轴向对称轮廓的法向入射激光束辐照,以估算沉积的热能的空间分布。显示出激光辐射的散射和横向传输会降低热源在轴上的强度,并在激光点周围产生其弱尾巴。这降低了粉末床中的最高温度。当光束半径接近粉末中的消光长度时,使激光束变窄以提高选择性激光熔化的精度变得无效,这是因为其不足以使能量沉积区域变窄。

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