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Enhanced temperature uniformity by tetrahedral laser heating

机译:通过四面体激光加热提高温度均匀性

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摘要

emperature profile on a spherical sample that is heated by laser beams in various geometries while processed in vacuum is analyzed. Sample heating by one or four laser beams was considered. An analytical expression was derived for directional sample heating cases. It suggests an enhanced temperature uniformity over the samples when heated with four diffuse laser beams arranged in a tetrahedral geometry. This was experimentally verified by heating a spherical stainless steel sample by laser beams. Both the calculated and experimentally determined temperature variations over the sample suggest that use of diffuse four beams arranged in tetrahedral geometry would be effective in reducing temperature variation to within 1 K. The enhancement in the temperature uniformity for four diffuse beams arranged in a tetrahedral geometry by a factor of 50 over a single focused beam is promising to accurately measure of thermophysical properties. This drastic improvement in temperature uniformity might even enable atomic diffusion measurements in the undercooled liquid states of the bulk glass forming alloys since Marangoni and gravity driven convection will be substantially reduced.
机译:分析了在真空中处理的各种几何形状的激光束加热后的球形样品的温度分布。考虑通过一或四个激光束加热样品。导出了定向样品加热情况的解析表达式。这表明当用四面体几何形状排列的四个扩散激光束加热时,样品的温度均匀性增强。通过用激光束加热球形不锈钢样品进行实验验证。计算得出的和通过实验确定的样品温度变化都表明,使用以四面体几何形状排列的漫射四束光束可以有效地将温度变化降低到1 K以内。通过将四面体几何形状排列的四个漫射束的温度均匀性提高了单聚焦光束的50倍系数有望精确测量热物理性质。由于Marangoni和重力驱动的对流将大大减少,因此温度均匀性的这种显着提高甚至可以在块状玻璃成形合金的过冷液态下进行原子扩散测量。

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