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Influence of process gas during powder bed fusion with laser beam of Zr-based bulk metallic glasses

机译:Zr基散装金属玻璃激光束粉床融合过程中工艺气体的影响

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摘要

Zr-based bulk metallic glasses offer a unique combination of hardness, high strength, and high elastic limits. Yet, manufacturable size and complexity are limited due to the required cooling rates. Short laser-material interaction times together with layer-wise and selective energy input allows the laser powder bed fusion process to largely overcome those restrictions. Still, the complex process-material interactions inhere numerous uncertainties. In the present work, additively manufactured Zr-based bulk metallic glasses produced under three different process gases are investigated by calorimetry, x-ray diffraction, and bending tests. A strong dependence between the thermophysical properties, flexural strength, and the applied atmosphere is found.
机译:Zr系列的散装金属眼镜提供了硬度,高强度和高弹性极限的独特组合。然而,由于所需的冷却速率,可制造的尺寸和复杂性受到限制。短的激光材料相互作用时间与层面和选择性能量输入一起允许激光粉床融合过程在很大程度上克服这些限制。仍然,复杂的过程 - 材料相互作用是许多不确定因素。在本工作中,通过量热法,X射线衍射和弯曲试验研究了在三种不同工艺气体下产生的加剧制造的ZR基体金属玻璃。发现热物理性质,弯曲强度和应用气氛之间的强烈依赖。

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