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首页> 外文期刊>Journal of Laser Applications >Direct measurements of laser absorptivity during metal melt pool formation associated with powder bed fusion additive manufacturing processes
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Direct measurements of laser absorptivity during metal melt pool formation associated with powder bed fusion additive manufacturing processes

机译:直接测量与粉末床熔合添加剂制造工艺相关的金属熔池形成过程中的激光吸收率

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Direct calorimetric measurements are used to study the effective optical absorptivity at 1070 nm laser wavelength for bulk and powder-coated discs of industrially relevant metals. Effective absorptivity is plotted as a function of nominal laser power from 30 up to 600 W for scanning velocities of 100, 500, and 1500 mm/s. The absorptivity versus power curves of the bulk materials typically shows a reduction in effective absorptivity until the beginning of the formation of a keyhole-type surface depression that is associated with an increased absorption of the laser light in the growing keyhole until a saturation value is reached. For powders, an additional plateau of higher absorptivity can be observed for low laser power, until the curves qualitatively collapse when full melting of the powder tracks is achieved. It is shown that, under conditions associated with laser powder-bed fusion additive manufacturing, absorptivity values can vary greatly, and differ from both room temperature powder layer measurements and liquid metal estimates from the literature. (C) 2018 Laser Institute of America.
机译:直接量热法测量用于研究工业相关金属的散装和粉末涂层圆盘在1070 nm激光波长下的有效光学吸收率。对于100、500和1500 mm / s的扫描速度,将有效吸收率绘制为从30到600 W的标称激光功率的函数。块状材料的吸收率与功率曲线通常显示有效吸收率降低,直到开始形成锁孔型表面凹陷为止,这与增长的锁孔中的激光吸收增加有关,直到达到饱和值为止。 。对于粉末,对于低激光功率,可以观察到更高吸收率的另一个平台,直到当粉末轨迹完全熔化时曲线定性地塌陷。结果表明,在与激光粉末床熔融增材制造相关的条件下,吸收率值可能会发生很大变化,并且与室温粉末层测量值和文献中的液态金属估算值都不同。 (C)2018美国激光学会。

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