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Laser Powder Bed Fusion of Pure Tungsten: Effects of Process Parameters on Morphology Densification Microstructure

机译:激光粉床融合纯钨:工艺参数对形态致密化微观结构的影响

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摘要

Tungsten has been widely used in many industrial fields due to its excellent properties. However, owing to its characteristics of inherent brittleness at room temperature and high melting point, it is difficult to prepare tungsten parts with high complexity via traditional methods. In the present work, tungsten samples were prepared by laser powder bed fusion. The influence of each process parameter including laser power, scanning speed, and hatch spacing on the surface morphology, densification, and microstructure of tungsten samples was systematically investigated. The results showed that the use of the appropriate parameters, especially high laser power, can effectively improve the surface quality and obtain a dense surface. The tungsten samples with a relative density of 98.31% were obtained with optimized parameter combinations: a laser power of 300 W, scanning speed of 400 mm/s, and hatch spacing of 0.08 mm. Compared with scanning speed and hatch spacing, the laser power had a more obvious influence on the relative density. Additionally, for the grain morphology by microstructure inspection, elongated curved grains gradually transformed into fine straight columnar grains as the scanning speed increased. The hatch spacing would change the grain morphology slightly but had no significant effect on the grain size.
机译:由于其优异的性能,钨已广泛应用于许多工业领域。然而,由于其在室温和高熔点的固有脆性的特征,因此难以通过传统方法制备具有高复杂性的钨部件。在本作工作中,通过激光粉床融合制备钨样品。系统地研究了每个过程参数的影响,包括激光功率,扫描速度和舱口间距对钨样品的表面形态,致密化和微观结构进行了系统。结果表明,使用适当的参数,尤其是高激光功率,可以有效地提高表面质量并获得致密的表面。通过优化参数组合获得相对密度为98.31%的钨样品:300W,扫描速度为400mm / s的激光功率,舱口间距为0.08mm。与扫描速度和舱口间距相比,激光功率对相对密度的影响更明显。另外,对于通过微观结构检查的晶粒形态,随着扫描速度的增加,细长的弯曲晶粒逐渐转化为细直柱形颗粒。舱口间距将略微改变晶粒形态,但对晶粒尺寸没有显着影响。

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