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首页> 外文期刊>Materials Letters >Mitigating oxygen pick-up during laser powder bed fusion of Ti-6Al-4V by limiting heat accumulation
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Mitigating oxygen pick-up during laser powder bed fusion of Ti-6Al-4V by limiting heat accumulation

机译:通过限制热量积聚Ti-6Al-4V激光粉床融合期间减轻氧气拾取

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The dissolution of oxygen in Ti-6Al-4V during laser powder bed fusion (L-PBF) is a limitation for the final ductility of the produced components and a challenge for the end-users. In the present work, the effect of the residual oxygen in the process atmosphere of a laboratory scale L-PBF machine, as well as the role of heat accumulation, are studied. It was shown that oxygen content in the as-built Ti-6Al-4V is determined by the size of the scanned area and build time. The heat accumulation aspect was investigated by adjusting the inter-layer time (ILT), by increasing the recoating time or the number of produced parts. The results showed that oxygen pick-up could be limited by reducing residual oxygen level in the atmosphere or heat accumulation. A 400 ppm O-2 reduction measured at the top of a 70 mm column was achieved by increasing the ILT manually by 4.5 s, and a 1200 ppm O-2 reduction by increasing the scanned area by 7 times. By doing so, the hardness at full height was reduced by approximately 30 HV10. It is shown that design features characterised by high aspect ratio can absorb significant amount of oxygen resulting in increased brittleness. (C) 2021 The Author(s). Published by Elsevier B.V.
机译:在激光粉末融合期间Ti-6Al-4V氧气的溶解是产生组分的最终延展性的限制和最终用户的挑战。在本作工作中,研究了实验室规模L-PBF机器的过程气氛中的残余氧气,以及热积累的作用。结果表明,由嵌入的Ti-6AL-4V中的氧含量由扫描区域的尺寸和构建时间决定。通过增加重组时间或产生的部件的数量来调整层间时间(ILL)来研究散热方面。结果表明,通过减少大气中的残留氧水平或热量积聚可以限制氧拾取。通过将40mm塔顶部测量的400ppm O-2减少通过4.5 s手动增加烯型,通过将扫描面积增加7次,减少1200ppm o-2。通过这样做,全高的硬度降低了大约30个HV10。结果表明,具有高纵横比的设计特征可以吸收大量的氧气,导致脆性增加。 (c)2021提交人。 elsevier b.v出版。

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