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首页> 外文期刊>Journal of Failure Analysis and Prevention >A Fractographic Analysis of Additively Manufactured Ti6Al4V by Electron Beam Melting: Effects of Powder Reuse
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A Fractographic Analysis of Additively Manufactured Ti6Al4V by Electron Beam Melting: Effects of Powder Reuse

机译:电子束熔融加压制造的Ti6Al4V的分接分析:粉末再利用的影响

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Metal additive manufacturing (AM) is being rapidly adopted in the aerospace and biomedical industries. Powder bed fusion AM processes are leading this trend. To maximize process economy, excess "unmelted" powder retrieved from the build chamber is used in subsequent build cycles. The metal properties and component reliability could undergo degradation with powder reuse. This study investigates the effects of powder reuse on fracture surface characteristics of Ti6Al4V specimens fabricated by electron beam melting AM over 30 sequential build cycles. Optical microscopy and scanning electron microscopy were used to evaluate the changes in fracture surface features of tensile failures with powder reuse. Macroscopically, slant fractures were most common in early builds, which transitioned to orthogonal fracture surfaces with poorly defined shear lips with increasing reuse. Regardless of the build number, the fracture origins were consistently from the as-built surfaces. Microscopically, ductile features such as micro-void coalescence were evident throughout the 30 build cycles. However, increasing flute content with reuse suggests that rising oxygen levels causes solution strengthening and limits the participation of active slip systems. These results highlight the importance of surface roughness and powder oxidation to metal performance in AM, and the evolution of fractographic features with powder reuse.
机译:在航空航天和生物医学行业中,金属添加剂制造(AM)正在迅速采用。粉床融合AM过程是引领这种趋势。为了最大化过程经济,从构建室中检索的过量的“未熔化”粉末用于随后的构建周期。金属性能和组分可靠性可能与粉末再利用进行降解。本研究研究了粉末再利用对由电子束熔化的Ti6Al4V样品的断裂表面特性的影响超过30个顺序构建循环。光学显微镜和扫描电子显微镜用于评价粉末再利用的拉伸失效的断裂表面特征的变化。宏观上,倾斜骨折在早期构建中最常见,其转变为正交骨折表面,其具有较差的剪切嘴唇,随着重复使用而具有较差的剪切嘴。无论构建数量如何,骨折起源都是由竣工表面的。显微镜地,在整个30个构建循环中,显微无空隙聚结的延性特征是显而易见的。然而,随着再利用的增加,长笛含量表明氧气水平上升导致解决方案强化并限制活性滑动系统的参与。这些结果突出了表面粗糙度和粉末氧化在AM中的金属性能的重要性,以及用粉末再利用的粉碎特征的演化。

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