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Fatigue Failure from Inner Surfaces of Additive Manufactured Ti-6Al-4V Components

机译:来自添加剂的内表面的疲劳失效制造的Ti-6Al-4V组分

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摘要

Selective laser melting (SLM) is an additive manufacturing process for producing metallic components with complex geometries. A drawback of this process is the process-inherent poor surface finish, which is highly detrimental in materials submitted to fatigue loading situations. The goal of this work is to analyze the fatigue behavior of Ti-6Al-4V specimens with internal axial channels under the following different conditions: hole drilled, hole as manufactured, and hole threaded M4 × 0.7. All the cases studied showed a lower fatigue performance as compared with solid samples due to the surface roughness and geometry effect that produced a surface stress concentration leading to a reduction in fatigue strength. The fractography revealed that crack initiation occurred from the internal surface in all specimens with internal channel mostly from defects as unfused particles and lack of fusion zones, while for the solid specimens crack initiation was observed from the external surface due to insufficient fusion defect. The application of the Smith-Watson-Topper energy-based parameter was revealed to be a good tool for fatigue life prediction of the different series studied.
机译:选择性激光熔化(SLM)是一种添加具有复杂几何形状的金属组分的添加剂制造方法。该过程的缺点是过程固有的差的表面光洁度,其在提交疲劳负载情况的材料中是非常有害的。本作作品的目标是分析Ti-6AL-4V样品的疲劳行为,在以下不同条件下具有内轴通道:钻孔,制造的孔,孔螺纹M4×0.7。研究的所有案例显示出较低的疲劳性能,与固体样品相比,由于表面粗糙度和几何效果产生的表面应力浓度导致疲劳强度降低。断片显示,在内部通道中的内表面发生的裂纹开始主要来自缺陷作为未用颗粒的缺陷和缺乏融合区,而由于熔化不足,从外表面观察到固体样品裂纹引发。透露了史密斯 - 沃森 - 顶级能源的参数的应用,是研究不同系列的疲劳寿命预测的良好工具。

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