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Effect of Post-Processing and Porosity on Fatigue Performance of Selective Laser Melted Ti-6Al-4V ELI

机译:后加工和孔隙率对选择性激光熔化Ti-6Al-4V Eli的疲劳性能的影响

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Conclusions: Rotopolishing and SILC cleaning improved the failure strain of solid and surface porous samples due to the decreased roughness. As expected, porous samples had lower properties compared to solid and surface porous samples, regardless of post-processing treatment. Fatigue strength was dependent upon surface roughness, where the smoothest surface had the highest fatigue strength. As surface roughness increased, the fatigue strength decreased due to increased number of sites for crack initiation. Once the porous structure is the dominant structural feature, the impact of post-processing treatment on fatigue is minimal. For SLM devices under high loading conditions, surface porosity can be added without a large decrease in monotonic properties, but fatigue strength will decrease due to the porosity even with a post-processing treatment. The impact of surface porosity is similar to that of a rough finish on an "as-built" sample.
机译:结论:由于粗糙度降低,轮辐和硅胶清洁改善了固体和表面多孔样品的失效应变。与固体和表面多孔样品相比,多孔样品具有较低的性质,无论后处理后处理如何。疲劳强度依赖于表面粗糙度,其中最平滑的表面具有最高的疲劳强度。随着表面粗糙度的增加,由于裂纹引发的部位增加,疲劳强度降低。一旦多孔结构是主导结构特征,处理后处理对疲劳的影响是最小的。对于在高负载条件下的SLM器件,可以添加表面孔隙率而无需单调性能大,因此疲劳强度即使在处理后处理也会由于孔隙率而降低。表面孔隙率的冲击与“嵌造”样品上的粗糙表面的影响类似。

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