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首页> 外文期刊>International Journal of Fatigue >Long fatigue crack propagation behavior of laser powder bed-fused inconel 625 with intentionally-seeded porosity
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Long fatigue crack propagation behavior of laser powder bed-fused inconel 625 with intentionally-seeded porosity

机译:故意注入孔隙的激光粉末床熔覆铬镍铁合金625的长疲劳裂纹扩展行为

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摘要

Inconel 625 coupons were manufactured via laser powder bed fusion with different levels of intentionally-seeded porosity (up to 2.7%). The processing-induced porosities, morphologies and distributions were measured via Archimedes method and computed tomography. Tensile tests were performed, followed by fatigue crack propagation characterization. The static strength characteristics were not strongly affected by the levels of porosity, but the elongation at break was severely impacted. In the near threshold region of the Paris diagram, porous specimens were unaffected by porosity and build orientation. However, under higher stress intensity factors, the effect of porosity was found to be significant and build orientation-dependent.
机译:Inconel 625试样是通过激光粉末床熔融制造的,具有不同程度的有意播种的孔隙度(最高2.7%)。通过阿基米德法和计算机体层摄影术测量了加工引起的孔隙率,形貌和分布。进行拉伸测试,然后进行疲劳裂纹扩展表征。静态强度特性不受孔隙率水平的强烈影响,但断裂伸长率受到严重影响。在巴黎图的接近阈值区域,多孔标本不受孔隙率和构造方向的影响。但是,在较高的应力强度因子下,发现孔隙率的影响显着,并且取决于方向。

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