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Relationship between internal defect size and fatigue limit in selective laser melted Inconel 718

机译:选择性激光熔化的内部缺陷尺寸和疲劳极限之间的关系718

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Inconel 718 is a Ni-based superalloy, which shows excellent mechanical properties such as tensile strength, fatigue strength, and creep strength at high temperatures up to 700 °C. However, as Inconel 718 is a difficult-to-cut material, it causes severe wear of machining tools. Fabricating Inconel 718 by Selective laser melting (SLM), a type of additive manufacturing (AM), is therefore expected as the manufacturing method to deal with this problem. However, it is impossible to completely prevent the occurrence of the internal defects in SLM parts. These internal defects deteriorate the mechanical properties such as the fatigue strength of SLM parts. Though the effect of the internal defect size on the fatigue limit of SLM alloys such as Ti6Al4V and AlSi10Mg has been extensively investigated, its effect on SLM Inconel 718 has not yet been investigated. In this study, Inconel 718 specimens with various internal defect sizes were fabricated by SLM and the effect of the internal defect size on their fatigue strength was investigated. Internal defect size distribution in as built specimen can be approximated by Gumbel distribution. The specimens containing internal defects with a diameter of about 400 μm showed no significant decrease in the fatigue strength. In the case of the plane specimen, the fatigue limit predicted using the statistic of extremes and the √area parameter model was 40% higher than that obtained experimentally.
机译:Inconel 718是基于Ni的超合金,其显示出优异的机械性能,例如拉伸强度,疲劳强度,并且在高达700℃的高温下蠕变强度。然而,由于Inconel 718是一种难以切割的材料,它会导致机加工工具的严重磨损。因此,通过选择性激光熔化(SLM),一种添加剂制造(AM),预计将成为处理此问题的制造方法的制造型号718。但是,不可能完全防止SLM部件中内部缺陷的发生。这些内部缺陷劣化了机械性能,例如SLM部件的疲劳强度。尽管内缺陷尺寸对SLM合金等诸如Ti6Al10MG的SLM合金的疲劳极限的影响得到了广泛研究,但其对SLM Inconel 718的影响尚未研究。在本研究中,通过SLM制造了具有各种内部缺陷尺寸的718个标本,并研究了内部缺陷尺寸对其疲劳强度的影响。作为构建标本的内部缺陷尺寸分布可以通过Gumbel分布来近似。含有直径为约400μm的内部缺陷的样品显示出疲劳强度没有显着降低。在平面样本的情况下,使用极端统计学预测的疲劳极限和χ区域参数模型的速度高于实验获得的40%。

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