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The effect of manufacturing defects on the high-cycle fatigue of electron-beam-welded Ti-6Al-4V titanium alloy: experimental and numerical analysis

机译:制造缺陷对电子束焊接Ti-6AL-4V钛合金高循环疲劳的影响:实验性和数值分析

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Purpose-Electron-beam welding has been widely used in industry to join different titanium alloys (Ti-6Al-4V) components. During welding production defects, such as porosity, lack of penetration or thinning are often observed. High-cycle fatigue (HCF) tests have been performed on welded specimens to understand the effect of weld defects on fatigue capabilities. The fatigue life of different types of "defective" welds has been compared against a non-welded reference specimen. Design/methodology/approach-The results of the experimental campaign have been correlated with finite elements models. Findings-It is concluded the geometry produced by the weld process, e.g. toe radius and under-bead shape, and the related stress raisers play a relevant role on fatigue capabilities of welds. This conclusion is valid only for a Ti-6Al-4V T-joint weld and only for flaw initiation. Knock down in materials properties has not been considered. Originality/value-There is a lack of HCF fatigue data for welds of this geometry and material in the open literature. The paper is of relevance for industrial application and practical interest, although a lot more validation tests are required to draw a final conclusion.
机译:目的 - 电子束焊接已广泛用于工业中加入不同的钛合金(Ti-6Al-4V)组分。在焊接生产期间,通常观察到缺乏孔隙率,缺乏渗透或变薄。已经在焊接试样上进行了高循环疲劳(HCF)测试,以了解焊缝缺陷对疲劳能力的影响。将不同类型的“缺陷”焊缝的疲劳寿命与非焊接的参考标本进行比较。设计/方法/方法 - 实验活动的结果与有限元模型相关。结果 - 焊接工艺产生的几何形状,例如:脚趾半径和胎圈形状,相关应力升降机对焊缝疲劳能力发挥相关作用。该结论仅适用于Ti-6AL-4V T-Contin Weld,仅适用于缺陷启动。尚未考虑击倒材料性质。原创性/值 - 在开放文献中缺乏这种几何形状和材料的焊缝的HCF疲劳数据。本文与工业应用和实际兴趣有关,尽管需要更多的验证测试来得出最终结论。

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