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Effect of inter-layer dwell time on distortion and residual stress in additive manufacturing of titanium and nickel alloys

机译:钛和镍合金增材制造中层间停留时间对变形和残余应力的影响

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摘要

In situ measurements of the accumulation of distortion during additive manufacturing (AM) of titanium and nickel base alloys are made as a function of changes in dwell time between the deposition of individual layers. The inclusion of dwell times between individual layers to allow for additional cooling during the deposition process is a common technique utilized in AM processes. Experimental observations made here in Inconel 625 laser deposited builds show that the accumulation of distortion occurs with a consistent trend over the course of the builds and both distortion and residual stress levels decrease with increasing dwell times from 0 to 40 s. On the other hand, changes in dwell time for the Ti-6Al-4V laser deposited builds have a significant impact on the accumulation of distortion, with shorter and no dwell times minimizing the distortion accumulation and even reducing it over a range of build heights. These shorter dwell times also produce builds with significantly lower residual stress and distortion levels, particularly when no dwell time is applied. Based on these results, the materials to be deposited should be considered when developing appropriate path planning schedules.
机译:钛和镍基合金的增材制造(AM)过程中的变形累积的原位测量是根据各层沉积之间停留时间的变化而进行的。在各个层之间包含停留时间以在沉积过程中进行额外冷却是AM过程中常用的技术。在Inconel 625激光沉积结构中进行的实验观察表明,变形累积在整个结构过程中以一致的趋势发生,并且变形和残余应力水平随停留时间从0到40 s的增加而降低。另一方面,Ti-6Al-4V激光沉积构件的停留时间的变化对变形的累积有显着影响,较短的无停留时间可使变形累积最小化,甚至在一定的构造高度范围内都可以减小变形累积。这些较短的停留时间也会产生具有显着较低的残余应力和变形水平的结构,尤其是在没有施加停留时间的情况下。根据这些结果,在制定适当的路径计划时间表时应考虑要沉积的材料。

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