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首页> 外文期刊>International Journal of Fatigue >Significance of hot isostatic pressing (HIP) on multiaxial deformation and fatigue behaviors of additive manufactured Ti-6A1-4V including build orientation and surface roughness effects
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Significance of hot isostatic pressing (HIP) on multiaxial deformation and fatigue behaviors of additive manufactured Ti-6A1-4V including build orientation and surface roughness effects

机译:热等静压(HIP)对增材制造的Ti-6A1-4V的多轴变形和疲劳行为的意义,包括结构取向和表面粗糙度影响

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Additive manufacturing (AM) technology has gained significant attention in recent years due to several important advantages. However, design of critical load carrying parts using this technique is still at its infancy, partly due to the inferior performance and lack of sufficient understanding of cyclic deformation and fatigue behaviors of AM metals as compared to their wrought counterparts. Similar to most other components in different industries, AM parts typically undergo cyclic loadings through their service life; therefore, fatigue performance is a key performance criterion. In addition, due to common presence of multiaxial stress states at fatigue critical locations, multiaxial fatigue is of special interest. In this study, thin-walled tubular specimens made of Ti-6Al-4V alloy fabricated with powder bed fusion (PBF) process were used to investigate their cyclic deformation and fatigue behaviors. The main focus of this study was on the effect of hot isostatic pressing (HIP) on fatigue performance under uniaxial, torsion, combined in-phase, and 90 degrees out-of-phase axial-torsion loads. To study build orientation effect, both vertically built and diagonally built (at 45 degrees) specimens were included. However, no substantial difference on the fatigue behavior of vertical and 45 degrees built specimens was observed. Although the majority of specimens had a machined surface, some torsional tests with as-built surface were also included to evaluate surface roughness effect. It was found that even after HIP treatment, the rough surface is the dominant factor in shortening the fatigue life. In addition, to evaluate the effectiveness of the HIP treatment, torsion fatigue performance of the HIPed specimens were compared to torsion fatigue performance of annealed AM specimens, as well as to the multiaxial fatigue behavior of the conventional wrought material. Fatigue failure mechanism of the HIPed material was shear, similar to the wrought material, and fatigue performance was found to be similar to the wrought alloy. Fatigue test results were correlated well using a shear-based critical plane parameter approach, also similar to the wrought material. Comparison of multiaxial fatigue data in this study and a similar previous study by the authors indicates that fabrication machine-to-machine and the associated build parameter differences can result in substantial differences in the observed defect size and population, resulting in different failure mechanisms and subsequently different fatigue performance.
机译:近年来,增材制造(AM)技术由于具有多个重要优势而受到了广泛关注。然而,使用这种技术设计关键的承载零件仍处于起步阶段,部分原因是与锻造金属相比,其性能较差并且对AM金属的周期性变形和疲劳行为缺乏足够的了解。与不同行业中的大多数其他组件相似,增材制造零件在其使用寿命中通常会承受周期性载荷。因此,疲劳性能是关键的性能指标。另外,由于在疲劳关键位置处普遍存在多轴应力状态,因此多轴疲劳特别受关注。在这项研究中,使用粉末床熔融(PBF)工艺制造的由Ti-6Al-4V合金制成的薄壁管状试样,以研究其循环变形和疲劳行为。这项研究的主要重点是热等静压(HIP)对单轴,扭转,组合同相和90度异相轴向扭转载荷下疲劳性能的影响。为了研究构建方向的影响,包括垂直构建和对角构建(45度)的样本。但是,在垂直和45度构建的试样的疲劳行为上没有观察到实质性差异。尽管大多数标本都具有机加工表面,但也包括一些表面已完成的扭转试验,以评估表面粗糙度的影响。发现即使在HIP处理后,粗糙的表面也是缩短疲劳寿命的主要因素。另外,为了评估HIP处理的有效性,将HIP试样的扭转疲劳性能与退火的AM试样的扭转疲劳性能以及常规锻造材料的多轴疲劳行为进行了比较。 HIP材料的疲劳破坏机理是剪切的,类似于锻造的材料,并且疲劳性能类似于锻造的合金。疲劳测试结果使用基于剪切的临界平面参数方法进行了很好的关联,也类似于锻造材料。在这项研究和作者先前类似的研究中,对多轴疲劳数据的比较表明,制造机器之间的制造以及相关的构建参数差异可能导致所观察到的缺陷尺寸和数量存在实质性差异,从而导致不同的失效机理,进而导致不同的失效机理。不同的疲劳表现。

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