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Manufacturing high strength aluminum matrix composites by friction stir processing: An innovative approach

机译:通过摩擦搅拌加工制造高强度铝基复合材料:一种创新方法

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摘要

Shape Memory Alloys (SMA), e.g., NiTi (nitinol), are good candidates of reinforcement agents for the improvement of mechanical properties of aluminum alloys. Friction Stir Processing (FSP) has been shown to be an appropriate manufacturing process for particulate Aluminum Matrix Composites (AMCs), due to the mitigation of critical intermetallic formation between particles and matrix. However, AMCs processed by FSP with the matrix material made of high strength alloys, in particular 7xxx series, have systematically shown severe defects, such as clusters and cavities that result from poor material flow. Herein, we present an innovative strategy to manufacture Al7075/NiTi composites via FSP avoiding this unacceptable particle clustering. The strategy involves the addition of 7xxx series Al powder in a groove or multi-holes to be stirred together with the NiTi particles, leading to dissociation of the latter. The X-ray computed tomography acquisitions allow for 3D quantitative assessment of the size and spatial distribution of the embedded reinforcements. It is revealed that the groove filling method results in a more homogenous distribution compared to the multi-holes filling method. Moreover, the distribution is found to be dependent on the particle size, as a higher volume fraction of large particles is observed at the upper part of the FSP stir zone. These new AMCs, with a good Al-NiTi interface, present a potential to tailor the composite mechanical properties by exploiting the shape memory effect of the NiTi reinforcements.
机译:形状记忆合金(SMA),例如,镍钛(镍钛诺),是铝合金的机械性能的改善增强剂的良好候选者。摩擦搅拌处理(FSP)已被证明是用于微粒铝基复合材料(AMCS)的适当的制造过程中,由于颗粒和基体之间的关键金属间化合物形成的缓解。然而,通过FSP有由高强度合金的基体材料,特别是7xxx系列处理的AMC,已经系统地示出严重的缺陷,如簇和空腔,从材料流动差的结果。在此,我们提出通过FSP避免这种无法接受的颗粒簇制造Al7075 /镍钛复合材料的创新策略。该策略涉及在槽或多孔加入7xxx系列Al粉将与镍钛颗粒一起搅拌,导致后者的离解。 X射线计算机断层扫描采集允许的大小和嵌入的加强件的空间分布的三维定量评估。据透露,在一个更均匀分布的槽填充方法的结果相比,所述多孔中填充方法。此外,分布被发现是取决于颗粒大小,颗粒大的较高体积分数在FSP搅拌区的上部,观察到。这些新的AMC,具有良好的Al-镍钛接口,通过利用镍钛增强件的形状记忆效应呈现的电势到裁缝复合机械性能。

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