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The Key Role of Ball Milling Time in the Microstructure and Mechanical Property of Ni-TiCNP Composites

机译:球磨时间对Ni-TiCNP复合材料的组织和力学性能的关键作用

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Titanium carbide nanoparticle-reinforced nickel-based alloys (Ni-TiCNP composites) with ball milling time ranging from 8 to 72 h were prepared by ball milling and spark plasma sintering. Transmission electron microscopy (TEM) and scanning electron microscopy equipped with electron backscatter diffraction were used to characterize the microstructures. Their hardness and tensile properties were measured using the Vickers pyramid method and tensile tests. TEM results showed that a slight coarsening of TiCNP occurred during the ball milling process. The grain sizes of the Ni-TiCNP composites with various ball milling times were different, but they were all much smaller than those of the pure Ni. In all cases, the Ni-TiCNP composites showed higher strengths and hardness values than the unreinforced pure nickel. Furthermore, the strength of the Ni-TiCNP composites increased initially and then decreased as a function of ball milling time. The maximum strengths occurred in the 24-h ball milling sample, which presented the lowest average grain size. The Hall-Petch strengthening was suggested to be the main reason responsible for such variations in mechanical properties. Additionally, the elongation percentage of the Ni-TiCNP composites decreased gradually with ball milling time. This may be caused by the change of microvoids in the composite as the ball milling time varies, which is also related to their fracture behavior.
机译:通过球磨和火花等离子体烧结制备了球磨时间为8〜72 h的碳化钛纳米粒子增强镍基合金(Ni-TiCNP复合材料)。配备电子背散射衍射的透射电子显微镜(TEM)和扫描电子显微镜用于表征微观结构。使用维克斯金字塔方法和拉伸试验测量了它们的硬度和拉伸性能。 TEM结果表明,在球磨过程中,TiCNP略微变粗。不同球磨时间的Ni-TiCNP复合材料的晶粒尺寸不同,但是都比纯Ni小得多。在所有情况下,Ni-TiCNP复合材料均比未增强的纯镍具有更高的强度和硬度值。此外,Ni-TiCNP复合材料的强度最初随着球磨时间而增加,然后下降。最大强度出现在24小时球磨样品中,该样品呈现出最低的平均晶粒尺寸。霍尔-佩奇(Hall-Petch)强化被认为是造成机械性能变化的主要原因。另外,Ni-TiCNP复合材料的伸长率随着球磨时间的增加而逐渐降低。这可能是由于随着球磨时间的变化,复合材料中微孔的变化引起的,这也与它们的断裂行为有关。

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