Effect of sintering duration on structure and properties of Ni-Al metal-intermetallic composites produced by SPS

Q4 Materials Science
Tatiana Ogneva, Alexander Anisimov, Ruslan Kuzmin, Andrey Tyurin, Yulia Emurlaeva, Natalya Aleksandrova
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Abstract

The fabrication of Ni-Al based metal-intermetallic layered (MIL) composites is one of the actively developing directions in the production of materials for aircraft and space industries. Alternating hard intermetallic layers with ductile metal layers provides a unique combination of mechanical properties. In this study, metal-intermetallic layered composites consisting of Ni and nickel aluminides were fabricated using spark plasma sintering (SPS) of Ni and Al foils 100 and 25 μm in thickness, respectively. Samples sintered at 1100 °C for 0.5, 3, and 8 min were obtained. The purpose of this study was to fabricate Ni-Al MIL composites with increased strength properties using SPS technique and to investigate the effect of sintering duration on structure and properties. The structure of the samples sintered for 0.5 min consisted of Ni layers and intermetallic layers containing the sublayers with stoichiometric and Ni-rich B2 NiAl, L10 twinned martensite NiAl. The tensile strength of such composites was 485 MPa. The intermetallic layers in the sample sintered for 3 min have more Ni-rich NiAl, martensite NiAl, and Ni3Al phases, which promoted to an increase in tensile strength to 575 MPa. The sample sintered for 8 min consisted of Ni and a solid solution of Al in Ni and showed the highest tensile strength, 610 MPa, due to solid solution hardening in the interlayers. The samples did not break when applying bending load, which is the evidence of the good reliability and durability of the composites.
烧结时间对SPS制备的Ni-Al金属间化合物复合材料组织和性能的影响
镍铝基金属间层状复合材料的制备是航空航天材料生产中积极发展的方向之一。交替的硬质金属间层和韧性金属层提供了独特的机械性能组合。采用火花等离子烧结技术,分别制备了厚度为100 μm和25 μm的Ni和Al箔,制备了镍和镍铝化物金属间层状复合材料。在1100℃下烧结0.5、3、8 min得到样品。本研究的目的是利用SPS技术制备具有更高强度性能的Ni-Al MIL复合材料,并研究烧结时间对其结构和性能的影响。烧结0.5 min后,样品的结构由Ni层和含有富Ni的B2 NiAl、L10孪晶NiAl亚层的金属间层组成。该复合材料的抗拉强度为485 MPa。烧结3min后的金属间层中含有较多的富ni NiAl、马氏体NiAl和Ni3Al相,抗拉强度提高到575 MPa。烧结8min后,试样由Ni和Al在Ni中的固溶体组成,由于层间的固溶体硬化,试样的抗拉强度最高,达到610 MPa。在弯曲载荷作用下,试样未发生断裂,证明复合材料具有良好的可靠性和耐久性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Chimica Techno Acta
Chimica Techno Acta Chemical Engineering-Chemical Engineering (all)
CiteScore
1.00
自引率
0.00%
发文量
67
审稿时长
4 weeks
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