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Fractography, elastic modulus and oxidation resistance of novel metal-intermetallic Ni/Ni 3Al multilayer films

机译:新型金属 - 金属间Ni / Ni 3al多层膜的断口,弹性模量和抗氧化性能

摘要

Novel metal–intermetallic Ni/Ni3Al multilayer films are synthesized by a magnetron sputtering technique. The fractography, elastic modulus, and the oxidation resistance of the multilayer films are studied by a series of experimental tests. The scanning electron microscopy fractography of the films shows that both Ni and Ni3Al layers fracture with the appearance of ductile metal failure. No metal–intermetallic delamination appears in the multilayered films. Fluted dimpling in each Ni and Ni3Al layer isevident and continuous, layer through layer, illustrating very good adherence among the constituent layers. Such adherence makes the toughness of the Ni layers capable of transferring into the Ni3Al layers. Young’s modulus of the Ni/Ni3Al film is found to be 226 and 253 ± 10 GPa by nanoindentation and laser acoustic techniques, respectively. The continuity of elastic modulus between the two phases is revealed by nanoindentation test. The modulus continuity indicates an excellent integration of theconstituent layers with similar crystal structure and close lattice constants. This integration makes the multilayers unsurpassed in comprehensive mechanical properties. Sheet resistance measurements show a good protective ability of the Ni/Ni3Almultilayers during high temperature oxidation. X-ray photoelectron spectroscopy spectra suggest that crystallized Al2O3 /Ni scales formed during the deposition and subsequent annealing processes are apparently responsible for the stability of thesefilms under oxidative conditions. The appearance of the crystallized Al2O3 /Ni thin scales on the top of Ni3Al layers provides the Ni/Ni3Al multilayers good thermal oxidation resistance without lowering the fracture toughness.
机译:新型金属-金属间Ni / Ni3Al多层膜是通过磁控溅射技术合成的。通过一系列实验测试,研究了多层膜的形貌,弹性模量和抗氧化性。薄膜的扫描电子显微镜观察表明,Ni和Ni3Al层均破裂,并出现韧性金属破坏。在多层膜中没有出现金属-金属间分层。 Ni和Ni3Al的每一层都有波纹状的凹坑,而且是连续的,逐层的,说明了各组成层之间的附着力非常好。这样的附着使得Ni层的韧性能够转移到Ni3Al层中。通过纳米压痕和激光声学技术发现,Ni / Ni3Al膜的杨氏模量分别为226和253±10 GPa。通过纳米压痕测试揭示了两相之间弹性模量的连续性。模量连续性表明具有相似晶体结构和接近晶格常数的组成层的极好的结合。这种集成使得多层在综合机械性能方面无与伦比。薄层电阻测量结果表明,Ni / Ni3Al多层膜在高温氧化过程中具有良好的保护能力。 X射线光电子能谱表明,在沉积和随后的退火过程中形成的结晶Al2O3 / Ni鳞片显然是这些膜在氧化条件下的稳定性的原因。在Ni3Al层的顶部出现结晶的Al2O3 / Ni鳞片,使Ni / Ni3Al多层膜具有良好的抗热氧化性,而又不降低断裂韧性。

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