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

被引:24
作者
Ogneva, T. S. [1 ]
Bataev, I. A. [1 ]
Mali, V., I [2 ]
Anisimov, A. G. [2 ]
Lazurenko, D., V [1 ]
Popelyukh, A., I [1 ]
Emurlaeva, Yu Yu [1 ]
Bataev, A. A. [1 ]
Tanaka, S. [3 ]
Yegoshin, K. D. [1 ]
机构
[1] Novosibirsk State Tech Univ, Novosibirsk 630073, Russia
[2] Lavrentev Inst Hydrodynam SB RAS, 15 Lavrentev Pr, Novosibirsk 630090, Russia
[3] Kumamoto Univ, Inst Ind Nanomat IINa, Kumamoto 8608555, Japan
关键词
Intermetallics; Nickel Aluminide; Composite; Spark plasma sintering; Microstructure; Strength; MICROSTRUCTURE EVOLUTION; PHASE-FORMATION; MARTENSITIC-TRANSFORMATION; DIFFUSION; BEHAVIOR; FABRICATION; TENSILE;
D O I
10.1016/j.matchar.2021.111415
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In recent decades, spark plasma sintering (SPS) has become a widespread technique in the production of highquality intermetallic-based materials. In this study, we used SPS to fabricate multilayer metal-intermetallic (MIL) composites from pure nickel and aluminum foils. The effect of sintering temperature and pressure on the structure and properties of the fabricated MIL composites is discussed. The sintering temperature was changed from 900 to 1100 degrees C, the pressure varied from 10 to 40 MPa. The structure of the materials was investigated using optical microscopy, scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray energy-dispersive spectroscopy (EDX), and X-ray diffraction (XRD). Depending on the sintering regimes the intermetallic layers in the composites consisted of Ni2Al3, Ni3Al, and NiAl of cubic and tetragonal modifications. Tetragonal NiAl appeared in the form of microtwinned lamellar martensite. A change in SPS temperature from 900 to 1100 degrees C led to an increase in the volume fraction of nickel-enriched intermetallic compounds, which was accompanied by improving composites strength. With an increase of the SPS pressure from 10 to 30 MPa, the number of pores and cracks in composites decreased. At the same time, their bending strength increased by 2 times (from 450 to 900 MPa). Fractographic studies showed that the fracture mechanism of the intermetallic layers depends on their elemental composition and varies from brittle transcrystalline to wavy "feathery".
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页数:12
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