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首页> 外文期刊>Philosophical magazine: structure and properties of condensed matter >Microstructure and mechanical properties of a large-dimensional bulk nanocrystalline-based Fe-Al-Cr alloy prepared by an aluminothermic reaction casting and followed annealing at 1000 °c
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Microstructure and mechanical properties of a large-dimensional bulk nanocrystalline-based Fe-Al-Cr alloy prepared by an aluminothermic reaction casting and followed annealing at 1000 °c

机译:铝热反应铸造并在1000°C退火后制备的大块体纳米晶铁-铝-铬合金的微观组织和力学性能

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摘要

A large-dimensional bulk nanocrystalline phase-based Fe-Al-Cr alloy with 10 wt.% Cr, which was about 200 mm in diameter and 10 mm in thickness, was prepared by an aluminothermic reaction casting and followed annealing at 1000 °C. Microstructures of the alloy were investigated by optical microscope, electron probe microscope, scanning electron microscope attached with electron backscattered diffraction, X-ray diffraction and transmission electron microscope. The magnetization curves of the alloy were tested by Lake Shore 7410 vibrating sample magnetometer. Compressive properties of the alloy were tested. The results show the alloy was consisted of a Fe-Al-Cr nanocrystalline matrix, Cr_7C_3 phase and contaminants in micrometre. Average grain size of the nanocrystalline matrix was 19 nm. Volume fraction of the Cr_7C_3 phase in the alloy was about 4.5%. After annealing, the saturated intensity of magnetization and the specific magnetic susceptibility of the alloy increased slightly from 99 emu/g and 0.083 emu/g Oe to 104 emu/g and 0.113 emu/g Oe, respectively. Compressive strength of the alloy was 1200 MPa and much higher than that of the small-scale nanocrystalline alloy and alloy with grains in micrometre.
机译:通过铝热反应铸造并随后在1000℃下退火,制备了直径为约200mm且厚度为10mm的具有10wt。%的Cr的大块体纳米晶相Fe-Al-Cr合金。通过光学显微镜,电子探针显微镜,附有电子背散射衍射的扫描电子显微镜,X射线衍射和透射电子显微镜研究了合金的微观结构。合金的磁化曲线通过Lake Shore 7410振动样品磁力计进行测试。测试了合金的压缩性能。结果表明,该合金由Fe-Al-Cr纳米晶基体,Cr_7C_3相和微米级污染物组成。纳米晶体基质的平均晶粒尺寸为19nm。合金中Cr_7C_3相的体积分数约为4.5%。退火后,合金的饱和磁化强度和比磁化率分别从99 emu / g和0.083 emu / g Oe略微增加到104 emu / g和0.113 emu / g Oe。合金的抗压强度为1200 MPa,远高于小型纳米晶合金和具有微米级晶粒的合金。

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