首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effects of boron on microstructure and properties of microwave sintered FeCoNi1.5CuY0.2 high-entropy alloy
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Effects of boron on microstructure and properties of microwave sintered FeCoNi1.5CuY0.2 high-entropy alloy

机译:硼对微波烧结Feconi1.5cuy0.2高熵合金微观结构和性能的影响

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摘要

The mechanical properties of high-entropy alloys (HEAs) containing rare earth are improved by adding boron element. Under the condition that the content of rare-earth is fixed, FeCoNi1.5CuY0.2Bx high-entropy alloy with different boron atom ratios (x = 0, 0.2, 0.4, 0.6, 0.8 and 1.0) is prepared by advanced microwave sintering process. The effect of boron addition with different atomic ratios on the phase evolution, microstructure, compressive mechanical properties and magnetic properties of the FeCoNi1.5CuY0.2 high-entropy alloy is emphatically studied. The results show that the phase transformation temperature decreases with the increase of boron content, which is conducive to the rapid sintering at low temperature. When boron content is less than 0.4 atomic ratio, the alloy is dominated by FCC base phase and BYO3, eliminating the oxidation phase of Y2O3. When boron adding amount as x = 0.4, it has the largest maximum compression ratio. When the amount of boron exceeds 0.4 atomic ratio, boride precipitates in the alloy, which increases the strength and hardness and at the cost of plasticity and soft magnetism. When the amount of boron is x = 1, the hardness arrives at utmost, and the compressive strength, yield strength and hardness are 1546 MPa, 1112 MPa and 367.1HV, respectively, which are 150%, 129% and 29.03% higher than those of boron-free sample. The improvement of mechanical properties is due to the fact that boron with small atomic size is easy to solute into the FCC base phase, forming interstitial solid solution, which results in lattice distortion and solid solution strengthening effect. And BY12 particles precipitated in BYO3 have dispersion strengthening effect on the alloy. (C) 2020 Elsevier B.V. All rights reserved.
机译:通过添加硼元素,提高了含稀土高熵合金的力学性能。在稀土含量一定的条件下,FeCoNi1。5CuY0。采用先进的微波烧结工艺制备了不同硼原子比(x=0,0.2,0.4,0.6,0.8和1.0)的2Bx高熵合金。研究了不同原子比的硼对FeCoNi1的相演化、微观结构、压缩力学性能和磁性的影响。5CuY0。2.重点研究了高熵合金。结果表明,随着硼含量的增加,相变温度降低,有利于低温快速烧结。当硼含量小于0.4原子比时,合金以FCC基相和BYO3为主,消除了Y2O3的氧化相。当硼添加量为x=0.4时,其最大压缩比最大。当硼的含量超过0.4原子比时,硼化物会在合金中沉淀,这会增加强度和硬度,并以塑性和软磁性为代价。当硼含量为x=1时,硬度达到最大值,抗压强度、屈服强度和硬度分别为1546MPa、1112MPa和367.1HV,比无硼试样分别高150%、129%和29.03%。力学性能的提高是由于原子尺寸小的硼容易溶入FCC基相,形成填隙固溶体,从而导致晶格畸变和固溶体强化效应。在BYO3中析出的BY12颗粒对合金有弥散强化作用。(C) 2020爱思唯尔B.V.版权所有。

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