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通过多阶段机械合金化策略进行高熵合金的微观结构设计以实现温度稳定的兆赫兹电磁吸收

Microstructure Design of High-Entropy Alloys Through a Multistage Mechanical Alloying Strategy for Temperature-Stable Megahertz Electromagnetic Absorption.

作者信息

Liu Xiaoji, Duan Yuping, Guo Yuan, Pang Huifang, Li Zerui, Sun Xingyang, Wang Tongmin

机构信息

Key Laboratory of Solidification Control and Digital Preparation Technology, School of Materials Science and Engineering, Dalian University of Technology, Dalian, Liaoning, 116085, People's Republic of China.

School of Physics, Dalian University of Technology, Dalian, Liaoning, 116024, People's Republic of China.

出版信息

Nanomicro Lett. 2022 Jul 9;14(1):142. doi: 10.1007/s40820-022-00886-6.

Abstract

Developing megahertz (MHz) electromagnetic wave (EMW) absorption materials with broadband absorption, multi-temperature adaptability, and facile preparation method remains a challenge. Herein, nanocrystalline FeCoNiCrCu high-entropy alloy powders (HEAs) with both large aspect ratios and thin intergranular amorphous layers are constructed by a multistage mechanical alloying strategy, aiming to achieve excellent and temperature-stable permeability and EMW absorption. A single-phase face-centered cubic structure with good ductility and high crystallinity is obtained as wet milling precursors, via precisely controlling dry milling time. Then, HEAs are flattened to improve aspect ratios by synergistically regulating wet milling time. FeCoNiCrCu HEAs with dry milling 20 h and wet milling 5 h (D20) exhibit higher and more stable permeability because of larger aspect ratios and thinner intergranular amorphous layers. The maximum reflection loss (RL) of D20/SiO composites is greater than - 7 dB with 5 mm thickness, and EMW absorption bandwidth (RL < - 7 dB) can maintain between 523 and 600 MHz from - 50 to 150 °C. Furthermore, relying on the "cocktail effect" of HEAs, D20 sample also exhibits excellent corrosion resistance and high Curie temperature. This work provides a facile and tunable strategy to design MHz electromagnetic absorbers with temperature stability, broadband, and resistance to harsh environments.

摘要

开发具有宽带吸收、多温度适应性和简便制备方法的兆赫兹(MHz)电磁波(EMW)吸收材料仍然是一项挑战。在此,通过多阶段机械合金化策略构建了具有大纵横比和薄晶间非晶层的纳米晶FeCoNiCrCu高熵合金粉末(HEAs),旨在实现优异且温度稳定的磁导率和EMW吸收。通过精确控制干磨时间,获得了具有良好延展性和高结晶度的单相面心立方结构作为湿磨前驱体。然后,通过协同调节湿磨时间使HEAs扁平化以提高纵横比。干磨20小时和湿磨5小时(D20)的FeCoNiCrCu HEAs由于具有更大的纵横比和更薄的晶间非晶层而表现出更高且更稳定的磁导率。D20/SiO复合材料的最大反射损耗(RL)在厚度为5毫米时大于 -7 dB,并且EMW吸收带宽(RL < -7 dB)在-50至150°C之间可保持在523至600 MHz之间。此外,依靠HEAs的“鸡尾酒效应”,D20样品还表现出优异的耐腐蚀性和高居里温度。这项工作提供了一种简便且可调节的策略来设计具有温度稳定性、宽带和耐恶劣环境的MHz电磁吸收体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a84/9271152/dfe22a83d184/40820_2022_886_Fig1_HTML.jpg

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