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退火温度对(AlCoCrFeNi)80wt. %/(CoCrNi)20wt. %复合材料耐磨和耐腐蚀性的影响
作者:
作者单位:

1.山东农业大学机械与电子工程学院;2.山东大学机电与信息工程学院

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中图分类号:

TG139

基金项目:

山东省自然基金-基于热历史的中熵合金熔体动力学、组织结构与力学性能调控研究(项目编号:ZR2022ME207);山东省现代农业技术体系杂粮产业创新团队基金,


Effect of annealing temperature on wear resistance and corrosion resistance of (AlCoCrFeNi)80wt. %/(CoCrNi)20wt. % composites
Author:
Affiliation:

1.College of Mechanical and Electronic Engineering,Shandong Agricultural University,Tai’an;2.College of Mechanical,Electronic and Information Engineering,Shandong University,Wei’hai

Fund Project:

the National Science Foundation of Shandong Province (No. ZR2022ME207), Innovation Team Fund for coarse cereals Industry of Modern Agricultural Technology System in Shandong Province, 14th Five-Year National Key R AND D Program sub-project (No.2022YFD2001903-03),

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    摘要:

    腐蚀与磨损是影响机械关键零部件使用寿命的主要因素,因此对新型耐磨和耐腐蚀材料的研究具有重要意义。高熵合金(High entropy alloy, HEA)和中熵合金(Medium entropy alloy,MEA)作为新兴材料,具有特殊的组织结构和优异的性能,成为耐磨和耐腐蚀材料的研究热点。本文利用SLM技术制备了耐磨耐腐蚀性能优异的(AlCoCrFeNi)80wt.%/(CoCrNi)20wt.%复合材料。并对其进行了退火处理。利用X射线衍射、扫描电镜、能谱分析、电子背散射衍射、硬度计、摩擦磨损试验机、电化学工作站和X射线光电子能谱分析等技术手段研究了不同退火温度(600 ℃、800 ℃、1000 ℃)对(AlCoCrFeNi)80wt.%/(CoCrNi)20wt.%的组织结构、硬度、耐磨性和耐腐蚀性的影响规律及机理。经过600 ℃退火后,复合材料的相组成没有变化,均由BCC相和B2相组成,晶粒比退火前更加均匀细小。经过800 ℃和1000 ℃退火后,FCC相出现,晶粒更加粗大。退火温度越高,FCC相比重越大,晶粒尺寸越大。随退火温度的升高,复合材料的硬度和耐磨性先提高后降低。由于细晶强化作用,600 ℃退火试样的硬度最高和耐磨性最好,与退火前的试样相比,硬度提高了26.9 %,磨损失重降低了32 %。退火处理促进了钝化膜中Cr2O3的富集,提高了复合材料的耐腐蚀性,1000 ℃退火试样的耐腐蚀性最优。

    Abstract:

    Corrosion and wear are the main factors affecting the service life of key mechanical parts. Therefore, it is of great significance to study new wear-resistant and corrosion-resistant materials. As emerging materials, high entropy alloy (HEA) and medium entropy alloy (MEA) have special microstructure and excellent properties, which have become research hotspots of wear and corrosion resistant materials. In this paper, (AlCoCrFeNi)80wt. %/(CoCrNi)20wt. % composites with excellent wear and corrosion resistance were prepared by SLM technology. And it was annealed. The effects of different annealing temperatures (600 °C, 800 °C, 1000 °C) on the microstructure, hardness, wear resistance and corrosion resistance of (AlCoCrFeNi)80wt. %/(CoCrNi)20wt. % were studied by means of X-ray diffraction, scanning electron microscopy, energy spectrum analysis, electron backscatter diffraction, hardness tester, friction and wear tester, electrochemical workstation and X-ray photoelectron spectroscopy. After annealing at 600 °C, the phase composition of the composites does not change, which is composed of BCC phase and B2 phase, and the grains are more uniform and fine than before annealing. After annealing at 800 °C and 1000 °C, the FCC phase appears and the grains are coarser. The higher the annealing temperature, the heavier the FCC and the larger the grain size. With the increase of annealing temperature, the hardness and wear resistance of the composites increase first and then decrease. Due to the fine grain strengthening effect, the hardness and wear resistance of the sample annealed at 600 °C were the highest. Compared with the sample before annealing, the hardness increased by 26.9 % and the wear weight loss decreased by 32 %. Annealing treatment promoted the enrichment of Cr2O3 in the passive film and improved the corrosion resistance of the composites.

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郭晶,王德兴,郑杜彬,翟若凯,宋凯凯,李玉道.退火温度对(AlCoCrFeNi)80wt. %/(CoCrNi)20wt. %复合材料耐磨和耐腐蚀性的影响[J].稀有金属材料与工程,2024,53(12):3437~3446.[GUO Jing, WANG Dexing, Zheng Dubin, Zhai Ruokai, Song Kaikai, Li Yudao. Effect of annealing temperature on wear resistance and corrosion resistance of (AlCoCrFeNi)80wt. %/(CoCrNi)20wt. % composites[J]. Rare Metal Materials and Engineering,2024,53(12):3437~3446.]
DOI:10.12442/j. issn.1002-185X.20230633

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  • 收稿日期:2023-10-10
  • 最后修改日期:2023-12-27
  • 录用日期:2024-01-05
  • 在线发布日期: 2024-12-23
  • 出版日期: 2024-12-16