Effect of Sintering Time on Mechanical Properties of (Hf-Ta-Zr-Nb-Ti)C

Q4 Materials Science
Lenka Ďaková, M. Hrubovčáková, R. Sedlák, A. Kovalčíková, Ľ. Medvecký, A. Naughton-Duszová, I. Vasková, J. Dusza
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Abstract

Abstract Advanced high-entropy (Hf-Ta-Zr-Nb-Ti)C ceramics were successfully fabricated by the combination of ball milling and a two-step sintering process at 2100 °C for 5, 10, and 20 minutes from commercially available powders. The microstructure characteristics and mechanical properties of the developed systems were investigated. The high-entropy ceramics exhibit: medium grain size from 8 μm to 11 μm, high compositional uniformity, and high relative density above 99.5 %. Vickers hardness for all systems decreased with increasing applied load, with the highest value HV1 = 22.0 GPa for the system sintered for 5 minutes, while the fracture toughness changed from 2.70 MPa.m1/2 to 3.50 MPa.m1/2. The highest four-point flexural strength of 284 MPa was measured for the system with the smallest grain size.
烧结时间对(Hf-Ta-Zr-Nb-Ti)C力学性能的影响
采用球磨和两步烧结工艺,在2100 °C温度下分别烧结5、10和20分钟,成功制备了先进的高熵(Hf-Ta-Zr-Nb-Ti)C陶瓷。研究了所制备体系的显微组织特征和力学性能。高熵陶瓷具有8 ~ 11 μm的中等晶粒尺寸、高均匀性和99.5%以上的相对密度等特点。各体系的维氏硬度均随外加载荷的增加而降低,烧结5min后的HV1为22.0 GPa,断裂韧性为2.70 MPa。m1/2到3.50 mpa。最小晶粒尺寸体系的四点抗弯强度最高为284 MPa。
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来源期刊
Powder Metallurgy Progress
Powder Metallurgy Progress Materials Science-Metals and Alloys
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