首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Evolution of microstructure and hardness in Hf25Nb25Ti25Zr25 high-entropy alloy during high-pressure torsion
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Evolution of microstructure and hardness in Hf25Nb25Ti25Zr25 high-entropy alloy during high-pressure torsion

机译:高压扭转期间HF25NB25TI25ZR25高熵合金中微观结构和硬度的演变

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摘要

A four-component equimolar high-entropy alloy (HEA) with the composition of HfNbTiZr and body-centered cubic (bcc) structure was processed by HPT at RT. The evolution of the dislocation density, the grain size and the hardness was monitored along the HPT-processed disk radius for different numbers of turns between 1/4 and 20. It was found that most of the increase of the dislocation density and the refinement of the grain structure occurred up to the shear strain of similar to 40. Between the strains of similar to 40 and similar to 700, only a slight grain size reduction was observed. The saturated dislocation density and grain size were similar to 2.1 x 10(16) m(-2) and similar to 30 nm, respectively. The saturation in hardness was obtained at similar to 4450 MPa. These values were similar to the parameters determined in the literature for five-component HEAs processed by HPT. The analysis confirmed that the main component in the strength was given by the friction stress in the HPT-processed bcc HfNbTiZr HEA. It was also revealed that the contribution of the high dislocation density to the strength was significantly higher than the effect of the small grain size. (c) 2019 Elsevier B.V. All rights reserved.
机译:通过HPT在室温下加工具有HFNBTIZR和体为立方(BCC)结构的组成的四组分等摩尔高熵合金(HEA)。沿着HPT处理的盘半径监测位错密度,晶粒尺寸和硬度的演变,以在1/4和20之间的不同数量之间监测。发现大部分位移密度的增加和细化晶粒结构发生在相似的剪切菌株到40.与40类似的菌株与700相似之间,观察到略微晶粒尺寸。饱和位错密度和晶粒尺寸与2.1×10(16)m(-2)和类似于30nm。在类似于4450MPa的情况下获得硬度的饱和度。这些值类似于由HPT处理的五组分HEAS中确定的参数。该分析证实,强度的主要成分由HPT处理的BCC HFNBTIZR HEA中的摩擦胁迫给出。还透露,高位脱位密度对强度的贡献显着高于小粒度的效果。 (c)2019 Elsevier B.v.保留所有权利。

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