Journal of Alloys and Compounds2022,Vol.89821.DOI:10.1016/j.jallcom.2021.162860

(162860)Enhancing mechanical and tribological properties of Ni_3Al-15vol%TiC composite by high current pulsed electron beam irradiation

Muhammet Demirtas Konstantin V. Ivanov Gencaga Purcek
Journal of Alloys and Compounds2022,Vol.89821.DOI:10.1016/j.jallcom.2021.162860

(162860)Enhancing mechanical and tribological properties of Ni_3Al-15vol%TiC composite by high current pulsed electron beam irradiation

Muhammet Demirtas 1Konstantin V. Ivanov 2Gencaga Purcek3
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作者信息

  • 1. Department of Mechanical Engineering, Recep Tayyip Erdogan University, Rize 53100, Turkey
  • 2. Institute of Strength Physics and Materials Science, Siberian Branch of Russian Academy of Sciences, Akademichesky 2/4, 634055 Tomsk, Russia
  • 3. Department of Mechanical Engineering, Karadeniz Technical University, Trabzon 61080, Turkey
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Abstract

Effects of high current pulsed electron beam irradiation (HCPEBI) on the surface microstructure, mechanical properties, room and high temperature tribological behavior of the Ni_3Al-15vol%TiC composite were investigated. The HCPEBI process refines the TiC particles down to nano scale and distributes them homogeneously throughout the modified layer. It also decreases grain size of the Ni_3Al down to 400 nm. Grain refinement and homogeneous distribution of the TiC nanoparticles by irradiation process increase surface hardness from 538 HV0.025 to about 728 HV0.025. The HCPEBI process increases also the wear resistance of Ni_3Al-15vol%TiC composite at both room temperature and elevated temperature of 600 °C due to the increasing hardness and roughening the surface of the sample. Adhesive wear was found to be the dominant wear mechanism for both as-received and irradiated samples at room temperature beside with the dela-mination. At the elevated temperature of 600 °C, oxidative wear and delamination of the oxide layers occur as the main wear mechanisms in the as-received sample. In the irradiated sample, on the other hand, wear starts with the abrasive wear with micro-cutting of surface hills of irradiated sample, and continues with oxidative and delamination wear mechanisms.

Key words

High current pulsed electron beam/irradiation/Ni_3Al-15vol%TiC composite/Surface modification/Microstructure/Wear mechanism/High temperature tribology

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出版年

2022
Journal of Alloys and Compounds

Journal of Alloys and Compounds

EISCI
ISSN:0925-8388
被引量7
参考文献量47
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