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Effects of Hot-rolling Reduction on Microstructure and Mechanical Properties of GNPs/Ti Composites
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National Key Laboratory of Science and Technology on Materials under Shock and Impact,School of Materials Science and Engineering,Beijing Institute of Technology,National Key Laboratory of Science and Technology on Materials under Shock and Impact,School of Materials Science and Engineering,Beijing Institute of Technology,National Key Laboratory of Science and Technology on Materials under Shock and Impact,School of Materials Science and Engineering,Beijing Institute of Technology,National Key Laboratory of Science and Technology on Materials under Shock and Impact,School of Materials Science and Engineering,Beijing Institute of Technology,National Key Laboratory of Science and Technology on Materials under Shock and Impact,School of Materials Science and Engineering,Beijing Institute of Technology

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    Abstract:

    Graphene nanoplatelets (GNPs)/Ti composites were fabricated by spark plasma sintering (SPS) and hot-rolling. This work was focused on the effects of rolling reduction on microstructure and mechanical properties of GNPs/Ti composites. The SEM microstructure results showed that matrix grains were gradually elongated and the amount of GNPs which were along the rolling direction rose with the increase of rolling reduction. The tensile test results show that the ultimate tensile strength and fracture elongation of the GNPs/Ti composites increase with the increase of rolling reduction. The ultimate tensile strength of the composites with 60% rolling reduction is 680MPa, which is increased by 33% compared with pure Ti. Hot-rolling process can relieve defects and lead to GNPs aligned along the rolling direction, which contribute to the improvement of the tensile property.

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[Wu Yan, Zhang Hongmei, Cai Hongnian, Fan Qunbo, Mu Xiaonan. Effects of Hot-rolling Reduction on Microstructure and Mechanical Properties of GNPs/Ti Composites[J]. Rare Metal Materials and Engineering,2018,47(8):2312~2317.]
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History
  • Received:January 17,2017
  • Revised:May 09,2017
  • Adopted:May 16,2017
  • Online: October 17,2018
  • Published: