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Microstructure and strength of nano-Ailtrafine-grained carbon nanotube- reinforced titanium composites processed by high-pressure torsion

机译:高压扭转加工纳米铝细颗粒碳纳米管增强钛复合材料的组织和强度

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摘要

Nano-/ultrafine-grained carbon nanotube-reinforced titanium (CNT/Ti) composites were synthesized by ball milling and high pressure torsion (HPT) at room temperature. The effects of the number of HTP rotations and the weight fraction of CNTs on the microstructure, hardness and tensile properties of the CNT/Ti composites were investigated. Transmission electron microscopy (TEM) revealed that elongated grains with an average length of 100–250 nm parallel to the compression axis of HPT and a thickness of 10–25 nm are formed in CNT/Ti composites when CNT contents ranging from 0.3 wt% to 1.0 wt%. With increasing CNT contents, the grain size of Ti is refined, and the microhardness and tensile properties of the composites increase. Evaluating the mechanical properties of the CNT/Ti composites with 0.7 wt% CNTs after 20 rotations indicates a high tensile strength of 872 ± 5 MPa. Cs-corrected high resolution TEM of the interfaces between Ti and the CNTs after HPT reveals a gradual transition from the lattice planes of hexagonal Ti to those of the CNTs. The strengthening mechanisms are discussed from the aspects of matrix grain refinement, distribution of the CNTs and the CNT-Ti interfaces obtained during ball milling and HPT processing.
机译:在室温下,通过球磨和高压扭转(HPT)合成了纳米/超细晶粒的碳纳米管增强钛(CNT / Ti)复合材料。研究了HTP转数和CNT的重量分数对CNT / Ti复合材料的显微组织,硬度和拉伸性能的影响。透射电子显微镜(TEM)显示,当CNT / Ti复合材料的含量为0.3 wt%到5%时,会在CNT / Ti复合材料中形成平行于HPT压缩轴的平均长度为100-250 nm的细长晶粒。 1.0 wt%。随着CNT含量的增加,Ti的晶粒细化,复合材料的显微硬度和拉伸性能提高。旋转20次后,对含0.7 wt%CNT的CNT / Ti复合材料的机械性能进行评估表明,其高拉伸强度为872±5 MPa。 HPT后,Ti和CNT之间的界面经过Cs校正的高分辨率TEM揭示了从六角形Ti的晶格平面逐渐过渡到CNT的晶格平面。从基体晶粒细化,CNT的分布以及在球磨和HPT处理过程中获得的CNT-Ti界面的角度讨论了增强机理。

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  • 来源
    《Materials Science and Engineering》 |2018年第11期|122-128|共7页
  • 作者单位

    School of Materials Science and Engineering, Kunming University of Science and Technology,Erich Schmid Institute of Materials Science, Austrian Academy of Sciences;

    School of Materials Science and Engineering, Kunming University of Science and Technology;

    School of Materials Science and Engineering, Kunming University of Science and Technology;

    Erich Schmid Institute of Materials Science, Austrian Academy of Sciences;

    Erich Schmid Institute of Materials Science, Austrian Academy of Sciences,Department of Manufacturing and Civil Engineering, Norwegian University of Science and Technology;

    Department Materials Physics, Montanuniversität Leoben;

    Erich Schmid Institute of Materials Science, Austrian Academy of Sciences,Department Materials Physics, Montanuniversität Leoben;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Carbon nanotubes; High pressure torsion; Strengthening mechanisms; Grain refinement;

    机译:碳纳米管;高压扭转;强化机理;晶粒细化;

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