4.7 Article

Grain refinement in laser manufactured Al-based composites with TiB2 ceramic

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出版社

ELSEVIER
DOI: 10.1016/j.jmrt.2020.04.059

关键词

Al-based composites; TiB2 ceramic; Selective laser melting (SLM); Grain refinement; Mechanical property

资金

  1. National Key Research and Development Program Additive Manufacturing and Laser Manufacturing [2018YFB1106302, 2016YFB1100101]
  2. National Natural Science Foundation of China [51735005]
  3. Natural Science Foundation of Jiangsu province [BK20180439]
  4. 15th Batch of Six Talents Peaks Innovative Talents Team Program Laser Precise Additive Manufacturing of Structure-Performance Integrated Lightweight Alloy Components (Jiangsu Provincial Department of HumanResources and Social Security of China) [TD-GDZB-001]
  5. 2017 Excellent Scientific and Technological Innovation Teams of Universities in Jiangsu Laser Additive Manufacturing Technologies for Metallic Components (Jiangsu Provincial Department of Education of China)
  6. National Natural Science Foundation of China for Creative Research Groups [51921003]

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Al-based composites reinforced with TiB2 ceramics (1 wt.%, 2 wt.% and 5 wt.%) have been manufactured through selective laser melting (SLM). The results show that the densification, microstructure and mechanical properties of the SLM-processed composites are sensitive to the ceramic particle fraction. The average grain size of the composites decreased from similar to 6.32 to 1.55 mu m with increasing TiB2 fraction from 1 to 5 wt.% respectively. Fine equiaxed grains with narrow size distribution were obtained for composites with relatively high amount of TiB2 particles. The effects of TiB2 ceramic fraction on grain refinement and strengthening mechanisms of SLM-processed composites were discussed. Al-based composite with 2 wt.% TiB2 ceramic was determined to be optimum, especially in the view of manufacturing quality, grain refinement and mechanical properties. The composites at an optimum fraction of 2 wt.% TiB2 exhibited high microhardness of similar to 127 HV0.2 tensile strength of similar to 444 MPa, yield strength of 283 MPa and elongation of similar to 4.2% owing to collective effects of dispersion and grain refinement strengthening as well as high degree of densification. This study can readily offer reference values for laser additive manufacturing of other metal matrix composites to obtain a good compromise of strength and ductility by tuning reinforcement fraction. (C) 2020 The Author(s). Published by Elsevier B.V. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).

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