4.7 Article

Microhardness and microstructure evolution of TiB2 reinforced Inconel 625/TiB2 composite produced by selective laser melting

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OPTICS AND LASER TECHNOLOGY
卷 80, 期 -, 页码 186-195

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ELSEVIER SCI LTD
DOI: 10.1016/j.optlastec.2016.01.010

关键词

Selective laser melting; Inconel 625; TiB2 particle; Microstructure; Composite alloy

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In this study, micron-size TiB2 particles were utilized to reinforce Inconel 625 produced by selective laser melting. Exceptional microhardness 600-700 HV0.3 of the composite was obtained. In further investigation, the microstructure and mechanical properties of Inconel 625/TiB2 composite can be significantly influenced by addition of TiB2 particles during SLM. It was found that the long directional columnar grains observed from SLM-processed Inconel 625 were totally changed to fine dendritic matrix due to the addition of TiB2 particles. Moreover, with laser energy density (LED) of 1200 J/m, a Ti, Mo rich interface around TiB2 particles with fine thickness can be observed by FESEM and EDS. The microstructure evolution can be determined by different laser energy density (LED): under 1200 J/m, gamma phase in dendrite grains; under 600 J/m, gamma phase in combination of dendritic and acicular grains; under 400 J/m, gamma phase acicular grains. Under optimized LED 1200 J/m, the dynamic nanohardness (8.62 GPa) and elastic modulus (167 GPa) of SLM-processed Inconel 625/TiB2 composite are higher compared with those of SLM-processed Inconel 625 (3.97 GPa and 135 GPa, respectively). (C) 2016 Elsevier Ltd. All rights reserved.

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