Influence of Effective Laser Energy on the Structure and Mechanical Properties of Laser Melting Deposited Ti6Al4V Alloy
The laser energy density (E ) is often utilized in many additive manufacturing (AM) processes studies to help researchers to further investigate the process-structure-property correlations of Ti6Al4V alloys. However, the reliability of the E is still questionable. In this work, a specific empirical...
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Veröffentlicht in: | Materials 2020-02, Vol.13 (4), p.962 |
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Hauptverfasser: | , , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The laser energy density (E
) is often utilized in many additive manufacturing (AM) processes studies to help researchers to further investigate the process-structure-property correlations of Ti6Al4V alloys. However, the reliability of the E
is still questionable. In this work, a specific empirical calculation equation of the effective laser energy (E
), which is a dimensionless parameter in laser melting deposition (LMD) processing, was proposed based on the molten pool temperature. The linear regression results and the coefficient of determination prove the feasibility of the E
equation, which indicates that E
can more accurately reflect the energy-temperature correlations than the commonly used laser energy density (E
) equation. Additionally, Ti6Al4V components were fabricated by the LMD process with different E
to investigate the influence of E
on their structure and mechanical properties. Experimental results show that the detrimental columnar prior β meso-structure can be circumvented and the uniform α + β laths micro-structure can be obtained in LMD Ti6Al4V by a judicious combination of the process parameter (P = 2000 W, V = 12 mm/s, and F = 10.5 g/min) and E
(7.98 × 10
) with excellent tensile strength (1006 ± 25 MPa) and elongation (14.9 ± 0.6%). Overall, the present work provides an empirical calculation equation to obtain a clearer understanding of the influence of different process parameters and indicates the possibility to fabricate the Ti6Al4V alloy with excellent mechanical properties by parameter optimization in the LMD process. |
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ISSN: | 1996-1944 1996-1944 |
DOI: | 10.3390/ma13040962 |