The paper deals with the evolution of the microstructure of AlSi10Mg alloy obtained by laser powder bed fusion (LPBF), as a function of the post-processing heat treatment temperature. This was approached by complementary methods including FE-scanning electron microscopy, scanning Kelvin probe force microscopy and exo-electron emission techniques. The fast cooling rate of the LPBF process as compared to traditional casting produces a very fine microstructure with high mechanical properties and corrosion resistance. However, the LPBF-AlSi10Mg alloy can be susceptible to selective corrosion at the edge of the melt pools generated by the laser scan tracks. Post-process thermal treatments of the Al alloy induce a marked modification of the silicon network at melt pool edges, in particular at high temperature such as 400◦ C. It was found that this is associated to a more homogeneous distribution of Volta potential. Analysis of exo-electron emission confirms the silicon diffusion during thermal treatment. The modification of the silicon network structure of the LPBF-AlSi10Mg during thermal treatment reduces the susceptibility to selective corrosion.
Effect of heat treatment on microstructure and selective corrosion of LPBF-AlSi10Mg by means of SKPFM and exo-electron emission / Cabrini, M.; Lorenzi, S.; Testa, C.; Manfredi, D.; Lombardi, M.; Aversa, A.; Andreatta, F.; Fedrizzi, L.; Dekhtyar, Y.; Sorokins, H.; Pastore, T.. - In: MATERIALS. - ISSN 1996-1944. - ELETTRONICO. - 14:19(2021), p. 5602. [10.3390/ma14195602]
Effect of heat treatment on microstructure and selective corrosion of LPBF-AlSi10Mg by means of SKPFM and exo-electron emission
Manfredi D.;Lombardi M.;Aversa A.;
2021
Abstract
The paper deals with the evolution of the microstructure of AlSi10Mg alloy obtained by laser powder bed fusion (LPBF), as a function of the post-processing heat treatment temperature. This was approached by complementary methods including FE-scanning electron microscopy, scanning Kelvin probe force microscopy and exo-electron emission techniques. The fast cooling rate of the LPBF process as compared to traditional casting produces a very fine microstructure with high mechanical properties and corrosion resistance. However, the LPBF-AlSi10Mg alloy can be susceptible to selective corrosion at the edge of the melt pools generated by the laser scan tracks. Post-process thermal treatments of the Al alloy induce a marked modification of the silicon network at melt pool edges, in particular at high temperature such as 400◦ C. It was found that this is associated to a more homogeneous distribution of Volta potential. Analysis of exo-electron emission confirms the silicon diffusion during thermal treatment. The modification of the silicon network structure of the LPBF-AlSi10Mg during thermal treatment reduces the susceptibility to selective corrosion.File | Dimensione | Formato | |
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https://hdl.handle.net/11583/2958701