Investigation of the Effects of Solution Rapid Treatment on Wear Properties of AlSi10Mg Alloy
Discuss this preprint
Start a discussion What are Sciety discussions?Listed in
This article is not in any list yet, why not save it to one of your lists.Abstract
The purpose of this study was to evaluate the tribological response of laser powder bed-fused AlSi10Mg after an innovative rapid T6 heat treatment and to compare it with that of as-built and conventional T6 conditions. Four rapid T6 routes, each with a significantly shortened solutionization time (5–10 min at 510–540°C + aging), were compared with the standard T6 route (540°C, 2 h + aging). Microstructure (optical microscopy, SEM, and XRD), hardness, and dry sliding wear performance (ball-on-flat reciprocating, WC ball, 2 N, 25 m) were analyzed using friction curves and wear volume measurements, supported by 3D wear-track profiling and SEM investigations of wear tracks. Rapid T6 routes produced a refined, homogeneous distribution of spheroidized Si, with hardness higher than that of conventional T6. The rapid T6 routes using 5 min solutionization showed the lowest wear volume, whereas conventional T6 exhibited ~ 50% greater wear volume loss than the as-built state due to Si coarsening and matrix softening. Almost all rapid T6 conditions, except 10 minutes at 510°C, improved wear resistance relative to conventional T6, and the optimal rapid T6 route (540°C, 5 minutes) achieved approximately 40% better wear performance. In general, the wear damage was primarily caused by oxidation and abrasion. This study demonstrates that rapid T6 provides a time- and energy-efficient post-processing route that improves wear resistance against sliding wear conditions.