Abstract
Laser shock processing (LSP), also known as laser peening, is a novel surface strengthening treatment technology, which is capable of introducing residual compressive stress, improving performance of fatigue strength and micro-hardness. With its preferable reinforcement effect, strong controllability and outstanding adaptability, LSP plays an irreplaceable role in improving the service life of key components. The evolution of microstructure in the plastic deformation layer of Ti834 alloy subjected to LSP impacts was investigated by transmission electron microscopy (TEM), and the microstructure evolution model in the surface layer and along depth direction was established. The results indicate that numerous dislocations are generated in the plastic deformation layer of Ti834 alloy subjected to LSP, and the plastic deformation becomes more intense and the dislocation density further increases as the number of impacts increases. Typical microstructure features due to decreasing strain rates can be observed along the depth direction, including mechanical twins (MTs), dense density dislocation walls (DDWs), dislocation tangles (DTs), dislocation arrays (DAs) and dislocation lines (DLs).
| Translated title of the contribution | Microstructure Evolution of Ti834 Alloy Subjected to Laser Shock Processing in Strengthening Layer |
|---|---|
| Original language | Chinese (Traditional) |
| Pages (from-to) | 343-348 |
| Number of pages | 6 |
| Journal | Xiyou Jinshu Cailiao Yu Gongcheng/Rare Metal Materials and Engineering |
| Volume | 49 |
| Issue number | 1 |
| State | Published - 1 Jan 2020 |
| Externally published | Yes |
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