Abstract
The difference between the transverse and longitudinal impact toughness of TC18 alloy large-scale forging rods and its microstructural relationships were investigated. Two types of impact samples, i.e., C-L and C-R, were machined from the head, middle and tail positions of the forging rods for Charpy impact testing. The results show that the impact toughness of the C-L samples is always higher than that of the C-R samples. The instrumented impact test further reveals that the ability to resist crack initiation is a key factor affecting the impact toughness, whilst crack initiation energy of the C-L samples is significantly greater than that of the C-R samples. Meanwhile, impact fracture observation manifests that cracks initiate in the form of micro-void coalescence, and mainly originate from the strong-hard phase (such as grain boundary α-phase) near the notch of the samples. For the C-L samples, the elongated direction of the forging microstructure is parallel to the fracture direction, while it is perpendicular to the propagation direction after the micro-void initiation. The crack is thus difficult to grow to the critical size for unstable propagation, which results in the high consumed energy for crack initiation; for the C-R siblings, however, the elongated direction of the primary α-phase including grain boundary α-phase is parallel to the direction of crack initiation, and the cracks easily grow directly to the critical size along the strong-hard phase for unstable propagation, which causes a lower impact toughness in the samples.
| Translated title of the contribution | Difference between Transverse and Longitudinal Impact Toughness of TC18 Alloy Large-Scale Forging Rods |
|---|---|
| Original language | Chinese (Traditional) |
| Pages (from-to) | 911-917 |
| Number of pages | 7 |
| Journal | Xiyou Jinshu Cailiao Yu Gongcheng/Rare Metal Materials and Engineering |
| Volume | 50 |
| Issue number | 3 |
| State | Published - Mar 2021 |
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