Abstract
Aiming to solve the problem of cracking caused by the brittle intermetallic compounds (IMCs) in the weld zone during the laser welding of ‘Ni - based alloy/Nb - based alloy’, a wedge-shaped Ni interlayer was fabricated via Electro-Spark Deposition (ESD) for laser welding of GH4169/Nb521 joints. The effects of wedge slopes on the microstructure and properties of the joints were investigated. This design effectively suppressed the formation of brittle Ni-Nb IMCs in the fusion zone, expanded the load-bearing area, and redirected stresses at the weak interface—shifting the dominant stress state from normal stress to a combination of normal stress and shear stress. The room - temperature tensile strength of the joint with a wedge slope of 1:6 reaches 391 MPa, which is 80 % of that of the Nb521 base metal. The room-temperature tensile joint failures mainly occur in Nb-rich regions adjacent to the Nb521/Ni interface, where contains significant quantities of Ni3Nb and Ni6Nb7 IMCs. At 950 °C, the joint strength reaches 216 MPa with failure in FZ - Ni transition layer interface. The microhardness increase in Nb521 base metal at high temperature alters the joint’s microhardness distribution, weakening the IMC layer’s impact on joint performance.
| Original language | English |
|---|---|
| Article number | 115403 |
| Journal | Materials and Design |
| Volume | 262 |
| DOIs | |
| State | Published - Feb 2026 |
Keywords
- GH4169/Nb521 dissimilar joints
- Intermetallic compounds
- Laser welding
- Wedge-shaped Ni interlayer
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